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骨形态发生蛋白:基础生物学与临床相关性的最新进展

Bone morphogenetic proteins: an update on basic biology and clinical relevance.

作者信息

Schmitt J M, Hwang K, Winn S R, Hollinger J O

机构信息

Department of Cell and Developmental Biology, Northwest Wound Healing Center, Oregon Health Sciences University, Portland 97201, USA.

出版信息

J Orthop Res. 1999 Mar;17(2):269-78. doi: 10.1002/jor.1100170217.

Abstract

The regeneration of bone is a remarkable, complex physiological process, and BMPs are a formidable clinical tool to promote its regeneration. By defining roles played by BMPs in developmental biology and bone regeneration, significant progress has been made to identify cell-signaling molecules and their regulators. For example, the regulators of BMPs that include noggin, chordin, cerberus, dan, and gremlin may be harnessed as therapies to offset calcification encountered after total hip arthroplasties. Furthermore, exploiting BMPs and Smads may generate new therapeutic options for bone repair. Another compelling clinical consideration is the trans-acting factor osteoblast-specific factor-2, which can promote osteoblast differentiation. Moreover, the affiliation of osteoblast-specific factor-2 with heritable disorders merits exploration. A recognized daunting challenge includes a carrier/delivery system for the powerful morphogenetic therapeutic tools, as well as osteoprogenitor cells and intracellular transduction and transcriptional factors. In addition, the long-term effects of administering superphysiological doses of rhBMPs to patients must be assessed systematically. A new generation carrier/delivery system may be the answer to offset dosing liabilities as well as to provide residence for exogenous, BMP-receptive osteoprogenitor cells (111,112). The areas highlighted in this review offer fertile territory for thought and research to develop rational clinical treatments to promote bone regeneration and to understand some of the biological roles of BMPs.

摘要

骨再生是一个非凡而复杂的生理过程,骨形态发生蛋白(BMPs)是促进骨再生的一种强大临床工具。通过明确BMPs在发育生物学和骨再生中所起的作用,在识别细胞信号分子及其调节因子方面取得了重大进展。例如,包括头蛋白、腱蛋白、Cerberus、Dan和Gremlin在内的BMPs调节因子可作为治疗手段,以抵消全髋关节置换术后出现的钙化。此外,利用BMPs和Smads可能会为骨修复产生新的治疗选择。另一个引人关注的临床考量因素是反式作用因子成骨细胞特异性因子-2,它可促进成骨细胞分化。此外,成骨细胞特异性因子-2与遗传性疾病的关联值得探究。一个公认的艰巨挑战包括为强大的形态发生治疗工具以及骨祖细胞和细胞内转导及转录因子提供载体/递送系统。此外,必须系统评估向患者施用超生理剂量重组人骨形态发生蛋白(rhBMPs)的长期影响。新一代载体/递送系统可能是解决剂量问题以及为外源性、对BMP有反应的骨祖细胞提供驻留场所的答案(111,112)。本综述中强调的领域为思考和研究提供了丰富的空间,以开发合理的临床治疗方法来促进骨再生并了解BMPs的一些生物学作用。

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