CN107714570B - 一种植物提取物、制备方法及其在化妆品的应用 - Google Patents
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Abstract
本发明公开了一种抑制酪氨酸酶活性的植物提取物,由杨桃提取物、地瓜藤提取物按照质量比1:5组成。相比现有技术,本发明的有益效果在于:本发明植物提取物组合物在抑制酪氨酸酶活性方面具有优异效果,半数抑制率(IC50)达到0.38mg/ml,相比于现有技术具有更优的技术效果。尤其是,本发明的植物提取物组合物是通过将特定提取方法得到的杨桃提取物和地瓜藤提取物按照特定的质量比组合得到,在抑制酪氨酸酶活性方面起到了明显的协同增效作用,可以用于制备美白功效的化妆品。
Description
技术领域
本发明涉及日用化妆品领域,具体是涉及一种植物提取物、制备方法及其在化妆品的应用。
背景技术
近年来,人们开始热衷于植物化妆品及回归自然的美容方法。随着人们生活水平和审美标准的提高,越来越多的人追求、渴望白皙及洁润的肌肤。因此,具有防止由太阳光线及其它原因引起的色斑、色素沉着作用的美白类化妆品以及皮肤美白制剂的研究与开发,正日益受到各国化妆品生产商和研究者的重视,美白化妆品已成为护肤类化妆品的主流品种之一。
美白剂的作用是通过抑制酪氨酸酶活性或者阻断酪氨酸生成黑色素的氧化途径,从而减少黑色素生成达到美白皮肤的效果。皮肤美白剂应该符合两个标准:一是对酪氨酸酶活性有较高的抑制率,能显著的减少黑色素的生成;二是有较高的安全性,以人体皮肤无毒无刺激。目前市面上销售的美白化妆品所添加的功效原料主要包括有熊果苷、曲酸、抗坏血酸、细胞生长因子等原料中的一种或几种,含有上述原料的美白化妆品在具有美白效果的同时也对皮肤造成了一定的伤害,并且使得产品容易产生变色变味不稳定的现象。如熊果苷具有高度的光敏感性,在产品中大量添加时易变色不稳定;曲酸在添加量较大时容易导致接触性皮炎;抗坏血酸不利于皮肤吸收,且遇热、光时极易氧化变色而失去美白效果;细胞生长因子的活性保质期较短,不易长期保存。常见的多数美白剂为水溶性,不利于皮肤吸收,只能到达皮肤表层甚至停留在皮肤表面,而不能到达基底层,在很大程度上影响了美白效果。普通美白化妆品也存在很大的安全隐患,因为很多美白剂的效果与其使用浓度密切相关,一般说来使用浓度越高,pH 越低,美白效果越明显,但刺激性也越大,严重时甚至对皮肤造成永久性伤害。
随着植物提取技术的发展,越来越多的植物提取物应用于美白功效化妆品中,成为化妆品中有效的功效性成分。例如,申请公开号为CN103393578A的中国发明专利,公开了一种杨桃提取物及其应用,其提取方法采用体积浓度70%乙醇作为提取溶剂、AB-8树脂吸附后依次以体积浓度30%乙醇、50%乙醇和70%乙醇洗脱,70%乙醇洗脱部位对酪氨酸酶的抑制活性最好。但是其采用的是较高浓度的乙醇,成本较高。因此,研制一种成本较低的具有抑制酪氨酸酶活性优异效果的植物提取物势在必行。
发明内容
针对现有技术存在的不足,本发明的目的是提供一种天然植物提取物的组合物,通过不同植物提取物的联用以及选择特定的用量配比,达到协同抑制酪氨酸酶活性的技术效果。本发明具体是通过以下技术方案实现的:
一种抑制酪氨酸酶活性的植物提取物,由杨桃提取物、地瓜藤提取物按照质量比1:5组成。
优选地,所述杨桃提取物按以下方法提取:取杨桃果实干燥粉碎后的粉末100g,室温下以体积浓度为70%乙醇1000ml冷浸、400W超声提取2次,每次30min,滤液合并1800毫升,减压回收溶剂至无醇味,过AB-8树脂,以体积浓度30%乙醇洗脱,收集洗脱部位400ml,蒸干即为所述杨桃提取物。
优选地,所述地瓜藤提取物按以下方法提取:取地瓜藤鲜品(桑科榕属多年生落叶匍匐灌木植物地瓜榕Ficus tikoua Bur.的茎、叶),用8-10倍量体积浓度为95%的乙醇加热回流提取2-3次,每次回流提取时间为1-2h,合并提取液后过滤,滤液经回收乙醇后浓缩成浸膏,加水溶解后依次用等体积的石油醚、氯仿和乙酸乙酯进行萃取,每种萃取剂萃取3次;合并乙酸乙酯萃取液经回收溶剂后干燥,即得地瓜藤提取物。
本发明还提供了上述抑制酪氨酸酶活性的植物提取物在制备美白功效化妆品中的应用。
