CN112870094A - 生物活性修护型无水体系牙膏 - Google Patents
生物活性修护型无水体系牙膏 Download PDFInfo
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Abstract
本发明提供生物活性修护型无水体系牙膏,包括如下原料:甘油、水合硅石、聚乙二醇‑8、磷硅酸钠钙、月桂醇硫酸酯钠、木糖醇、甘油磷酸钙、三氯半乳糖、卡波姆、磷酸镁锂、二氧化钛/ci 77891、香精、氢苯甲酯以及羟苯乙酯。本发明通过各原料的配合,利用各原料内的不含水特性,使各原料组分之间充分混合反应,所达到的效果更佳,改变表面带负电荷,立刻会开始吸附组织再生所需的人体构造基块,促进牙龈生长因子、胶原纤维蛋白生成等,修复牙龈,同时磷硅酸钙钠材料吸附在牙釉质上和牙齿孔洞中,再通过连续反应,形成与牙齿结构相似的羟基磷灰石,从而达到组织矿化,为牙釉质包裹一成骨性保护膜,填充牙齿孔洞,快速解决牙齿敏感。
Description
技术领域
本发明涉及牙膏领域,尤其涉及生物活性修护型无水体系牙膏。
背景技术
牙膏是洁牙制品的一种,一般呈凝胶状,通常会抹在牙刷上,借助牙刷的机械摩擦的作用清洁牙齿表面,对牙齿及其周边进行清洁,使口腔净化清爽,要使牙齿美观、保护牙龈健康和防止口臭,牙齿清洁是最重要的,牙膏已成为人类日常生活的必需品。
随着现在牙膏技术效果的改进,各大牙膏厂商也逐步加强牙膏的护理效果,然而现在市场上的牙膏大多为含水量在10-20%的有水体系牙膏,无法采取无水体系工艺保留更多高配位硅,不易加速形成水硅凝胶层,实现不了细胞快速增殖,减缓骨组织、创伤组织的加速生长速率,起不到预防蛀牙的目的,不能有效减轻牙龈炎症,促进不了牙齿再矿化的效果,同时也大多加入添加剂,损害人们的身体健康。
因此,有必要提供生物活性修护型无水体系牙膏解决上述技术问题。
发明内容
本发明提供生物活性修护型无水体系牙膏,解决了现在市场上的牙膏大多为含水量在10-20%的有水体系牙膏,无法采取无水体系工艺保留更多高配位硅,不易加速形成水硅凝胶层,实现不了细胞快速增殖,减缓骨组织、创伤组织的加速生长速率,起不到预防蛀牙的目的的问题。
为解决上述技术问题,本发明提供的生物活性修护型无水体系牙膏,包括如下原料:
甘油、水合硅石、聚乙二醇-8、磷硅酸钠钙、月桂醇硫酸酯钠、木糖醇、甘油磷酸钙、三氯半乳糖、卡波姆、磷酸镁锂、二氧化钛/ci 77891、香精、氢苯甲酯以及羟苯乙酯;
且各原料之间的配比范围为:
1%-3%甘油、2%-5%水合硅石、1%-10%聚乙二醇-8、2%-30%磷硅酸钠钙、0.5%-5%月桂醇硫酸酯钠、1%-15%木糖醇、2%-8%甘油磷酸钙、5%-10%三氯半乳糖、1%-13%卡波姆、0.1%-10%磷酸镁锂、1%-4.8%二氧化钛/ci 77891、2%-10%香精、0.8%-4%氢苯甲酯以及0.6%-2.8%羟苯乙酯;
无水体系牙膏的制作步骤如下:
S1、选料:预先选取甘油、聚乙二醇-8以及木糖醇作为保湿剂原料,再选取甘油磷酸钙和羟苯乙酯作为增稠剂原料,再选取三氯半乳糖、卡波姆、磷酸镁锂、香精以及氢苯甲酯作为助剂材料,再将水合硅石、磷硅酸钠钙、月桂醇硫酸酯钠以及二氧化钛/ci 77891固体粉末材料选出;
S2、分散:再将卡波姆均匀分散在盛有聚乙二醇-8的容器内,然后再使用搅拌棒轻轻搅动容器内的卡波姆与聚乙二醇-8的混合溶液;
S3、原料搅拌:然后再将甘油、聚乙二醇-8以及木糖醇作为保湿剂原料倒入S1步骤中的容器内,然后再向容器内加入甘油磷酸钙和羟苯乙酯增稠原料进行中和反应,然后再使用电动搅拌器对容器内溶液进行搅拌,直至容器内各原料溶液搅拌均匀为止;
