可注射抗衰老水凝胶库清除衰老细胞。

IF 5.5 2区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Lorenza Garau Paganella, Giovanni Bovone, Filippo Cuni, Céline Labouesse, Yifan Cui, Costanza Giampietro, Mark W Tibbitt
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引用次数: 0

摘要

小分子是许多疾病的一线治疗药物;然而,它们的溶解度往往受到限制。因此,疏水小分子通常被封装或制备为纯药物纳米颗粒。Navitoclax是一种用于消除衰老细胞的小分子,由于其疏水性和毒副作用,在翻译中面临挑战。此外,由于衰老细胞表现出与环境相关的病理或有益特性,因此局部消除衰老细胞是可取的。为了配制navitoclax并使局部治疗成为可能,我们设计了一种可注射的水凝胶,装载navitoclax纳米颗粒作为抗衰老递送载体。通过溶剂-抗溶剂纳米沉淀法制备了Navitoclax纳米颗粒(Ø ~ 110 nm),并将其配制在可注射聚合物纳米颗粒(PNP)水凝胶中,以创建局部senolytic库。载navitoclax的PNP水凝胶选择性清除体外衰老内皮单层中的衰老细胞。这项工作证明了制定亲脂小分子的价值和局部药物递送策略的潜力,以改善老年治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Injectable Senolytic Hydrogel Depot for the Clearance of Senescent Cells.

Small molecules are frontline therapeutics for many diseases; however, they are often limited by their poor solubility. Therefore, hydrophobic small molecules are often encapsulated or prepared as pure drug nanoparticles. Navitoclax, used to eliminate senescent cells, is one such small molecule that faces challenges in translation due to its hydrophobicity and toxic side effects. Further, as senescent cells exhibit context-dependent pathologic or beneficial properties, it is preferable to eliminate senescent cells locally. To formulate navitoclax and enable local treatment, we designed an injectable hydrogel loaded with navitoclax nanoparticles as a senolytic delivery vehicle. Navitoclax nanoparticles (Ø ∼ 110 nm) were prepared via solvent-antisolvent nanoprecipitation and formulated in an injectable polymer-nanoparticle (PNP) hydrogel to create a local senolytic depot. Navitoclax-loaded PNP hydrogels selectively cleared senescent cells in vitro in senescent endothelial monolayers. This work demonstrates the value of formulating lipophilic small molecules and the potential of localized drug delivery strategies to improve senolytic therapies.

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来源期刊
Biomacromolecules
Biomacromolecules 化学-高分子科学
CiteScore
10.60
自引率
4.80%
发文量
417
审稿时长
1.6 months
期刊介绍: Biomacromolecules is a leading forum for the dissemination of cutting-edge research at the interface of polymer science and biology. Submissions to Biomacromolecules should contain strong elements of innovation in terms of macromolecular design, synthesis and characterization, or in the application of polymer materials to biology and medicine. Topics covered by Biomacromolecules include, but are not exclusively limited to: sustainable polymers, polymers based on natural and renewable resources, degradable polymers, polymer conjugates, polymeric drugs, polymers in biocatalysis, biomacromolecular assembly, biomimetic polymers, polymer-biomineral hybrids, biomimetic-polymer processing, polymer recycling, bioactive polymer surfaces, original polymer design for biomedical applications such as immunotherapy, drug delivery, gene delivery, antimicrobial applications, diagnostic imaging and biosensing, polymers in tissue engineering and regenerative medicine, polymeric scaffolds and hydrogels for cell culture and delivery.
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