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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Gap junction intercellular communication: a review of a potential platform to modulate craniofacial tissue engineering.
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Gap junction intercellular communication: a review of a potential platform to modulate craniofacial tissue engineering.

机译:间隙连接的细胞间通讯:调节颅面组织工程的潜在平台的审查。

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摘要

Defects in craniofacial tissues, resulting from trauma, congenital abnormalities, oncologic resection or progressive deforming diseases, may result in aesthetic deformity, pain and reduced function. Restoring the structure, function and aesthetics of craniofacial tissues represents a substantial clinical problem in need of new solutions. More biologically-interactive biomaterials could potentially improve the treatment of craniofacial defects, and an understanding of developmental processes may help identify strategies and materials that can be used in tissue engineering. One such strategy that can potentially advance tissue engineering is cell-cell communication. Gap junction intercellular communication is the most direct way of achieving such signaling. Gap junction communication through connexin-mediated junctions, in particular connexin 43 (Cx43), plays a major role bone development. Given the important role of Cx43 in controlling development and differentiation, especially in bone cells, controlling the expression of Cx43 may provide control over cell-to-cell communication and may help overcome some of the challenges in craniofacial tissue engineering. Following a review of gap junctions in bone cells, the ability to enhance cell-cell communication and osteogenic differentiation via control of gap junctions is discussed, as is the potential utility of this approach in craniofacial tissue engineering.
机译:由创伤,先天性异常,肿瘤切除或进行性畸形疾病引起的颅面组织缺损可能导致美学畸形,疼痛和功能降低。恢复颅面组织的结构,功能和美观性是需要新解决方案的重大临床问题。更多的生物互动性生物材料可能会改善颅面缺陷的治疗,并且对发育过程的理解可能有助于确定可用于组织工程的策略和材料。一种可能潜在地促进组织工程发展的策略是细胞间通信。间隙连接的细胞间通讯是实现这种信号传递的最直接方法。通过连接蛋白介导的连接,特别是连接蛋白43(Cx43),间隙连接通讯在骨骼发育中起主要作用。鉴于Cx43在控制发育和分化(特别是在骨细胞中)中的重要作用,控制Cx43的表达可提供对细胞间通讯的控制,并可帮助克服颅面组织工程学中的一些挑战。在回顾骨细胞中的间隙连接之后,讨论了通过控制间隙连接来增强细胞-细胞通讯和成骨分化的能力,以及这种方法在颅面组织工程中的潜在用途。

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