Wang Shasha, Shi Yuxin, Ma Jiapeng, Ye Zhuofei, Yao Miaomiao, Shang Jing, Liu Jianping
School of Pharmacy, China Pharmaceutical University, Nanjing, China.
School of Traditional Chinese Pharmacy, China Pharmaceutical University, Nanjing, China.
J Cosmet Dermatol. 2023 Mar;22(3):1046-1062. doi: 10.1111/jocd.15515. Epub 2022 Dec 27.
Dragon's Blood is a member of the Chinese medicinal herb, having anti-oxygen and anti-inflammatory activity for the photoprotective effect. However, the poor water solubility of raw Dragon's Blood powder has limited its intradermal delivery process. In this study, we evaluated nanosuspensions to enhance intradermal delivery of Dragon's Blood exerting a photoprotective effect. The prepared nanosuspension was added to a composite hydrogel patch matrix for better skin application. In the present research, we used biocompatible materials hyaluronic acid and amino acid surfactants as nanosuspension stabilizers and agar/gelatin/sodium polyacrylate as hydrogel patch matrix. The prepared Dragon's Blood nanosuspension had a particle size of 447.0 ± 48.6 nm. The micro-structures morphology and viscoelasticity characteristics by SEM and rheological testing confirmed a sufficient crosslinked hydrogel network. The skin retention amount of Dragon's Blood nanosuspension was 1.48 times of raw Dragon's Blood powder water suspension, and the skin penetration amount of Dragon's Blood nanosuspension was only about 1/3 of Dragon's Blood DMSO solution. In the UVB-irradiated HaCaT cell phototoxicity model, Dragon's Blood nanosuspension also significantly increased cell viability by about 1 time of the model group and decreased the production of reactive oxygen species about 1/2 times of model group. In vivo safety and efficiency evaluation experiment illustrated that DB-NS hydrogel patch processes have favorable safety and photoprotective effect with no skin irritancy and phototoxicity. Furthermore, DB-NS and DB-NS hydrogel patches could protect skin from UVA and UVB irritating skin reactions. Overall, our study of the combined use of biocompatible and biodegradable materials as excipients of nanosuspension and hydrogel patch could be used as an effective additive of Intradermal delivery and skin photoprotection.
血竭是一种中药材,具有抗氧化和抗炎活性,可起到光保护作用。然而,血竭生粉的水溶性较差,限制了其皮内给药过程。在本研究中,我们评估了纳米混悬液以增强血竭的皮内给药并发挥光保护作用。将制备的纳米混悬液添加到复合水凝胶贴剂基质中,以便更好地应用于皮肤。在本研究中,我们使用生物相容性材料透明质酸和氨基酸表面活性剂作为纳米混悬液稳定剂,并使用琼脂/明胶/聚丙烯酸钠作为水凝胶贴剂基质。制备的血竭纳米混悬液的粒径为447.0±48.6nm。通过扫描电子显微镜(SEM)和流变学测试得到的微观结构形态和粘弹性特征证实了水凝胶网络具有充分的交联。血竭纳米混悬液的皮肤滞留量是血竭生粉水混悬液的1.48倍,而血竭纳米混悬液的皮肤渗透量仅约为血竭二甲基亚砜溶液的1/3。在紫外线B(UVB)照射的人永生化角质形成细胞(HaCaT)光毒性模型中,血竭纳米混悬液还使细胞活力显著增加,约为模型组的1倍,并使活性氧的产生减少约为模型组的1/2。体内安全性和有效性评估实验表明,血竭纳米混悬液水凝胶贴剂具有良好的安全性和光保护作用,无皮肤刺激性和光毒性。此外,血竭纳米混悬液和血竭纳米混悬液水凝胶贴剂可以保护皮肤免受紫外线A(UVA)和UVB引起的皮肤反应。总体而言,我们关于使用生物相容性和可生物降解材料作为纳米混悬液和水凝胶贴剂辅料的联合应用研究,可作为皮内给药和皮肤光保护的有效添加剂。