Stem Cell-Seeded ECM Scaffolds for Neurotransplantation
Stem Cell-Seeded ECM Scaffolds for Neurotransplantation
批准号:
6661918
负责人:
MICHELLE C LAPLACA
金额:
$23.46万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-09-30 至 2005-08-31
中文摘要
描述(由申请人提供):在受损的中枢神经系统(CNS)中进行神经移植的成功率有限。据推测,这种恶劣的环境可能需要通过定向细胞外基质(ECM)蛋白工程改善细胞支持,以提高移植物存活率和细胞功能,因此,功能恢复。本研究项目的总体目标是开发微创移植技术,通过基于ECM的支架优化干/祖细胞附着,并利用相关实验模型(体外和体内)进行优化和结果评估。该总体目标分为3个相互关联的具体目标:(1)在体外表征基于神经干(NS)细胞-ECM的3-D构建体,以用于微创移植策略和最大细胞存活,并引起期望程度的增殖、迁移和分化;(2)通过在替代的不利体外环境中测试NS-ECM构建体来确定构建体整合的机制;和(3)通过将构建体移植到挫伤小鼠脑中并检查宿主挫伤、细胞行为以及认知和感觉运动行为结果的损伤后改变来分析组织工程化构建体的体内功能。这项研究是重要的,因为它提供了一种新的方法,祖细胞/干细胞移植技术与详细的分析结果。这项研究可能直接应用于神经外科的临床实践,这将允许治疗性细胞替代治疗创伤性脑和脊髓损伤以及CNS退行性疾病。此外,这项研究将深入了解中枢神经系统再生的机制,并有助于阐明神经移植成功所需的细胞环境。通过分析控制良好的多水平系统的结果,本研究还可能导致无细胞移植方法,并建立非胚胎/胎儿细胞来源移植所需的要求。
英文摘要
DESCRIPTION (provided by applicant): Neural transplantation in the injured central nervous system (CNS) has had limited success. It is hypothesized that this hostile environment may require improved cell support through directed extracellular matrix (ECM) protein engineering to improve graft survival and cell function and hence, functional recovery. The overall objective of this research project is to develop minimally-invasive transplantation techniques for optimizing stem/progenitor cell attachment through ECM-based scaffolds and to utilize relevant experimental models (both in vitro and in vivo) for optimization and outcome assessment. This overall goal is divided into 3 interrelated specific aims: (1) To characterize neural stem (NS) cell-ECM-based 3-D constructs in vitro for minimally invasive grafting strategies and maximal cell survival and to elicit a desired degree of proliferation, migration, and differentiation; (2) To determine mechanisms of construct integration by testing NS-ECM constructs in a surrogate hostile in vitro environment; and (3) To analyze the in vivo function of tissue-engineered constructs by transplanting constructs into contused mouse brains and examining post-injury alterations in the host contusion, cell behavior, and cognitive and sensorimotor behavioral outcome. The research proposed is significant because it offers a novel approach to progenitor/stem cell transplant technology with detailed analyses of outcome. This research may have direct application to clinical practice in neurosurgery that would permit therapeutic, cellular replacement in the treatment of traumatic brain and spinal cord injuries and degenerative diseases of the CNS. In addition, this research will provide insight into the mechanisms of CNS regeneration and help to elucidate the necessary cellular environment for neurotransplantation success. By analyzing outcome in well-controlled multi-level systems, this research may also lead to acellular transplantation methodology and establish the requirements necessary for the transplantation of non-embryonic/fetal cell sources.
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财政年份:2002
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负责人:MICHELLE C LAPLACA
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依托单位:
海外基金