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Engineering growing tissues

机译:工程生长组织

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Regenerating or engineering new tissues and organs may one day allow routine replacement of lost or failing tissues and organs. However, these engineered tissues must not only grow to fill a defect and integrate with the host tissue, but often they must also grow in concert with the changing needs of the body over time. We hypothesized that tissues capable of growing with time could be engineered by supplying growth stimulus signals to cells from the biomaterial used for cell transplantation. In this study, chondro-cytes and osteoblasts were cotransplanted on hydrogels modified with an RGD-containing peptide sequence to promote cell multiplication. New bone tissue was formed that grew in mass and cellularity by endochondral ossification in a manner similar to normal long-bone growth. Transplanted cells organized into structures that morphologically and functionally resembled growth plates. These engineered tissues could find utility in treating diseases and injuries of the growth plate, testing the effect of experimental drugs on growth-plate function and development, and investigating the biology of long-bone growth. Furthermore, this concept of promoting the growth of engineered tissues could find great utility in engineering numerous tissue types by way of the transplantation of a small number of precursor cells.
机译:再生或改造新的组织和器官可能有一天可以对丢失或衰竭的组织和器官进行例行更换。然而,这些工程组织不仅必须生长以填补缺陷并与宿主组织整合,而且通常还必须随着身体不断变化的需求而生长。我们假设可以通过从用于细胞移植的生物材料向细胞提供生长刺激信号来工程化能够随时间增长的组织。在这项研究中,将软骨细胞和成骨细胞共移植到用含RGD的肽序列修饰的水凝胶上,以促进细胞增殖。形成了新的骨组织,该骨组织通过软骨内骨化以类似于正常长骨生长的方式在质量和细胞内生长。移植的细胞组织成在形态和功能上类似于生长板的结构。这些工程组织可用于治疗生长板的疾病和损伤,测试实验药物对生长板功能和发育的作用以及研究长骨生长的生物学。此外,这种促进工程组织生长的概念可以通过少量前体细胞的移植在工程多种组织中找到巨大的用途。

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