AndrewsP.M., PorterK.R.The ultrastructural morphology and possible significance of mesothelial microvilli.Anat Rec1981; 177: 409–26.
2.
OdorL.Observations of the rat mesothelium with dielectron and phase microscopes.Am J Anat1954; 95: 433–65.
3.
BaradiA.F., RaoS.N.A scanning electron microscope study of mouse peritoneal mesothelium.Tissue Cell1976; 8: 159–62.
4.
VergerC., LugerA., MooreH., NolphK.D.Acute changes in peritonei morphology and transport properties with infectious peritonitis and mechanical injury.Kidney Int1983; 23: 823–31.
5.
KosterS., SpacekZ., PaweletzN., VolzJ.A scanning microscopy study of the peritoneum in mice after application of a CO2 pneumoperitoneum.Zentralbl Gynakol1999; 121: 244–7.
6.
BloechleC., KluthD., HolsteinA.F., EmmermannA., StrateT., ZornigC.A pneumoperitoneum perpetuates severe damage to the ultrastructural integrity of parietal peritoneum in gastric perforation-induced peritonitis in rats.Surg Endosc1999; 13: 683–8.
7.
Di PaoloN., GarosiG., PetriniG., MonaciG.Morphological and morphometric changes in mesothelial cells during peritoneal dialysis in the rabbit.Nephron1996; 74: 594–9.
Di PaoloN., SacchiG., VanniL., CorazziS., PalliniV., RossiP.Autotransplant of the mesothelium in animals and a peritoneal dialysis patient.Int J Artif Organs1989; 12: 485–501.
10.
NakataniT., TanakaS., MizukamiS., OkamotoK., ShiraishiY., NakamuraT.Peritoneal lymphatic stomata of the diaphragm in the mouse: Process of their formation.Anat Rec1997; 248: 121–8.
11.
ShaoX.J., OhtaniO., SaitohM., OhtaniY.Development of diaphragmatic lymphatics: The process of their direct connection to the peritoneal cavity.Arch Histol Cytol1998; 62: 137–49.
12.
KristL.F., EestermansI.L., SteenbergenJ.J., HoefsmitE.C., CuestaM.A., MeyerS.Cellular composition of milky spots in the human greater omentum: An immunochemical and ultrastructural study.Anat Rec1995; 241: 163–74.
13.
GosselinR.E., BerndtW.O.Diffusional transport of solutes through mesentery and peritoneum.J Theor Biol1962; 3: 487–91.
14.
GotloibL., DigenisG.E., RabinovichS., MedlineA., OreopoulosD.G.Ultrastructure of normal rabbit mesentery.Nephron1983; 34: 248–55.
15.
GotloibL.Anatomy of the peritoneal membrane. Proceedings of the First International Course on Peritoneal Dialysis, Vicenza, Italy. Milano: Wichtig Editore, 1982: 17–30.
16.
Di PaoloN., SacchiG., CapotondoL.The peritoneum is a living membrane.Perit Dial Bull1987; 7: S24.
17.
SlaterN.J., RafteryA.T., CopeG.H.The ultrastructure of human abdominal mesothelium.J Anat1989; 167: 47–56.
MichailovaK., WassilevW., WedelT.Scanning and transmission electron microscopic study of visceral and parietal peritoneal regions in the rat.Anat Anz1999; 181: 253–60.
20.
PfeifferC.J., PfeifferD.C., MisraH.P.Enteric serosal surface in the piglet. A scanning and transmission electron microscopic study of the mesothelium.J Submicrosc Cytol1987; 19: 237–46.
21.
MillingtonP.F., CritchleyD.R., TovellP.W., PearsonR.Scanning electron microscopy of intestinal microvilli.J Microsc1969; 89: 339–44.
MoogF.The lining of the small intestine.Sci Am1981; 2455: 116–25.
24.
Di PaoloN., SacchiG., CapotondoL.Morfologia normale del peritoneo e durante la dialisi peritoneale continua. In: Di PaoloN., ed. CAPD.Milano: Wichtig Editore, 1987: 3–20.
25.
MadisonL.D., BergstromM.U., PorterB., TorresA.R., SheltonE.Regulation of surface topography of mouse peritoneal cells.J Cell Biol1979; 82: 783–90.
26.
SasakiK.Abdominal peritoneum as a defense organ: Analysis of ICAM-1 expression in the LPS-stimulated rat.Clin Anat1999; 12: 20–6.
27.
PaladeG.E., SimionescuM., SimionescuN.Structural aspects of the permeability of the microvascular endothelium.Acta Physiol Scand1979; 463: 11–32.
28.
PaladeG.E.Fine structure of blood capillaries.J Appl Physiol1953; 24: 1424.
29.
PetersenO.W., Van DeursB.Serial section analysis of coated pits and vesicles involved in adsorptive pinocytosis in cultured fibroblasts.J Cell Biol1983; 96: 277–81.
30.
PetersK.R., CarleyW.W., PaladeG.E.Endothelial plasmalemmal vesicles have a characteristic striped bipolar surface structure.J Cell Biol1985; 101: 2233–8.
31.
AlbertsB.Molecular biology of the cell.New York: Garland Publishing Inc., 1989.
32.
BrachetE., RasioE.The passage of radioiodinated protein hormones across isolated mesentery.Arch Int Physiol Biochim1969; 77: 362–5.
33.
RasioE.Permeability of an isolated rete mirabile as determined during steady-state counter-current perfusions.Bibl Anat1975; 13: 21–3.
34.
SimionescuM., SimionescuN.Organization of cell junctions in peritoneal mesothelium.J Cell Biol1977; 74: 98–110.
35.
CotranR.S.Nicca C. The intercellular localization of cations in the mesothelium. A light and electron microscopic study.Lab Invest1968; 18: 407–15.
36.
WhitakerD., PapadimitriouJ.M., WaltersM.N.The mesothelium and its reactions: A review.Crit Rev Toxicol1982; 10: 81–144.
37.
IvanovaV.F.Role of the mesothelium of the parietal peritoneum in the process of absorption of true solution and India ink suspension from the abdominal cavity.Bull Exp Biol Med1976; 82: 1258–61.
38.
OhtaniY.Ohtani 0, Nakatani T. Microanatomy of the rat diaphragm: A scanning electron and confocal laser scanning microscopic study.Arch Histol Cytol1993; 56: 317–28.
39.
FedorkoM.E., HirsckJ.G., FiedB.Studies on transport of macromolecules and small particles across mesothelial cells of the mouse omentum.Exp Cell Res1981; 63: 313–23.
40.
