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泌尿外科中的组织工程学。

Tissue engineering in urology.

作者信息

Atala A

机构信息

Department of Urology, Children's Hospital and Harvard Medical School, 300 Longwood Avenue, Boston, MA 02115, USA.

出版信息

Curr Urol Rep. 2001 Feb;2(1):83-92. doi: 10.1007/s11934-001-0030-z.

Abstract

Congenital abnormalities, cancer, trauma, infection, inflammation, iatrogenic injuries, and other conditions may lead to genitourinary organ damage or loss, requiring eventual reconstruction. Tissue engineering follows the principles of cell transplantation, materials science, and engineering toward the development of biological substitutes that would restore and maintain normal function. Tissue engineering may involve matrices alone, wherein the body's natural ability to regenerate is used to orient or direct new tissue growth, or the use of matrices with cells. Both synthetic (polyglycolic acid polymer scaffolds alone and with co-polymers of poly-1-lactic acid and poly-DL-lactide-coglycolide) and natural biodegradable materials (processed collagen derived from allogeneic donor bladder submucosa and intestinal submucosa) have been used, either alone or as cell delivery vehicles. Tissue engineering has been applied experimentally for the reconstitution of several urologic tissues and organs, including bladder, ureter, urethra, kidney, testis, and genitalia. Fetal applications have also been explored. Recently, several tissue engineering technologies have been used clinically, including the use of cells as bulking agents for the treatment of vesicoureteral reflux and incontinence, urethral replacement, and bladder reconstruction. Recent progress suggests that engineered urologic tissues may have clinical applicability in the future.

摘要

先天性异常、癌症、创伤、感染、炎症、医源性损伤及其他病症可能导致泌尿生殖器官受损或缺失,最终需要进行重建。组织工程遵循细胞移植、材料科学及工程学原理,致力于开发能够恢复并维持正常功能的生物替代品。组织工程可能仅涉及基质,利用人体自身的再生能力来引导新组织生长,也可能使用含细胞的基质。合成材料(单独的聚乙醇酸聚合物支架以及聚-L-乳酸与聚-DL-丙交酯-乙交酯的共聚物)和天然可生物降解材料(源自同种异体供体膀胱黏膜下层和肠黏膜下层的处理过的胶原蛋白)都已单独或作为细胞递送载体被使用。组织工程已在实验中应用于多种泌尿组织和器官的重建,包括膀胱、输尿管、尿道、肾脏、睾丸及生殖器。胎儿组织的应用也已得到探索。最近,多种组织工程技术已应用于临床,包括使用细胞作为填充剂治疗膀胱输尿管反流和尿失禁、尿道置换及膀胱重建。最近的进展表明,工程化泌尿组织未来可能具有临床应用价值。

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