CN115444771A - 一种微分子肽原液及其制备方法 - Google Patents
一种微分子肽原液及其制备方法 Download PDFInfo
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- CN115444771A CN115444771A CN202211201231.XA CN202211201231A CN115444771A CN 115444771 A CN115444771 A CN 115444771A CN 202211201231 A CN202211201231 A CN 202211201231A CN 115444771 A CN115444771 A CN 115444771A
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Abstract
本发明公开了一种微分子肽原液,包括:第一混合物,所述第一混合物包括水、甘油、丙二醇、水溶羊毛脂和乙酰基六肽‑8;第二混合物,所述第二混合物包括透明质酸钠、透明质酸和氰钴胺;第三混合物,所述第三混合物包括水解蚕丝、水解胶原蛋白、氨基酸、聚谷氨酸和维生素B‑12。本发明的微分子肽原液具有紧致、舒缓肌肤,减少肌肤纹路产生,以及光嫩肤质的作用。一般用于护肤产品,如面霜、精华和面膜上。也可作为护发品使用,可在头发表面形成一层薄膜,起到保湿、润滑、护发、消除静电等作用,使头发易于梳理、飘逸自然。该微分子肽原液的制备方法简单易操作,适合大规模工艺生产。护理效果好,应用范围广泛,能够满足现实中多领域的应用。
Description
技术领域
本发明涉及护肤品技术领域,特别涉及一种微分子肽原液及其制备方法。
背景技术
随着年龄的增长,皮肤也会像人体其他器官一样逐渐老化,功能减弱、丧志。在衰老的皮肤中表皮细胞更新减慢、屏障功能减弱,交织形成细胞活力下降,表皮受伤后修复能力减弱,其中屏障功能的减弱导致皮肤干燥、脱屑、皱纹,衰老皮肤的真皮层中成纤维细胞数量逐渐减少、合成胶原蛋白和弹性蛋白的能力下降,肌肤弹性不再、变得松弛。
首先,现有的原液中大多含有很多化学成分,对人体皮肤会产生一定刺激作用,长期使用不仅对人体健康极为不利,还会导致皮肤松弛、水肿、角质层过薄、易过敏等。尤其是现有的原液中普遍加入有活化成分以促进肌肤对营养成分的吸收,虽然可暂时缓解肌肤问题,但长期使用肌肤会变的越来越敏感脆弱。
其次,现有的原液也存在护理效果单一,应用范围窄,无法满足现实要求等缺陷。
发明内容
本发明的目的是提供一种微分子肽原液及其制备方法,解决上述现有技术问题中的一个或者多个。
一方面,本发明提供的微分子肽原液,包括:
第一混合物,所述第一混合物包括水、甘油、丙二醇、水溶羊毛脂和乙酰基六肽-8;
第二混合物,所述第二混合物包括透明质酸钠、透明质酸和氰钴胺;
第三混合物,所述第三混合物包括水解蚕丝、水解胶原蛋白、氨基酸、聚谷氨酸和维生素B-12。
其中:水溶羊毛脂常用作油包水型(W/O)乳化剂,具有优良的滋润性,也可用作防腐剂、缓蚀剂和消泡剂。
乙酰基六肽-8是一种神经递质抑制类胜肽。
透明质酸钠为从鸡冠中提取的物质,也可通过乳酸球菌发酵制得,为白色或类白色颗粒或粉末,无臭味,有保湿作用。将其用于化妆品中,能起到独特的保护皮肤作用,可保持皮肤滋润光滑,细腻柔嫩,富有弹性,具有防皱、美容保健和恢复皮肤生理功能的作用。
