首页> 外文会议>Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Neuroendocrine tissue engineering in rotating wall vessel bioreactors under simulated microgravity conditions
【24h】

Neuroendocrine tissue engineering in rotating wall vessel bioreactors under simulated microgravity conditions

机译:模拟微匍匐条件下旋转壁容器生物反应器的神经内分泌组织工程

获取原文

摘要

The low-shear, microgravity-simulating cell culture environment in Rotating Wall Vessel (RWV) Bioreactors RWV Bioreactors is well suited for generating differentiated 3-D tissue constructs (organoids). Biochemical, immunological and molecular biological techniques, including cDNA arrays, were used to analyze signal transduction, catecholamine contents, and gene expression in 3-D tissue-like constructs of PC12 pheochromocytoma cells grown for <30 d in RWVs. Vascularization of the organoids implanted s.c. into Matrigel plugs in B56 mice was evaluated by fluorescence microscopy. The unique culture environment of RWV Bioreactors facilitates the generation of macroscopic, functional neuroendocrine tissue-like assemblies, as assessed by the enhanced production of catecholamines. Organoid formation is accompanied by prolonged activation of specific signaling pathways (erk, p38, jnk) and transcription factors, leading to a unique pattern of gene expression characteristic for the neuroendocrine phenotype. Thus in RWV, "neuronal" genes (e.g. GAP 43) were downregulated while "neuroendocrine" genes (e.g. chromogranin A) were upregulated. When implanted into Matrigel plugs 1,1 vivo, PC12 organoids generated in RWV Bioreactors, but not 3-D aggregates formed under static conditions, became highly vascularized. This latter finding is in line with the enhanced expression of angiogenic growth factors, such as VEGF in RWVs but not in the controls. The unique cell culture environment in RWV Bioreactors activates differentiative signaling pathways and hence facilitates engineering of functional neuroendocrine tissue constructs, which might be clinically useful as implants in the treatment of debilitating neurodegenerative diseases, such as Parkinson's disease.
机译:旋转壁容器(RWV)生物反应器RWV生物反应器的低剪切,微刻度模拟细胞培养环境非常适合于产生分化的3-D组织构建体(有机体)。使用CDNA阵列的生物化学,免疫和分子生物学技术,包括CDNA阵列,用于分析3d组织状构建的PC12噬菌体细胞瘤细胞3d组织状构建中的信号转导,儿茶酚胺含量和基因表达,以在RWV中增加<30d。血管化有机体植入的S.C.通过荧光显微镜评估B56小鼠中的Matrigel塞。 RWV生物反应器的独特培养环境有助于产生宏观,功能性神经内分泌组织状组件,如通过增强的儿茶酚胺的生产评估。有机体形成伴随着特定信号途径(ERK,P38,JNK)和转录因子的长期激活,导致神经内分泌表型的基因表达特征的独特模式。因此,在RWV中,“神经元”基因(例如间隙43)上调,而“神经内分泌”基因(例如Chromogranin A)被上调。当植入Matrigel塞1,1体内,在RWV生物反应器中产生的PC12有机体,但不是在静态条件下形成的3D聚集体,变得高度血管化。后一种发现符合血管生成生长因子的增强表达,例如RWV的VEGF,但不在对照中。 RWV生物反应器中的独特细胞培养环境激活了不同的信号传导途径,因此有助于功能性神经内分泌组织构建体的工程,这可能是植入物的植入物,以治疗令人衰弱的神经变性疾病,如帕金森病。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号