a Department of Pharmaceutics , University Institute of Pharmaceutical Sciences, Panjab University , Chandigarh , India.
b School of Pharmacy and Biomedical Sciences, Faculty of Clinical and Biomedical Sciences , University of Central Lancashire , Preston , UK.
Drug Dev Ind Pharm. 2018 Oct;44(10):1701-1712. doi: 10.1080/03639045.2018.1492607. Epub 2018 Jul 25.
Tetrahydrocurcumin (THC) also referred to as 'white curcumin', is a stable colorless hydrogenated product of curcumin with superior antioxidant and anti-inflammatory properties. The present study is an attempt to elevate the topical bioavailability of THC, post-incorporation into a nano-carrier system with its final dosage as a hydrogel. Lipid nanoparticles of THC (THC-SLNs) prepared by microemulsification technique were ellipsoidal in shape (revealed in transmission electron microscopy) with a mean particle size of 96.6 nm and zeta potential of -22 mV. Total drug content and entrapment efficiency of THC-SLNs was 94.51% ± 2.15% and 69.56% ± 1.35%, respectively. Differential scanning calorimetry and X-ray diffraction studies confirmed the formation of THC-SLNs. In vitro drug release studies showed the drug release from THC-SLNs gel to follow Higuchi's equation revealing a Fickian diffusion. Ex vivo permeation studies indicated a 17 times (approximately) higher skin permeation of THC-SLNs gel as compared with the free THC gel. Skin irritation, occlusion, and stability studies indicated the formulation to be nonirritating, and stable with a desired occlusivity. Pharmacodynamic evaluation in an excision wound mice model clearly revealed the enhanced anti-inflammatory activity of THC-SLNs gel and was further confirmed using biochemical and histopathological studies. It is noteworthy to report here that THC-SLNs gel showed significantly better (p ≤ 0.001) activity than free THC in gel. As inflammation is innate to all the skin disorders, the developed product opens up new therapeutic avenues for several skin diseases. To the best of our knowledge, this is the first paper elaborating the therapeutic usefulness of white curcumin-loaded lipidic nanoparticles for skin inflammation.
四氢姜黄素(THC)也被称为“白姜黄素”,是姜黄素的一种稳定的无色氢化产物,具有优越的抗氧化和抗炎特性。本研究试图提高 THC 的局部生物利用度,将其掺入纳米载体系统中,最终剂量为水凝胶。通过微乳液技术制备的 THC 脂质纳米粒(THC-SLNs)呈椭圆形(在透射电子显微镜下显示),平均粒径为 96.6nm,zeta 电位为-22mV。THC-SLNs 的总药物含量和包封效率分别为 94.51%±2.15%和 69.56%±1.35%。差示扫描量热法和 X 射线衍射研究证实了 THC-SLNs 的形成。体外药物释放研究表明,THC-SLNs 凝胶的药物释放符合 Higuchi 方程,呈现出菲克扩散。离体透皮研究表明,与游离 THC 凝胶相比,THC-SLNs 凝胶的皮肤渗透增加了 17 倍(约)。皮肤刺激性、封闭性和稳定性研究表明,该配方无刺激性,具有所需的封闭性。在切除伤口小鼠模型中的药效学评价清楚地表明,THC-SLNs 凝胶具有增强的抗炎活性,并用生化和组织病理学研究进一步证实。值得注意的是,THC-SLNs 凝胶在凝胶中的活性明显优于游离 THC(p≤0.001)。由于炎症是所有皮肤疾病的固有特征,因此开发的产品为几种皮肤病开辟了新的治疗途径。据我们所知,这是第一篇详细阐述载有白姜黄素的脂质纳米粒用于皮肤炎症的治疗效果的论文。