Matriz extracelular: ¿es el andamio de los tejidos?
DOI:
https://doi.org/10.33064/iycuaa2012564037Palabras clave:
matriz extracelular (MEC), glicosaminoglucanos (GAG), colágena, elastina, fibronectina, vitronectinaResumen
La matriz extracelular se considera un componente extracelular multi-funcional fundamental que participa en la morfología, supervivencia, desarrollo, migración y en las relaciones inter- e intra-celulares de un tejido. El objetivo principal de esta revisión es dar a conocer una visión amplia de la importancia de la matriz extracelular, sus componentes principales, y las funciones e interacciones que estos componentes realizan para mantener la homeostasis de los tejidos.
Descargas
Métricas
Citas
• ÁLVARO T.; SALVÁ, R.; FARIÑAS-GUERRERO, F., La matriz extracelular: de la mecánica molecular al microambiente (parte I). Revista Española de Patología, 43: 24-32, 2010.
• ANDERSSON, J.; STENHAMRE, H.; BÄCKDAHL, H.; GATENHOLM, P., Behavior of human chondrocytes in engineered porous bacterial cellulose scaffolds. Journal of Biomedical Materials Research A., 94A: 1124-1132, 2010.
• ASTROF, S.; CROWLEY, D.; HYNES R., Multiple cardiovascular defects caused by the absence of alternatively spliced segments of fibronectina. Developmental Biology, 1 311p: 11–24. 2007.
• AZIZ-SEIBLE, R.; CASEY, C., Fibronectin: Functional character and role in alcoholic liver Disease. World Journal of Gastroenterology, 17 20p: 2482-2499. 2011.
• BOYCE, S.T., Skin substitutes from cultured cells and collagen-GAG polymers. Medical and Biological Engineering & Computing, 3p: 791–800. 1998.
• BUCK II, D.W.; ALAM, M.; KIM, J.Y.S., Injectable fillers for facial rejuvenation: a review. Journal of Plastic, Reconstructive & Aesthetic Surgery, 6p: 11-18. 2009.
• FRANTZ, C.; STEWART, K.; WEAVER, V., The extracellular matrix at a glance. Journal of Cell Science, 12p: 4195-4200. 2010.
• GASPAR, A.; MOLDOVAN, L.; CONSTANTIN, D.; STANCIUC, A.M.; BOETI, P.M.; EFRIMESCU, I.C., Collagenbased scaffolds for skin tissue engineering. Journal of Medicine and Life, 4 2p: 172-177. 2011.
• GAWLIK K.I.; DURBEE, M., Skeletal muscle laminin and MDC1A: pathogenesis and treatment strategies. Skeletal Muscle,.1 9). 2011.
• GIRGENRATH, M.; BEERMANN, M.L.; VISHNUDAS, V.K.; HOMMA, S.; MILLER, J.B., Pathology is alleviated by doxycycline in a laminin-α2-null model of congenital muscular dystrophy. Annals of Neurology 65.1p: 47–56. 2009.
• HARRIGER, M.D.; SUPP, A.P.; WARDEN, G.D.; BOYCE, S.T., Glutaraldehyde crosslinking of collagen substrates inhibits degradation in skin substitutes grafted to athymic mice. Journal of Biomedical Materials Research, 3p: 137–145. 1997.
• HAWKER, G.A.; MIAN, S.; BEDNIS, K.; STANAITIS, I., Osteoarthritis year 2010 in review: non-pharmacologic therapy. Osteoarthritis Cartilage, p: 366-74. 2011.
• HUMBERT, P.G.; HAFTEK, M.; CREIDI, P.; LAPIÈRE, C.; NUSGENS, B.; RICHARD, A.; SCHMITT, D.; ROUGIER, A.; ZAHOUANI, H., Topical ascorbic acid on photoaged skin. Clinical, topographical and ultrastructural evaluation: double-blind study vs. placebo. Experimental Dermatologl. p: 237-44. 2003.
• IBARRA, C.; VELASQUILLO, C.; IZAGUIRRE, A.; VILLALOBOS, E.; MASRI, M.; IBARRA, L.G., Reparación del cartílago articular: Técnicas basadas en cultivos celulares. Acta Ortopédica Mexican., 23 1p: 38-44. 2009.
• KIELTY, C.; SHERRATT, M.; SHUTTLEWORTH, C., Elastic fibers. Journal of Cell Science, 11p: 2817-2828. 2002.
• KIM, S.H.; TURNBULL, J.; GUIMOND, S., Extracellular matrix and cell signalling: the dynamic cooperation of integrin, proteoglycan and growth factor receptor. Journal of Endocrinology. 20p: 139-151. 2011.