S4、一级真空混合:接着再将水合硅石、磷硅酸钠钙、月桂醇硫酸酯钠以及二氧化钛/ci 77891固体粉末倒入S3步骤中的容器内,在真空环境下,然后再使用电动搅拌棒对容器内的粉末溶液进行搅匀,搅拌至粘稠状即可;
S5、二级真空混合:搅拌期间,再依次向S4步骤中的容器内依次注入三氯半乳糖、磷酸镁锂、香精以及氢苯甲酯,催化容器中的原料发生化学反应,然后在真空环境下,再使用电动搅拌棒对容器中的原料进行再次搅拌,然后制得牙膏膏状混合物;
S6、检测包装:再对S5步骤中制得牙膏膏状混合物进行检测,对检测合格后的牙膏产品进行包装下线,不合格的牙膏产品统一回收至不合格品处进行相应处理。
优选的,所述磷硅酸钠钙的材质是由SiO2,Na2O,CaO和P2O5基本成分组成,所述磷硅酸钠钙颗粒的直径小于30μm,且磷硅酸钠钙与体液接触释放的离子有钙+、钠+、磷+以及硅+离子,且各离子形成的形状为三维网状结构。
优选的,所述在S1选料步骤中,使用者使用电子秤对各原料按照配比进行精准称重,所述使用者使用1000目筛网对水合硅石、磷硅酸钠钙、月桂醇硫酸酯钠以及二氧化钛/ci 77891固体粉末材料进行预先筛选处理。
优选的,所述在S3原料搅拌步骤中,电动搅拌器对容器内的溶液原料采用中速方式搅拌8-15min,且搅拌速度范围介于50-150r/min。
优选的,所述在S4一级真空混合步骤中,在真空条件下,电动搅拌棒对容器内的粉末溶液采用中速搅拌方式,且中速搅拌时间范围介于12-25min。
优选的,所述在S5二级真空混合步骤中,在真空条件下,电动搅拌棒对容器内的粉末溶液采用高速搅拌方式,且高速搅拌时间范围介于15-40min,搅拌速度范围介于80-260r/min。
优选的,所述在S6检测包装过程中,制得牙膏膏状产品中的含水量低于0.01%,且制得牙膏膏状产品中无防腐剂添加。
与相关技术相比较,本发明提供的生物活性修护型无水体系牙膏具有如下有益效果:
本发明提供生物活性修护型无水体系牙膏,
1、本发明通过各原料的配合,利用各原料内的不含水特性,使各原料组分之间充分混合反应,所达到的效果更佳,改变表面带负电荷,立刻会开始吸附组织再生所需的人体构造基块,促进牙龈生长因子、胶原纤维蛋白生成等,修复牙龈,同时磷硅酸钙钠材料吸附在牙釉质上和牙齿孔洞中,再通过连续反应,形成与牙齿结构相似的羟基磷灰石,从而达到组织矿化,为牙釉质包裹一成骨性保护膜,填充牙齿孔洞,快速解决牙齿敏感,通过各步骤流程的配合,制备采取无水体系工艺,保留更多高配位硅,配位硅拥有非桥氧,加速形成水硅凝胶层,吸附溶液中的Ca2+和PO43-,实现细胞快速增殖,骨组织、创伤组织加速生长,经过人工唾液处理后,磷硅酸钙钠在牙本质小管中发生矿化,颗粒表面形成针状羟基磷灰石,形成对牙本质小管均匀支撑,有抑制牙菌斑的形成、缓解牙龈出血、减轻牙龈炎症,改善牙龈健康,促进牙齿再矿化的效果。
附图说明
图1为本发明提供的生物活性修护型无水体系牙膏的较佳实施例的工艺流程图。
具体实施方式
下面结合附图和实施方式对本发明作进一步说明。
请结合参阅图1,其中图1为本发明提供的生物活性修护型无水体系牙膏的较佳实施例的工艺流程图。
第一实施例:
生物活性修护型无水体系牙膏,包括如下原料:
甘油、水合硅石、聚乙二醇-8、磷硅酸钠钙、月桂醇硫酸酯钠、木糖醇、甘油磷酸钙、三氯半乳糖、卡波姆、磷酸镁锂、二氧化钛/ci 77891、香精、氢苯甲酯以及羟苯乙酯;
且各原料之间的配比为:
