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水凝胶:用于纳米颗粒和细胞外囊泡的3D药物递送系统

Hydrogels: 3D Drug Delivery Systems for Nanoparticles and Extracellular Vesicles.

作者信息

Chabria Yashna, Duffy Garry P, Lowery Aoife J, Dwyer Róisín M

机构信息

Discipline of Surgery, Lambe Institute for Translational Research, National University of Ireland Galway, H91 V4AY Galway, Ireland.

CÚRAM, The SFI Research Centre for Medical Devices, National University of Ireland Galway, H91 W2TY Galway, Ireland.

出版信息

Biomedicines. 2021 Nov 15;9(11):1694. doi: 10.3390/biomedicines9111694.

Abstract

Synthetic and naturally occurring nano-sized particles present versatile vehicles for the delivery of therapy in a range of clinical settings. Their small size and modifiable physicochemical properties support refinement of targeting capabilities, immune response, and therapeutic cargo, but rapid clearance from the body and limited efficacy remain a major challenge. This highlights the need for a local sustained delivery system for nanoparticles (NPs) and extracellular vesicles (EVs) at the target site that will ensure prolonged exposure, maximum efficacy and dose, and minimal toxicity. Biocompatible hydrogels loaded with therapeutic NPs/EVs hold immense promise as cell-free sustained and targeted delivery systems in a range of disease settings. These bioscaffolds ensure retention of the nano-sized particles at the target site and can also act as controlled release systems for therapeutics over a prolonged period of time. The encapsulation of stimuli sensitive components into hydrogels supports the release of the content on-demand. In this review, we highlight the prospect of the sustained and prolonged delivery of these nano-sized therapeutic entities from hydrogels for broad applications spanning tissue regeneration and cancer treatment. Further understanding of the parameters controlling the release rate of these particles and efficient transfer of cargo to target cells will be fundamental to success.

摘要

合成的和天然存在的纳米级颗粒为一系列临床环境中的治疗递送提供了多功能载体。它们的小尺寸和可调节的物理化学性质有助于改善靶向能力、免疫反应和治疗载荷,但从体内快速清除以及疗效有限仍然是一个重大挑战。这凸显了在靶位点建立纳米颗粒(NPs)和细胞外囊泡(EVs)局部持续递送系统的必要性,该系统将确保延长暴露时间、最大疗效和剂量以及最小毒性。负载治疗性NPs/EVs的生物相容性水凝胶作为一系列疾病环境中无细胞的持续和靶向递送系统具有巨大潜力。这些生物支架可确保纳米级颗粒在靶位点的保留,并且还可作为治疗药物的长期控释系统。将刺激敏感成分封装到水凝胶中有助于按需释放内容物。在本综述中,我们强调了从水凝胶中持续和长期递送这些纳米级治疗实体在组织再生和癌症治疗等广泛应用中的前景。进一步了解控制这些颗粒释放速率的参数以及将载荷有效转移到靶细胞对于成功至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7aed/8615452/29f924a8f07b/biomedicines-09-01694-g001.jpg

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