Algahtani Mohammed S, Ahmad Mohammad Zaki, Ahmad Javed
Department of Pharmaceutics, College of Pharmacy, Najran University, Najran 11001, Saudi Arabia.
Nanomaterials (Basel). 2020 Apr 28;10(5):848. doi: 10.3390/nano10050848.
Retinyl palmitate is a vitamin A ester belonging to the family of endogenous natural retinoid and used to treat various skin disorders like acne, skin aging, wrinkles, and dark spots, as well as to protect against psoriasis. Despite the known therapeutic benefits of retinyl palmitate, the conventional topical delivery of retinyl palmitate commonly associated with adverse reactions such as skin irritation, redness, excessive peeling, and dryness. Therefore, the current study aims to encapsulate the retinyl palmitate in nanoemulsion then incorporate it into a hydrogel system to improve the topical delivery and stability. Low-energy emulsification method was used for the nano-encapsulation of retinyl palmitate. The phase behavior study was used for the investigation and the optimization of the formulation. The droplet size of the optimized nanoemulsion was in nano dimension (16.71 nm) with low polydispersity index (PdI) (0.015), negative zeta potential (-20.6 mV). It demonstrated the influence of vortexing on droplet size and PdI during nanoemulsion preparation. The retinyl palmitate loaded nanoemulgel delivery system exhibited significant improvement ( < 0.05) in skin permeability after topical application. Employment of the nano-encapsulation approach afterward dispersion into hydrogel system for the development of a topical delivery system of retinyl palmitate resulted in improvement in its UV and storage stability as well.
棕榈酸视黄酯是一种维生素A酯,属于内源性天然类视黄醇家族,用于治疗各种皮肤疾病,如痤疮、皮肤老化、皱纹和黑斑,以及预防银屑病。尽管棕榈酸视黄酯具有已知的治疗益处,但传统的棕榈酸视黄酯局部给药通常会伴有不良反应,如皮肤刺激、发红、过度脱皮和干燥。因此,本研究旨在将棕榈酸视黄酯包裹在纳米乳剂中,然后将其掺入水凝胶系统中,以改善局部给药和稳定性。采用低能乳化法对棕榈酸视黄酯进行纳米包封。利用相行为研究来考察和优化配方。优化后的纳米乳剂的液滴尺寸处于纳米级(16.71nm),多分散指数(PdI)较低(0.015),zeta电位为负(-20.6mV)。它证明了在纳米乳剂制备过程中涡旋对液滴尺寸和PdI的影响。负载棕榈酸视黄酯的纳米乳凝胶递送系统在局部应用后皮肤渗透性有显著改善(<0.05)。随后采用纳米包封方法并分散到水凝胶系统中以开发棕榈酸视黄酯局部递送系统,其紫外线稳定性和储存稳定性也得到了改善。