4.7 Article

Mtor inhibition by INK128 extends functions of the ovary reconstituted from germline stem cells in aging and premature aging mice

期刊

AGING CELL
卷 20, 期 2, 页码 -

出版社

WILEY
DOI: 10.1111/acel.13304

关键词

aging; Hormone; INK128; primordial germ cells; rapamycin; reconstituted ovary; stem cell transplantation

资金

  1. China National Key RD Program [2018YFC1003004]
  2. National Natural Science Foundation of China [31430052, 91749129]

向作者/读者索取更多资源

The study demonstrates that mTOR inhibition by INK128 could extend the maintenance of reconstituted ovarian functions, including follicular development and endocrine functions, after transplantation. Compared to controls without mTOR inhibitors, INK128 treatment prolongs the preservation of these functions for a longer period of time.
Stem cell transplantation has been generally considered as promising therapeutics in preserving or recovering functions of lost, damaged, or aging tissues. Transplantation of primordial germ cells (PGCs) or oogonia stem cells (OSCs) can reconstitute ovarian functions that yet sustain for only short period of time, limiting potential application of stem cells in preservation of fertility and endocrine function. Here, we show that mTOR inhibition by INK128 extends the follicular and endocrine functions of the reconstituted ovaries in aging and premature aging mice following transplantation of PGCs/OSCs. Follicular development and endocrine functions of the reconstituted ovaries by transplanting PGCs into kidney capsule of the recipient mice were maintained by INK128 treatment for more than 12 weeks, in contrast to the controls for only about 4 weeks without receiving the mTOR inhibitors. Comparatively, rapamycin also can prolong the ovarian functions but for limited time. Furthermore, our data reveal that INK128 promotes mitochondrial function in addition to its known function in suppression of immune response and inflammation. Taken together, germline stem cell transplantation in combination with mTOR inhibition by INK128 improves and extends the reconstituted ovarian and endocrine functions in reproductive aging and premature aging mice.

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