Smart exosomes enhance PDAC targeted therapy.

智能外泌体增强胰腺癌靶向治疗

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作者:Creeden Justin F, Sevier Jonathan, Zhang Jian-Ting, Lapitsky Yakov, Brunicardi F Charles, Jin Ge, Nemunaitis John, Liu Jing-Yuan, Kalinoski Andrea, Rao Donald, Liu Shi-He
Exosomes continue to attract interest as a promising nanocarrier drug delivery technology. They are naturally derived nanoscale extracellular vesicles with innate properties well suited to shuttle proteins, lipids, and nucleic acids between cells. Nonetheless, their clinical utility is currently limited by several major challenges, such as their inability to target tumor cells and a high proportion of clearance by the mononuclear phagocyte system (MPS) of the liver and spleen. To overcome these limitations, we developed "Smart Exosomes" that co-display RGD and CD47(p110-130) through CD9 engineering (Exo(Smart)). The resultant Exo(Smart) demonstrates enhanced binding capacity to αvβ3 on pancreatic ductal adenocarcinoma (PDAC) cells, resulting in amplified cellular uptake in in vitro and in vivo models and increased chemotherapeutic efficacies. Simultaneously, Exo(Smart) significantly reduced liver and spleen clearance of exosomes by inhibiting macrophage phagocytosis via CD47(p110-130) interaction with signal regulatory proteins (SIRPα) on macrophages. These studies demonstrate that an engineered exosome drug delivery system increases PDAC therapeutic efficacy by enhancing active PDAC targeting and prolonging circulation times, and their findings hold tremendous translational potential for cancer therapy while providing a concrete foundation for future work utilizing novel peptide-engineered exosome strategies.

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