CarrI., ClarkeJ.A., SalsburyA.J.The surface structure of mouse peritoneal cells. A study with the scanning electron microscope.J Microsc1969; 89: 105–11.
41.
WuY.J.Parker LM, Binder NE, Beckett MA, Sinard JH, Griffiths CT. et al. The mesothelial keratins: A new family of cytoskeletal proteins identified in cultured mesothelial cells and non keratinizing epithelia.Cell1982; 31: 693–703.
42.
Van HinsberghV.W.M., KooistraT., SchefferM.A., Hajo van BockelJ.van MeijinGN.Characterization and fibrinolytic properties of human omental tissue mesothelial cells. Comparison with endothelial cells.Blood1990; 75: 1490–7.
43.
DobbieJ.W.Anderson JD. Ultrastructure, distribution, and density of lamellar bodies in human peritoneum.Perit Dial Int1996; 16: 482–7.
44.
HillsB.A.Butler BD, Barrow RE. Boundary lubrication impaired by pleural surfactants and their identification.J Appl Physiol1982; 53: 463–9.
45.
GrahameG.R.Torchia MG, Dankewich KA, Ferguson IA. Surface-active material in peritoneal effluent of CAPD patients.Perit Dial Bull1985; 5: 109–14.
46.
Di PaoloN., BuoncristianiU., CapotondoL., GaggiottiE., DeMiaM., RossiP.Phosphatidylcholine and peritoneal transport during peritoneal dialysis.Nephron1986; 44: 365–70.
47.
CantorJ.O.Willhite M, Bray BA, Keller S, Mandl I, Turino GM. Synthesis of crosslinked elastin by a mesothelial cell culture.Proc Soc Exp Biol Med1986; 181: 387–91.
48.
JacobsJ.P.Margrath DI, Garret AJ, Schild GC. Guidelines for the acceptability, management and testing of serially propagated human diploid cells for the production of live virus vaccines for use in man.J Biol Stand1981; 9: 332–42.
49.
La RoccaP.J., RheinwaldJ.G.Anchorage-independent growth of normal human mesothelial cells: A sensitive bioassay for EGF which discloses the absence of this factor in fetal calf serum.In Vitro Cell Dev Biol1985; 21: 67–72.
50.
NiedbalaM.J., CrickardK., BernackiR.J.Interactions of human ovarian tumor cells with human mesothelial cells grown on extracellular matrix. An in vitro model system for studying tumor cell adhesion and invasion.Exp Cell Res1985; 160: 499–513.
51.
SatohK., PrescottS.M.Culture of mesothelial cells from bovine pericardium and characterization of their arachidonate metabolism.Biochim Biophys Acta1987; 930: 283–6.
52.
WangS.N., JaurandM.C., MagneL., KheuangL., PinchonM.C., BignonJ.The interactions between asbestos fibers and metaphase chromosomes of rat pleural mesothelial cells in culture.Am J Pathol1986; 126: 343–9.
53.
Di PaoloN.The peritoneal mesothelium. An excretory organ.Perit Dial Int1989; 9: 151–4.
54.
TragonosF.Flow cytometry: Principles and applications. Part II.Cancer Invest1984; 2: 239–58.
55.
BoraschiD., CensiniS., BartaliniM., TagliabueA.Regulation of arachidonic acid metabolism in macrophages by immune and non immune interferons.J Immunol1985; 135: 502–5.
56.
StargerJ.M., BrownW.E., GoldmanA.E., GoldmanR.D.Biochemical and immunological analysis of rapidly purified 10-nm filaments from baby hamster kidney (BHK-21) cells.J Cell Biol1978; 78: 93–109.
57.
TowbinH., StaehlinT., GordonJ.Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: Procedure and some applications.Proc Natl Acad Sci USA1979; 76: 4350–4.
58.
Di PaoloN., SacchiG., BuoncristianiU., DeMiaM., GaggiottiE., CapotondoL.The morphology of the peritoneal membrane during CAPD.Nephron1986; 44: 204–11.
59.
Di PaoloN., Vanni1, SacchiG.Autologous implant of peritoneal mesothelium in rabbits and man.Clin Nephrol1990; 34: 179–84.
60.
Di PaoloN., SacchiG.Peritoneal vascular changes in continuous ambulatory peritoneal dialysis (CAPD): An in vivo model for the study of diabetic microangiopathy.Perit Dial Int1989; 9: 41–5.
61.
DobbieM.S.Phosphatidylcholine synthesis by peritoneal mesothelium: Its implication for peritoneal dialysis.Am J Kidney Dis1988; 12: 31–6.
62.
BercoviciB., GallilyR.The cytology of human peritoneal fluid.Acta Cytol1978; 124–7.
63.
CichockiT., HanickiZ., SulowiczW., SmolenskiO., KopecJ., ZembalaM.Output of peritoneal cells into peritoneal dialysate.Nephron1983; 35: 175–82.
64.
HillsB.A.Lubrication of visceral movement and gastric motility by peritoneal surfactant.J Gastroenterol Hepatol1996; 11: 797–803.
65.
Di PaoloN., SacchiG.Anatomy and physiology of the peritoneal membrane.Contrib Nephrol1990; 84: 10–26.
YungS., ColesG.A., WilliamsJ.D., DaviesM.The source and possible significance of hyaluronan in the peritoneal cavity.Kidney Int1994; 46: 527–33.
68.
KumanoK., Schiller–MoranB., HjelleJ.T., MoranJ.Hypertonic glucose decreases total protein synthesis but increases fibronectin gene expression on cultured rat mesothelial cells.Perit Dial Int1994; 14(Suppl 1): S5.
TopleyN., WilliamsJ.D.Effect of peritoneal dialysis on cytokine production by peritoneal cells.Blood Purif1996; 14: 188–97.
72.
KumanoK., Schiller–MoranB., HjelleJ.T., SakayT.Effects of glucose on cell proliferation and TGF-β expression in cultured rat mesothelial cells (Abstract).J Am Soc Nephrol1993; 4: 410.
DemetriG.D., ZenzieB.W., RheinwaldJ.G., GriffinJ.D.Expression of colony-stimulating factor genes by normal human mesothelial cells and human malignant mesothelioma cell lines in vitro.Blood1989; 74: 940–6.
75.
Di PaoloN., GarosiG., TraversariL., Di PaoloM.Mesothelial biocompatibility of peritoneal dialysis solutions.Perit Dial Int1993; 13(Suppl 2): S109–12.
76.
HjelleJ.T., Miller–HjelleM.A., DobbieJ.W.The biology of the mesothelium during peritoneal dialysis.Perit Dial Int1995, 15(7, Suppl): S13–22.