透明质酸,又名玻尿酸,是一种酸性粘多糖。它是肌肤水嫩的重要基础物质,本身也是人体的一种成分,具有特殊的保水作用是目前发现的自然界中保湿性最好的物质,被称为理想的天然保湿因子。可以改善皮肤营养代谢,使皮肤柔嫩、光滑、去皱、增加弹性、防止衰老,在保湿的同时又是良好的透皮吸收促进剂。与其他营养成分配合使用,可以起到促进营养吸收的更理想效果。
氰钴胺,又名维生素B12,为B族维生素之一,是一类含钴的复杂有机化合物。分子结构是以钴离子为中心的咕啉环和5,6-二甲基苯并咪唑为碱基组成的核苷酸。维生素B12能够促进红细胞的发育和成熟,使肌体造血机能处于正常状态,预防恶性贫血;维护神经系统健康。同时具有活化氨基酸的作用,可促进蛋白质的合成。
水解蚕丝由桑蚕丝蛋白在适当的条件下水解而制得,具有良好的生物相容性、无毒、无污染、无刺激性和可生物降解。
水解胶原蛋白具有健美皮肤,让皮肤水嫩光滑、紧实有弹性的作用。
氨基酸是皮肤角质层中天然保湿因子(NMF)的主要成分,易被皮肤吸收,优异的保湿效果。
该微分子肽原液中添加水解蚕丝,水解蚕丝中的有效成分分层释放,10s能够渗透肌肤真皮层,促进水解胶原蛋白合成,活化细胞,提高细胞的免疫力,促进肌肤的新陈代谢率,帮助修补受损的皮肤组织,令暗淡疲倦的肌肤再添生机,从而在极短时间内还原美白、光泽的肌肤。同时,水解蚕丝对黑色素生产的抑制更为有效。
该微分子肽原液中添加聚谷氨酸、透明质酸钠和维生素B-12,这些物质都具有高蛋白高营养作用,透明质酸钠是皮肤固有的生物物质,外源性的透明质酸钠是对皮肤内源性透明质酸钠的补充。质量较小的透明质酸钠可渗入皮肤表皮层,促进皮肤营养的供给和废物的排泄,从而防止皮肤老化,起到美容和养颜作用。
进一步的,该微分子肽原液能够让皮肤的毛孔进行扩张,使得营养物质能够快速的进入到皮质层以及皮下组织,与皮肤里面的元素进行混合后补充营养,对皮肤进行修复,或者互换细胞层。
在某些实施方案中,所述第一混合物包括以下重量百分比的组分:
在某些实施方案中,所述第二混合物包括以下重量百分比的组分:
透明质酸钠 0.5-1.0%,
透明质酸 0.5-1.5%,
氰钴胺 0.5-1.0%。
在某些实施方案中,所述第三混合物包括以下重量百分比的组分:
在某些实施方案中,微分子肽原液包括以下重量百分比的组分:
第一混合物:
第二混合物:
透明质酸钠 0.7%,
透明质酸 1.0%,
氰钴胺 0.7%;
第三混合物:
另一方面,本发明提供的制备微分子肽原液的方法,包括以下步骤:
S1、称取相应重量百分比的原料,备用;
S2、将水、甘油、丙二醇、水溶羊毛脂和乙酰基六肽-8混合,制得所述第一混合物;
S3、将透明质酸钠、透明质酸和氰钴胺混合,制得所述第二混合物;
S4、将所述第一混合物和第二混合物混合,制得组分A;
S5、将水解蚕丝、水解胶原蛋白、氨基酸、聚谷氨酸和维生素B-12混合,制得所述第三混合物;
S6、将所述第三混合物和组分A混合,制得所述微分子肽原液。
在某些实施方案中,步骤S2第一混合物的制备过程中控制搅拌转速为50-200r/min。
在某些实施方案中,步骤S4组分A的制备过程中控制反应温度为85℃。
在某些实施方案中,步骤S6微分子肽原液的制备过程中控制反应温度为45℃。
在某些实施方案中,微分子肽原液的制备方法,包括以下步骤:
S1、称取相应重量百分比的原料,备用;
S2、将水、甘油、丙二醇、水溶羊毛脂和乙酰基六肽-8于50-200r/min的转速下进行搅拌,制得所述第一混合物;
S3、将透明质酸钠、透明质酸和氰钴胺混合,制得所述第二混合物;
