Andrade-Gagnon Brandon, Bélanger-Bouliga Marilyne, Trang Nguyen Phuong, Nguyen Thi Hong Diep, Bourgault Steve, Nazemi Ali
Department of Chemistry, Université du Québec à Montréal, C.P.8888, Succursale Centre-Ville, Montréal, QC H3C 3P8, Canada.
Nanomaterials (Basel). 2021 Jan 10;11(1):161. doi: 10.3390/nano11010161.
Polymeric nanomaterials that degrade in acidic environments have gained considerable attention in nanomedicine for intracellular drug delivery and cancer therapy. Among various acid-degradable linkages, spirocyclic acetals have rarely been used to fabricate such vehicles. In addition to acid sensitivity, they benefit from conformational rigidity that is otherwise not attainable by their non-spirocyclic analogs. Herein, amphiphilic spirocyclic polyacetals are synthesized by Cu-catalyzed alkyne-azide "click" polymerization. Unlike conventional block copolymers, which often form core-shell structures, these polymers self-assemble to form core amphiphilic assemblies capable of encapsulating Nile red as a hydrophobic model drug. In vitro experiments show that while release from these materials can occur at neutral pH with preservation of their integrity, acidic pH accelerates efficient cargo release and leads to the complete degradation of assemblies. Moreover, cellular assays reveal that these materials are fully cytocompatible, interact with the plasma membrane, and can be internalized by cells, rendering them as potential candidates for cancer therapy and/or drug delivery.
在纳米医学中,用于细胞内药物递送和癌症治疗的、可在酸性环境中降解的聚合物纳米材料已受到广泛关注。在各种酸可降解连接键中,螺环缩醛很少用于制备此类载体。除了对酸敏感外,它们还具有构象刚性,这是其非螺环类似物所不具备的。在此,通过铜催化的炔烃-叠氮化物“点击”聚合反应合成了两亲性螺环聚缩醛。与通常形成核壳结构的传统嵌段共聚物不同,这些聚合物自组装形成能够包封尼罗红作为疏水模型药物的核两亲性组装体。体外实验表明,虽然这些材料在中性pH下可发生释放并保持其完整性,但酸性pH会加速有效药物释放并导致组装体完全降解。此外,细胞实验表明这些材料具有完全的细胞相容性,与质膜相互作用,并可被细胞内化,使其成为癌症治疗和/或药物递送的潜在候选物。