77.
HillsB.A., ButlerB.D., BurrowR.E.Role of surfactant in the lung and other organs.Crit Care Med1983; 11: 951–6.
FelixD.M., DaltonA.J.A comparison of mesothelial cells and macrophages in mice after the intraperitoneal inoculation of melanin granules.J Biophys Biochem Cyt 21956; 2: 109–17.
80.
LawrentT.C.The ultrastructure and physical-chemical properties of interstitial connective tissue.Pflughers Arch1972; 336: S21–S42.
81.
JunqueiraL.C., JoazeiroP.P., ToledoO.M., MontesG.S.A morphologic and histochemical study of the mesentery in the guinea pig.Acta Anat (Basel)1987; 129: 214–19.
82.
BaronM.A.Structure of the intestinal peritoneum in man.Am J Anat1941; 69: 439–96.
83.
DobbieJ.W.Morphology of the peritoneum in CAPD.Blood Purif1989; 7: 74–85.
84.
FlessnerM.F.Osmotic barrier of the parietal peritoneum.Am J Physiol1994; 267(5 Pt 2): F861–70.
85.
GotloibL., ShostakA., Bar SellaP., EialiV.Heterogeneous density and ultrastructure of rabbit's peritoneal microvasculature.Int J Artif Organs1984; 7: 123–5.
86.
GotloibL., ShostakA., Bar SellaP., EialiV.Fenestrated capillaries in human parietal and rabbit diaphragmatic peritoneum.Nephron1985; 41: 200–2.
87.
RippeB., CarlssonO.Role of transcellular water channels in peritoneal dialysis.Perit Dial Int1999; 19(Suppl 2): S95–101.
88.
ShinoharaH.Lymphatic system of the mouse diaphragm: Morphology and function of the lymphatic sieve.Anat Rec1997; 249: 6–15.
89.
DobroszynskaT., JaniszewskaL.The presence of lymphatic stomata in the ovarian bursa on the European beaver as shown by scanning electron microscope study.Folia Morphol (Warsz)1998; 57: 349–55.
90.
WassilevW., WedelT., MichailovaK., KuhrelW.A scanning electron microscopy study of peritoneal stomata in different peritoneal regions.Anat Anz1998; 180: 137–43.
91.
FukuoY., ShinoharaH., MatsudaT.The distribution of lymphatic stomata in the diaphragm of the golden hamster.J Anat1990; 169: 13–21.
92.
OyaM., ShimadaT., NakamuraM., UchidaY.Functional morphology of the lymphatic system in the monkey diaphragm.Arch Histol Cytol1993; 56: 37–47.
93.
WangN.S.Anatomy of the pleura.Clin Chest Med1998; 19: 229–40.
94.
NegriniD., MukengeS., Del FabbroM., GonanoC., MiserocchiG.Distribution of diaphragmatic lymphatic stomata.J Appl Physiol1991; 70: 1544–9.
95.
NegriniD., Del FabbroM., GonanoC., MukengeS., MiserocchiG.Distribution of diaphragmatic lymphatic lacunae.J Appl Physiol1992; 72: 1166–72.
96.
BarberiniF., CarpinoF., RendaT., MottaP.Observations by scanning electron microscopy (SEM) on the surface of mesothelial cells of different peritoneal areas of rat.Anat Anz1977; 142: 486–96.
97.
BettendorfU.Peritoneal resorption via lymph of diaphragm. Physiology and physiopathology.Disch Med Wochenschr1979; 104: 1143–5.
98.
ShinoharaH., NakataniT., MorisawaS., MatsudaT.On the ovarian bursa of the golden hamster. Part I. Scanning electron microscopy of the inner surface and stomatal orifices.J Anat1986; 147: 45–54.
99.
TeschC., Henne–BrunsD., HolsteinA.F.Open lymph vessel of the ligamentum falciforme hepatis in the human.Langenbecks Arch Chir1990; 375: 130–4.
100.
Abu-HijlehM.F., HabbalO.A., MoqattashS.T.The role of the diaphragm in lymphatic absorption from the peritoneal cavity.J Anat1995; 186: 453–67.
101.
BettendorfU.Lymph flow mechanism of the subperitoneal diaphragmatic lymphatics.Lymphology1978; 11: 111–16.
102.
LeakL.V.Reaction of mesothelium to intraperitoneal stimulation. Part I. Aggregation of peritoneal cells.Lab Invest1983; 48: 479–91.
AzzaliG.The lymphatic vessels and the so-called “lymphatic stomata” of the diaphragm: A morphologic ultrastructural and three-dimensional study.Microvasc Res1999; 57: 30–43.
105.
LiJ., ChenX., YuS.The ultrastructure of vesicle-containing cells and ER-cells of human peritoneum.Anat Anz1996; 178: 365–7.
106.
LeakL.V., RahilK.Permeability of the diaphragmatic mesothelium: The ultrastructural basis for “stomata.”Am J Anat1978; 151: 557–93.
107.
LiJ., ZhouJ., GaoY.The ultrastucture and computer imaging of the lymphatic stomata in the human pelvic peritoneum.Anat Anz1997; 179: 215–20.
108.
RemmeleW., RichterI.E., WindenhofH.Experimental investigations on cell resorption from the peritoneal cavity by use of the scanning electron microscope.Klin Wochenschr1975; 53: 913–22.
109.
LevineS., SaltzmanA.Postinflammatory increase of lymphatic absorption from the peritoneal cavity: Role of diaphragmatic stomata.Microcirc Endothelium Lymphatics1988; 4: 399–413.
110.
GaudioE., CasaleN., PannaraleL., PrioriA., MarinozziG.A scanning electron microscopy morphometric study of the rabbit peritoneal surface.Anat Rec1990; 228: 145–50.
111.
EttarhR.R., CarrK.E.Ultrastructural observation on the peritoneum in the mouse.J Anat1996; 188: 211–15.
112.
KnapowskiJ., Pawlik–JuzkowH., SzymkowiakG.Functional aspects of topographic differentiation in the peritoneum.Przegl Lek1996; 53: 801–4.
113.
LeakL.V.Distribution of cell surface charges on mesothelium and lymphatic endothelium.Microvasc Res1986; 31: 18–30.
114.
RhodinJ.A., SueS.L.Combined intravital microscopy and electron microscopy of the blind beginnings of the mesenteric lymphatic capillaries of the rat mesentery. A preliminary report.Acta Physiol Scand Suppl1979; 463: 51–8.
115.
