Gene/Protein
Disease
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Drug
Enzyme
Compound
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Gene/Protein
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Drug
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Target Concepts:
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Query: UMLS:C0043352 (
xerostomia
)
4,250
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Stem cell-based regenerative therapy is a promising treatment for head and neck cancer patients that suffer from chronic
dry mouth
(
xerostomia
) due to salivary gland injury from radiation therapy. Current
xerostomia
therapies only provide temporary symptom relief, while permanent restoration of salivary function is not currently feasible. Here, we identified and characterized a stem cell population from adult murine submandibular glands. Of the different cells isolated from the submandibular gland, this specific population, Lin-CD24+c-Kit+Sca1+, possessed the highest capacity for proliferation, self renewal, and differentiation during serial passage in vitro. Serial transplantations of this stem cell population into the submandibular gland of irradiated mice successfully restored saliva secretion and increased the number of functional acini. Gene-expression analysis revealed that glial cell line-derived neurotrophic factor (Gdnf) is highly expressed in Lin-CD24+c-Kit+Sca1+ stem cells. Furthermore,
GDNF
expression was upregulated upon radiation therapy in submandibular glands of both mice and humans. Administration of
GDNF
improved saliva production and enriched the number of functional acini in submandibular glands of irradiated animals and enhanced salisphere formation in cultured salivary stem cells, but did not accelerate growth of head and neck cancer cells. These data indicate that modulation of the
GDNF
pathway may have potential therapeutic benefit for management of radiation-induced
xerostomia
.
...
PMID:Neurotrophic factor GDNF promotes survival of salivary stem cells. 2503 2