Metrika

  • citati u SCIndeksu: 0
  • citati u CrossRef-u:0
  • citati u Google Scholaru:[]
  • posete u poslednjih 30 dana:8
  • preuzimanja u poslednjih 30 dana:5

Sadržaj

članak: 1 od 1  
2015, vol. 49, br. 1, str. 13-19
Savremeni pregled strukture vaskularnog ekstracelularnog matriksa
aUniverzitet u Kragujevcu, Fakultet medicinskih nauka, Srbija
bKliničko-bolnički centar Zemun, Srbija

e-adresasanja.tanaskovic@gmail.com
Sažetak
Vaskularni zid je sastavljen od tri osnovne strukturne komponente, endotela, glatkih mišićnih ćelija i vezivnog tkiva, koje su međusobno povezane složenim mehanizmima u jedan aktivni, visokointegrisani organ. Najveće količine vezivnog tkiva u vaskularnom zidu nalaze se u sastavu ekstracelularnog matriksa subendotela intime. Osim u subendotelu veće količine veziva smeštene su i u adventiciji. Vezivno tkivo grade ćelije i ekstracelularni matriks. U sastavu ekstracelularnog matriksa nalaze se osnovna supstanca i vezivna vlakna. Osnovna supstanca ekstracelularnog matriksa je amorfna želatinozna supstanca, sastavljena iz glikozaminoglikana, proteoglikana i strukturnih glikoproteina koji su u različitim međusobnim interakcijama, što je uslovljeno fiziološkim stanjem tkiva. Vlakna su osnovni mehaničko-potporni elementi odgovorni za čvrstinu i elastičnost vezivnog tkiva. Kolagena i retikularna vlakna sagrađena su iz proteina kolagena, dok su elastična vlakna pretežno sastavljena iz proteina elastina. Struktura i sastav komponenata ekstracelularnog matriksa, kao i njihov međusobni odnos, od suštinskog su značaja za očuvanje morfofunkcionalnih karakteristika vaskularnog zida.
Reference
Adachi, E., Hopkinson, I., Hayashi, T. (1997) Basement-membrane stromal relationships: interactions between collagen fibrils and the lamina densa. Int Rev Cytol, 173: 73-156
Anđelković, Z., Nikolić, I. (2009) Vezivno tkivo. u: Anđelković Z. [ur.] Histologija, Niš: Impressum, str. 53-69
Camejo, G., Hurt-Camejo, E., Wiklund, O., Bondjers, G. (1998) Association of apo B lipoproteins with arterial proteoglycans: pathological significance and molecular basis. Atherosclerosis, 139(2): 205-22
Chuang, C.Y., Degendorfer, G., Hammer, A., Whitelock, J.M., Malle, E., Davies, M.J. (2014) Oxidation modifies the structure and function of the extracellular matrix generated by human coronary artery endothelial cells. Biochem J, 459(2): 313-22
Clemmons, D.R., Maile, L.A., Ling, Y., Yarber, J., Busby, W.H. (2007) Role of the integrin alphaVbeta3 in mediating increased smooth muscle cell responsiveness to IGF-I in response to hyperglycemic stress. Growth Horm IGF Res, 17(4): 265-70
Ekmekçi, O.B., Ekmekçi, H. (2006) Vitronectin in atherosclerotic disease. Clin Chim Acta, 368(1-2): 77-83
Epstein, E.H.Jr., Munderloh, N.H. (1975) Isolation and characterization of CNBr peptides of human [a1(III)]3 collagen and tissue distribution of [a1(I)]2a2 and [a1(III)]3 collagens. J Biol Chem, 250: 9304-12
Feingold, K.R., Browner, W.S., Siperstein, M.D. (1989) Prospective studies of muscle capillary basement membrane width in prediabetics. J Clin Endocrinol Metab, 69(4): 784-9
Fichard, A., Kleman, J.P., Ruggiero, F. (1995) Another look at collagen V and XI molecules. Matrix Bio, 14: 515-31
Gallagher, P.J. (1997) Blood vessels. u: Sternberg Stephen S. [ur.] Histology for pathologists, Philadelphia: Lippincott Raven Publishers, str. 763-86
Gartner, L.P., Hiatt, J.L. (1997) Color Textbook of Histology. Philadelphia, London, Toronto, Montreal, Sydney, Tokyo: WB Saunders Company
Gimbrone, M.A. (1995) Vascular endothelium: An integrator of pathophysiologic stimuli in atherosclerosis. Am J Cardiol, 75(6): 67B-70B
Holbrook, K.A., Smith, L.T. (1993) Morphology of connective tissue: structure of the skin and tendon. u: Royce P.M., Steinmann B. [ur.] Connective Tissue and its Heritable Disorders, New York: Wiley-Liss, str. 51-71