CastenholzA., HauckG., RettbergU.Light and electron microscopy of the structural organization of the tissue-lymphatic fluid drainage system in the mesentery: An experimental study.Lymphology1991; 24: 82–92.
116.
KhannaR., MactierR.Role of lymphatics in peritoneal dialysis.Blood Purif1992; 10: 163–72.
117.
KumanoK., GoK., HeM., SakaiT.Role of diaphragmatic, visceral, and parietal pathways in peritoneal fluid absorption in rat peritoneal dialysis.Perit Dial Int1996; 16(Suppl 1): S80–3.
118.
AbernethyN.J., ChinW., HayJ.B.Lymphatic removal of dialysate from the peritoneal cavity of anesthetized sheep.Kidney Int1991; 40: 174–81.
119.
MiserocchiG., NegriniD., MukengeS., TurconiP., Del FabbroM.Liquid drainage through the peritoneal diaphragmatic surface.J Appl Physiol1989; 66: 1579–85.
120.
DrakeR.E., GabelJ.C.Diaphragmatic lymph vessel drainage of the peritoneal cavity.Blood Purif1992; 10: 132–5.
121.
SulowiczW., HanickiZ., Nowogrodzka–ZagorskaM., KusJ., PawlickiR.Ultrastructural study of human macrophages from peritoneal dialysate.Acta Morphol Hung1991; 39: 217–28.
WijffelsJ.F., HendrickxR.J., SteenbergenJ.J., EestermansI.L., BeelenR.H.Milky spots in the mouse omentum may play an important role in the origin of peritoneal macrophages.Res Immunol1992; 143: 401–9.
124.
CranshawM.L., LeakL.V.Milky spots of the omentum: A source of peritoneal cells in the normal and stimulated animal.Arch Histol Cytol1990; 53: 165–77.
125.
DohertyN.S., GriffithsR.J., HakkinenJ.P., ScampoliD.N., MiliciA.J.Post-capillary venules in the milky spots of the greater omentum are the major site of plasma protein and leukocyte extravasation in rodent models of peritonitis.Inflamm Res1995; 44: 169–77.
126.
MurataJ.Studies on macrophages in the peritoneal cavity. Report II. The origin of the macrophages in the peritoneal cavity.Int J Hematol1955; 18: 49–62.
127.
TanakaH.Comparative cytologic studies by means of an electron microscope on monocytes, subcutaneous histiocytes, reticulum cells in the lymph nodes and peritoneal macrophages.Annu Rep Inst Virus Res Kyoto Univ1958; 1: 87–149.
128.
TakemoriN., ItoT.Response of the omental milky spots to colloidal saccharated ferric oxide in the mouse: Light and electron microscopic study.Hokkaido Igaku Zasshi1981; 56: 199–216.
129.
JörresA.Effect of peritoneal dialysis on peritoneal cell biology: Peritoneal fibroblasts.Perit Dial Int1999; 19(Suppl 2): S348–52.
130.
HiguchiC., NiheiH.The role of protein kinase C activity in the proliferation of peritoneal fibroblasts.Perit Dial Int1999; 19(Suppl 2): S353–7.
ShimotsumaM., KawataM., HagiwaraA., TakahashiT.Milky spots in the human greater omentum. Macroscopic and histological identification.Acta Anat (Basel)1989; 136: 211–16.
133.
ImaiH., KasajimaT., MatsudaM.Electron-microscopic study on the peritoneal macrophage and milky spot of the omentum.Recent Adv Res1971; 11: 54–84.
134.
BrandtA., SchnorrB.Bluttgefassversorgung des grossen Netzes von Schaf und Ziege.Z Mikrosk Anat Forsch1983; 97: 427–40.
135.
ShimotsumaM., ShieldsJ.W., Simpson–MorganM.W., SakuyamaA., ShirasuM., HagiwaraA.Morphophysiological function and role of omental milky spots as omentum-associated lymphoid tissue (OALT) in the peritoneal cavity.Lymphology1993; 26(2): 90–101.
DuxK., RouseR.V., KyewskiB.Composition of the lymphoid cell populations from omental milky spots of the immune response in C57BL/Ka mice.Eur J Immunol1986; 16: 1029–32.
138.
KristL.F., KoenenH., CalameW.Ontogeny of milky spots in the human greater omentum: An immunochemical study.Anat Rec1997; 249: 399–404.
139.
SzaniawskaB.Changes in greater omentum of mice of different strains after intraperitoneal immunization with sheep erythrocytes. Part I. Production of IgM immunoglobulins in milky spots.Arch Immunol Ther Exp (Warsz)1974; 22: 585–93.
140.
SzaniawskaB.Changes in greater omentum of mice of different strains after intraperitoneal immunization with sheep erythrocytes. Part II. Study of the capability of the milky spot cells to reconstitute the humoraltype immunologic response in lethally irradiated mice.Arch Immunol Ther Exp (Warsz)1975; 23: 11–17.
141.
TakemoriN., HiraiK., OnoderaR., SaitoN., NamikiM.Light and electron microscopic study of omental milky spots in New Zealand black mice, with special reference to extramedullary hematopoiesis.Anat Embryol (Berl)1994; 189: 215–26.
142.
SimonM.Peritoneal mesothelium in vitro: an electrophysiologic study.Perit Dial Int1996; 16: 393–7.
143.
Von RecklinghausenF.T.Zur Fettresorpion.Arch Pathol Anat Physiol1863; 26: 172–8.
144.
GotloibL., ShostakA.Characteristics of hematocrit response to continuous ambulatory peritoneal dialysis.Arch Intern Med1986; 146: 1231–2.
145.
VergerC., BrunschvicgO., Le CharpentierY., LaverqueA., VantelonJ.Structural and ultrastructural peritoneal membrane changes and permeability alterations during CAPD.Proc Eur Dial Transplant Assoc1981; 18: 199–205.
146.
BreborowiczA., SombolosK., RodellaH.Mechanism of phosphatidylcholine action during peritoneal dialysis.Nephron1986; 44: 365–8.
147.
Di PaoloN., AlessandriniC., GerliR., SacchiG.Trasporto peritoneale e cinetica degli scambi. In: D'AmicoG., VendemmiaF., SorgatoG., eds. Attualità nefrologiche e dialitiche, il pensiero.Roma: Scientifico, 1979: 79–91.
148.
DobbieJ.W., LloydJ.K., GallC.A.Categorization of ultra-structural changes in peritoneal mesothelium, stroma and blood vessel in uremia and CAPD patients.Adv Perit Dial1990; 6: 3–10.
149.
