Stem cell-based renewal and regeneration in the intestine of a model organism
Stem cell-based renewal and regeneration in the intestine of a model organism
批准号:
7221646
负责人:
DAVID J FORSTHOEFEL
金额:
$4.6万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-12-16 至 2009-12-15
关键词:
PlatyhelminthesRNA interferencebromodeoxyuridinecell differentiationcell proliferationcellular pathologyflow cytometryfluorescent dye /probegastrointestinal epitheliumgene induction /repressiongenetic regulationhelminth geneticshigh throughput technologyin situ hybridizationmicroarray technologymolecular dynamicspostdoctoral investigatorregenerationstem cellstransfection /expression vector
中文摘要
描述(由申请人提供):成体干细胞补充因正常消耗而丢失的细胞,并修复器官和组织以应对损伤。这一现象的一个很好的例子是哺乳动物的消化上皮,在正常情况下,每3-5天就会完全更新其细胞,并且还可以替换因辐射或细胞毒性物质(如化疗)而受损的细胞。这种快速自我更新的能力引起了极大的兴趣,因为它使胃肠道系统易患癌症,而且在特定疾病背景下(如短肠综合征)促进更新的能力在临床上是有益的。此外,对胃肠修复的理解可能会促进干细胞技术在再生医学中的更广泛应用。然而,尽管最近取得了进展,调节胃肠道干细胞维持、增殖和分化的分子机制仍未得到很好的理解。由于涡虫具有显著的再生能力和现代分子技术应用的许多最新进展,涡虫是研究组织更新和干细胞生物学的一个有吸引力的模式生物。在涡虫中,称为新生细胞的成体干细胞在正常细胞更新和损伤后的再生过程中补充组织。作为动物最重要的器官之一,涡虫的肠道为研究损伤和细胞更新与干细胞增殖和谱系限制之间的分子机制提供了极好的机会。实验建议利用已建立的技术来鉴定肠上皮细胞表达的肠更新和再生所需的基因。该提案的具体目的是:(1)通过监测brdu标记的新生细胞的分化来表征肠道组织更新和再生的动态;(2)通过对肠上皮细胞进行流式分选并进行基因表达微阵列分析,鉴定肠上皮细胞差异表达基因;(3)通过小范围靶向RNA干扰筛选,鉴定在新生细胞增殖和向肠上皮细胞分化过程中自主和非自主功能的基因。公共卫生相关性:成体干细胞通常在一生中补充和修复消化道。为了有效地治疗消化系统癌症和其他疾病,需要更深入地了解这一现象。在这个提议中,参与这一过程的基因将在一个能够更新和完全再生其肠道的模式生物中被识别出来。
英文摘要
DESCRIPTION (provided by applicant): Adult stem cells replenish cells lost due to normal attrition, and repair organs and tissues in response to injury. An excellent example of this phenomenon is the mammalian digestive epithelium, which completely renews its cells every 3-5 days under normal conditions, and can also replace cells lost to damage by radiation or cytotoxic substances (e.g. chemotherapy). This ability to rapidly self- renew is of great interest both because it predisposes the gastrointestinal system to cancer, and because the ability to promote renewal in specific disease contexts (e.g. short bowel syndrome) would be clinically beneficial. Additionally, an understanding of gastrointestinal repair may advance the more general application of stem cell technology to regenerative medicine. Despite recent progress, however, the molecular mechanisms regulating gastrointestinal stem cell maintenance, proliferation, and differentiation are not well understood. Because of their remarkable regenerative abilities and numerous recent advances in the application of modern molecular techniques, planarians are an attractive model organism for investigating tissue renewal and stem cell biology. In planarians, adult stem cells called neoblasts replenish tissues during normal cell turnover and during regeneration after injury. As one of the most prominent organs in the animal, the intestine of planarians offers an excellent opportunity to approach the molecular mechanisms linking injury and cell turnover to stem cell proliferation and lineage restriction. The experiments proposed capitalize on established techniques to identify genes expressed by planarian intestinal epithelial cells required for intestinal renewal and regeneration. The specific aims of this proposal are (1) to characterize the dynamics of tissue renewal and regeneration in the intestine by monitoring the differentiation of BrdU-labeled neoblasts; (2) to identify genes that are differentially expressed by intestinal epithelial cells by flow sorting these cells and conducting microarray analysis of gene expression; and (3) to identify genes that function autonomously and non-autonomously during neoblast proliferation and differentiation into intestinal epithelial cells in a small-scale, targeted RNA interference screen. PUBLIC HEALTH RELEVANCE: Adult stem cells normally replenish and repair the digestive tract throughout life. Deeper understanding of this phenomenon is required for effective treatment of digestive cancers and other diseases. In this proposal genes involved in this process will be identified in a model organism that can renew and completely regenerate its intestine.
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会议论文
Project 1: Non-autonomous regulation of stem cell proliferation during regeneration
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批准号:10225573
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项目类别:
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资助金额:$39.38万
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财政年份:2013
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负责人:DAVID J FORSTHOEFEL
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依托单位:
Stem cell-based renewal and regeneration in the intestine of a model organism
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批准号:7534999
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项目类别:
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资助金额:$5.09万
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财政年份:2006
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负责人:DAVID J FORSTHOEFEL
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依托单位:
Stem cell-based renewal and regeneration in the intestine of a model organism
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批准号:7314127
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项目类别:
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资助金额:$4.88万
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财政年份:2006
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负责人:DAVID J FORSTHOEFEL
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依托单位:
海外基金