Video Experimental Relacionado
Updated: Jan 8, 2026

Microwave-assisted Functionalization of Polyethylene glycol and On-resin Peptides for Use in Chain Polymerizations and Hydrogel Formation
Published on: October 29, 2013
Polímeros hiperramificados vs. lineales de poli(β-amino éster): la topología del polímero y la hidrofilicidad de los
Xingyue Wang1,2,3, Ailin Hu1, Miao Wei1,2,3
1Institute of Precision Medicine (AUST-IPM), Anhui University of Science and Technology, Huainan 232001, China.
Abstract:
Poly(β-amino ester)s (PBAEs) are widely employed as nonviral vectors due to their facile synthesis, biodegradability, and strong transfection performance. However, their degradation behaviors and delivery efficiencies vary substantially with structural features. This study compared hyperbranched and linear PBAEs with different end-capping groups to investigate how polymer structure influences biodegradation and gene delivery. Experimental results indicated that hyperbranched PBAEs (HPAEs) exhibited slower degradation kinetics than their linear analogues (LPAEs). HPAE/DNA nanoparticles maintained stronger DNA retention and achieved higher initial transfection, whereas the more rapidly degrading LPAEs released DNA earlier, resulting in a sustained yet lower expression profile. All PBAEs underwent complete degradation within 24 h. Both architectures were noncytotoxic in vitro, and HPAEs further exhibited negligible systemic toxicity in vivo, confirming their favorable biocompatibility. Together, these findings delineate a clearer relationship between polymer structure, stability, and delivery efficiency in HPAE/LPAE systems, thereby informing the design of next-generation PBAE vectors.
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