Di PaoloN., SacchiG., CapotondoL.Anatomia e fisiologia del peritoneo. In: CambiV., ed. Trattato Italiano di dialisi.Milano: Wichtig Editore, 1990: 1–15.
150.
GandhiV.C., HumayunH.M., IngT.S., DaugirdisJ.T., JablokowV.R., IwatsukiS.Sclerotic thickening of the peritoneal membrane in maintenance peritoneal dialysis patients.Arch Intern Med1980; 140: 1201–3.
151.
DobbieJ.W., ZakiM.A.The ultrastructure of the parietal peritoneum in normal and uremic man in patients on CAPD. In: MaherJF, WinchesterJ.F., eds. Frontiers in peritoneal dialysis.New York: Field, Rich and Associates, 1986: 3–10.
152.
DobbieJ.W.Peritoneal ultrastructure and changes with continuous ambulatory peritoneal dialysis.Perit Dial Int1993; 13(Suppl 2): S585–7.
153.
DobbieJ.W., ZakiM.A., WilsonL.Ultrastructural studies on the peritoneum with special reference to chronic ambulatory peritoneal dialysis.Scott Med J1981; 26: 213–23.
154.
YungS., DaviesM.Response of the human peritoneal mesothelial cell to injury: An in vitro model of peritoneal wound healing.Kidney Int1998; 54: 2160–9.
155.
GotloibL., WajsbrotV., ShostakA., KushnierR.Morphology of the peritoneum: Effect of peritoneal dialysis.Perit Dial Int1995; 15(7, Suppl): S9–12.
156.
Di PaoloN., SacchiG., BuoncristianiU., RossiP., GaggiottiE., AlessandriniC.The morphology of the peritoneum in CAPD patients. In: MaherJF, WinchesterJ.F., eds. Frontiers in peritoneal dialysis.New York: Field, Rich and Associates, 1986: 11–20.
157.
GallimoreB., GagnonR.F., StevensonM.M.Cytotoxicity of commercial peritoneal dialysis solutions towards peritoneal cells of chronically uremic mice.Nephron1986; 43: 283–9.
158.
Di PaoloN.The morphology of the peritoneal membrane during peritoneal dialysis. In: La GrecaG., ChiaromonteS., FabrisA., FerianiM., RoncoC., eds. Peritoneal dialysis.Milano: Wichtig Editore, 1984: 3.
159.
Di PaoloN.The morphology of the peritoneal membrane during peritoneal dialysis. In: La GrecaG., ChiaromonteS., FabrisA., FerianiM., RoncoC.Peritoneal dialysis.Milano: Wichtig Editore, 1988: 3–6.
160.
KredietR.T.Long-term peritoneal dialysis impact of peritoneal membrane changes and newer solutions.Int J Artif Organs1998; 21: 437–9.
161.
KredietR.T.The peritoneal membrane in chronic peritoneal dialysis.Kidney Int1999, 55: 341–56.
162.
SelgasR., Fernandez De CastroM., ViguerJ.M.Presence of peritoneal cells with the appearance of transformed mesothelial cells in long-term CAPD (Abstract).Perit Dial Int1994; 14(Suppl 1): S10.
163.
BirdS.D., WalkerR.J.Altered cellular biosynthesis in human peritoneal mesothelial cells exposed to dialysis solutions.Res Commun Mol Pathol Pharmacol1996; 91: 319–28.
164.
SchnebleF., BonzelK.E., WaldherrR., BachmannS., RothH., ScharerK.Peritoneal morphology in children treated by continuous ambulatory peritoneal dialysis.Pediatr Nephrol1992; 6: 542–6.
165.
BeckerS., HalmeJ., HaskillS.Heterogenicity of human peritoneal macrophages: Cytochemical and flow cytometric studies.J Reticuloendothel Soc (RES)1983; 33: 127–38.
166.
SpriggsA.I., BoddingtonM.M.The cytology of effusions.2nd ed.New York: Grune-Straton, 1968: 5–17.
167.
DomagalaW., WoykeS.Transmission and scanning electron microscopic studies of cells in effusions.Acta Cytol1975; 19: 214–24.
168.
EfratiP., NirE.Morphological and cytochemical investigation of human mesothelial cells from pleura and peritoneal effusions. A light and electron microscopy study.Isr J Med Sci1976; 12: 662–73.
169.
GotloibL., MinesM., GarmizoA.L., RodoyY.Peritoneal dialysis using the subcutaneous intraperitoneal prosthesis.Dial Transplant1979; 3: 217–20.
Fernandez De CastroF.M., SelgasR., JimenezC., Auxiliadora BajoM., MartinezV., RomeroJ.R.Cell populations present in the nocturnal peritoneal effluent of patients on CAPD and their relationship with peritoneal function and incidence of peritonitis.Perit Dial Int1994; 14: 265–70.
176.
CunninghamR.S.The effects of chronic irritation on the morphology of the peritoneal mesothelium.Johns Hopkins Hospital Bull1924; 35: 111–15.
177.
SlaterN.D., CopeG.H., RafteryA.T.Mesothelial hyperplasia in response to peritoneal dialysis fluid: A morphometric study in the rat.Nephron1991; 58: 466–71.
178.
FokF.K., BewtraC., HammekeM.D.Cytology of peritoneal fluid from patients on CAPD.Acta Cytol1989; 33: 595–8.
179.
DimkovicN.B., BarjaktarovicN.M., KosticW., JovanovicD.R., RadovanovicL.T., RadmilovicA.V.Cytogenetic analyses reveal “atypical cells” in the peritoneal dialysis effluent.Perit Dial Int1994; 14: 159–62.
180.
BangF.B.Effect of invading organisms on cells and tissues in culture. In: WillmerE.N., ed. Cells and tissues in culture: methods biology and physiology.London: Academic Press, 1966: 152–235.
181.
YacobyF.J.Machrophages. In: WillmermE.N., ed. Cells and tissues in culture: methods, biology and physiology.London: Academic Press, 1966: 14.
182.
Di PaoloN., GarosiG., PetriniG., TraversariL., RossiP.Peritoneal dialysis solution biocompatibility testing in animals.Perit Dial Int1995; 15(7, Suppl): S61–70.
183.
GarosiG., Di PaoloN., MonaciG., GrardiS., GaggiottiE.Peritoneal histological changes induced in rabbits by peritoneal dialysis solution containing amino acids.Blood Purif1997; 15(Suppl 2): 4–5.
184.
GarosiG., GaggiottiE., MonaciG., BrardiS., Di PaoloN.Biocompatibility of a peritoneal dialysis solution with amino acids: Histological study in the rabbit.Perit Dial Int1998; 18: 610–19.