Hostikka, S.L., Eddy, R.L., Byers, M.G., Hoyhtya, M., Shows, T.B., Tryggvason, K. (1990) Identification of a distinct type IV collagen - chain with restricted kidney distribution and assignment of its gene to the locus of X chromosome-linked Alport syndrome. Proc Natl Acad Sci USA, 87: 1606-10
Hurt-Camejo, E. (1998) Effect of arterial proteoglycans: Pathological significance and molecular basis. Atherosclerosis, 139: 205-222
Inoue, S. (1989) Ultrastructure of basement membranes. Int Rev Cytol, 117: 57-98
Inoue, S. (1994) Basic structure of basement membranes is a fine network of ?cords,? irregular anastomosing strands. Microsc Res Technol, 28(1): 29-47
Jones, M.L. (2002) Connective tissue and stains. u: Bancroft J.D., Gamble M. [ur.] Theory and Practice of Histological Techniques, Edeinburgh, London, New York, Oxford: Churchill Livingstone
Juliano, R.L., Haskill, S. (1993) Signal transduction from the extracellular matrix. Journal of cell biology, 120(3): 577-85
Kinsella, M.G., Bressler, S.L., Wight, T.N. (2004) The regulated synthesis of versican, decorin, and biglycan: extracellular matrix proteoglycans that influence cellular phenotype. Crit Rev Eukaryot Gene Expr, 14(3): 203-34
Kreis, T., Vale, R. (1993) Guidebook to the extracellular matrix and adhesion proteins. Oxford: Oxfrord University Press
Lačković, V., Kanjuh, V., Kočica, M., Lačković, M., Tanasković, I. (2010) Histopatološke karakteristike vaskularnog endotela - klinički aspekti. u: Jugoslovenska studija prekursora ateroskleroze kod školske dece, Beograd: Medicinski fakultet - CIBID, str. 161-168
Lačković, V. (1998) Cirkulatorni sistem. Beograd: Nauka
Lačković, V., Kanjuh, V., Kočica, M., Vuković, I. (2011) Struktura, funkcija i patologija endotela. u: Ostojić M., Kanjuh V., Beleslin B. [ur.] Kardiologija - udžbenik za poslediplomsku nastavu, Beograd: Zavod za udžbenike, str. 193-198
Lačković, V., Tanasković, I., Radak, Đ., Nešić, V., Gluvić, Z., Lačković, M., Ašanin, B., Radović, S., Stanković, V., Đurić, J., Nešić, J., Kanjuh, V. (2011) Morphofunctional characteristics of endothelial cells in coronary atherosclerosis. Archives of Biological Sciences, vol. 63, br. 4, str. 921-932
Lopes, J., Adiguzel, E., Gu, S., Liu, S., Hou, G., Heximer, S., Assoian, R.K., Bendeck, M.P. (2013) Type VIII collagen mediates vessel wall remodeling after arterial injury and fibrous cap formation in atherosclerosis. Am J Pathol, 182(6): 2241-53
Neufeld, E.B., Zadrozny, L.M., Phillips, D., Aponte, A., Yu, Z.X., Balaban, R.S. (2014) Decorin and biglycan retain LDL in disease-prone valvular and aortic subendothelial intimal matrix. Atherosclerosis, 35: 223-231
Raman, P., Krukovets, I., Marinic, T.E., Bornstein, P., Stenina, O.I. (2007) Glycosylation mediates up-regulation of a potent antiangiogenic and proatherogenic protein, thrombospondin-1, by glucose in vascular smooth muscle cells. J Biol Chem, 282(8): 5704-14
Rauterberg, J., Jaeger, E. (1992) Collagen and collagen synthesis in the atherosclerotic vessel wall. u: Robenek H., Severs N. [ur.] Cell Interacrions in Atherosclerosis, Boca Raton, FL: CRC Press, str. 101-131
Ray, M.C., Gately, L.E. (1996) Basement membrane zone. Clin Dermatol, 14: 321-30
Rhodin, J.A. (1962) Fine structure of vascular walls in mammals with special reference to smooth muscle component. Physiol Rev, 42(Suppl 5): 48-87
Robbins, R.A., Wagner, W.D., Sawyer, L.M., Caterson, B. (1989) Immunolocalization of proteoglycan types in aortas of pigeons with spontaneous or diet-induced artherosclerosis. American Journal of Pathology, 134(3): 615-26
Ross, R., Fialkow, R.J., Altman, L.K. (1977) The morphogenesis of elastic fibers. Adv Exp Biol Med, 79: 7-17