2%甘油、4%水合硅石、6%聚乙二醇-8、24%磷硅酸钠钙、4%月桂醇硫酸酯钠、13%木糖醇、7%甘油磷酸钙、6%三氯半乳糖、12%卡波姆、9%磷酸镁锂、4%二氧化钛/ci77891、6%香精、2%氢苯甲酯以及1%羟苯乙酯;
无水体系牙膏的制作步骤如下:
S1、选料:预先选取甘油、聚乙二醇-8以及木糖醇作为保湿剂原料,再选取甘油磷酸钙和羟苯乙酯作为增稠剂原料,再选取三氯半乳糖、卡波姆、磷酸镁锂、香精以及氢苯甲酯作为助剂材料,再将水合硅石、磷硅酸钠钙、月桂醇硫酸酯钠以及二氧化钛/ci 77891固体粉末材料选出;
S2、分散:再将卡波姆均匀分散在盛有聚乙二醇-8的容器内,然后再使用搅拌棒轻轻搅动容器内的卡波姆与聚乙二醇-8的混合溶液;
S3、原料搅拌:然后再将甘油、聚乙二醇-8以及木糖醇作为保湿剂原料倒入S1步骤中的容器内,然后再向容器内加入甘油磷酸钙和羟苯乙酯增稠原料进行中和反应,然后再使用电动搅拌器对容器内溶液进行搅拌,直至容器内各原料溶液搅拌均匀为止;
S4、一级真空混合:接着再将水合硅石、磷硅酸钠钙、月桂醇硫酸酯钠以及二氧化钛/ci 77891固体粉末倒入S3步骤中的容器内,在真空环境下,然后再使用电动搅拌棒对容器内的粉末溶液进行搅匀,搅拌至粘稠状即可;
S5、二级真空混合:搅拌期间,再依次向S4步骤中的容器内依次注入三氯半乳糖、磷酸镁锂、香精以及氢苯甲酯,催化容器中的原料发生化学反应,然后在真空环境下,再使用电动搅拌棒对容器中的原料进行再次搅拌,然后制得牙膏膏状混合物;
S6、检测包装:再对S5步骤中制得牙膏膏状混合物进行检测,对检测合格后的牙膏产品进行包装下线,不合格的牙膏产品统一回收至不合格品处进行相应处理。
所述磷硅酸钠钙的材质是由SiO2,Na2O,CaO和P2O5基本成分组成,所述磷硅酸钠钙颗粒的直径小于30μm,提升磷硅酸钠钙原料的材质要求,增强磷硅酸钠钙原料的发挥效果,且磷硅酸钠钙与体液接触释放的离子有钙+、钠+、磷+以及硅+离子,且各离子形成的形状为三维网状结构,增强各离子结构之间的整体稳定性,有利于各离子之间的电荷传导,避免离子之前断裂影响牙膏的整体效果。
所述在S1选料步骤中,使用者使用电子秤对各原料按照配比进行精准称重,保证各原料的整体精准配比,充分发挥各原料的成效,所述使用者使用1000目筛网对水合硅石、磷硅酸钠钙、月桂醇硫酸酯钠以及二氧化钛/ci 77891固体粉末材料进行预先筛选处理,防止各粉末材料中掺杂较大颗粒的杂质,对牙膏成品的效果造成影响,保证各粉末材料的洁净度和制作要求合格性。
所述在S3原料搅拌步骤中,电动搅拌器对容器内的溶液原料采用中速方式搅拌8-15min,且搅拌速度范围介于50-150r/min,可对S3步骤中的各原料进行预先搅拌,使各原料之间充分接触。
所述在S4一级真空混合步骤中,在真空条件下,电动搅拌棒对容器内的粉末溶液采用中速搅拌方式,且中速搅拌时间范围介于12-25min,可对S4步骤中的各原料之间进行充分受力混合,增大各原料之间的接触面积,增强各原料之间的混合效果。
所述在S5二级真空混合步骤中,在真空条件下,电动搅拌棒对容器内的粉末溶液采用高速搅拌方式,且高速搅拌时间范围介于15-40min,搅拌速度范围介于80-260r/min,可对S5步骤中的各原料进行高速搅拌,避免原料中出现结块状物体,进一步提高各原料的搅拌充分度。
所述在S6检测包装过程中,制得牙膏膏状产品中的含水量低于0.01%,使制得的牙膏成品达到污水体系要求,且制得牙膏膏状产品中无防腐剂添加,有利于减少人体对有害防腐剂的摄入量,增强人们的身体健康。
第二实施例:
