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March 29, 2026Results in Chemistry0 citationsOpen Access

Peptide nanomicelles for NIR light-dependent siRNA delivery

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THTaufik Fatwa Nur HakimMKMizuki KitamatsuSFShoumu Fujimoto

Key Points

  • The research aims to improve the delivery efficiency of siRNA using modified peptide nanomicelles for targeted cancer therapy.
  • Developed peptide amphiphile PA8 as a carrier for siRNA delivery.
  • Modified nanomicelles with photosensitizer DY750 and tumor-homing peptide iRGD.
  • Assessed RNAi efficiency in AsPC-1 pancreatic ductal adenocarcinoma and NCI-N87 gastric cancer cells.
  • Measured PLK1 mRNA levels as an indicator of RNAi efficacy.
  • PA8-DY750-iRGD nanomicelle complexes achieved an 80% reduction in PLK1 mRNA levels in AsPC-1 cells.
  • 28% knockdown of PLK1 mRNA was observed in NCI-N87 gastric cancer cells.
  • No RNAi effect was detected in noncancerous 1C3D3 pancreatic cells or HEK293T kidney cells, indicating selectivity.

Abstract

The peptide amphiphile PA8, derived from the GAVILRR peptide, was developed as a carrier for small interfering RNA (siRNA) delivery; however, its RNA interference (RNAi) efficacy was limited owing to predominant endocytotic uptake. In this study, the RNAi efficiency of PA8 nanomicelle/siRNA complexes was enhanced by modifying the nanomicelles with the photosensitizer DY750 and the tumor-homing peptide iRGD. The conjugation of DY750 to the nanomicelles facilitated endosomal escape of the nanomicelle/siRNA complexes, enabling the cytosolic release of siRNA. Additionally, the incorporation of iRGD improved RNAi delivery efficiency in the AsPC-1 pancreatic ductal adenocarcinoma cell line. PA8-DY750-iRGD nanomicelle complexes loaded with siRNA against polo-like kinase 1 (PLK1) achieved an 80% reduction in PLK1 mRNA levels in AsPC-1 cells and a moderate 28% knockdown in NCI-N87 gastric cancer cells. Notably, no RNAi effect was observed in noncancerous 1C3D3 pancreatic cells or HEK293T kidney cells, underscoring the selectivity of this system for AsPC-1 cells. These findings highlight the potential of PA8-DY750-iRGD nanomicelle complexes as a targeted therapeutic platform for specific cancers, particularly pancreatic cancer. • Photoresponsive peptide nanomicelles enable targeted siRNA delivery in cancer cells. • DY750 conjugation promotes light-triggered cytosolic siRNA delivery. • Tumor-homing peptide iRGD enhances RNAi efficiency in pancreatic cancer cells.

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Cite This Study

Hakim et al. (2026) studied this question.

synapsesocial.com/papers/69c8c115de0f0f753b39baa4https://doi.org/10.1016/j.rechem.2026.103265
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