185.
HolmesC.J.Biocompatibility of peritoneal dialysis solutions (Editorial).Perit Dial Int1993; 13: 88–94.
186.
JörresA., TopleyN., GahlG.M.Biocompatibility of the peritoneal dialysis fluids.Int J Artif Organs1992; 15: 79–83.
YatzidisH.Enhanced ultrafiltration in rabbits with bicarbonate glycylglycine peritoneal dialysis solution.Perit Dial Int1993; 13: 302–6.
189.
GotloibL., ShostakA., WajsbrotV., KushnierR.Biocompatibility of dialysis solutions evaluated by histochemical techniques applied to mesothelial cell imprints.Perit Dial Int1993; 13(Suppl 2): 113–15.
190.
GotloibL., ShostakA., WajsbrotV., KushnierR.High glucose induces a hypertrophic, senescent mesothelial cell phenotype after long in vivo exposure.Nephron1999; 82: 164–73.
191.
GotloibL., WajsbrotV., ShostakA., KushnierR.Effect of hyperosmolality upon the mesothelial monolayer exposed in vivo and in situ to a mannitol-enriched dialysis solution.Nephron1999; 81: 301–9.
192.
MateijsenM.A.M., van der WalA.G., HendriksPMEM, ZweersM.M., MulderJ., StruijkD.G.Vascular and interstitial changes in the peritoneum of CAPD patients with peritoneal sclerosis.Perit Dial Int1999; 19: 517–25.
SipersteinM.D., UngerR.H., MadisonL.L.Studies on muscle capillary basement membranes in normal subjects, diabetic and prediabetic patients.J Clin Invest1968; 47: 1973–8.
BrownleeM., SpiroR.G.Glomerular basement membrane metabolism in the diabetic rat.Diabetes1979; 28: 121–6.
197.
MauerS.M., BarbosaJ., VernierR.L., KjellstrandC.M., BuselmeierT.J., SimmonsR.L.Development of diabetic vascular lesions in normal kidneys transplanted into patients with diabetes mellitus.N Engl J Med1976; 295: 916–20.
198.
EngermanR., BloodworthJ.M.B., NelsonS.Relationship of microvascular diseases in diabetes to metabolic control.Diabetes1977; 26: 760–5.
199.
HostetterT.H., RennkeH.G., BrennerB.M.The case of intrarenal hypertension in the initiation and progression of diabetic and other glomerulopathies.Am J Med1983; 72: 375–9.
200.
ParvingH.H., VibertiG.C., KeenH., ChristiansenJ.S., LassenN.A.Hemodynamic factors in the genesis of diabetic microangiopathy.Metabolism1983; 32: 943–9.
201.
GotloibL., ShostakA., Bar SellaP., EialiV.Reduplicated skin and peritoneal blood capillaries and mesothelial basement membrane in aged non-diabetic chronic uremic patients.Perit Dial Bull1984; 4: S28.
202.
GotloibL., Bar SellaP., ShostakA.Reduplicated basal lamina of small venules and mesothelium of human parietal peritoneum.Perit Dial Bull1985; 5: 212–15.
203.
GoltoibL., ShostakA.Ultrastructural morphology of the peritoneum. New findings and speculations on transfer of solutes and water during peritoneal dialysis.Perit Dial Bull1987; 7: 119–29.
204.
DrakeR.E., GabelJ.C.Abdominal lymph flow response to intraperitoneal fluid in awake sheep.Lymphology1991; 24: 77–81.
205.
MactierR.A.Role of lymphatics in peritoneal dialysis.Ren Fail1990; 12: 21–4.
206.
TsilibaryE.C., WissigS.L.Light and electron microscope observations of the lymphatic drainage units of the peritoneal cavity of rodents.Am J Anat1987; 180: 195–207.
207.
NagyA.Lymphatic and nonlymphatic pathways of peritoneal absorption in mice: Physiology versus pathology.Blood Purif1992; 10: 148–62.
208.
RippeB., ZakariaE.R.Lymphatic versus non lymphatic fluid absorption from the peritoneal cavity as related to the peritoneal ultrafiltration capacity and sieving properties.Blood Purif1992; 10: 189–202.
209.
RippeB.Is lymphatic absorption important for ultrafiltration?Perit Dial Int1995; 15: 203–4.
210.
MactierR.A., KhannaR., TwardowskiZ.J., NolphK.D.Role of peritoneal cavity lymphatic absorption in peritoneal dialysis.Kidney Int1987; 32: 165–72.
211.
TranL., RodelaH., HayJ.B., OreopoulosD.G., JohnstonM.G.Quantitation of lymphatic drainage of the peritoneal cavity in sheep: Comparison of direct cannulation techniques with indirect methods of estimating lymph flow.Perit Dial Int1993; 13: 270–9.
212.
MactierR.A., KhannaR., MooreH., RussJ., NolphK.D., GroshongT.Kinetics of peritoneal dialysis in children: Role of lymphatics.Kidney Int1988; 34: 82–8.
213.
DobbieJ.W., JasaniM.K.Role of imbalance of intracavity fibrin formation and removal in the pathogenesis of peritoneal lesions in CAPD.Perit Dial Int1997; 17: 121–4.
214.
Di PaoloN., GarosiG.Peritoneal sclerosis.J Nephrol1999; 12: 347–61.
215.
LindicJ., PsenicnikM., BrenA., GucekA., FerlugaD., KvederR.The morphology of parietal peritoneum: A scanning electron micrograph study.Adv Perit Dial1993; 9: 36–8.
216.
JoneckoA.The human peritoneum and human peritonitis in ultrastructural and immunohistochemical studies.Z Mikrosk Anat Forsch1990; 104: 907–43.
217.
FlessnerM.F.Changes in the peritoneal interstitium and their effect on peritoneal transport.Perit Dial Int1999; 19(Suppl 2): S77–82.
218.
MuijskenM.A., HeeziusH.J., VerhoefJ., VerbrughH.A.Role of mesothelial cells in peritoneal antibacterial defence.J Clin Pathol1991; 44: 600–4.
219.
HallJ.C., HeelK.A., PapadimitriouJ.M., PlatellC.The pathobiology of peritonitis.Gastroenterology1998; 114: 185–96.
RafteryA.T.Regeneration of peritoneum: A fibrinolytic study.J Anat1979; 129: 659–64.
222.
Myhre–JensenO., LarsenS.B., AstrupT.Fibrinolytic activity in serosal and synovial membranes.Arch Pathol1969; 88: 623–30.
223.
