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Polymalic Acid-based Nano Biopolymers for Targeting of Multiple Tumor Markers: An Opportunity for Personalized Medicine?
Published on: June 13, 2014
Design and Evaluation of a Folate-Targeted PEG-MMAE Conjugate with Enzyme-Activated Drug Release for Enhanced Tumor
Lizhe Bai1, Xuzhuo Li1, Chengyi Zuo2
1Shanghai Engineering Research Center of Molecular Therapeutics and New Drug Development, School of Chemistry and Molecular Engineering, East China Normal University, Shanghai 200062, China.
Abstract:
Polymer-drug conjugates hold significant promise for drug delivery applications. Water-soluble polymers prolong circulation, enhance solubility, reduce immunogenicity, and promote tumor accumulation via an enhanced permeability and retention effect. We first present the design and evaluation of an enzyme-activatable folate-targeted polyethylene glycol-monomethyl auristatin E conjugate. The folate-targeted conjugate 4A-BFA-11 maintains affinity for the folate receptor while achieving tumor enrichment through the synergistic effects of PEG-mediated prolonged circulation and folate-driven targeting. Subsequently, the conjugate undergoes enzymatic cleavage at the tumor site to release the active payload, enabling precise therapy. In vivo studies demonstrated that 4A-BFA-11, constructed using a folate-targeting strategy and a multiarm PEG carrier, effectively prolongs circulation time, improves tumor selectivity, and enhances antitumor efficacy. This strategy offers a novel approach for the efficient delivery of potent cytotoxic drugs through an enzyme-controlled activation mechanism, significantly broadening the therapeutic window while reducing systemic toxicity.
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