• KODOLITSCH VON, Y.; ROBINSON, P.N., Marfan syndrome: an update of Genetics, medical and Surgical management. Heart, 9p: 755–760. 2007.
• KYUNG-A, H.; BO-RIM, Y.; KYUNG-CHUL, C., Molecular Mechanisms and In Vivo Mouse Models of Skin Aging Associated with Dermal Matrix Alterations. Laboratory Animal Research. 27 (1): 1-8. 2011.
• LEE, C.H.; SINGLA, A.; LEE, Y., Biomedical applications of collagen. International Journal of Pharmaceutics, 22p: 1-22. 2001.
• LEWIN, B.; CASSIMERIS, L.; LINGAPPA, V.R.; PLOPPER, G., Cells. James and Bartlett Publishers (pp. 645-696). United States of America. 2007.
• MEHROTRA, M.; ROSOLC, M.; OGAWAA, M.; LARUE, A.C., Amelioration of a Mouse Model of Osteogenesis Imperfecta with Hematopoietic Stem Cell Transplantation: Micro-Computed Tomography Studies. Experimental Hematology, 38(7): 593-602, 2010.
• MORRIS, C., Introduction: Williams syndrome. American Journal of Medical Genetics, 154C(2): 203-208, 2010.
• ÖZBEK, S.; BALASUBRAMANIAN, P.; CHIQUETEHRISMANN, R.; TURCKER, R.; ADAMS, J., The Evolution of Extracellular Matrix. Molecular Biology of the Cell, 21: 4300-4305, 2011.
• RAMÍREZ, F.; SAKAI, L., Biogenesis and function of fibrillin assemblies. Cell Tissue Research, 339(1): 71-82, 2010.
• ROZARIO, T.; DESIMONE, D., The extracellular matrix in development and morphogenesis: a dynamic view. Developmental Biology, 341: 126-140, 2010.
• RUIZ, M.; LÓPEZ, Y., Purificación de vitronectina humana para la obtención de antisuero antivitronectina. Archivos de Medicina, 1(3): 2-12, 2005.
• SLATER, J.; HANSSON, B.; BUYNE, O.; HENDRIKS, T.; BLEICHRODT, R., Repair of Parastomal Hernias with Biologic Grafts: A Systematic Review. Journal of Gastrointestinal Surgery, 15: 1252-1258, 2011.
• STEPANEK O.; BRDICKA T.; ANGELISOVA P.; HORVATH O.; SPICKA J.; TSANG, K.; CHEUNG, M.; CHAN, D.; CHEAH, K., The developmental roles of the extracellular matrix: beyond structure to regulation. Cell and Tissue Research, 339: 93-110, 2010.
• TUCKER, R.P.; CHIQUET-EHRISMANN, R., Evidence for the evolution of tenascin and fibronectin early in the chordate lineage. International Journal of Biochemistry & Cell Biology, 41: 424-434, 2009.
• WOERLY, S.; LAROCHE, G.; MARCHAND, R.; PATO, J.; SUBR, V.; ULBRICH, K., Intracerebral implantation of hydrogel-coupled adhesion peptides: tissue reaction. Journal of Neural Transplantatiation & Plasticity, 4: 245-55, 1995.
• WOERLY, S.; MARCHAND, R.; LAVALLE, C., Intracerebral implantation of synthetic polymer/biopolymer matrix: a new perspective for brain repair. Biomaterials, 11: 97-107, 1990.
• WOJCIK-STANASZEK, L.; GREGOR, A.; T. ZALEWSKA., Regulation of neurogenesis by extracellular matrix and integrins. Acta Neurobiologiae Experimentalis, 71: 103-112, 2011.
• YANG, Y.; KAUFMAN, L., Rheology and Confocal Reflectance Microscopy as Probes of Mechanical PropertiesandStructureduring Collagenand Collagen/Hyaluronan Self-Assembly. Biophysical Journal, 96:1566-1570, 2009.
Descargas
Publicado
Número
Sección
Categorías
Licencia
Derechos de autor 2012 María del Carmen Díaz Galindo, Abraham Loera Muro, Flor Yazmín Ramírez Castillo, Roxanne Olvera Farías, Alma Lilián Guerrero-Barrera
Esta obra está bajo una licencia internacional Creative Commons Atribución-NoComercial-CompartirIgual 4.0.
Las obras publicadas en versión electrónica de la revista están bajo la licencia Creative Commons Atribución-NoComercial-CompartirIgual 4.0 Internacional (CC BY-NC-SA 4.0)