基于本申请的第一实施例提供的生物活性修护型无水体系牙膏,本申请的第二实施例提出了另一种生物活性修护型无水体系牙膏,第二实施例仅是第一实施例优选的方式,第二实施例的实施对第一实施例的单独实施不会造成影响。
具体的,且各原料之间的配比为:
2.5%甘油、4%水合硅石、6%聚乙二醇-8、26%磷硅酸钠钙、4%月桂醇硫酸酯钠、14%木糖醇、6.5%甘油磷酸钙、7%三氯半乳糖、9%卡波姆、9%磷酸镁锂、4%二氧化钛/ci77891、5%香精、2%氢苯甲酯以及1%羟苯乙酯。
第三实施例:
基于本申请的第一实施例提供的生物活性修护型无水体系牙膏,本申请的第二实施例提出了另一种生物活性修护型无水体系牙膏,第三实施例仅是第一实施例优选的方式,第三实施例的实施对第一实施例的单独实施不会造成影响。
具体的,且各原料之间的配比为:
3%甘油、3.5%水合硅石、8%聚乙二醇-8、27%磷硅酸钠钙、4.25%月桂醇硫酸酯钠、10.44%木糖醇、6.13%甘油磷酸钙、7.5%三氯半乳糖、9%卡波姆、8.75%磷酸镁锂、4%二氧化钛/ci 77891、4%香精、2.87%氢苯甲酯以及1.56%羟苯乙酯。
与相关技术相比较,本发明提供的生物活性修护型无水体系牙膏具有如下有益效果:
本发明通过各原料的配合,利用各原料内的不含水特性,使各原料组分之间充分混合反应,所达到的效果更佳,改变表面带负电荷,立刻会开始吸附组织再生所需的人体构造基块,促进牙龈生长因子、胶原纤维蛋白生成等,修复牙龈,同时磷硅酸钙钠材料吸附在牙釉质上和牙齿孔洞中,再通过连续反应,形成与牙齿结构相似的羟基磷灰石,从而达到组织矿化,为牙釉质包裹一成骨性保护膜,填充牙齿孔洞,快速解决牙齿敏感,通过各步骤流程的配合,制备采取无水体系工艺,保留更多高配位硅,配位硅拥有非桥氧,加速形成水硅凝胶层,吸附溶液中的Ca2+和PO43-,实现细胞快速增殖,骨组织、创伤组织加速生长,经过人工唾液处理后,磷硅酸钙钠在牙本质小管中发生矿化,颗粒表面形成针状羟基磷灰石,形成对牙本质小管均匀支撑,有抑制牙菌斑的形成、缓解牙龈出血、减轻牙龈炎症,改善牙龈健康,促进牙齿再矿化的效果。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其它相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (7)
1.生物活性修护型无水体系牙膏,其特征在于,包括如下原料:
甘油、水合硅石、聚乙二醇-8、磷硅酸钠钙、月桂醇硫酸酯钠、木糖醇、甘油磷酸钙、三氯半乳糖、卡波姆、磷酸镁锂、二氧化钛/ci 77891、香精、氢苯甲酯以及羟苯乙酯;
且各原料之间的配比范围为:
1%-3%甘油、2%-5%水合硅石、1%-10%聚乙二醇-8、2%-30%磷硅酸钠钙、0.5%-5%月桂醇硫酸酯钠、1%-15%木糖醇、2%-8%甘油磷酸钙、5%-10%三氯半乳糖、1%-13%卡波姆、0.1%-10%磷酸镁锂、1%-4.8%二氧化钛/ci 77891、2%-10%香精、0.8%-4%氢苯甲酯以及0.6%-2.8%羟苯乙酯;
无水体系牙膏的制作步骤如下:
S1、选料:预先选取甘油、聚乙二醇-8以及木糖醇作为保湿剂原料,再选取甘油磷酸钙和羟苯乙酯作为增稠剂原料,再选取三氯半乳糖、卡波姆、磷酸镁锂、香精以及氢苯甲酯作为助剂材料,再将水合硅石、磷硅酸钠钙、月桂醇硫酸酯钠以及二氧化钛/ci 77891固体粉末材料选出;
S2、分散:再将卡波姆均匀分散在盛有聚乙二醇-8的容器内,然后再使用搅拌棒轻轻搅动容器内的卡波姆与聚乙二醇-8的混合溶液;
