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Molecular Cancer Therapeutics· 2026Q1

Inhibition of PLK1 helps to restrict c-Met-induced growth and therapeutic resistance of renal cancer cells

Soumitro Pal, Laxminarayan Rawat, Chander Prakash, Yuzuru Sasamoto et al.

Short summary

Combining cabozantinib (cabo) with a PLK1 inhibitor (onvansertib) induces dual-phase cell cycle arrest, impairs migration, and promotes apoptosis in renal cancer cells by down-regulating Nrf2/HO-1 and inducing oxidative stress, overcoming c-Met-induced therapeutic resistance.

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Key points

  • PLK1 activation by c-Met promotes renal cancer cell growth and proliferation.
  • Combined treatment with cabozantinib and onvansertib induces dual-phase cell cycle arrest (G1 and G2/M) and impairs RCC cell migration.
  • The combination down-regulates Nrf2/HO-1, induces oxidative stress, and promotes tumor cell apoptosis.
  • Onvansertib resensitizes cabozantinib-resistant RCC cells by downregulating ABC transporters.
  • Combination treatment demonstrated efficacy in 3D spheroid and in vivo tumor xenograft models.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Acquired therapeutic resistance is a major problem in the treatment of advanced renal cell carcinoma (RCC). The receptor tyrosine kinase (RTK) c-Met is hyperactive in RCC and plays a major role in the survival of tumor cells during therapy-induced oxidative stress. Although c-Met/RTK inhibitor, cabozantinib (cabo), has demonstrated efficacy in the treatment of RCC, therapeutic resistance significantly restricts its effectiveness. Thus, new target molecules and combination therapies need to be explored. Among several cell cycle regulators, Polo-like kinase 1 (PLK1), which is overexpressed in RCC, can play a vital role in cancer progression. In this study, for the first time, we show that the activation of c-Met markedly promotes renal cancer cell growth and proliferation through PLK1. We found that a novel combination treatment with cabo and a PLK1 inhibitor (onvansertib) induces dual-phase cell cycle arrest at both G1 and G2/M checkpoints and impairs RCC cell migration. It induces tumor cell apoptosis by down-regulating the anti-oxidant transcription factor/cytoprotective molecule, Nrf2/HO-1, and inducing oxidative stress. Our results also showed that onvansertib can downregulate ABC transporters that are involved in drug resistance, and it resensitizes cabo-resistant RCC cells to apoptotic cell death. We further confirmed the effectiveness of the combination treatment through 3D spheroid culture as well as tumor xenograft models of RCC. Following combination treatment, there was increased drug-induced cytotoxicity, and markedly reduced tumor growth in vivo. Together, our pre-clinical study identifies that cabo + onvansertib is an effective combination treatment to overcome c-Met-induced therapeutic resistance in RCC with translational potential.

The authors' abstract, as published at the source. Molecular Cancer Therapeutics, 2026 · DOI ↗

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Field: Hepatology

HepatologyMedicine