S4、温度升至85℃,将所述第一混合物和第二混合物进行均质,搅拌,制得组分A;
S5、将水解蚕丝、水解胶原蛋白、氨基酸、聚谷氨酸和维生素B-12混合,制得所述第三混合物;
S6、直至组分A完全溶解后,将组分A温度降至45℃,按比例将所述第三混合物和组分A搅拌均匀,制得所述微分子肽原液。
在某些实施方案中,本发明的微分子肽原液在护肤产品上的应用,如面霜、精华和面膜等。通过核心原料水溶羊毛脂、乙酰基六肽-8、透明质酸钠、透明质酸、氰钴胺、水解蚕丝、水解胶原蛋白、氨基酸聚谷氨酸、维生素B-12混合水、甘油和丙二醇,通过分子原料合成技术配制新型生物激活细胞原液。小分子聚肽原液对酸碱具有绝佳的缓冲能力,可有效的平衡酸碱值,降低脂堆积同时有效微分子与产品中的成份相结合(例如硅,脂、醇、脂肪、氨、硫、酸)形成抗氧化剂冲分展开各自的功能,还可以在生产过程中避免遭到破坏。该微分子肽原液中含有的胜肽因子在穿透表皮层到达基底层后可作为讯号因子与受伤组织的细胞表面接受器结合、刺激该部位的细胞产生大量的胶原蛋白,然而微分子里配制的透明质酸弹性纤维等微生物的物质使得受伤部位的组织、恢复紧实填冲的效果。也是让细胞再生的功效。
在某些实施方案中,该微分子肽原液在洗发水和护发素上的应用,该微分子肽原液中不含硅,可以将头发上的硅油和阳离子洗干净,从而让头发处于一个零硅油或少硅油沉淀的状态,对于头皮及发质健康有很大的帮助。也就是说,该微分子肽原液在用于洗发水时,不但可以进行头发清洁,而且也有快速滋养头发皮质和髓质层的作用,将营养物质渗透进头发皮质和髓质层中。现有的洗发护发产品含有硅,会使人脱发、掉发、头皮发痒,虽然头发洗完后是顺滑的,是因为在洗发水中添加了硅或者二甲基硅氧烷等化学组分,该组分的作用是把毛鳞片之间的空隙填满,于是造成滑顺的触觉,但硅本身的不透水性和其他惰性,也会封闭毛孔,造成头皮也容易发痒,甚至可能并发落发、脱发的后遗症。
在某些实施方案中,该微分子肽原液在烫染发上的应用,解决了烫染后头发的表皮层、皮质层和髓质层受伤害的问题,当皮质层的各种营养流失后,该微分子肽原液起到补充营养的作用。以及当做染发的时候,毛发里面打开后进行人工色素互换的时候,营养成分会发生流失,该微分子肽原液会起到连冲的作用。
在某些实施方案中,该微分子肽原液在沐足上的应用,在沐足时,微分子肽原液可通过温水进行扩散,而透过表皮毛孔渗透到皮质层或肌肤基底层,让毛细血管层提高免疫,补充营养。
进一步的,酸碱平衡在人体健康中发挥着重要作用,人们由于经常会吃一些油脂性的东西,所以在毛孔和头发中会排出一些物质,都是处于弱酸性的一种状态。所以我们要对洗发水和护肤产品做一些改进,让其做一些增合作用,使得头发和皮肤恢复健康的状态。人体健康的皮肤和头发pH值一般是在4.5-5.5之间。
进一步的,在强酸性和半成品生产工艺过程中,如果使用该微分子肽原液作为产品的原材料,会具有较大的优势。
有益效果:本发明的微分子肽原液具有紧致、舒缓肌肤,减少肌肤纹路产生,以及光嫩肤质的作用。一般用于护肤产品,如面霜、精华和面膜上。通过确定最佳组分和配比,可协同产生明显的紧肤、修复、抗皱和改善肤质功效,还具有易被皮肤吸收、生物利用率高的优点。该微分子肽原液综合应用多种延缓衰老的途径,有效提高清除自由基和抑制皮肤糖基化反应能力,从根源上减少胶原蛋白和弹性蛋白的降解和流失,延缓皮肤的衰老,进而具有显著的紧肤、修复、抗皱和改善肤质功效。也可作为护发品使用,可在头发表面形成一层薄膜,起到保湿、润滑、护发等作用,使头发易于梳理、飘逸自然。该微分子肽原液的制备方法简单易操作,适合大规模工艺生产。护理效果好,应用范围广泛,能够满足现实中多领域的应用。