PorterK.R.Sequence in the formation of clots from purified fibrinogen and thrombin: A study with electron microscope.J Exp Med1949; 90: 225–31.
224.
Di PaoloN., SacchiG., GaggiottiE., CapotondoL., RossiP., BerniniM.Does dialysis modify the peritoneal dialysis structure? In: La GrecaG., ChiaramonteS., FabrisA., FerianiM., RoncoC., eds. Peritoneal dialysis.Milano: Wichtig Editore, 1988: 11–24.
225.
MerloG., FausoneG., CastagnaB.Fibrinolytic activity of mesothelial lining of the displaced peritoneum.Am J Med Sci1983; 286: 12–14.
226.
MerloG., FausoneG., BarberoC., CastagnaB.Fibrinolytic activity of the human peritoneum.Eur Surg Res1980; 12: 433–8.
227.
HodelC.Ultrastructural studies on the absorption of protein markers by the greater omentum.Eur Surg Res1970; 2: 435–49.
228.
Van VugtE., Van RijthovenE.A., KamperdijkE.W., BeelenR.H.Omental milky spots in the local immune response in the peritoneal cavity of rats.Anat Rec1996; 244: 235–45.
229.
ShimotsumaM., Simpson–MorganM.W., TakahashiT., HagiwaraA.Activation of omental milky spots and milky spot macrophages by intraperitoneal administration of a streptococcal preparation, OK-432.Cancer Res1992; 52: 5400–2.
230.
De BakkerJ.M., De WitA.W., WoeldersH., GinselL.A., DaemsW.T.On the origin of peritoneal resident macrophages. Part II. Recovery of the resident macrophage population in the peritoneal cavity and in the milky spots after peritoneal cell depletion.J Submicrosc Cytol1985; 17: 141–51.
231.
Di PaoloN., SacchiG., De MiaM., GaggiottiE., CapotondoL., RossiP.Does dialysis modify the peritoneal structure? In: La GrecaG., ChiaromonteS., FabrisA., FerianiM., RoncoC., eds. Proceedings of the Second International Course on Peritoneal Dialysis, Vicenza, Italy.Milano: Wichtig Editore, 1985: 11.
RubinJ., HerreraG.A., CollinsD.An autopsy of the peritoneal cavity from patients on continuous ambulatory peritoneal dialysis.Am J Kidney Dis1991; 17: 97–102.
234.
GarosiG., Di PaoloN.Peritoneal sclerosis – an overview.Adv Perit Dial1999; 15: 185–92.
235.
BuhacI.Biopsy of the peritoneum in decompensated cirrhosis of the liver.Am J Gastroenterol1981; 76: 32–4.
BrownP., BaddeleyH., ReadA.E., DaviesJ.D., McGarryJ.Sclerosing peritonitis, an unusual reaction to a beta-adrenergic-blocking drug (practolol).Lancet1974; 2(7895): 1477–81.
238.
EltringhamW.K., EspinerH.J., WindsorC.W., GriffithsD.A., DaviesJ.D., BaddeleyH.Sclerosing peritonitis due to practolol: A report on 9 cases and their surgical management.Br J Surg1977; 64: 229–35.
ParsooI., SeedatY.K., HaffejeeA.A., NaickerS., KallmeyerJ.C.An interracial study of continuous ambulatory peritoneal dialysis (CAPD) in Natal.S Afr Med J1983; 63: 403–5.
OulésR., ChallasS., BrunnerF.P.Case-control study to determine the cause of sclerosing peritoneal disease.Nephrol Dial Transplant1988; 3: 66–9.
244.
WirnsbergerG.H., GanserK., DomejW., SausengG., MooreD., MoczygembaM.Sclerosing encapsulating peritonitis: Differential diagnosis to peritoneal encapsulation and abdominal cocoon — a case report.Z Gastroenterol1992; 30: 534–7.
245.
BootheH.W., LayJ.C., MorelandK.J.Sclerosing encapsulating peritonitis in three dogs.J Am Vet Med Assoc1991; 198: 267–70.
246.
HardieE.M., RottmanJ.B., LevyJ.K.Sclerosing encapsulating peritonitis in four dogs and a cat.Vet Surg1994; 23: 107–14.
247.
RenvallS., LehtoM., PenttinenR.Development of peritoneal fibrosis occurs under the mesothelial cell layer.J Surg Res1987; 43: 407–12.
248.
CastelliM.J., ArminA.R., HusainA., OrfeiE.Fibrosing peritonitis in a drug abuser.Arch Pathol Lab Med1985; 109: 767–9.
249.
MyllarniemiH., LeppaniemiA. peritoneal fibrosis due to practolol. Scanning electron microscopical and histological observation.Acta Chir Scand1981; 147: 137–42.
250.
PantingA.L., DenhamN.E.Drug-induced sclerosing peritonitis.N Z Med J1997; 85(579): 10–12.
251.
FredhallS.Practolol (Eraldin)-induced peritoneal fibrosis?Tidsskr Nor Laegeforen1976; 96: 154–5.
252.
CookA.I., FoyP.Sclerosing peritonitis and practolol therapy.Ann R Coll Surg Engl1976; 58: 473–5.
253.
ClarkC.V., TerrisR.Sclerosing peritonitis associated with metoprolol.Lancet1983; 1(8330): 937.
254.
MasonR.J., CottG.R., RobinsonP.C.Pharmacology of the alveolar type II cells.Prog Respir Res1984; 18: 279–87.
255.
SlingeneyerA.Preliminary report on a cooperative international study on sclerosing encapsulating peritonitis.Contrib Nephrol1987; 57: 239–47.
256.
KredietR.T., Ho-dac-PannekeetM.M., SmitW., ZweersM.M., StruijkD.G.Peritoneal dialysis: How to improve peritoneal permeability or function.Adv Nephrol Necker Hosp1997; 27: 167–88.
257.
GotloibL., SchostakA., JaichenkoJ.Ruthenium-red-stained anionic charges of rat and mice mesothelial cells and basal lamina: The peritoneum is a negatively charged dialyzing membrane.Nephron1988; 48: 65–70.
258.
Di PaoloN., SacchiG., CapotondoL.Structural changes in peritoneal vessels during continuous ambulatory peritoneal dialysis: A model for the study of diabetic microangiopathy. In: AvramM.M., GiordanoC., eds. Ambulatory peritoneal dialysis.New York: Plenum, 1990: 103–9.
259.
HondaK., NittaK., HoritaS., YumuraW., NiheiH.Morphological changes in the peritoneal vasculature of patients on CAPD with ultrafiltration failure.Nephron1996; 72: 171–6.
