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April 5, 2026Cancer Research0 citations

Abstract 5691: Per and polyfluoroalkyl substances (PFAS) promote proliferation and migration in genetically distinct kidney cancer cell lines

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RARakesh AryaMSMia SandSDSahab Ram Dewala

Key Points

  • To investigate the effects of PFAS on cell proliferation and migration in kidney cancer models.
  • Used RCC-ER and Renca kidney cancer cell lines
  • Exposed cells to GenX, PFOA, and PFOS at concentrations of 0.5-40 nM
  • Monitored proliferation using IncuCyte S3 over 72 hours
  • Assessed migration via wound healing assays and measured wound closure
  • PFAS significantly increased proliferation and migration in both cell lines
  • RenCa cells showed strong responses to GenX and PFOS, while PFOA was cytotoxic
  • RCC-ER cells proliferated maximally at 40 nM for PFOA
  • All compounds accelerated wound closure, indicating enhanced migration

Abstract

Abstract Introduction and Objectives: Per- and polyfluoroalkyl substances (PFAS) such as GenX, PFOA, and PFOS are persistent environmental pollutants increasingly associated with renal carcinogenesis. Their direct effects on kidney cancer progression remain unclear. This study investigated whether PFAS exposure enhances proliferation and migration in two genetically distinct kidney cancer models-human RCC-ER (VHL-mutant) and murine Renca (VHL-wild type). Methods: RCC-ER and Renca cells were treated with GenX, PFOA, or PFOS at physiologically relevant concentrations (0.5-40 nM). Proliferation was monitored over 72 h using the IncuCyte S3 system. Migration was assessed in ImageLock plates, where wounds were created after 24 h and imaged every 1.5 h for 72 h. Wound closure was quantified by percentage wound closure (WC) and relative wound density (RWD) using IncuCyte software. All experiments were performed in triplicate to assess dose dependency and statistical significance. Results: PFAS exposure significantly enhanced both proliferation and migration in kidney cancer cells, with compound- and cell line-specific variations. RenCa cells exhibited strong proliferative responses to GenX and PFOS from 0.5-20 nM, peaking at 5 nM respectively, while PFOA showed cytotoxic effects at these doses. In contrast, RCC-ER cells demonstrated increased proliferation in response to PFOA (max at 40 nM) and PFOS (max at 5 nM), whereas GenX had minimal effect on proliferation at low doses. All three PFAS markedly accelerated wound closure and relative wound density in both cell lines, indicating enhanced migratory potential. Collectively, these data reveal that PFAS compounds augment pro-oncogenic behaviors across human and murine kidney cancer models. Conclusion: PFAS compounds promote proliferative and migratory phenotypes in both murine and human kidney cancer models through distinct but convergent metabolic mechanisms. The conserved effects across VHL-wild-type and VHL-mutant systems underscore PFAS as a potential environmental accelerator of renal tumor progression and justify further mechanistic and translational studies. Citation Format: Rakesh Kumar Arya, Mia Sand, Sahab Ram Dewala, Can Aydogdu, Gabriela M. Diaz, Christopher Weight, Riccardo Autorino, Abhishek Chakraborty, Jacob M. Knorr, Joseph M. Irudayaraj, Laura Bukavina. Per and polyfluoroalkyl substances (PFAS) promote proliferation and migration in genetically distinct kidney cancer cell lines abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 5691.

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Arya et al. (2026) studied this question.

synapsesocial.com/papers/69d1fde4a79560c99a0a4451https://doi.org/10.1158/1538-7445.am2026-5691
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