Peritoneal restoration by repurposing vitamin D inhibits ovarian cancer dissemination via blockade of the TGF-β1/thrombospondin-1 axis
article
OA: hybrid
CC0
AI-generated summary
Vitamin D restored mesothelial cells and suppressed ovarian cancer peritoneal dissemination by blocking the TGF-β1/thrombospondin-1 axis.
One-sentence paraphrase of the abstract; not a substitute for reading it. No clinical advice. How this works
Abstract
Ovarian cancer (OvCa), a lethal gynecological malignancy, disseminates to the peritoneum. Mesothelial cells (MCs) act as barriers in the abdominal cavity, preventing the adhesion of cancer cells. However, in patients with OvCa, they are transformed into cancer-associated mesothelial cells (CAMs) via mesenchymal transition and form a favorable microenvironment for tumors to promote metastasis. However, attempts for restoring CAMs to their original state have been limited. Here, we investigated whether inhibition of mesenchymal transition and restoration of MCs by vitamin D suppressed the OvCa dissemination in vitro and in vivo. The effect of vitamin D on the mutual association of MCs and OvCa cells was evaluated using in vitro coculture models and in vivo using a xenograft model. Vitamin D restored the CAMs, and thrombospondin-1 (component of the extracellular matrix that is clinically associated with poor prognosis and is highly expressed in peritoneally metastasized OvCa) was found to promote OvCa cell adhesion and proliferation. Mechanistically, TGF-β1 secreted from OvCa cells enhanced thrombospondin-1 expression in CAMs via Smad-dependent TGF-β signaling. Vitamin D inhibited mesenchymal transition in MCs and suppressed thrombospondin-1 expression via vitamin D receptor/Smad3 competition, contributing to the marked reduction in peritoneal dissemination in vivo. Importantly, vitamin D restored CAMs from a stabilized mesenchymal state to the epithelial state and normalized thrombospondin-1 expression in preclinical models that mimic cancerous peritonitis in vivo. MCs are key players in OvCa dissemination and peritoneal restoration and normalization of thrombospondin-1 expression by vitamin D may be a novel strategy for preventing OvCa dissemination.
My notes (saved in your browser only)
Citation neighborhood (no data yet)
We don't have any in-corpus citations linked to this paper yet. The paper's references may be in our DB but unresolved to ``paper_id`` (resolution happens at ingest when the cited DOI matches a row we already have). Run the cross-source citation reconcile pass to retry.
References (65)
- W1488288160 via openalex
- W1748201400 via openalex
- W1964847767 via openalex
- W1984041567 via openalex
- W1988293590 via openalex
- W2006211642 via openalex
- W2014974546 via openalex
- W2016347137 via openalex
- W2020994990 via openalex
- W2038177382 via openalex
- W2042633087 via openalex
- W2049343601 via openalex
- W2061260593 via openalex
- W2065019315 via openalex
- W2081471836 via openalex
- W2100338092 via openalex
- W2102306754 via openalex
- W2117814548 via openalex
- W2124070987 via openalex
- W2133056134 via openalex
- W2137217704 via openalex
- W2143017330 via openalex
- W2144378498 via openalex
- W2147932132 via openalex
- W2153059487 via openalex
- W2172237567 via openalex
- W2293238893 via openalex
- W2296024371 via openalex
- W2339192674 via openalex
- W2512899508 via openalex
- W2565094175 via openalex
- W2592660965 via openalex
- W2594569109 via openalex
- W2779950914 via openalex
- W2884203872 via openalex
- W2885601942 via openalex
- W2890611687 via openalex
- W2897341014 via openalex
- W2898478773 via openalex
- W2898579429 via openalex
- W2900310474 via openalex
- W2902121304 via openalex
- W2912430999 via openalex
- W2916365527 via openalex
- W2917523920 via openalex
- W2942537534 via openalex
- W2949645446 via openalex
- W2949802883 via openalex
- W2954001134 via openalex
- W2964849163 via openalex
- W2967458352 via openalex
- W2969959193 via openalex
- W2974532703 via openalex
- W2975141952 via openalex
- W2982433954 via openalex
- W2995527562 via openalex
- W2999986665 via openalex
- W3017637255 via openalex
- W3119005666 via openalex
- W3193292905 via openalex
- W4205297248 via openalex
- W6680085530 via openalex
- W6680738791 via openalex
- W6745853655 via openalex
- W6800200476 via openalex
Source provenance
- openalex
- last seen: 2026-06-10T17:14:06.276822+00:00
License: CC0
· commercial use OK