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Statin-dye conjugates for selective targeting of KRAS mutant cancer cells
Hye-Ran Moon1,2, Zhenying Cai3, Bo Kyung Cho4
1School of Mechanical Engineering, Purdue University, West Lafayette, Indiana, United States of America.
Abstract:
Over 90% of pancreatic ductal adenocarcinoma (PDAC) patients involve KRAS mutations (KRASMUT), for which current treatment options are limited. Statins, commonly used to lower cholesterol, have demonstrated certain selective toxicity towards KRAS-transformed cells, prompting the question of whether statin-based conjugates could achieve selective uptake specifically in KRASMUT cells. To investigate this, we synthesized statin-dye conjugates by attaching a fluorescent dye (Cy5.5) to two statins: simvastatin and pravastatin, aiming to assess whether selective uptake indeed occurs. Our findings revealed that these conjugates exhibited markedly enhanced uptake in KRASMUT cells compared to KRAS wild-type (KRASWT) cells. We evaluated the uptake of these conjugates in both KRASMUT and KRASWT cells and examined their potential to selectively target KRASMUT pancreatic cancer cells (PCCs) using an engineered PDAC tumor model co-cultured with PCCs and cancer-associated fibroblasts (CAFs). Our findings indicate that KRASMUT cancer cells exhibited higher uptake of statin-Cy5.5 conjugates via enhanced macropinocytosis compared to KRASWT cancer cells and CAFs. We also found enhanced uptake of the statin-Cy5.5 conjugate in MCF10A cells with PTEN deficiency, a condition known to elevate macropinocytosis, compared to control MCF10A cells with wild-type PTEN. Notably, in the PCC and CAF co-culture model, the pravastatin-Cy5.5 conjugate selectively killed KRASMUT PCCs without affecting the KRASWT CAFs. These findings highlight the unique synergistic potential of statin-Cy5.5-distinct from either component alone-as targeted delivery vehicles for KRASMUT cancer therapy.
Insights
New statin-dye conjugates show selective uptake and killing of KRAS-mutant pancreatic cancer cells. This targeted approach offers a promising new therapy for KRAS-mutant pancreatic ductal adenocarcinoma (PDAC).
Area of Science:
- Oncology
- Molecular Biology
- Drug Delivery
Background:
- Pancreatic ductal adenocarcinoma (PDAC) frequently harbors KRAS mutations (KRASMUT), limiting treatment options.
- Statins exhibit selective toxicity towards KRAS-transformed cells, suggesting potential for targeted therapies.
Purpose of the Study:
- To synthesize and evaluate statin-dye conjugates for selective uptake and targeting of KRASMUT cells.
- To assess the therapeutic potential of these conjugates in a pancreatic cancer model.
Main Methods:
- Synthesis of simvastatin-Cy5.5 and pravastatin-Cy5.5 conjugates.
- Evaluation of conjugate uptake in KRASMUT and KRAS wild-type (KRASWT) cells and cancer-associated fibroblasts (CAFs).
- Assessment of conjugate-mediated cell killing in a co-culture PDAC model.
Main Results:
- Statin-dye conjugates demonstrated significantly enhanced uptake in KRASMUT cells compared to KRASWT cells.
- Uptake was mediated by macropinocytosis, further enhanced in PTEN-deficient cells.
- Pravastatin-Cy5.5 selectively killed KRASMUT pancreatic cancer cells without affecting KRASWT CAFs in a co-culture model.
Conclusions:
- Statin-dye conjugates are effective in selectively targeting and killing KRASMUT pancreatic cancer cells.
- These conjugates represent a novel, synergistic approach for KRASMUT cancer therapy.
- The findings support the development of statin-based conjugates for targeted delivery in KRASMUT PDAC.
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