260.
Di PaoloN., GarosiG., BiagioliM.Effects of dialysis fluids on cultured mesothelial cells.Perit Dial Int1994; 14(Suppl 3): S12–15.
MillerF.H., Delaney–SathyL.Peritoneal calcification associated with continuous ambulatory peritoneal dialysis.AJR Am J Roentgenol1996; 166: 541–2.
268.
FrancisD.M.A., BusmanisI., BeckerJ.Peritoneal calcification in a peritoneal dialysis patient: A case report.Perit Dial Int1990; 10: 237–40.
269.
MarichalJ.F., FallerB., BrignonP., WagnerD., StraubP.Progressive calcifying peritonitis: A new complication of CAPD? Report of two cases.Nephron1987; 45: 229–32.
270.
KorzetsA., KorzetsZ., PeerG., PapoJ., SternD., BernheimJ.Sclerosing peritonitis. Possible early diagnosis by computerized tomography of the abdomen.Am J Nephrol1988; 8: 143–6.
271.
HansenR.M., KomakiR., HansonG.A., SchlueterD.P., AndersonT.Indolent diffuse histiocytic lymphoma with sclerosis and chylous effusions.Cancer1983; 51: 2144–6.
KredietR.T.The time course of peritoneal transport kinetics in continuous ambulatory peritoneal dialysis patients who develop sclerosing peritonitis.Am J Kidney Dis1989; 13: 299–307.
274.
SuzukiK., KhannaR., NolphK.D., MooreH.L., TwardowskiZ.J.Spontaneous peritonitis and peritoneal fibrosis in rats on peritoneal dialysis for 9 weeks.Adv Perit Dial1995; 11: 52–6.
BreborowiczA., RodelaH., OreopoulosD.G.In vitro study on the biocompatibility of the peritoneal dialysis solution.Perit Dial Int1993; 13(Suppl 2): S105–8.
BreborowiczA., OreopoulosD.G.Physiological approaches to increase biocompatibility of peritoneal dialysis.Perit Dial Int1995; 15(7 Suppl): S76–85; discussion S85–6.
281.
WitowskiJ., TopleyN., JörresA., LiberekT., ColesG.A., WilliamsJ.D.Effect of lactate-buffered peritoneal dialysis fluids on human peritoneal mesothelial cell interleukin-6 and prostaglandins synthesis.Kidney Int1994; 46: 282–93.
282.
ShaldonS.Peritoneal macrophage: The first line of defense. In: La GrecaG., ChiaramonteS., FabrisA., FerianiM., RoncoC., eds. Peritoneal dialysis.Milano: Wichtig Editore, 1986: 201.
283.
BosH.J.Human peritoneal macrophages enhance HLA-DR expression in culture and are very potent stimulators of an allogeneic mixed leucocyte reaction.Adv Exp Med Biol1988; 237: 801–6.
284.
FassbenderH.G., Simmling–AnnefeldM.The potential aggressiveness of synovial tissue in rheumatoid arthritis.J Pathol 1983;139: 399–406.
285.
WeisslerM.C., MillerE., FortuneM.A.Sclerosing orbital pseudotumor: A unique clinicopathologic entity.Ann Otol Rhinol Laryngol1989; 98(7 Pt 1): 496–501.
286.
KortenG., BottcherM., JonasL.Scanning electron microscopy study of the peritoneum as a dialysis membrane a morphological study on the etiology of sclerosing peritonitis.Z Urol Nephrol1988; 81: 473–9.
287.
Frazier–JessenM.R., KovacsE.J.Abdominal wall thickness as a means of assessing peritoneal fibrosis in mice.J Immunol Methods1993; 162: 115–21.
288.
Ho-dac-PannekeetM.M., AtaseverB., StruijkD.G., KredietR.T.Analysis of ultrafiltration failure in peritoneal dialysis patients by means of standard peritoneal permeability analysis.Perit Dial Int1997; 17: 144–50.
289.
JabarZ., DawsonM.Effect of chlorhexidine on Madin Darby canine kidney cells.Mol Toxicol1987; 1: 445–52.
CampbellS., ClarkeP., HawleyC., WiganM., KerlinP., ButlerJ.Sclerosing peritonitis: Identification of diagnostic, clinical, and radiological features.Am J Kidney Dis1994; 24: 819–25.
296.
Di PaoloN., Di PaoloM., TanganelliP., BrardiS., BruciA.Le sclerosi peritoneali in dialisi peritoneale (Una grave alterazione tossica e tossinfettiva del peritoneo). In: BuoncristianiU., Di PaoloN., eds. Tecniche nefrologiche e dialitiche.Perugia: Editoriale Bios, 1998: 1–25.
IkejimaT., DinarelloC., GillT., WolffS.M.Induction of human interleukin 1 by a product of Staphylococcus associated with toxic shock syndrome.J Clin Invest1984; 73: 1312–20.
299.
VasS.I.Microbiological examination of peritoneal fluid during peritoneal dialysis.Perit Dial Bull1980; 1: 1–2.
EllisH., HarrisonW., HughT.B.The healing of peritoneum under normal and pathological conditions.Br J Surg1965; 52: 471–6.
304.
JohnsonF.R., WhittingH.W.Repair of parietal peritoneum.Br J Surg1962; 49: 653–60.
305.
WattersW.B., BuckR.C.Scanning electron microscopy of mesothelial regeneration in rat.Lab Invest1972; 26: 604–9.
306.
ElkinsT.E., StovallT.G., WarrenJ., LingF.W., MeyerN.L.A histologic evaluation of peritoneal injury and repair: Implications for adhesion formation.Obstet Gynecol1987; 70: 225–8.
307.
RafteryA.T.Regeneration of parietal and visceral peritoneum: An enzyme histochemical study.J Anat1976; 121: 589–97.
308.
Di PaoloN., SacchiG., VanniL., CorazziS., TerranaB., RossiP.Autologous peritoneal mesothelial cell implant in rabbits and peritoneal dialysis patients.Nephron1991; 57: 323–31.
309.
BertramP., TietzeL., HoopmannM., TreutnerK.H., MittermayerC., SchumpelickV.Intraperitoneal transplantation of isologous mesothelial cells for prevention of adhesions.Eur J Surg1999; 165: 705–9.
310.
VerhagenH.J., Heijnen–SnyderG.J., PronkA., VroomT.M., Van VroonhovenT.J., EikelboomB.C.Thrombomodulin activity on mesothelial cells: perspectives for mesothelial cells as an alternative for endothelial cells for cell seeding on vascular grafts.Br J Haematol1996; 95: 542–9.