具体实施方式
下面通过实施方式对本发明进行进一步详细的说明。
实施例1
微分子肽原液制备中使用的主要配料及登录号,如表1所示:
表1
实施例2微分子肽原液,包括:
第一混合物包括以下重量百分比的组分:
第二混合物包括以下重量百分比的组分:
透明质酸钠 1.0%,
透明质酸 1.0%,
氰钴胺 1.0%;
第三混合物包括以下重量百分比的组分:
该微分子肽原液制备方法,包括以下步骤:
S1、称取相应重量百分比的原料,备用;
S2、将水、甘油、丙二醇、水溶羊毛脂和乙酰基六肽-8于50r/min的转速下进行搅拌,制得第一混合物;
S3、将透明质酸钠、透明质酸和氰钴胺混合,制得第二混合物;
S4、温度升至85℃,将第一混合物和第二混合物进行均质,搅拌,制得组分A;
S5、将水解蚕丝、水解胶原蛋白、氨基酸、聚谷氨酸和维生素B-12混合,制得第三混合物;
S6、直至组分A完全溶解后,将组分A温度降至45℃,按比例第三混合物和组分A搅拌均匀,制得微分子肽原液。
实施例3微分子肽原液,包括:
第一混合物:
第二混合物:
透明质酸钠 0.7%,
透明质酸 1.0%,
氰钴胺 0.7%;
第三混合物:
该微分子肽原液制备方法,包括以下步骤:
S1、称取相应重量百分比的原料,备用;
S2、将水、甘油、丙二醇、水溶羊毛脂和乙酰基六肽-8于120r/min的转速下进行搅拌,制得第一混合物;
S3、将透明质酸钠、透明质酸和氰钴胺混合,制得第二混合物;
S4、温度升至85℃,将第一混合物和第二混合物进行均质,搅拌,制得组分A;
S5、将水解蚕丝、水解胶原蛋白、氨基酸、聚谷氨酸和维生素B-12混合,制得第三混合物;
S6、直至组分A完全溶解后,将组分A温度降至45℃,按比例第三混合物和组分A搅拌均匀,制得微分子肽原液。
实施例4微分子肽原液,包括:
第一混合物包括以下重量百分比的组分:
第二混合物包括以下重量百分比的组分:
透明质酸钠 0.5%,
透明质酸 0.5%,
氰钴胺 0.5%;
第三混合物包括以下重量百分比的组分:
该微分子肽原液制备方法,包括以下步骤:
S1、称取相应重量百分比的原料,备用;
S2、将水、甘油、丙二醇、水溶羊毛脂和乙酰基六肽-8于200r/min的转速下进行搅拌,制得第一混合物;
S3、将透明质酸钠、透明质酸和氰钴胺混合,制得第二混合物;
S4、温度升至85℃,将第一混合物和第二混合物进行均质,搅拌,制得组分A;
S5、将水解蚕丝、水解胶原蛋白、氨基酸、聚谷氨酸和维生素B-12混合,制得第三混合物;
S6、直至组分A完全溶解后,将组分A温度降至45℃,按比例第三混合物和组分A搅拌均匀,制得微分子肽原液。
性能测试
1、理化特性
实施例2-3中制备的分子肽原液的理化特性如表2所示:
表2
2、卫生指标测试
表3
3、皮肤水合度测试
将实施例2-4中制备的微分子肽原液进行水合度测试,选取60名女性志愿者,随机分成3组,每组20名,使用该微分子肽原液3周后,使用VISIA全脸分析仪检测发现在肤色上有显著的改善,以普通甘油保湿液作为对照组,结果如表4所示:
表4
由表4可以看出,本发明实施例2-4中的微分子肽原液具有明显的保湿功效。
4、皮肤皱纹数量的测试
将实施例2-4中制备的微分子肽原液进行皮肤皱纹数量的测试,选取30名女性志愿者,随机分成3组,每组10名,使用该微分子肽原液8周后,使用VISIA全脸分析仪检测发现在皱纹数量上有显著的改善,以普通甘油保湿液作为对照组,结果如表5所示:
