Department of Food Science and Technology, Pondicherry University, Puducherry, India.
Department of Statistics, Pondicherry University, Puducherry, India.
J Photochem Photobiol B. 2020 Apr;205:111816. doi: 10.1016/j.jphotobiol.2020.111816. Epub 2020 Feb 5.
A melanin producer bacteria Halomonas venusta was isolated from a marine sponge Callyspongia sp. and optimized for melanin production. The optimized fermented media supplemented with 1% tyrosine yielded 4.92 mg/ml of melanin. The melanin incorporated cream was formulated and fortified with concentrates of seaweed Gelidium spinosum. Melanin and seaweed concentrate were found to be rich in antioxidant activity and were effectively inhibited the growth of S. aureus (MTCC 96) and S. pyogenes (MTCC 442). Various combinations of the cream were optimized and selected a formula containing 0.25% of melanin and 0.75% of seaweed concentrate which showed improved texture quality of cream. The formulated cream showed a pH of 5.52, spreadability 23 mm, and smooth and homogeneous texture. On application over skin provides a cooling effect and immediate disappearance without formation of white or oily film. Texture analysis of newly formulated cream showed similar results with that of control cream in terms of firmness, cohesiveness, index of viscosity and consistency. The formulated cream showed significant reduction of reactive oxygen species generated on exposure to direct sunlight. The cream showed protective effect on photohemolysis thus protecting the skin from lysis of red blood cells. The sun protection factor of the formulated cream F3 was found to be 18.373 ± 1.45. The combined antimicrobial and antioxidant effect of melanin and seaweed concentrate increased the shelf life of cream over the control. This study was the first report on photoprotective cream formulation using melanin and seaweed concentrate, which improved antioxidant and wound healing properties. The antimicrobial effect of the formulated natural cream could reduce the emergence of drug resistant bacteria and side effects of synthetic creams.
从海洋海绵 Callyspongia sp. 中分离出一种产黑色素细菌 Halomonas venusta,并对其产黑色素进行了优化。优化的发酵培养基补充 1%酪氨酸可产生 4.92mg/ml 的黑色素。将黑色素掺入乳膏中,并添加海草 Gelidium spinosum 的浓缩物。发现黑色素和海藻浓缩物富含抗氧化活性,可有效抑制金黄色葡萄球菌(MTCC 96)和化脓性链球菌(MTCC 442)的生长。对乳膏的各种组合进行了优化,并选择了一种含有 0.25%黑色素和 0.75%海藻浓缩物的配方,该配方显示出改善的乳膏质地。所配制的乳膏的 pH 值为 5.52,铺展性为 23mm,质地光滑均匀。涂抹在皮肤上会产生清凉效果,立即消失,不会形成白色或油性薄膜。新配方乳膏的质地分析在硬度、内聚性、粘度指数和稠度方面与对照乳膏具有相似的结果。新配制的乳膏在暴露于阳光直射下时,其产生的活性氧物质显著减少。该乳膏对光溶血有保护作用,从而防止皮肤红细胞溶解。所配制的乳膏 F3 的防晒因子(SPF)为 18.373±1.45。黑色素和海藻浓缩物的联合抗菌和抗氧化作用延长了乳膏的保质期。这是首次使用黑色素和海藻浓缩物报道的防晒乳膏配方,可提高抗氧化和伤口愈合性能。该配方天然乳膏的抗菌作用可减少耐药菌的出现和合成乳膏的副作用。