GotloibL., ShostakA., Bar-SellaP., EialiV.Fenestrated capillaries in human parietal and rabbit diaphragmatic peritoneum.Nephron1985; 41: 200–2.
3.
EsperancaM.J., CollinsD.L.Peritoneal dialysis efficiency in relation to body weight.J Pediatr Surg1966; 1: 162–9.
4.
HallB.V.Presumptive formative stages of glomerular endothelial fenestrae. In: BreeseS.S.Jr., ed. Fifth international congress for electron microscopy.New York: Academic, 1962; 2: q8.
5.
MajnoG.Ultrastructure of the vascular membrane. In: HamiltonW.E., DowP., eds. Handbook of physiology.Washington, DC: American Physiological Society, 1965: 2293–375. (Vol. 2, sec.3, Circulation.)
6.
LevickJ.R., SmajeL.H.An analysis of the permeability of a fenestra.Microvasc Res1987; 33: 233–56.
7.
GotloibL., ShostakA., JaichenkoJ., GaldiP., FudinR.Anionic fixed charges in the fenestrated capillaries of the mouse mesentery.Nephron1990; 55: 419–22.
8.
MajnoG.Ultrastructure of the vascular membrane. In: HamiltonW.G., DowP., eds. Handbook of physiology.Washington, DC: American Physiological Society, 1965: 2293–375. (Vol. 3, sec. 2, Circulation.)
9.
Casley-SmithJ.R., O'DonohueP.J., CrockerK.W.J.The quantitative relationships between fenestrae in jejunal capillaries an d connective tissue channels. Proof of “tunnel capillaries.”Microvasc Res1975; 9: 78–100.
10.
KnightA.D., LevickJ.R.Morphometry of the ultrastructure of the blood joint barrier in the rabbit knee.J Exp Physiol1984; 69: 271–88.
11.
CloughG., SmajeL.H.Exchange area and surface properties of the microvasculature of the rabbit submandibular gland following duct ligation.J Physiol1984; 354: 445–56.
12.
RhodinJ.A.G.The diaphragm of capillary endothelial fenestrations.J Ultrastruct Res1962; 6: 171–85.
13.
FriedericiH.H.R.The tridimensional ultrastructure of fenestrated capillaries.J Ultrastruct Res1968; 23: 444–56.
14.
SimionescuN., SimionescuM., PaladeG.E.Differentiated microdomains on the luminal surface of capillary endothelium. I. Preferential distribution of anionic sites.J Cell Biol1981; 90: 605–13.
15.
SimionescuM., SimionescuN., SilbertJ., PaladeG.E.Differentiated microdomains on the luminal surface of the capillary endothelium. II. Partial characterization of their anionic sites.J Cell Biol1981; 90: 614–21.
16.
BankstonP.W., MiliciA.J.A survey of the binding of polycationic ferritin in several fenestrated capillary beds: Indication of heterogeneity in the luminal glycocalyx of fenestral diaphragms.Microvasc Res1983; 26: 36–48.
17.
ThurauF.N., DermielyelR., KalweltP.Surface charge associated with fenestrated brain capillaries. I. In vitro labelling of anionic sites.J Ultrastruct Res1983; 84: 103–10.
18.
PinoR.N.The cell surface of a restrictive fenestrated endothelium. II. Dynamics of cationic ferritin binding and the identification of heparin and heparan sulfate domain in the choriocapillaries.Cell Tissue Res1986; 243: 157–64.
19.
KanwarY.S., FarquharM.G.Characterization of anionic sites in the glomerular basement membrane: in vitro and in vivo localization to the laminararae by cationic probes.J Cell Biol1979; 81: 137–53.
20.
KanwarY.S., LinkerA., FarquharM.G.Increased permeability of the glomerular basement membrane to ferritin after removal of glycosaminoglycans (heparan sulfate) by enzyme digestion.J Cell Biol1980; 86: 688–93.
21.
SimionescuM., SimionescuN., PaladeG.E.Preferential distribution of anionic sites on the basement membrane and the abluminal aspect of the endothelium in fenestrated capillaries.J Cell Biol1982; 95: 425–34.
22.
CharonisA.S., WissigS.L.Anionic sites in basement membranes: Differences in their electrostatic properties in continuous and fenestrated capillaries.Microvasc Res1983; 25: 265–85.
23.
SimionescuM., SimionescuN., PaladeG.E.Partial chemical characterization of the anionic sites in the basal lamina of fenestrated capillaries.Microvasc Res1984; 28: 352–67.
