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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Angiogenesis, endothelial cell functions, and tumor cell growth in biodegradable and nonbiodegradable devices.
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Angiogenesis, endothelial cell functions, and tumor cell growth in biodegradable and nonbiodegradable devices.

机译:可生物降解和不可生物降解装置中的血管生成,内皮细胞功能和肿瘤细胞生长。

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摘要

Development of tissue engineering creates multiple potentials for clinical treatment and scientific research. Biodegradable collagen matrices have been found to support simultaneous autotransplantation of hepatocytes after major liver resection. Dynamic angiogenesis in biodegradable devices (BDD) and nondegradable devices (NDD) transplanted into the renal subcapsule and subcutaneous tissue was measured by the distribution of radiolabeled red blood cells and serum albumin. The circulation, microvascular integrity, and capacities of endothelial cells (adhesion, proliferation, and migration) were investigated within 2 weeks after subcutaneous transplantation of both devices. Patterns of tumor cell growth in both devices were morphologically studied. After subcutaneous transplantation, significant angiogenesis was noted at 1 week in BDD implants and from 2 weeks and on in NDD implants, with an increase in implant blood and plasma volumes. Leakage index of radiolabeled albumin in NDD implants was significantly higher than in BDD implants, while the leakage index 2 weeks after BDD implant was similar to that in subcutaneous tissues. Adhesion, proliferation and migration rates of endothelial cells isolated from both devices were higher than from subcutaneous tissues. Endothelial proliferation and migration rates in BDD implants were significantly higher at 1 week, while in NDD at 2 weeks. Tumor cells migrated and grew on the top surface of NDD with a flattened shape, while growing within the BDD forming a round mass. Endothelial capacities, angiogenetic procedure, and biological and physical characteristics of the device contribute to patterns of tumor cell growth in the device. Biodegradable collagen matrix with three-dimensional structure is suitable for simultaneous transplantation with cells without prevascularization.
机译:组织工程学的发展为临床治疗和科学研究创造了多种潜力。已发现可生物降解的胶原蛋白基质可支持大肝切除后同时进行肝细胞的自体移植。通过放射性标记的红细胞和血清白蛋白的分布来测量可生物降解装置(BDD)和不可降解装置(NDD)移植到肾脏皮下和皮下组织中的动态血管生成。皮下移植两种装置后,在2周内研究了血液循环,微血管完整性和内皮细胞的能力(粘附,增殖和迁移)。形态学研究了两种装置中肿瘤细胞生长的模式。皮下移植后,在BDD植入物的第1周和从第2周开始以及在NDD植入物中注意到显着的血管生成,并且植入物的血液和血浆量增加。 NDD植入物中放射性标记白蛋白的渗漏指数显着高于BDD植入物,而BDD植入后2周的渗漏指数与皮下组织相似。从这两种设备中分离出的内皮细胞的粘附,增殖和迁移率均高于皮下组织。 BDD植入物的内皮增殖和迁移率在1周时显着较高,而在NDD中则在2周时。肿瘤细胞以平坦的形状迁移并在NDD的顶面上生长,而在BDD内生长则形成圆形团块。装置的内皮能力,血管生成程序以及生物学和物理特性有助于装置中肿瘤细胞的生长。具有三维结构的可生物降解的胶原蛋白基质适合在不进行预血管化的情况下与细胞同时移植。

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