Nitenpyram promotes breast cancer progression via PARP1: Integration of multi-omics analyses with experimental

Dongliang Yin1, Haoyu Qin2, Menglan Yan3

  • 1Affiliated Rehabilitation Hospital of Nanchang University, Nanchang, Jiangxi, China.

Insights

Nitenpyram (NIT), a common flea treatment, may promote cancer by disrupting immune cells and genetic stability. High doses of NIT significantly increase breast cancer cell proliferation, linked to PARP1 expression.

Area of Science:

  • Toxicology
  • Molecular Biology
  • Bioinformatics

Background:

  • Nitenpyram (NIT) is widely used for flea control in pets.
  • Previous studies suggest a potential link between NIT exposure and cancer, but underlying mechanisms remain unclear.

Purpose of the Study:

  • To investigate the carcinogenic mechanisms of Nitenpyram (NIT) using multi-platform bioinformatics and experimental approaches.
  • To identify key molecular targets and pathways involved in NIT-induced carcinogenesis.

Main Methods:

  • Integrated bioinformatics analysis, including protein-protein interaction (PPI) network construction and gene enrichment analysis.
  • Molecular docking to predict interactions between NIT and oncogenic proteins.
  • Single-cell transcriptomic analysis to determine gene expression in immune cells.
  • Cellular assays (protein quantification, colony formation) to validate findings in breast cancer models.

Main Results:

  • Identified 26 core genes associated with NIT exposure and mapped their cross-cancer expression profiles.
  • Molecular docking revealed potential interactions of NIT with KRAS, PARP1, KIT, ITGB1, EGFR, and CXCR4.
  • These genes are predominantly expressed in immune cells (T cells, B cells).
  • NIT exposure promoted breast cancer cell proliferation and increased PARP1 expression, with higher doses showing a more pronounced effect.

Conclusions:

  • Nitenpyram (NIT) may contribute to cancer development by compromising genetic stability and immune balance.
  • NIT directly interacts with key proteins involved in cell signaling and proliferation.
  • Experimental evidence confirms NIT promotes breast cancer cell proliferation, highlighting PARP1 as a potential mediator.

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