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Two Methods for Establishing Primary Human Endometrial Stromal Cells from Hysterectomy Specimens
Published on: May 23, 2014
Targeting Cellular Senescence to Enhance Human Endometrial Stromal Cell Decidualization and Inhibit Their Migration
Julia Delenko1,2,3, Nathaniel Hyman1,2, Prodyot K Chatterjee1,2
1Northwell, 2000 Marcus Ave, Suite 300, New Hyde Park, NY 11042, USA.
Abstract:
Cellular senescence leads to stable cell cycle arrest and an inflammatory senescence-associated secretory phenotype that varies with stressor and cell type. To mitigate these effects and improve health, senotherapeutics (e.g., senolytics and senomorphics) have been developed. Senescent-like endometrial stromal cells (eSCs) lining the uterus of patients with endometriosis and infertility are proposed to impair decidualization, a differentiation process required for uterine receptivity in humans. Quercetin, a natural flavonoid senolytic, dramatically improves decidualization and reduces endometriosis in rodent models. However, little is known about the comparative effects of various senotherapeutics on eSCs. Using menstrual effluent-derived eSCs, we evaluated the effects of flavonoid and non-flavonoid compounds on eSC functions associated with endometriosis, aiming to identify optimal senotherapeutics for future clinical trials. Among flavonoids tested, all senolytics (quercetin, fisetin, and luteolin) and kaempferol, a senomorphic, significantly improved decidualization without cytotoxicity. Although non-flavonoids exhibited notable cytotoxicity, dasatinib, but neither ABT-737 nor navitoclax, enhanced decidualization. Flavonoid senotherapeutics and dasatinib significantly inhibited eSC migration. Mechanistic studies revealed that all flavonoids and dasatinib suppressed AKT phosphorylation and upregulated p53 expression. Notably, only quercetin and fisetin reduced ERK1/2 phosphorylation. Furthermore, flavonoid-senolytics and dasatinib consistently eliminated senescent eSCs. These findings support future studies to assess the therapeutic potential of in vivo supplementation with flavonoid senolytics on eSC function using menstrual effluent.
Insights
Flavonoid senolytics like quercetin effectively improve uterine receptivity by clearing senescent cells. These compounds show promise for treating endometriosis and infertility, offering a new therapeutic avenue.
Area of Science:
- Reproductive Biology
- Cellular Biology
- Pharmacology
Background:
- Cellular senescence, characterized by cell cycle arrest and inflammation, contributes to various health issues.
- Senescent endometrial stromal cells (eSCs) are implicated in endometriosis and infertility by impairing decidualization, crucial for uterine receptivity.
- Senotherapeutics, including senolytics and senomorphics, are being developed to target cellular senescence.
Purpose of the Study:
- To compare the effects of various senotherapeutics on senescent endometrial stromal cells (eSCs) relevant to endometriosis.
- To identify optimal senotherapeutic compounds for potential clinical application in endometriosis and infertility.
Main Methods:
- Utilized menstrual effluent-derived eSCs to assess senotherapeutic efficacy.
- Evaluated flavonoid and non-flavonoid compounds for their impact on eSC function, decidualization, migration, and cytotoxicity.
- Investigated mechanistic pathways including AKT and p53 phosphorylation, and ERK1/2 phosphorylation.
Main Results:
- Flavonoid senolytics (quercetin, fisetin, luteolin) and kaempferol significantly improved decidualization without cytotoxicity.
- Dasatinib enhanced decidualization, while other non-flavonoids showed cytotoxicity.
- Flavonoids and dasatinib inhibited eSC migration, suppressed AKT phosphorylation, upregulated p53, and eliminated senescent eSCs. Quercetin and fisetin also reduced ERK1/2 phosphorylation.
Conclusions:
- Flavonoid senolytics and dasatinib demonstrate significant potential in improving eSC function and reducing senescence.
- Flavonoid senolytics, particularly quercetin and fisetin, are promising candidates for further in vivo studies to treat endometriosis and infertility.
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