S3、原料搅拌:然后再将甘油、聚乙二醇-8以及木糖醇作为保湿剂原料倒入S1步骤中的容器内,然后再向容器内加入甘油磷酸钙和羟苯乙酯增稠原料进行中和反应,然后再使用电动搅拌器对容器内溶液进行搅拌,直至容器内各原料溶液搅拌均匀为止;
S4、一级真空混合:接着再将水合硅石、磷硅酸钠钙、月桂醇硫酸酯钠以及二氧化钛/ci77891固体粉末倒入S3步骤中的容器内,在真空环境下,然后再使用电动搅拌棒对容器内的粉末溶液进行搅匀,搅拌至粘稠状即可;
S5、二级真空混合:搅拌期间,再依次向S4步骤中的容器内依次注入三氯半乳糖、磷酸镁锂、香精以及氢苯甲酯,催化容器中的原料发生化学反应,然后在真空环境下,再使用电动搅拌棒对容器中的原料进行再次搅拌,然后制得牙膏膏状混合物;
S6、检测包装:再对S5步骤中制得牙膏膏状混合物进行检测,对检测合格后的牙膏产品进行包装下线,不合格的牙膏产品统一回收至不合格品处进行相应处理。
2.根据权利要求1所述的生物活性修护型无水体系牙膏,其特征在于,所述磷硅酸钠钙的材质是由SiO2,Na2O,CaO和P2O5基本成分组成,所述磷硅酸钠钙颗粒的直径小于30μm,且磷硅酸钠钙与体液接触释放的离子有钙+、钠+、磷+以及硅+离子,且各离子形成的形状为三维网状结构。
3.根据权利要求1所述的生物活性修护型无水体系牙膏,其特征在于,所述在S1选料步骤中,使用者使用电子秤对各原料按照配比进行精准称重,所述使用者使用1000目筛网对水合硅石、磷硅酸钠钙、月桂醇硫酸酯钠以及二氧化钛/ci 77891固体粉末材料进行预先筛选处理。
4.根据权利要求1所述的生物活性修护型无水体系牙膏,其特征在于,所述在S3原料搅拌步骤中,电动搅拌器对容器内的溶液原料采用中速方式搅拌8-15min,且搅拌速度范围介于50-150r/min。
5.根据权利要求1所述的生物活性修护型无水体系牙膏,其特征在于,所述在S4一级真空混合步骤中,在真空条件下,电动搅拌棒对容器内的粉末溶液采用中速搅拌方式,且中速搅拌时间范围介于12-25min。
6.根据权利要求1所述的生物活性修护型无水体系牙膏,其特征在于,所述在S5二级真空混合步骤中,在真空条件下,电动搅拌棒对容器内的粉末溶液采用高速搅拌方式,且高速搅拌时间范围介于15-40min,搅拌速度范围介于80-260r/min。
7.根据权利要求1所述的生物活性修护型无水体系牙膏,其特征在于,所述在S6检测包装过程中,制得牙膏膏状产品中的含水量低于0.01%,且制得牙膏膏状产品中无防腐剂添加。
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CN115670949A (zh) * | 2021-12-27 | 2023-02-03 | 上海优萃生物科技有限公司 | 一种用于牙齿美白去渍的无水牙膏及其制备方法 |
CN115670977A (zh) * | 2021-12-31 | 2023-02-03 | 上海优萃生物科技有限公司 | 一种抗炎温和的美白牙膏的制备方法及其产物 |
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CN115670949A (zh) * | 2021-12-27 | 2023-02-03 | 上海优萃生物科技有限公司 | 一种用于牙齿美白去渍的无水牙膏及其制备方法 |
CN115670977A (zh) * | 2021-12-31 | 2023-02-03 | 上海优萃生物科技有限公司 | 一种抗炎温和的美白牙膏的制备方法及其产物 |
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