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Published on: December 23, 2016
Cationic Polypeptide Dendrimers with Concurrent Antibacterial and Anticancer Activities Depending on Topological
Yusheng Qian1, Xiangyu Lin2, Shuting Huang1
1School of Material Science and Engineering, Tongji University, 4800 Caoan Road, Shanghai 201804, China.
None:
Bacterial infections complicate cancer treatment, necessitating agents with concurrent antibacterial and anticancer activities. The rational design of host defense peptide (HDP) mimics that retain this dual efficacy via a membranolytic mechanism represents a critical challenge. In this study, two series of cationic polypeptide dendrimers (OrnGn and LysGn, n = 3-5) were constructed and the results demonstrated that their antimicrobial and antitumor efficacy exhibits significant dependence on dendrimer generations and interior size. Among all products, LysG5 exhibited the best antitumor activity (IC50 = 64 μg/mL) and considerable antibacterial activity (MIC = 16 μg/mL). Membrane morphology analysis revealed that increasing dendrimer generations induced expansive membranolytic domains, whereas larger interior sizes potentiated the membrane penetration depth. Further, LysG5 suppressed tumor progression in vivo (64% reduction in tumor weight, p < 0.001) with negligible damage to healthy tissues. Overall, constructing HDP mimics with optimal dendrimer topology structure is a promising strategy to resolve challenges in the concurrent treatment of bacteria and tumors.

