CN107362245A - 一种具有抗氧化和降同型半胱氨酸的组合物 - Google Patents
一种具有抗氧化和降同型半胱氨酸的组合物 Download PDFInfo
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- CN107362245A CN107362245A CN201710609639.3A CN201710609639A CN107362245A CN 107362245 A CN107362245 A CN 107362245A CN 201710609639 A CN201710609639 A CN 201710609639A CN 107362245 A CN107362245 A CN 107362245A
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- homosysteine
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- vitamin
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Abstract
本发明公开了一种具有抗氧化和降同型半胱氨酸的组合物,该组合物包括以下成分,按重量份数为:甜菜碱8‑200,猕猴桃10‑300,富硒酵母0.01‑0.03,甜菜红0.5‑2,柠檬酸钙120‑200,叶酸0‑0.1,D‑甘露糖醇20‑300,维生素B6为0‑0.5,山梨糖醇200‑600,维生素B12为0‑0.1,螺旋藻0‑16,葡萄籽粉0‑33,肠浒苔0‑11,淫羊藿0‑12,蛹虫草0‑6;所述的甜菜碱为天然生物提取或化学合成的纯度为98.5%以上的甜菜碱。该组合物对于降同型半胱氨酸效果明显,又具有良好的抗氧化性,能保持服用者的身体活性,延缓衰老,又具有补充钙质的作用,同时,科学精确而又易于吸收的配方,无副作用,适合各类成年人使用。
Description
技术领域
本发明涉及一种组合物,具体涉及一种具有抗氧化和降同型半胱氨酸的组合物。
背景技术
同型半胱氨酸,又称高半胱氨酸,是氨基酸半胱氨酸的异种,在旁链部份硫醇基(-SH)前包含一个额外的亚甲基(-CH2-)。同型半胱氨酸的额外亚甲基使硫醇基更接近羧基,令它能起动化学反应形成一个五元环,称为高半胱氨酸硫内酯。当氨基酸正常地与它的毗邻形成一个肽键就会产生这种反应,因含有同型半胱氨酸存在的蛋白质会自行分解,所以同型半胱氨酸是不适合与蛋白质混合的。
正因为上述高半胱氨酸的特点,所以高半胱氨酸的自动氧化成活性氧会损害机体,生物化学的研究认为高半胱氨酸影响半胱氨酸及赖氨酸的功能及结构,会使动脉的三个主要结构蛋白(胶原蛋白、弹性蛋白及多糖蛋白)衰退及影响它们生长。2006年有一项研究,在治疗上指摄取维他命以减低高半胱氨酸恢复破坏的动脉结构尚未有显著的成效,虽然整体死亡率并没有明显改变,但是有助于患有严重动脉衰竭的病人,中风个案下降了25%。同时,高半胱氨酸虽不会影响骨质密度,但妨碍胶原蛋白纤维与组织的连接,高水平的高半胱氨酸会增加老人的骨折率。另外,研究表明,高半胱氨酸水平过高即所谓的高半胱氨酸血症,会导致人体产生认知功能障碍,严重的会导致产生阿尔茨海默氏病,精神分裂症等。
高半胱氨酸是由体内的重要氨基酸蛋氨酸转化过来的,因为肉类、乳酪及其他蛋白质类食物中蛋氨酸含量特别丰富,所以我们差不多每天都吃到这种蛋氨酸。我们体内高半胱氨酸的水平被称为H值(H Score),H值可以更准确的预测患心脏病或中风的危险,而且可以比基因更好地预测患老年痴呆症的危险。事实上,H值可以帮助预报近50多种疾病风险,包括所有会导致早亡的原因。它甚至可以告知你目前的衰老速度。通过反映维生素B营养状况、免疫系统功能和大脑情况,可以显示体内的化学状况是否正常。
高半胱氨酸浓度越低,你的身体就越能保持完美的生化平衡,从而使自己更完美。这就意味着更多的精力、更好的耐力及忍受力,更清醒的头脑、更少的感染和更好的皮肤及体重控制。因此,如果不保持高半胱氨酸浓度较低或在平衡范围之内,你就很可能会遇到如下的问题:1.加速氧化及衰老;2.损伤你的动脉;3.削弱的免疫系统;4.对大脑的损伤及降低智商;5.增加疼痛、炎症及血栓;6.易患癌症及解毒问题;7.易患癌症及解毒问题;8.激素问题;9.维生素B的缺乏;10.SAMe的缺乏。因此,高半胱氨酸是人的重要健康指标。
