ShenW., HintzeT.H., and WolinM.S. (1995). Nitric oxide. An important signalling mechanism between vascular endothelium and parenchymal cells in the regulation of oxygen consumption.Circulation92, 3505–3512.
2.
BurnashevN.A., EdwardsF.A., and VerkhratskiiA.N. (1991). Primenenie tonkikh srezov miokarda dlia registratsii tokov cherez odinochnye ionnye kanaly (The use of thin slices of myocardium for recording the currents across single ion channels).Fiziologicheskii Zhurnal37, 119–122.
3.
ComolliR., RossettiC., and CremaschiD. (1990). Measurement with microelectrodes of intracellular Na+, K*, H* and Cl- activities and of membrane potential in normal rat liver slices and during 4-dimethylaminoazobenzene-induced rat hepatocarcinogenesis.Cancer Biochemistry and Biophysiology11, 13–22.
4.
WilkinsonM., JacobsonM., & Watson-WrightW. (1986). Tissue slices in radioligand binding assays: studies in brain, pineal gland and muscle.Life Sciences39, 2037–2048.
5.
ShawC.A., and WilkinsonM. (1994). Receptor characterization and regulation in intact tissue preparations. Pharmacological implications.Biochemical Pharmacology47, 1109–1119.
6.
BabuS.R., WongsurawatV.J., ZenserT.V., and DavisB.B. (1993). Benzidine glucuronidation in dog liver.Carcinogenesis14, 893–897.
7.
BabuS.R., LakshmiV.M., HsuF.F., KaneR.E., ZenserT.V., and DavisB.B. (1993). N-Acetylbenzidine-N‘-glucuronidation by human, dog and rat liver.Carcinogenesis14, 2605–2611.
8.
BabuS.R., LakshmiV.M., OwensI.S., ZenserT.V., and DavisB.B. (1994). Human liver glucuronidation of benzidine.Carcinogenesis15, 2003–2007.
9.
LakshmiV.M., ZenserT.V., GoldmanH.D., SpencerG.G., GuptaR.C., HsuF.F., and DavisB.B. (1995). The role of acetylation in benzidine metabolism and DNA adduct formation in dog and rat liver.Chemical Research in Toxicology8, 711–720.
10.
LakshmiV.M., BellD.A., WatsonM.A., ZenserT.V., and DavisB.B. (1995). N-Acetylbenzidine and N,N‘-diacetylbenzidine formation by rat and human liver slices exposed to benzidine.Carcinogenesis16, 1565–1571.
11.
BritteboE.B., and BrandtI. (1994). Metabolic activation of the food mutagen 3-amino-1,4-dimethyl-5H-pyrido-[4,3-b]indole (Trp-P-1) in endothelial cells of cytochrome P450-induced mice.Cancer Research54, 2887–2894.
12.
BritteboE.B. (1994). Metabolic activation of the food mutagen Trp-P-1 in endothelial cells of heart and kidney in cytochrome P450-induced mice.Carcinogenesis15, 667–672.
13.
BritteboE.B. (1987). Metabolic activation of phenacetin in rat nasal mucosa: dose-dependent binding to the glands of Bowman.Cancer Research47, 1449–1456.
14.
FreemanB.A., & O'NeilJ.J. (1984). Tissue slices in the study of lung metabolism and toxicology.Environmental Health Perspectives56, 51–60.
15.
PlackeM.E., and FisherG.L. (1987). Adult peripheral lung organ culture: a model for respiratory tract toxicology.Toxicology and Applied Pharmacology90, 284–298.
16.
PlackeM.E., and FisherG.L. (1987). Asbestos in periperal lung culture. A species comparison of pulmonary tissue response.Drug and Chemical Toxicology10, 133–156.
17.
FisherG.L., and PlackeM.E. (1988). Cell and organ culture models of respiratory toxicity. In Toxicology of the Lung (ed. GardnerD.E., CrapoJ.D., MassaroE.J.), pp. 285–314. New York: Plenum Press.
18.
SawyerT.W., WildeP.E., RiceP., and WeissM.T. (1995). Toxicity of sulphur mustard in adult rat lung organ culture.Toxicology100, 39–49.
19.
FukudaH., CasasA., ChuekeF., ParedesS., and BatelleA.M. (1993). Photodynamic action of endogenously synthesized porphyrins from aminolevulinic acid, using a new model for assaying the effectiveness of tumoral cell killing.International Journal of Biochemistry25, 1395–1398.
20.
KrutovskikhV.A., MesnilM., MazzoleniG., and YamasakiH. (1995). Inhibition of rat liver gap junction intercellular communication by tumor-promoting agents in vivo. Association with aberrant localization of connexin proteins.Laboratory Investigation72, 571–577.
21.
KrutovskikhV.A., OyamadaM., and YamasakiH. (1991). Sequential changes of gap-junctional intercellular communications during multistage rat liver carcinogenesis, direct measurement of communication in vivo.Carcinogenesis12, 1701–1706.
22.
KrutovskikhV.A., and YamasakiH. (1995). Ex-vivo dye transfer assay as an approach to study gap junctional intercellular communication disorders in hepatocarcinogenesis.Progress in Cell Research4, 93–97.