用于骨关节炎治疗的多功能聚合物纳米胶囊具有更强的软骨渗透性和保留性。

IF 10.5 1区 医学 Q1 CHEMISTRY, MULTIDISCIPLINARY Journal of Controlled Release Pub Date : 2024-08-27 DOI:10.1016/j.jconrel.2024.08.031
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引用次数: 0

摘要

骨关节炎(OA)是一种以软骨退化和软骨下骨平衡失调为特征的常见关节疾病。有效的局部 OA 治疗具有挑战性,因为治疗药物往往存在渗透不足和清除过快的问题。我们开发了微型聚多巴胺(PDA)纳米胶囊(60 纳米以下),这种胶囊与胶原结合多肽(CBP)共轭,内含同化药物(即甲状旁腺激素,PTH),可有效治疗 OA。这种被称为PDA@CBP-PTH的多功能聚合物纳米胶囊在与致密的胶原纤维网络相互作用时具有可变形性,能在4小时内有效渗透到1毫米的软骨中,并在关节内保留长达28天。此外,PDA@CBP-PTH 纳米胶囊在软骨细胞中表现出卓越的活性氧清除特性,并能增强软骨下骨的合成代谢。该纳米系统作为治疗 OA 的双模式疗法,具有渗透迅速、疗效持久、综合治疗等特点,为扭转 OA 病程进展、促进关节保健铺平了道路。
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Multifunctional polymeric nanocapsules with enhanced cartilage penetration and retention for osteoarthritis treatment

Osteoarthritis (OA) is a prevalent joint disease characterized by cartilage degeneration and subchondral bone homeostasis imbalance. Effective topical OA therapy is challenging, as therapeutic drugs often suffer from insufficient penetration and rapid clearance. We develop miniature polydopamine (PDA) nanocapsules (sub-60 nm), which are conjugated with collagen-binding polypeptide (CBP) and loaded with an anabolic drug (i.e., parathyroid hormone 1–34, PTH 1–34) for efficient OA treatment. Such multifunctional polymeric nanocapsules, denoted as PDA@CBP-PTH, possess deformability when interacting with the dense collagen fiber networks, enabling the efficient penetration into 1 mm cartilage in 4 h and prolonged retention within the joints up to 28 days. Moreover, PDA@CBP-PTH nanocapsules exhibit excellent reactive oxygen species scavenging property in chondrocytes and enhance the anabolism in subchondral bone. The nanosystem, as dual-mode treatment for OA, demonstrates rapid penetration, long-lasting effects, and combinational therapeutic impact, paving the way for reversing the progression of OA for joint health care.

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来源期刊
Journal of Controlled Release
Journal of Controlled Release 医学-化学综合
CiteScore
18.50
自引率
5.60%
发文量
700
审稿时长
39 days
期刊介绍: The Journal of Controlled Release (JCR) proudly serves as the Official Journal of the Controlled Release Society and the Japan Society of Drug Delivery System. Dedicated to the broad field of delivery science and technology, JCR publishes high-quality research articles covering drug delivery systems and all facets of formulations. This includes the physicochemical and biological properties of drugs, design and characterization of dosage forms, release mechanisms, in vivo testing, and formulation research and development across pharmaceutical, diagnostic, agricultural, environmental, cosmetic, and food industries. Priority is given to manuscripts that contribute to the fundamental understanding of principles or demonstrate the advantages of novel technologies in terms of safety and efficacy over current clinical standards. JCR strives to be a leading platform for advancements in delivery science and technology.
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