Ovarian Cancer
The clearest apigenin signal in ovarian cancer is MCL-1-linked reversal of cisplatin resistance.
Why this cancer is a plausible fit
Ovarian cancer has one of the highest rates of cisplatin resistance among gynaecological malignancies. MCL-1 overexpression is one recognised resistance mechanism.
Apigenin’s ability to downregulate MCL-1, restore cisplatin sensitivity, and induce apoptosis in cisplatin-resistant ovarian cell lines gives it a clinically relevant angle here.
Cell data
Reported findings include:
inhibited proliferation and increased apoptosis in both cisplatin-sensitive (
SKOV3) and cisplatin-resistant (SKOV3/DPP) ovarian cancer cellsa specific resistance-reversal mechanism in
SKOV3/DPPcells linked toMCL-1downregulation, confirmed by PCR and Western blotaltered cell-cycle dynamics toward greater cisplatin-induced death when apigenin was combined with cisplatin
anti-metastatic effects in ovarian models involving
MMP9and Akt-related signalling
Animal data
Anti-metastatic effects have been confirmed in ovarian peritoneal metastasis models, with statistically significant reductions in metastatic nodule count.
Human data
No human oncology data exist.
Clinical positioning
This is clinically interesting because the MCL-1 and cisplatin-resistance mechanism is specific rather than generic.
Given ovarian cancer’s reliance on platinum-based therapy and its high resistance rate, the MCL-1 downregulation finding is more than theoretical. The evidence is still early, but mechanistically well-grounded.