我们的身体有几种方法可以降解体内的高半胱氨酸,一种方法是通过回收蛋氨酸的途径,因为高半胱氨酸在体内是通过蛋氨酸产生的,通过"它来自何处,就返回何处"的方法可以有效的降低高半胱氨酸在体内的浓度,我们体内必须有足够的叶酸和维生素B-12,才能保持回收的工作做得好;其次,高半胱氨酸可以在有维生素B-6的条件下转换成半胱氨酸。还有另外一种方法,就是通过补充肌酸(creatine)来减少肌酸在体内的产生,从而减少高半胱氨酸在体内的产生。
另外,人的新陈代谢也像是氧化作用,亦即人体每天都在生锈,所产生的“铁锈”在医学里就叫“自由基”。一般情况下,生命是离不开自由基活动的。我们的身体每时每刻都从里到外的运动,每一瞬间都在燃烧着能量,而负责传递能量的搬运工就是自由基。当这些帮助能量转换的自由基被封闭在细胞里不能乱跑乱窜时,它们对生命是无害的。但如果自由基的活动失去控制,超过一定的量,生命的正常秩序就会被破坏,疾病可能就会随之而来。而抗氧化就是任何以低浓度存在就能有效抑制自由基的氧化反应的物质,其作用机理可以是直接作用在自由基,或是间接消耗掉容易生成自由基的物质,防止发生进一步反应。人体在不可避免地产生自由基的同时,也在自然产生着抵抗自由基的抗氧化物质,以抵消自由基对人体细胞的氧化攻击。研究证明,人体的抗氧化系统是一个可与免疫系统相比拟的、具有完善和复杂功能的系统,机体抗氧化的能力越强,就越健康,生命也越长。人体的抗氧化物质有自身合成的,也有由食物供给的。酶和非酶抗氧化物质在保护由于运动引起的过氧化损伤中起至关重要的作用。补充植物活性硒增强抗氧化有利于运动机体减少自由基的产生或加速其清除,以对抗自由基的副作用,因而对一般人和运动员的健康都有益,可能延缓运动性疲劳发生和加快体能恢复,年龄大的体力活动者比年轻者服用抗氧化剂效果更好。
针对现有公开的技术方案中,发明专利申请号为201610745240.3公开了一种含有盐酸马尼地平和叶酸的复合制剂在制备治疗高同型半胱氨酸血症的药物中的用途,该复方制剂将盐酸马尼地平与叶酸合用可进一步降低Hcy,,从而减少Hcy损伤,为高同型半胱氨酸血症和半胱氨酸升疾病的治疗提供更有效的治疗方案。该复合制剂虽然成分单一,但该复合制剂为合成性物质,不宜长期大量服用,具有一定的不良反应,同时经过对该含有盐酸马尼地平和叶酸的复合制剂试验得出结果,即对于人体试验来说其降同型半胱氨酸的性能不足,其服用效果不甚理想,因此,针对降同型半胱氨酸的组合物还需进行改善,促进其服用效果,去除合成药剂的不良反应。
发明内容
(1)要解决的技术问题
针对现有技术的不足,本发明要解决的技术问题是提供一种具有抗氧化和降同型半胱氨酸的组合物,该组合物对于降同型半胱氨酸效果明显,又具有良好的抗氧化性,能保持服用者的身体活性,延缓衰老,又具有补充钙质的作用,同时,科学精确而又易于吸收的配方,无副作用,适合各类成年人使用。
(2)技术方案
为了解决上述技术问题,本发明提供了这样一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱8-200,猕猴桃10-300,富硒酵母0.01-0.03,甜菜红0.5-2,柠檬酸钙120-200,叶酸0-0.1,D-甘露糖醇20-300,维生素B6为0-0.5,山梨糖醇200-600,维生素B12为0-0.1,螺旋藻0-16,葡萄籽粉0-33,肠浒苔0-11,淫羊藿0-12,蛹虫草0-6;
所述的甜菜碱为天然生物提取或化学合成的纯度为98.5%以上的甜菜碱。
优选地,本发明所述的一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱8-200,猕猴桃10-300,富硒酵母0.01-0.03,甜菜红0.5-2,柠檬酸钙120-200,叶酸0-0.1,D-甘露糖醇20-300,维生素B6为0-0.5,山梨糖醇200-600,维生素B12为0-0.1,螺旋藻0-16,葡萄籽粉0-33,肠浒苔0-11,淫羊藿0-12,蛹虫草0-6,普洱茶12-16,枸杞24-26,雪菊11-13,茯苓9-15,肉桂12-14,卵磷脂0.5-1.5,女贞子1-3。
进一步地,本发明所述的一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱8-200,猕猴桃10-300,富硒酵母0.01-0.03,甜菜红0.5-2,柠檬酸钙120-200,叶酸0-0.1,D-甘露糖醇20-300,维生素B6为0-0.5,山梨糖醇200-600,维生素B12为0-0.1,螺旋藻0-16,葡萄籽粉0-33,肠浒苔0-11,淫羊藿0-12,蛹虫草0-6,普洱茶12-16,枸杞24-26,雪菊11-13,茯苓9-15,肉桂12-14,卵磷脂0.5-1.5,女贞子1-3,银杏叶7-9,三七2.5-3.5,红花3-5,大黄7-9,玫瑰花19-21,牛蒡根13-15。
