4.7 Article

In Vivo Follow-Up of Gene Inhibition in Solid Tumors Using Peptide-Based Nanoparticles for siRNA Delivery

期刊

PHARMACEUTICS
卷 13, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics13050749

关键词

cancer therapy; siRNA; gene silencing; peptide-based nanoparticles; optical imaging

资金

  1. Fondation de la Recherche Medicale [DBS 20140930769]
  2. Labex TRAIL [ANR-10-LABX-57]
  3. France Life Imaging [ANR-11-INBS-006]
  4. Fondation ARC pour la Recherche sur le Cancer [PJA20171206171]
  5. Ligue Nationale contre le Cancer (Comite Aquitaine)

向作者/读者索取更多资源

The study demonstrates the in vivo efficiency of WRAP5:siRNA nanoparticles delivering siRNA to cancer cells in solid tumors, achieving specific gene silencing through RNA interference and significantly downregulating the expression of firefly luciferase, with no toxicity and sustained presence in the tumor for at least 10 days.
Small interfering RNA (siRNA) exhibits a high degree of specificity for targeting selected genes. They are efficient on cells in vitro, but in vivo siRNA therapy remains a challenge for solid tumor treatment as siRNAs display difficulty reaching their intracellular target. The present study was designed to show the in vivo efficiency of a new peptide (WRAP5), able to form peptide-based nanoparticles (PBN) that can deliver siRNA to cancer cells in solid tumors. WRAP5:siRNA nanoparticles targeting firefly luciferase (Fluc) were formulated and assayed on Fluc-expressing U87 glioblastoma cells. The mode of action of WRAP5:siRNA by RNA interference was first confirmed in vitro and then investigated in vivo using a combination of bioluminescent reporter genes. Finally, histological analyses were performed to elucidate the cell specificity of this PBN in the context of brain tumors. In vitro and in vivo results showed efficient knock-down of Fluc expression with no toxicity. WRAP5:siFluc remained in the tumor for at least 10 days in vivo. Messenger RNA (mRNA) analyses indicated a specific decrease in Fluc mRNA without affecting tumor growth. Histological studies identified PBN accumulation in the cytoplasm of tumor cells but also in glial and neuronal cells. Through in vivo molecular imaging, our findings established the proof of concept for specific gene silencing in solid tumors. The evidence generated could be translated into therapy for any specific gene in different types of tumors without cell type specificity but with high molecular specificity.

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