24.
GrotteG.Passage of dextran molecules across the blood-lymph barrier.Acta Chir Scand1956; (Suppl 211): 1–84.
25.
WaylandH., SilberbergA.Blood to lymph transport.Microvasc Res1978; 15: 367–74.
ChangR.L.S., DeenW.M., RobertsonC.H.R., BrennerB.M.Permselectivity of the glomerular capillary wall. III. Restricted transport of polyanions.Kidney Int1975; 8: 212–8.
28.
DeenW.M., BohrerM.P., RobertsonC.R., BrennerE.M.Determinants of the trans glomerular passage of mac-romolecules.Fed Proc1977; 36: 2614–8.
29.
BennettC.M., GlassockR.J., ChangR.L.S.Permselectivity of the glomerular capillary wall: Studies of experimental glomerulonephritis in the rat using dextran sulphate.J Clin Invest1976; 57: 1287–94.
30.
RenkinE.M.Multiple pathways of capillary permeability.Circ Res1977; 41: 735–43.
31.
BabbA.L., PopovichR.P., ChristopherT.G., ScribnerB.H.The genesis of the square-meter hour hypothesis.Trans Am Soc Artif Intern Organs1971; 17: 81–6.
32.
MannG.E., SmajeL.H., YudilevichD.Permeability of the fenestrated capillaries in the cat submandibular gland to lipid-insoluble molecules.J Physiol1979; 297: 335–54.
33.
PopovichR.P., MoncriefJ.W., DecherdJ.F., BomarJ.J.B., PyleW.K.The definition of a novel portable-wearable equilibrium peritoneal technique (Abstract).Am Soc Artif Intern Organs1976; 64.
34.
ClementiF., PaladeG.E.Intestinal capillaries. I. Permeability to peroxidase and ferritin.J Cell Biol1969; 41: 33–58.
35.
RenkinE.M.Relation of capillary morphology to transport of fluid and large molecules: A review.Acta Physiol Scand1979; 463(Suppl): 81–91.
36.
HaraldssonB., RippeB., MoxhamB.J., FolkowB.Permeability of fenestrated capillaries in the isolated pig pancreas with effects of bradykinin and histamine, as studied by simultaneous registration of filtration and diffusion capacities.Acta Physiol Scand1982; 114: 67–74.
37.
Casley-SmithJ.R.Calculations relating to the passage of fluid and protein out of arterial-Iimb fenestrae, through basement membranes and connective tissue channels, and into venous-limb fenestrae and lymphatics.Microvasc Res1976; 12: 13–34.
38.
RenkinE.M., GilmoreJ.P.Glomerular filtration. In: OrloffJ., BerlinerR.W., eds. Handbook of physiology. Renal physiology.Washington, DC: American Physiology Society1973: 185–248.
39.
MohamedA.H., WaterhouseJ.P., FriedericiH.H.R.The microvasculature of the rabbit gingiva as affected by progesterone: An ultrastructural study.J Periodont1974; 45: 50–60.
40.
MiliciA.J., FurieM.B., CarleyWW. The formation of fenestrations and channels by capillary endothelium in vitro.Proc Natl Acad Sci USA1985; 82: 6181–5.
41.
ApkarianR.P., CurtisJ.C.Hormonal regulation of capillary fenestrae in the rat adrenal cortex: Quantitative studies using objective lens staging scanning electron microscopy.Scanning Electron Microsc1986; IV: 138193.
42.
KitchensC.S., WeissL.Ultrastructural changes of endothelium associated with thrombocytopenia.Blood1975; 46: 567–78.
43.
LombardiT., MontesanoR., FurieM.B., SilversteinS.C., OrciL.In vitro modulation of endothelial fenestrae: opposing effects of retinoic acid and transforming growth factor B.J Cell Science1988; 91: 313–8.
44.
BabbA.L., FarrellP.C., UvelliD.A., ScribnerB.H.Hemodialyzer evaluation by examination of solute molecular spectra.Trans Am Soc Artif Intern Organs1972; 18: 98–105.
45.
BernardC.An introduction to the study of experimental medicine.New York: H Schuman, 1949: 12.
46.
MichelC.C., MasonJ.C., CurryF.E., ThokeJ.E.A development of the Landis technique for measuring the filtration coefficient of individual capillaries in the frog mesentery.J Exp Physiol1974; 59: 283–309.