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用于伤口愈合的新型、高载药量、光稳定姜黄素固体脂质纳米粒水凝胶的系统开发与表征

Systematic Development and Characterization of Novel, High Drug-Loaded, Photostable, Curcumin Solid Lipid Nanoparticle Hydrogel for Wound Healing.

作者信息

Sandhu Simarjot Kaur, Kumar Suneel, Raut Jayant, Singh Mandeep, Kaur Sandeep, Sharma Garima, Roldan Tomas L, Trehan Sonia, Holloway Jennifer, Wahler Gabriella, Laskin Jeffrey D, Sinko Patrick J, Berthiaume Francois, Michniak-Kohn Bozena, Rishi Praveen, Ganesh Narayanan, Kaur Indu Pal

机构信息

Institute of Pharmaceutical Sciences, Panjab University, Chandigarh 160014, India.

Department of Biomedical Engineering, Rutgers University, Piscataway, NJ 08854, USA.

出版信息

Antioxidants (Basel). 2021 May 5;10(5):725. doi: 10.3390/antiox10050725.

Abstract

The study aims to develop high drug-loaded (about 15% lipid matrix) curcumin solid lipid nanoparticles (CSLNs) for wound healing. CSLNs prepared by hot, high-pressure homogenization, without using organic solvents, were optimized using the Taguchi design followed by the central composite design. The optimized CSLNs exhibited a high assay/drug content (0.6% /), solubility (6 × 10 times), and EE (75%) with a particle size < 200 nm (PDI-0.143). The CSLNs were safe (in vitro and in vivo), photostable, autoclavable, stable up to one year at 30 °C and under refrigeration and exhibited a controlled release (zero-order; 5 days). XRD, FTIR, and DSC confirmed solubilization and entrapment of the curcumin within the SLNs. TEM and FESEM revealed a smooth and spherical shape. The CSLNs showed a significant antimicrobial effect (MIC of 64 µg/mL for planktonic cells; 512 µg/mL for biofilm formation; and 2 mg/mL for mature biofilm) against 9144, while free curcumin dispersion did not exhibit any effect. This is the first report on the disruption of mature biofilms by curcumin solid lipid nanoparticles (CSLNs). The cell proliferation potential of CSLNs was also evaluated in vitro while the wound healing potential of CSLNs (incorporated in a hydrogel) was assessed in vivo. In (i) nitrogen mustard gas and (ii) a full-thickness excision wound model, CSLNs exhibited (a) significantly faster wound closure, (b) histologically and immunohistochemically better healing, (c) lower oxidative stress (LPO) and (d) inflammation (TNFα), and (e) increased angiogenesis (VEGF) and antioxidant enzymes, i.e., catalase and GSH levels. CSLNs thus offer a promising modern wound therapy especially for infected wounds, considering their effects in mature biofilm disruption.

摘要

本研究旨在开发用于伤口愈合的高载药量(脂质基质约15%)姜黄素固体脂质纳米粒(CSLNs)。采用热高压均质法制备的CSLNs,不使用有机溶剂,先采用田口设计进行优化,随后采用中心复合设计。优化后的CSLNs表现出高含量测定/药物含量(0.6%/)、溶解度(6×10倍)和包封率(75%),粒径<200nm(多分散指数-0.143)。CSLNs在体外和体内均安全、光稳定、可高压灭菌,在30℃和冷藏条件下可稳定保存一年,并呈现控释(零级;5天)。X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)和差示扫描量热法(DSC)证实姜黄素在固体脂质纳米粒中的增溶和包封。透射电子显微镜(TEM)和场发射扫描电子显微镜(FESEM)显示其形状光滑且呈球形。CSLNs对9144显示出显著的抗菌作用(浮游细胞的最低抑菌浓度为64μg/mL;生物膜形成的最低抑菌浓度为512μg/mL;成熟生物膜的最低抑菌浓度为2mg/mL),而游离姜黄素分散体则无任何作用。这是关于姜黄素固体脂质纳米粒(CSLNs)破坏成熟生物膜的首次报道。同时在体外评估了CSLNs的细胞增殖潜力,在体内评估了CSLNs(掺入水凝胶中)的伤口愈合潜力。在(i)芥子气和(ii)全层切除伤口模型中,CSLNs表现出(a)伤口闭合明显更快,(b)组织学和免疫组织化学愈合更好,(c)氧化应激(脂质过氧化)更低,(d)炎症(肿瘤坏死因子α)更低,以及(e)血管生成(血管内皮生长因子)增加和抗氧化酶(即过氧化氢酶和谷胱甘肽水平)增加。考虑到CSLNs在破坏成熟生物膜方面的作用,它们为现代伤口治疗,尤其是感染伤口提供了一种有前景的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65aa/8148018/38890108a3ae/antioxidants-10-00725-g001.jpg

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