Chondroprogenitor cells in mature cartilage
Chondroprogenitor cells in mature cartilage
批准号:
6500176
负责人:
Martin K Lotz
金额:
$37.04万
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:
2002-04-01 至 2007-03-31
关键词:
adult human (21+) aging articular cartilage biotechnology bone marrow cartilage development cell differentiation chondrocytes confocal scanning microscopy flow cytometry histogenesis human tissue immunocytochemistry immunomagnetic separation mesenchyme microarray technology osteoarthritis osteogenesis stem cells tissue /cell culture
中文摘要
描述(申请人提供):骨性关节炎(OA)是最常见的
老年人常见的肌肉骨骼疾病。深度老化-
软骨细胞和软骨细胞外基质的相关变化
是骨关节炎发病机制中的一个重要因素。尽管被称为
退行性关节病,是一种活跃的软骨重塑过程。
骨关节炎软骨中的细胞被激活,不仅产生基质降解
酶,还有新的细胞外基质。最终的重塑过程
由于基质合成和降解之间的不平衡而失败,
因为新形成的软骨是非透明的修复组织,基质是
通常不正常地钙化。我们的初步研究表明,成年人类
关节软骨中含有软骨前体细胞。
建议的实验基于以下假设:1)间充质
祖细胞存在于成人软骨中,它们可以被分离出来,
扩增和诱导分化为多个成熟间充质细胞
表型。2)频率、定位、激活和反应模式
在衰老和骨关节炎中,间充质祖细胞的数量发生了变化。
3)祖细胞分化为间充质细胞的遗传学基础
成熟软骨细胞的离散亚群可以用DNA建立
用微阵列来定义这一过程的标志物和调节器。
以下具体目标将检验这些假设:1)确定
正常人关节中祖细胞的频率和定位
应用免疫组织化学、细胞分离、流式细胞术和免疫组织化学方法
多潜能分化的功能评估。通过这些研究,
我们将开发鉴定祖细胞的标记和方法
孤立和扩张。2)分析衰老过程中祖细胞的存在
和骨关节炎的人体软骨。确定是否存在老化-
祖细胞数量的相关减少,无论细胞是否有
对生长因子的反应性受损以及祖细胞是否
与增殖的软骨细胞簇和
钙化的软骨。3)利用DNA微阵列,确定遗传基础
正常人关节各区软骨细胞亚群的研究
软骨。建立骨髓源与骨髓源的关系
软骨来源的祖细胞和分化的软骨细胞
他们。
成人软骨中祖细胞的发现为研究开辟了新的视角
利用这些细胞进行软骨修复,增加了衰老的可能性-
其频率或功能的相关变化决定了关节的老化和
它们在畸形的软骨重塑过程中起作用
关节炎。
英文摘要
DESCRIPTION (provided by applicant): Osteoarthritis (OA) is one of the most
common musculoskeletal disorders in older individuals. Profound aging-
associated changes in chondrocytes and cartilage extracellular matrix
represent a major factor in OA pathogenesis. Although referred to as a
degenerative joint disease, OA is an active cartilage remodeling process.
Cells in OA cartilage are activated and not only produce matrix degrading
enzymes, but also new extracellular matrix. The remodeling process ultimately
fails because of an imbalance between matrix synthesis and degradation,
because the newly formed cartilage is non-hyaline repair tissue and matrix is
often abnormally calcified. Our preliminary studies suggest that adult human
articular cartilage contains chondroprogenitor cells.
The proposed experiments are based on the following hypotheses: 1) Mesenchymal
progenitor cells are present in adult cartilage, and they can be isolated,
expanded and induced to differentiate to multiple mature mesenchymal
phenotypes. 2) The frequency, localization, activation and response patterns
of mesenchymal progenitor cells are altered in aging and osteoarthritis.
3) The genetic basis of mesenchymal cell differentiation from the progenitor
to the discrete subsets of mature chondrocytes can be established with DNA
microarrays to define markers and regulators of this process.
The following specific aims will test these hypotheses: 1) Determine the
frequency and localization of progenitor cells in normal human articular
cartilage using immunohistochemistry, cell isolation, flow cytometry and
functional assessment of pluripotential differentiation. With these studies,
we will develop markers for identification of progenitor cells and methods for
isolation and expansion. 2) Analyze the presence of progenitor cells in aging
and osteoarthritic human cartilage. Determine whether there is an aging-
associated reduction in the number of progenitor cells, whether the cells have
an impaired responsiveness to growth factors and whether progenitor cells are
associated with the clusters of proliferating chondrocytes and areas of
calcified cartilage. 3) With the DNA microarrays, define the genetic basis
for the chondrocyte subsets in the various zones of normal human articular
cartilage. Establish the relationship between bone marrow derived and
cartilage derived progenitors and differentiated chondrocytes generated from
them.
The discovery of progenitor cells in adult cartilage opens new perspectives to
harness these cells in cartilage repair and raises the possibility that aging-
associated changes in their frequency or function determine joint aging and
that they contribute to the aberrant cartilage remodeling process in
arthritis.
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