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基于 QbD 的仿生羟基磷灰石嵌入明胶纳米颗粒的构建及其用于针对受损关节炎关节结构的局部药物递送

QbD-Based Fabrication of Biomimetic Hydroxyapatite Embedded Gelatin Nanoparticles for Localized Drug Delivery against Deteriorated Arthritic Joint Architecture.

机构信息

Department of Pharmacy, Faculty of Biological Sciences, Quaid-i-Azam University, Islamabad, 45320, Pakistan.

Faculty of Pharmacy, Capital University of Science and Technology, Islamabad, 44000, Pakistan.

出版信息

Macromol Biosci. 2024 Feb;24(2):e2300336. doi: 10.1002/mabi.202300336. Epub 2023 Oct 17.

DOI:10.1002/mabi.202300336
PMID:37815044
Abstract

Biomaterials such as nanohydroxyapatite and gelatin are widely explored to improve damaged joint architecture associated with rheumatoid arthritis (RA). Besides joint damage, RA is associated with inflammation of joints and cartilage, which potentiates the need for both bone nucleation and therapeutic intervention. For such purpose, a modified nanoprecipitation method is used herein to fabricate tofacitinib (Tofa)-loaded nanohydroxyapatite (nHA) embedded gelatin (GLT) nanoparticles (NPs) (Tofa-nHA-GLT NPs). The quality by design (QbD) approach is chosen to assess the key parameters that determine the efficiency of the NPs, and are further optimized via Box-Behnken design of experiment. The particle size, polydispersity, zeta potential, and encapsulation efficiency (EE) of the prepared NPs are found to be 269 nm, 0.18, -20.5 mV, and 90.7%, respectively. Furthermore, the NPs have improved stability, skin permeability, and a sustained drug release pattern at pH 6.5 (arthritic joint pH). Moreover, rhodamine-B loaded nHA-GLT NPs demonstrates considerably higher cellular uptake by the murine-derived macrophages than free rhodamine-B solution. In vitro, cell-based experiments confirm the good cell biocompatibility with insignificant toxicity. Thus, QbD-based approach has successfully led to the development of Tofa-nHA-GLT NPs with the potential to target inflamed arthritic joint.

摘要

生物材料,如纳米羟基磷灰石和明胶,被广泛探索用于改善与类风湿关节炎(RA)相关的受损关节结构。除了关节损伤,RA 还与关节和软骨炎症有关,这增加了骨核形成和治疗干预的必要性。为此,本文采用改良的纳米沉淀法制备负载托法替尼(Tofa)的纳米羟基磷灰石(nHA)嵌入明胶(GLT)纳米颗粒(NPs)(Tofa-nHA-GLT NPs)。质量源于设计(QbD)方法用于评估决定 NPs 效率的关键参数,并通过 Box-Behnken 实验设计进一步优化。所制备的 NPs 的粒径、多分散性、Zeta 电位和包封效率(EE)分别为 269nm、0.18、-20.5mV 和 90.7%。此外,这些 NPs 在 pH6.5(关节炎关节 pH 值)下具有更好的稳定性、皮肤渗透性和持续的药物释放模式。此外,负载罗丹明 B 的 nHA-GLT NPs 显示出比游离罗丹明 B 溶液更高的细胞摄取率。体外细胞实验证实了良好的细胞生物相容性,毒性不明显。因此,基于 QbD 的方法成功地开发了 Tofa-nHA-GLT NPs,具有靶向炎症性关节炎关节的潜力。

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