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Manipulating Stem Cells to Provide Long Term Regeneration of Irradiated Salivary Glands

Manipulating Stem Cells to Provide Long Term Regeneration of Irradiated Salivary Glands
操纵干细胞以提供受辐射唾液腺的长期再生
批准号:
10434885
负责人:
Isabelle M.A. Lombaert
金额:
$35.57万
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-07-01 至 2024-06-30

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Isabelle M.A. Lombaert的其他基金

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PROJECT SUMMARY/ABSTRACT Worldwide, the quality of life of over half a million surviving head-and-neck cancer patients per year is drastically decreased due to co-irradiation of healthy saliva-secreting salivary glands. Current therapies to rescue hypo-salivation only provide temporary relief; hence new therapies for permanent tissue repair are needed. In a mouse model, we induced successful repair of irradiated salivary glands by transplanting KIT+ stem/progenitor cells. However, this population of stem/progenitor cells decreases with age and is heterogeneous; hence, currently compromising our ability to efficiently use these cells for therapy. Recent discoveries in our lab have shown that transcription factor SOX10 tightly regulates proliferation and differentiation in fetal KIT+ cells. In this proposal we hypothesize that only a subpopulation of adult KIT+ cells, which express SOX10, retain stem cell self-renewal capacity. Thus, we aim to: (1) characterize the multipotent stem cells within the KIT+ cell population, (2) define the role of transcription factor SOX10 in maintaining adult KIT+ cells, and (3) characterize the molecular heterogeneity and SOX10 signature in human KIT+ cells. Overall, the scientific ideas proposed here will expand our knowledge of salivary gland stem cell populations, and will significantly improve future hypo-salivation rescuing by stem cell-based therapies.
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DOI: 10.1002/stem.2455
发表时间: 2017-01
期刊: Stem cells (Dayton, Ohio)
影响因子: --
作者: [Lombaert I, Movahednia MM, Adine C, Ferreira JN]
通讯作者: Ferreira JN
Defining the Targets and Function of Direct Trigeminal Sensory Innervation to Salivary Glands
Epigenetic Therapy to Treat Radiation-induced Xerostomia
Manipulating Stem Cells to Provide Long Term Regeneration of Irradiated Salivary Glands