Sandberg, L.B., Soskel, N.T., Leslie, J.G. (1981) Elastin structure, biosynthesis, and relation to disease states. N Engl J Med, 304(10): 566-79
Stawowy, P., Kallisch, H., Veinot, J.P., Kilimnik, A., Prichett, W., Goetze, S., Seidah, N.G., Chrétien, M., Fleck, E., Graf, K. (2004) Endoproteolytic activation of alpha(v) integrin by proprotein convertase PC5 is required for vascular smooth muscle cell adhesion to vitronectin and integrin-dependent signaling. Circulation, 109(6): 770-6
Tanasković, I., Anđelković, Z. (2009) Cirkulatorni sistem. u: Anđelković Z. [ur.] Histologija, Niš: Impressum, str. 137-150
Tanasković, I., Lačković, V., Gluvić, Z., Lačković, M., Nešić, V., Stanković, V., Labudović-Borović, M., Radović, S., Ašanin, B. (2011) The influence of extracellular matrix composition on the pathogenesis of coronary atherosclerosis. Archives of Biological Sciences, vol. 63, br. 2, str. 333-343
Tanasković, I., Lačković, V., Radak, D., Knežević-Ušaj, S., Lačković, M., Stanković, V., Vulović, M., Poček, L., Kanjuh, V. (2013) Ultrastructural characteristics of the vascular wall components of ruptured atherosclerotic abdominal aortic aneurysm. Archives of Biological Sciences, vol. 65, br. 4, str. 1271-1278
Tanasković, I., Mladenović-Mihailović, A., Ušaj-Knežević, S., Stanković, V., Aleksić, A., Kastratović, T., Aleksić, A., Lazić, Z., Mladenović-Bogdanović, Z., Živanović, A., Đurić, J., Jovičić, U., Šorak, M. (2010) Histochemical and immunohistochemical analysis of ruptured atherosclerotic abdominal aortic aneurysm wall. Vojnosanitetski pregled, vol. 67, br. 12, str. 959-964
Timpl, R., Dziadek, M. (1986) Structure, development, and molecular pathology of basement membranes. Int Rev Exp Pathol, 29: 1-112
Timpl, R., Wiedermann, H., van Delden, V., Furthmayr, H., Kuhn, K. (1981) A network model for the organization of type IV collagem molecules in basement membranes. Eur J Biochem, 120: 203-11
Trueb, B., Schreier, T., Bruckner, P., Winterhalter, K.H. (1987) Type VI collagen represents a major fraction of connective tissue collagens. Eur J Biochem, 166: 699-703
Uitto, J., Paul, J.L., Brockley, K., Pearce, R.H., Clark, J.G. (1983) Elastic fibers in human skin: quantitation of elastic fibers by computerized digital image analyses and determination of elastin by radioimmunoassay of desmosine. Lab Invest, 49: 499-505
Uitto, J., Christiano, A.M., Kähäri, V.M., Bashir, M.M., Rosenbloom, J. (1991) Molecular biology of human elastin. Biochem Soc Trans, 19: 824-9
Uitto, J., Chu, M.L., Gallo, R., Eisen, A.Z. (2008) Collagen, elastic fibres and extracellular matrix of the dermis. u: Wolff K., Goldsmith L., Katz S., Gilchrest B., Paller A., Leffell D. [ur.] Fitzpatrick's Dermatology in General Medicine, New York, NY: McGraw-Hill, str. 517
Uitto, J. (1993) Collagen. u: Fitzpatrick T.B., Eisen A.Z., Wolff K., Freedberg I.M., Austen K.F. [ur.] Dermatology in general medicine, New York: McGraw-Hill, str. 299-315
Vukovic, I., Arsenijevic, N., Lackovic, V., Todorovic, V. (2006) The origin and differentiation potential of smooth muscle cells in coronary atherosclerosis. Exp Clin Cardiol, 11(2): 123-8
Vuković, I., Lačković, V., Raičević, R., Lazić, Z., Milosavljević, Z., Kastratović, T., Mladenović-Mihailović, A., Stanković, V., Lačković, M. (2010) Recent views on cytohistological characteristics and pathogenic mechanisms of atherosclerotic lesions types I, II and III. Vojnosanitetski pregled, vol. 67, br. 12, str. 1007-1014
Yurdagul, A., Green, J., Albert, P., McInnis, M.C., Mazar, A.P., Orr, W.A. (2014) α5β1 integrin signaling mediates oxidized low-density lipoprotein-induced inflammation and early atherosclerosis. Arterioscler Thromb Vasc Biol, 34(7): 1362-73
 

O članku

jezik rada: engleski
vrsta rada: prikaz
DOI: 10.5937/MCKG49-6844
objavljen u SCIndeksu: 02.07.2015.

Povezani članci

Nema povezanih članaka