Targeted siRNA lipid nanoparticles for the treatment of KRAS-mutant tumors
Shubaash Anthiya1, Süleyman Can Öztürk2, Hamdullah Yanik3
1Center for Research in Molecular Medicine and Chronic Diseases (CIMUS), Universidade de Santiago de Compostela, Santiago de Compostela 15782, Spain.
Abstract:
K-RAS is a highly relevant oncogene that is mutated in approximately 90% of pancreatic cancers and 20-25% of lung adenocarcinomas. The aim of this work was to develop a new anti-KRAS siRNA therapeutic strategy through the engineering of functionalized lipid nanoparticles (LNPs). To do this, first, a potent pan anti-KRAS siRNA sequence was chosen from the literature and different chemical modifications of siRNA were tested for their transfection efficacy (KRAS knockdown) and anti-proliferative effects on various cancer cell lines. Second, a selected siRNA candidate was loaded into tLyp-1 targeted and non-targeted lipid nanoparticles (LNPs). The biodistribution and antitumoral efficacy of selected siRNA-loaded LNP-prototypes were evaluated in vivo using a pancreatic cancer murine model (subcutaneous xenograft CFPAC-1 tumors). Our results show that tLyp-1-tagged targeted LNPs have an enhanced accumulation in the tumor compared to non-targeted LNPs. Moreover, a significant reduction in the pancreatic tumor growth was observed when the anti-KRAS siRNA treatment was combined with a classical chemotherapeutic agent, gemcitabine. In conclusion, our work demonstrates the benefits of using a targeting approach to improve tumor accumulation of siRNA-LNPs and its positive impact on tumor reduction.
Insights
This study developed targeted lipid nanoparticles (LNPs) delivering anti-KRAS siRNA to effectively reduce pancreatic tumor growth. Combining targeted siRNA-LNPs with gemcitabine chemotherapy significantly enhanced anti-tumor efficacy.
Area of Science:
- Oncology
- Nanomedicine
- Molecular Biology
Background:
- K-RAS is a critical oncogene frequently mutated in pancreatic and lung cancers.
- Developing effective KRAS-targeted therapies remains a significant challenge in cancer treatment.
Purpose of the Study:
- To engineer functionalized lipid nanoparticles (LNPs) for a novel anti-KRAS siRNA therapeutic strategy.
- To evaluate the efficacy of targeted siRNA-LNPs in reducing tumor growth in vivo.
Main Methods:
- Selected a potent pan anti-KRAS siRNA and tested chemical modifications for efficacy.
- Loaded siRNA into tLyp-1 targeted and non-targeted LNPs.
- Assessed biodistribution and antitumoral efficacy in a pancreatic cancer murine model.
Main Results:
- tLyp-1 targeted LNPs showed enhanced accumulation in pancreatic tumors compared to non-targeted LNPs.
- Significant reduction in pancreatic tumor growth was observed with combined anti-KRAS siRNA and gemcitabine treatment.
Conclusions:
- Targeting approaches improve tumor accumulation of siRNA-LNPs.
- Targeted siRNA-LNPs combined with chemotherapy demonstrate significant potential for pancreatic cancer treatment.
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