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一种多功能气体发生器,可促进药物释放和补充氧气,从而增强光动力 - 化学协同抗肿瘤效应。

A versatile gas-generator promoting drug release and oxygen replenishment for amplifying photodynamic-chemotherapy synergetic anti-tumor effects.

机构信息

Department of Pharmaceutics, School of Pharmacy, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang, Liaoning Province 110016, PR China.

Department of Pharmaceutics, School of Pharmacy, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang, Liaoning Province 110016, PR China.

出版信息

Biomaterials. 2021 Sep;276:120985. doi: 10.1016/j.biomaterials.2021.120985. Epub 2021 Jun 29.

Abstract

Excellent efficiency of combinational therapy of chemotherapy and photodynamic therapy (PDT) highly depends on the amounts of drug and oxygen in tumor tissue. However, how to cleverly promote drug release accompanied with improving oxygen concentration remains a challenge. Herein, we proposed a gas-generator that realized a high drug loading and integrated facilitation of drug release with oxygen replenishment into a single and simple system, utilizing huge cavities and mesoporous channels of hollow mesoporous silica nanoparticles (HMSNs) for encapsulating oxygen (O) saturated perfluoropentane (PFP) droplets, indocyanine green (ICG) and doxorubicin (DOX), biocompatible polydopamine (PDA) as the gatekeepers. Under irradiation of 808 nm laser, the thermal effect of PDA caused PFP droplets occur liquid-gas phase transition that triggered the burst release of DOX and O, finally amplifying the synergetic effects of PDT and chemotherapy both in vitro and in vivo. The influence of PFP, GSH and laser on drug release kinetic was explored through mathematical models. Notably, the mechanism of gas-generator on accelerating drug release under irradiation based on doing volume work and enhancing diffusion coefficient was clarified by researching the relation between DOX release, PFP release and temperature change. Additionally, the way of replenishing O did not rely on intracellular components but timely offered abundant "fuels" for producing reactive oxygen species (ROS) when compared with traditional manners. This work provides a new research strategy for boosting drug release and opens an avenue for constructing multifunctional controlled delivery systems.

摘要

化疗和光动力疗法(PDT)联合治疗的高效性高度依赖于肿瘤组织中的药物和氧气含量。然而,如何巧妙地促进药物释放同时提高氧浓度仍然是一个挑战。在这里,我们提出了一种气体发生器,它实现了高药物负载,并将药物释放与氧气补充集成到一个简单的系统中,利用中空介孔硅纳米粒子(HMSNs)的巨大空腔和介孔通道来封装氧(O)饱和全氟戊烷(PFP)液滴、吲哚菁绿(ICG)和阿霉素(DOX),生物相容性的聚多巴胺(PDA)作为守门员。在 808nm 激光照射下,PDA 的热效应导致 PFP 液滴发生液-气相转变,触发 DOX 和 O 的爆发性释放,最终在体外和体内放大了 PDT 和化疗的协同作用。通过数学模型探讨了 PFP、GSH 和激光对药物释放动力学的影响。值得注意的是,通过研究 DOX 释放、PFP 释放与温度变化之间的关系,阐明了基于做功和增强扩散系数的气体发生器在辐照下加速药物释放的机制。此外,与传统方法相比,这种气体发生器补充 O 的方式不依赖于细胞内成分,而是及时为产生活性氧(ROS)提供了丰富的“燃料”。这项工作为促进药物释放提供了新的研究策略,并为构建多功能控制释放系统开辟了途径。

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