Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Micro vessels

Shortly after the 94 was precipitated, a considerable amount of K.2SiF6 was observed to separate, as a result of the fact that precipitation had been performed in glass vessels. This will be avoidable in future work because we have now developed suitable fluoride-resistant micro vessels.)... [Pg.14]

MV Shah, KL Audus, RT Borchardt. The application of bovine brain micro vessel endothelial-cell monolayers grown onto polycarbonate membranes in vitro to estimate the potential permeability of solutes through the blood-brain barrier. Pharm Res 6 624-627, 1989. [Pg.102]

Blank, M., Weinschenk, T., Priemer, M. and Schluesener, H. (2001) Systematic evolution of a DNA aptamer binding to rat brain tumor micro vessels, selective targeting of endo thelial regulatory protein pigpen, J. Biol. Chem. 276, 16464-16468. [Pg.85]

At the inner border of ONH, the ILM becomes continuous with the basement membrane of fibrous astrocytes lining the internal surface of the ONH [21]. However, the lateral borders between the ONH and the adjacent choroid and retina are not well defined. Furthermore, it was reported [49] that micro vessels in the prelaminar region of the ONH lack classical blood-brain barrier characteristics and display nonspecific permeability, possibly mediated by vesicular transport. Thus, there is a theoretical possibility that topically applied drugs can penetrate indirectly through the retrobulbar space and then, through the ONH, reach the posterior choroid and retina. It was reported that following retrobulbar administration of fluorescein, the dye rapidly accumulated in the ONH and penetrated later to the vitreous [50],... [Pg.501]

Furthermore, passage of LCM across the blood-brain barrier would be facilitated by the fact that scavenger receptors (both type I and II, of class A) have been shown, by a reverse transcriptase PCR study of messenger RNA expression, to be present normally in (bovine) brain microvessels (ref. 678). Brain microvessels therefore appear to play an active role in the uptake of native and modified LDL (ref. 678) accordingly, these micro vessels would be expected to have a similar role in LCM uptake (cf. Sections 12.1 and 14.2.2 above see also below). [Pg.250]

Audus KL, Borchardt RT. Characterization of the large neutral amino acid transport system of bovine brain micro vessel endothelial cell monolayers. J Neurochem 1986 47 484-488. [Pg.202]

Promotes angiogenesis in human micro-vessel endothelial cells [ 127]... [Pg.258]

Mian, E., Curri, S.B., Lietti, A., and BombardeUi, E., Anthocyanosides and the walls of the micro vessels further aspects of the mechanism of action of their protective effect in syndromes due to abnormal capillary fragility,. Minerva Medica, 68, 3563-3581, 1977. [Pg.18]

Grammas P, Ovase R (2001) Inflammatory factors ar e elevated in brain micro vessels in Alzheimer s disease. Neui obiol Aging 22 837-842. [Pg.356]

Dorovin-Zis K, Bowman PD, Prameya R (1992) Adhesion and migration of human polymorphonuclear leukocytes across cultured bovine brain micro vessel endothelial cells. J Neuropathol Exp Neurol. 51(2) 194-205. [Pg.600]

Catalan RE, Martinez AM, Aragones MD, Miguel BG, Robles A (1988) Insulin action on brain micro vessels effect on alkaline phosphatase. Biochem Biophys Res Commun 150 583-590. [Pg.37]

Using reverse transcriptase-polymerase chain reaction, the gene product encoding for CB, receptors has been located in renal endothelial cells, mesenteric resistance arterioles, and cerebral micro vessels, which is consistent with the expression of CB, receptors in the vasculature (Deutsch et al., 1997 Darker et al., 1998 Randall et al., 1999). Others have also identified mRNA in human endothelial cells (Sugiura et al., 1998 Liu et al., 2000) and Liu et al. (2000) have identified CB, receptor binding sites by radioligand studies. Similarly, immunoreactivity to the CB, receptor has been identified on human saphenous vein endothelial cells (Bilfinger et al., 1998). [Pg.425]

Kennedy A, Frank RN, Mancini MA. In vitro production of glycosaminogly-cans by retinal micro vessel cells and lens epithelium. Invest Ophthalmol Vis Sci 1986 27 746-754. [Pg.202]

Vartanian, R.K. and Weidner, N., Correlation of intratumoral endothehal cell proliferation with micro vessel density (tumor angiogenesis) and tumor cell proliferation in breast carcinoma, Hmi. [Pg.147]

Nor JE, Hu Y, Song W, Spencer DM, Nunez G. Ablation of micro vessels in vivo upon dimerization of icaspase-9. Gene Therap 2002 9 444 51. [Pg.179]

Dazzi C, Cariello A, Maioli P, et al. Prognostic and predictive value of intratumoral micro vessels density in operable non-small-cell lung cancer [in process citation]. Lung Cancer 1999 24 81-88. [Pg.317]

Yang, W., Zhang, Y., Fu, Z., Sun, X., Mu, D., Yu, J. Imaging prohferation of (1)(8)F-FLT PET/CT correlated with the expression of micro vessel density of tumour tissue in non-small-cell lung cancer. European Journal of Nuclear Medicine and Molecular Imaging 39(8), 1289-1296 (2012)... [Pg.403]

The zero flow pressure, a well known phenomenon in the coronary bed, is commonly known in other vascular beds as the critical closing pressure . Many theories attempt to explain the reason for the existance of the critical closing pressure (Hoffman, 1978 Archie, 1978 Bellamy, 1978). Is this a real physical closure of the micro vessel lumen, or is it a function of the yield stress of the blood attributed to its cassonian rheological properties The zero flow pressure, Pjf, is in fact a combination of the critical closing pressure, the compressive effects and the autoregulating effects. [Pg.27]

CatalMi, RE, Martinez, AM, Aragones, MD, Garde, E and Diaz, G (1993) Platelet-activating factor stimulates protein kinase C translocation in cerebral micro vessels. Biochem Biophys Res Commun, 192, 446-451. [Pg.127]


See other pages where Micro vessels is mentioned: [Pg.475]    [Pg.221]    [Pg.286]    [Pg.403]    [Pg.50]    [Pg.89]    [Pg.104]    [Pg.23]    [Pg.475]    [Pg.170]    [Pg.307]    [Pg.139]    [Pg.285]    [Pg.691]    [Pg.362]    [Pg.156]    [Pg.135]    [Pg.269]    [Pg.68]    [Pg.409]    [Pg.269]    [Pg.22]    [Pg.469]    [Pg.5]    [Pg.22]    [Pg.297]    [Pg.278]    [Pg.83]   
See also in sourсe #XX -- [ Pg.91 ]




SEARCH



© 2024 chempedia.info