Nanocarriers engineering for efficient NSUN2 silencing and immune responsive therapy in metastatic colorectal cancer

Kamran Ali1, Yang Li2, Qiuchen Bi2

  • 1Department of Surgery, The Fourth Affiliated Hospital of School of Medicine and International School of Medicine, International Institutes of Medicine, Zhejiang University, Yiwu, 322000, China.

Insights

Researchers developed targeted nanoparticles to deliver siRNA, silencing NSUN2 in colorectal cancer (CRC). This approach inhibits cancer migration and metastasis, showing promise for treating advanced CRC, especially when combined with immune checkpoint inhibitors.

Area of Science:

  • Nanomedicine and Drug Delivery
  • Cancer Biology and Epigenetics
  • Immunotherapy

Background:

  • Colorectal cancer (CRC) poses a significant global health challenge due to therapeutic resistance and poor drug delivery.
  • NSUN2, an RNA methyltransferase, is implicated in CRC progression and immune evasion.
  • Targeted delivery of RNA interference (RNAi) agents is crucial for overcoming CRC treatment limitations.

Purpose of the Study:

  • To develop a biocompatible, tumor-targeted nanoparticle platform for siRNA delivery.
  • To silence the NSUN2 gene in colorectal cancer cells and evaluate its therapeutic potential.
  • To assess the efficacy of combination therapy involving NSUN2 silencing and PD-L1 blockade in metastatic CRC models.

Main Methods:

  • Engineered poly (lactic acid) (PLA)-based nanoparticles functionalized with RGD and KA26 peptides for tumor targeting and cellular uptake.
  • Characterized the physicochemical properties (size, charge, stability) of the PLA-RGD-KA26-siRNA nanocomplexes (PRR).
  • Evaluated in vitro NSUN2 knockdown, cancer cell migration inhibition, and cytotoxicity.
  • Assessed in vivo therapeutic efficacy in a CT-26 lung metastasis mouse model, including combination therapy with PD-L1 blockade (PRRP).

Main Results:

  • PRR nanoparticles demonstrated optimal nanoscale dimensions, positive surface charge, and stability.
  • In vitro studies showed enhanced cellular uptake, efficient NSUN2 knockdown, and inhibited cancer cell migration with low normal cell toxicity.
  • In vivo administration led to preferential accumulation in metastatic lesions, potent NSUN2 silencing, and significant lung tumor regression.
  • PRRP combination therapy synergistically suppressed metastasis, increased T-cell infiltration, reduced proliferation, and enhanced apoptosis without toxicity.

Conclusions:

  • The developed tumor-targeted RNA delivery system effectively silences NSUN2, modulating epigenetic pathways in CRC.
  • This platform shows significant potential for treating metastatic CRC by combining RNA-based epigenetic regulation with immune checkpoint inhibition.
  • The PRRP combination therapy offers a promising strategy for enhancing antitumor immune activity and overcoming therapeutic resistance in metastatic CRC.