Chemosensitivity and chemoresistance in endometriosis - differences for ectopic versus eutopic cells
Darja Lavogina,
Lavogina D,
Külli Samuel,
Samuel K,
Lavrits A,
Arina Lavrits,
Alvin Meltsov,
Meltsov A,
Deniss Sõritsa,
Sõritsa D,
Ülle Kadastik,
Kadastik Ü,
Maire Peters,
Rinken A,
Ago Rinken,
Salumets A,
Andres Salumets
other
OA: green
public-domain-us
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by gemini-2.5-flash-lite, 2026-06-08
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This study found doxorubicin more effectively killed ectopic endometriosis cells than eutopic cells, suggesting metabolic reprogramming underlies differential toxin sensitivity and potential therapeutic targeting of ectopic lesions.
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by claude@2026-06, 2026-06-09
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I can’t access the paper’s content from the text provided because the page is blocked by an anti-scraping mechanism (“Anubis”) that prevents loading the actual study details. The available snippet contains no information about the study population, methods, results, or limitations, so a true 2–4 sentence research summary isn’t possible from this input alone. The paper title suggests it may compare chemosensitivity/chemoresistance between ectopic and eutopic endometrial cells, but those claims can’t be verified without the full text. This paper is centrally about endometriosis — it appears to focus on differences in chemosensitivity and chemoresistance between ectopic versus eutopic cells in endometriosis.
Abstract
RESEARCH QUESTION: Endometriosis is a common gynaecological disease defined by the presence of endometrium-like tissue outside the uterus. This complex disease, often accompanied by severe pain and infertility, causes a significant medical and socioeconomic burden; hence, novel strategies are being sought for the treatment of endometriosis. Here, we set out to explore the cytotoxic effects of a panel of compounds to find toxins with different efficiency in eutopic versus ectopic cells, thus highlighting alterations in the corresponding molecular pathways.
DESIGN: The effect on cellular viability of 14 compounds was established in a cohort of paired eutopic and ectopic endometrial stromal cell samples from 11 patients. The biological targets covered by the panel included pro-survival enzymes, cytoskeleton proteins, the proteasome and the cell repair machinery.
RESULTS: Protein kinase inhibitors GSK690693, ARC-775 and sorafenib, proteasome inhibitor bortezomib, and microtubule-depolymerizing toxin monomethyl auristatin E were more effective in eutopic cells. In contrast, 10 µmol/l of the anthracycline toxin doxorubicin caused cellular death in ectopic cells more effectively than in eutopic cells. The large-scale sequencing of mRNA isolated from doxorubicin-treated and control cells indicated different survival strategies in eutopic versus ectopic endometrium.
CONCLUSIONS: Overall, the results confirm evidence of large-scale metabolic reprogramming in endometriotic cells, which underlies the observed differences in sensitivity towards toxins. The enhanced efficiency of doxorubicin interfering with redox equilibria and/or DNA repair mechanisms pinpoints key players that can be potentially used to selectively target ectopic lesions in endometriosis.
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Condition tags
endometriosisinfertility
MeSH descriptors
Drug Resistance
Endometriosis
Endometrium
Endometrium
Peritoneal Diseases
Adult
Aminobenzoates
Aminobenzoates
Apoptosis
Apoptosis
Apoptosis
Caspase 3
Caspase 3
Caspase 3
Cells, Cultured
Cell Survival
Cell Survival
Doxorubicin
Doxorubicin
Drug Resistance
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Source provenance
- europepmc
- last seen: 2026-10-02T06:17:20.788884+00:00
- pubmed
- last seen: 2026-05-13T22:22:35.348889+00:00
- unpaywall
- last seen: 2026-05-14T19:30:52.867331+00:00
License: public-domain-us
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Courtesy of the U.S. National Library of Medicine