相比现有技术,本发明的有益效果在于:本发明植物提取物组合物在抑制酪氨酸酶活性方面具有优异效果,半数抑制率(IC50)达到0.38 mg/ml,相比于现有技术具有更优的技术效果。尤其是,本发明的植物提取物组合物是通过将特定提取方法得到的杨桃提取物和地瓜藤提取物按照特定的质量比组合得到,在抑制酪氨酸酶活性方面起到了明显的协同增效作用,可以用于制备美白功效的化妆品。
具体实施方式
下面结合实施例对本发明作进一步的具体说明。
实施例1:
杨桃提取物按以下方法提取:取杨桃果实干燥粉碎后的粉末100g,室温下以体积浓度为70%乙醇1000ml冷浸、400W超声提取2次,每次30min,滤液合并1800毫升,减压回收溶剂至无醇味,过AB-8树脂,以体积浓度30%乙醇洗脱,收集洗脱部位400ml,蒸干即为所述杨桃提取物。
地瓜藤提取物按以下方法提取:取地瓜藤鲜品,用10倍量体积浓度为95%的乙醇加热回流提取3次,每次回流提取时间为2h,合并提取液后过滤,滤液经回收乙醇后浓缩成浸膏,加水溶解后依次用等体积的石油醚、氯仿和乙酸乙酯进行萃取,每种萃取剂萃取3次;合并乙酸乙酯萃取液经回收溶剂后干燥,即得地瓜藤提取物。
将上述杨桃提取物、地瓜藤提取物按照质量比1:5组成,即得具有协同增效作用的抑制酪氨酸酶活性的植物提取物。
本发明实施例1植物提取物对酪氨酸酶活性抑制作用的对比试验:
样品1:取实施例1的杨桃提取物,分别加pH6.8的磷酸缓冲溶液制成5mg/ml、0.9mg/ml、0.45mg/ml、1.35mg/ml的溶液;
样品2:取实施例1的地瓜藤提取物,分别加pH6.8的磷酸缓冲溶液制成5mg/ml、0.9mg/ml、0.45mg/ml、1.35mg/ml的溶液;
样品3:取实施例1的提取物组合物(杨桃提取物与地瓜藤提取物质量比为1:5),分别加pH6.8的磷酸缓冲溶液制成5mg/ml、0.9mg/ml、0.45mg/ml、1.35mg/ml的溶液。
试验方法:在样品管和样品对照管中各加入1ml样品溶液,阳性和阴性对照管以磷酸缓冲液(pH=6.8)代替。在样品管和阳性对照管中加入0.5ml酪氨酸酶溶液(酶活单位130u/ml),样品对照和阴性对照管以0.5ml磷酸缓冲液(pH=6.8)代替,振摇所有试管,使样品和酪氨酸酶充分混匀,37℃水槽孵育10分钟,加入2ml的0.03wt%酪氨酸溶液,反应10分钟,即刻在475nm处测定吸光度。每种浓度的样品溶液重复测试三次后取平均值。
抑制率I(%)=[1-(T-T0)/(C-C0)]×100%
式中,T:同时有酪氨酸酶溶液和样品溶液;T0:有样品溶液但没有酪氨酸酶溶液;C:有酪氨酸酶溶液但没有样品溶液;C0:既无酪氨酸酶溶液也无样品溶液。
计算半数抑制率(IC50)。IC50值定义为抑制率为50%时所需酪氨酸酶抑制剂的浓度。计算方法为以样品的浓度对酪氨酸酶的抑制率作图并进行拟合,读取计算IC50值。试验结果如表1所示:
表1:各样品抑制酪氨酸活性检测结果
样品 | IC50(单位:mg /ml) |
杨桃提取物 | 7.09 |
地瓜藤提取物 | 2.90 |
本发明提取物组合物(1:5) | 0.38 |
通过表1的试验结果可知,本发明的杨桃提取物、地瓜藤提取物按照质量比1:5组合后,在抑制酪氨酸酶活性方面起到了明显的协同增效作用,可以用于制备美白功效的化妆品。
上述实施例仅为本发明优选的实施案例,不能以此来限定本发明所要求保护的范围,本领域的技术人员在本发明的基础上所做的任何非实质性的及替换均属于本发明要求保护的范围。
Claims (2)
1.一种抑制酪氨酸酶活性的植物提取物,由杨桃提取物、地瓜藤提取物按照质量比1:5组成,其特征在于,所述杨桃提取物按以下方法提取:取杨桃果实干燥粉碎后的粉末100g,室温下以体积浓度为70%乙醇1000ml冷浸、400W超声提取2次,每次30min,滤液合并1800毫升,减压回收溶剂至无醇味,过AB-8树脂,以体积浓度30%乙醇洗脱,收集洗脱部位400ml,蒸干即为所述杨桃提取物;所述地瓜藤提取物按以下方法提取:取地瓜藤鲜品,用8-10倍量体积浓度为95%的乙醇加热回流提取2-3次,每次回流提取时间为1-2h,合并提取液后过滤,滤液经回收乙醇后浓缩成浸膏,加水溶解后依次用等体积的石油醚、氯仿和乙酸乙酯进行萃取,每种萃取剂萃取3次;合并乙酸乙酯萃取液经回收溶剂后干燥,即得。
2.根据权利要求1所述的一种抑制酪氨酸酶活性的植物提取物在制备美白功效化妆品中的应用。
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