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用于按需给药和有效联合治疗的儿茶酚-金属配位介导的纳米复合水凝胶

Catechol-metal coordination-mediated nanocomposite hydrogels for on-demand drug delivery and efficacious combination therapy.

作者信息

Dai Guoru, Sun Lu, Xu Jing, Zhao Guizhen, Tan Zheng, Wang Chen, Sun Xiaolian, Xu Keming, Zhong Wenying

机构信息

Department of Chemistry, China Pharmaceutical University, Nanjing 210009, China.

Key Laboratory of Drug Quality Control and Pharmacovigilance, China Pharmaceutical University, Nanjing 210009, China; State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing 210009, China; Department of Pharmaceutical Analysis, China Pharmaceutical University, Nanjing 210009, China.

出版信息

Acta Biomater. 2021 Jul 15;129:84-95. doi: 10.1016/j.actbio.2021.05.006. Epub 2021 May 16.

Abstract

Hydrogels have drawn considerable attention in the field of drug delivery, yet their poor mechanical strength and uncontrollable drug release behavior have hindered further applications in clinical practice. Taking utility of metal-ligand coordination for structurally reinforcing the hydrogel network, we report design and synthesis of magnetic nanocomposite hydrogels (HA-DOPA·MNPs) that are crosslinked by DOPA-Fe(III) coordination existing between dopamine-conjugated hyaluronan (HA-DOPA) and iron oxide magnetic nanoparticles (MNPs). The MNPs in the nanocomposite hydrogel not only serve as structural crosslinkers, but also facilitate magnetic hyperthermia and on-demand release of doxorubicin (DOX) in HA-DOPA·MNPs/DOX hydrogels, for release rate of DOX accelerates when external alternating magnetic field (AMF) is ON, and it restores to a slow pace when AMF is OFF. Importantly, HA-DOPA·MNPs/DOX hydrogel shows a longer retention time than HA-DOPA/DOX gel or DOX solution in vivo. Further experiments confirm the efficacious anticancer potency of HA-DOPA·MNPs/DOX in vitro and in vivo, that is mediated by a combination therapy consisting of chemotherapy (DOX) and hyperthermia (MNPs). In contrast, single-modality treatment (DOX or hyperthermia only) fails to show an equivalent efficacy at the same dose. STATEMENT OF SIGNIFICANCE: This study reports the design of a class of magnetic nanocomposite hydrogel (HA-DOPA·MNPs) that was structurally reinforced by DOPA-Fe (III) coordination between HA-DOPA and iron oxide MNPs. On one hand, MNPs served as crosslinking centers for structurally reinforcing the nanocomposite hydrogel; on the other hand, MNPs facilitated temperature rise under an external MNPs, which prompted on-demand drug release as well as a combination therapy. Comparing to single modality treatment (chemotherapy or hyperthermia alone), the HA-DOPA·MNPs/DOX formulation with AMF demonstrated better efficacy against proliferation of tumor cells (A375) both in vitro and in vivo. We believe that design of HA-DOPA·MNPs/DOX hydrogel in this report provides a general approach to fabricate structurally-reinforced nanocomposite hydrogels for on-demand drug delivery and efficacious combination therapy.

摘要

水凝胶在药物递送领域引起了广泛关注,然而其较差的机械强度和不可控的药物释放行为阻碍了其在临床实践中的进一步应用。利用金属-配体配位作用对水凝胶网络进行结构增强,我们报道了磁性纳米复合水凝胶(HA-DOPA·MNPs)的设计与合成,该水凝胶通过多巴胺共轭透明质酸(HA-DOPA)与氧化铁磁性纳米颗粒(MNPs)之间存在的DOPA-Fe(III)配位交联而成。纳米复合水凝胶中的MNPs不仅作为结构交联剂,还促进了HA-DOPA·MNPs/DOX水凝胶中阿霉素(DOX)的磁热疗和按需释放,因为当外部交变磁场(AMF)开启时,DOX的释放速率加快,而当AMF关闭时,释放速率恢复到缓慢状态。重要的是,HA-DOPA·MNPs/DOX水凝胶在体内的保留时间比HA-DOPA/DOX凝胶或DOX溶液更长。进一步的实验证实了HA-DOPA·MNPs/DOX在体外和体内具有有效的抗癌效力,这是由化疗(DOX)和热疗(MNPs)组成的联合疗法介导的。相比之下,单模态治疗(仅DOX或仅热疗)在相同剂量下未能显示出同等疗效。重要意义声明:本研究报道了一类磁性纳米复合水凝胶(HA-DOPA·MNPs)的设计,该水凝胶通过HA-DOPA与氧化铁MNPs之间的DOPA-Fe(III)配位进行结构增强。一方面,MNPs作为交联中心对纳米复合水凝胶进行结构增强;另一方面,MNPs在外部磁场作用下促进温度升高,从而实现按需药物释放以及联合治疗。与单模态治疗(单独化疗或热疗)相比,具有AMF的HA-DOPA·MNPs/DOX制剂在体外和体内对肿瘤细胞(A375)增殖的抑制效果更好。我们相信,本报告中HA-DOPA·MNPs/DOX水凝胶的设计为制造用于按需药物递送和有效联合治疗的结构增强纳米复合水凝胶提供了一种通用方法。

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