表5
由表5可知,本发明的微分子肽原液具有明显的抗皱等功效。
综上所述:本发明的微分子肽原液具有紧致、舒缓肌肤,减少肌肤纹路产生,以及光嫩肤质的作用。一般用于护肤产品,如面霜、精华和面膜上。通过确定最佳组分和配比,可协同产生明显的紧肤、修复、抗皱和改善肤质功效,还具有易被皮肤吸收、生物利用率高的优点。该微分子肽原液综合应用多种延缓衰老的途径,有效提高清除自由基和抑制皮肤糖基化反应能力,从根源上减少胶原蛋白和弹性蛋白的降解和流失,延缓皮肤的衰老,进而具有显著的紧肤、修复、抗皱和改善肤质功效。也可作为护发品使用,可在头发表面形成一层薄膜,起到保湿、润滑、护发、消除静电等作用,使头发易于梳理、飘逸自然。该微分子肽原液的制备方法简单易操作,适合大规模工艺生产。护理效果好,应用范围广泛,能够满足现实中多领域的应用。
以上表述仅为本发明的优选方式,应当指出,对本领域的普通技术人员来说,在不脱离本发明创造构思的前提下,还可以做出若干变形和改进,这些也应视为发明的保护范围之内。
Claims (10)
1.一种微分子肽原液,其特征在于,包括:
第一混合物,所述第一混合物包括水、甘油、丙二醇、水溶羊毛脂和乙酰基六肽-8;
第二混合物,所述第二混合物包括透明质酸钠、透明质酸和氰钴胺;
第三混合物,所述第三混合物包括水解蚕丝、水解胶原蛋白、氨基酸、聚谷氨酸和维生素B-12。
3.根据权利要求1所述的一种微分子肽原液,其特征在于,所述第二混合物包括以下重量百分比的组分:
透明质酸钠 0.5-1.0%,
透明质酸 0.5-1.5%,
氰钴胺 0.5-1.0%。
6.制备权利要求1至5中任一权利要求所述的微分子肽原液的方法,其特征在于,包括以下步骤:
S1、称取相应重量百分比的原料,备用;
S2、将水、甘油、丙二醇、水溶羊毛脂和乙酰基六肽-8混合,制得所述第一混合物;
S3、将透明质酸钠、透明质酸和氰钴胺混合,制得所述第二混合物;
S4、将所述第一混合物和第二混合物混合,制得组分A;
S5、将水解蚕丝、水解胶原蛋白、氨基酸、聚谷氨酸和维生素B-12混合,制得所述第三混合物;
S6、将所述第三混合物和组分A混合,制得所述微分子肽原液。
7.根据权利要求6所述的微分子肽原液的制备方法,其特征在于,步骤S2第一混合物的制备过程中控制搅拌转速为50-200r/min。
8.根据权利要求6所述的微分子肽原液的制备方法,其特征在于,步骤S4组分A的制备过程中控制反应温度为85℃。
9.根据权利要求6所述的微分子肽原液的制备方法,其特征在于,步骤S6微分子肽原液的制备过程中控制反应温度为45℃。
10.根据权利要求6所述的微分子肽原液的制备方法,其特征在于,包括以下步骤:
S1、称取相应重量百分比的原料,备用;
S2、将水、甘油、丙二醇、水溶羊毛脂和乙酰基六肽-8于50-200r/min的转速下进行搅拌,制得所述第一混合物;
S3、将透明质酸钠、透明质酸和氰钴胺混合,制得所述第二混合物;
S4、温度升至85℃,将所述第一混合物和第二混合物进行均质,搅拌,制得组分A;
S5、将水解蚕丝、水解胶原蛋白、氨基酸、聚谷氨酸和维生素B-12混合,制得所述第三混合物;
S6、直至组分A完全溶解后,将组分A温度降至45℃,按比例将所述第三混合物和组分A搅拌均匀,制得所述微分子肽原液。
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