García-Villegas Abigail, Fernández-Ochoa Álvaro, Rojas-García Alejandro, Alañón María Elena, Arráez-Román David, Cádiz-Gurrea María de la Luz, Segura-Carretero Antonio
Department of Analytical Chemistry, University of Granada, Av. Fuentenueva s/n, 18071 Granada, Spain.
Regional Institute for Applied Scientific Research (IRICA), University of Castilla-La Mancha, Avda. Camilo José Cela 10, 13071 Ciudad Real, Spain.
Antioxidants (Basel). 2023 Oct 21;12(10):1892. doi: 10.3390/antiox12101892.
The constant growth of the cosmetic industry, together with the scientific evidence of the beneficial properties of phytochemicals, has generated great interest in the incorporation of bioactive extracts in cosmetic formulations. This study aims to evaluate the bioactive potential of a mango peel extract for its incorporation into cosmetic formulations. For this purpose, several assays were conducted: phytochemical characterization; total phenolic content (TPC) and antioxidant potential; free-radical scavenging capacity; and skin aging-related enzyme inhibition. In addition, the extract was incorporated into a gel formulation, and a preliminary stability study was conducted where the accelerated (temperature ramp, centrifugation, and heating/cooling cycles) and long-term (storage in light and dark for three months) stability of the mango peel formulations were evaluated. The characterization results showed the annotation of 71 compounds, gallotannins being the most representative group. In addition, the mango peel extract was shown to be effective against the NO radical with an IC of 7.5 mg/L and against the hyaluronidase and xanthine oxidase enzymes with IC of 27 mg/L and 2 mg/L, respectively. The formulations incorporating the extract were stable during the stability study. The results demonstrate that mango peel extract can be a by-product to be revalorized as a promising cosmetic ingredient.
化妆品行业的持续增长,以及植物化学物质有益特性的科学证据,引发了人们对将生物活性提取物纳入化妆品配方的浓厚兴趣。本研究旨在评估芒果皮提取物用于化妆品配方的生物活性潜力。为此,进行了多项试验:植物化学表征;总酚含量(TPC)和抗氧化潜力;自由基清除能力;以及与皮肤老化相关的酶抑制作用。此外,将提取物纳入凝胶配方,并进行了初步稳定性研究,评估了芒果皮配方在加速条件下(温度变化、离心和加热/冷却循环)和长期条件下(在光照和黑暗中储存三个月)的稳定性。表征结果显示鉴定出71种化合物,没食子单宁是最具代表性的类别。此外,芒果皮提取物对NO自由基的IC50为7.5 mg/L,对透明质酸酶和黄嘌呤氧化酶的IC50分别为27 mg/L和2 mg/L,显示出有效作用。在稳定性研究期间,含有提取物的配方保持稳定。结果表明,芒果皮提取物可作为一种副产品进行增值利用,成为一种有前景的化妆品成分。