进一步地,本发明所述的一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱105,猕猴桃160,富硒酵母0.02,甜菜红1.4,柠檬酸钙160,叶酸0.05,D-甘露糖醇170,维生素B6为0.3,山梨糖醇400,维生素B12为0.05,螺旋藻8,葡萄籽粉16,肠浒苔5,淫羊藿6,蛹虫草3,普洱茶14,枸杞25,雪菊12,茯苓12,肉桂13,卵磷脂1,女贞子2,银杏叶8,三七3,红花4,大黄8,玫瑰花20,牛蒡根14。
优选地,本发明所述的一种具有抗氧化和降同型半胱氨酸的组合物,所述组合物用于食品或食品添加物的用途。
优选地,本发明所述的一种具有抗氧化和降同型半胱氨酸的组合物,所述组合物用于药物的用途。
进一步地,本发明所述的一种具有抗氧化和降同型半胱氨酸的组合物,所述组合物的药物用途制成颗粒剂、口服液或片剂。
(3)有益效果
本发明与现有降同型半胱氨酸的组合物相比,通过科学合理的配方配比,利用各成分的搭配与互补,并将其各种原料进行融合,从而对人体降同型半胱氨酸有显著的功效,而且,针对不同的人群需要,还可以分别制成食品、食品添加物或药物等种类,方便使用者服用,食用简单,同时,根据具体实施方式进行的试验验证,可以很明显地得出相应的结果,即本发明的组合物具有抗氧化和降同型半胱氨酸的效果,能保持服用者的身体活性,延缓衰老,又具有补充钙质的作用,同时,科学精确而又易于吸收的配方,安全有效无副作用,适合各类成年人使用。
大量的研究表明,甜菜碱可以通过增强血红素氧化酶的表达,促进肝细胞内内源性的CO产生,而低浓度的CO又具有保护细胞和抑制细胞凋亡的作用;甜菜碱又可以促进鸟苷酸环化酶的活性,使c-GMP浓度增加,激活丝裂原激活蛋白激酶(MARK),抑制细胞凋亡途径;甜菜碱还可以促进肝内S-腺甘蛋氨酸的合成,抑制蛋白激酶C(PKC)的活性来保护肝细胞。另外,甜菜碱具有强烈的吸湿性能,具有抗脂肪肝、降压和抗肿瘤的功效,同时非常安全。
利用上述甜菜碱的特性,再精确辅以猕猴桃、富硒酵母、甜菜红、柠檬酸钙、叶酸、D-甘露糖醇、维生素B6、山梨糖醇和维生素B12等分别各自具有各种降解调节人体内平衡的成分,使其配比中的各种成分充分发挥作用,同时又能相互促进,从而起到事半功倍的作用,使其降同型半胱氨酸的效果显著,安全无副作用。同时,又结合猕猴桃、叶酸和柠檬酸钙自身具有抗氧化和富含钙质的特性,使其保持服用者的身体活性,延缓衰老,又具有补充钙质的作用,功能效用丰富。
本发明中的甜菜碱配合猕猴桃、叶酸和柠檬酸钙等各种配方,再科学巧妙的辅以其他添加物,并结合及其精细的质量配比,使其抗氧化和降同型半胱氨酸的功效得以最大化地实现。
具体实施方式
为使本发明实现的技术手段、创作特征、达成目的与功效易于明白了解,下面将对本发明实施例中的技术方案进行清楚、完整的描述,以进一步阐述本发明,显然,所描述的实施例仅仅是本发明的一部分实施例,而不是全部的实施例。
实施例1
一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱8,猕猴桃10,富硒酵母0.01,甜菜红0.5,柠檬酸钙120,D-甘露糖醇20,山梨糖醇200。
其中的甜菜碱为天然生物提取的纯度为98.7%的甜菜碱,并将该组合物制成食品,从而到样品1。
实施例2
一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱105,猕猴桃160,富硒酵母0.02,甜菜红1.4,柠檬酸钙160,叶酸0.05,D-甘露糖醇170,维生素B6为0.3,山梨糖醇400,维生素B12为0.05,螺旋藻8,葡萄籽粉16,肠浒苔5,淫羊藿6,蛹虫草3。
其中的甜菜碱为化学合成的纯度为99.1%的甜菜碱,并将该组合物制成食品添加物,从而到样品2。
实施例3
一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱200,猕猴桃300,富硒酵母0.03,甜菜红2,柠檬酸钙200,叶酸0.1,D-甘露糖醇300,维生素B6为0.5,山梨糖醇600,维生素B12为0.1,螺旋藻16,葡萄籽粉33,肠浒苔11,淫羊藿12,蛹虫草6。
其中的甜菜碱为化学合成的纯度为98.9%的甜菜碱,并将该组合物制成药物的颗粒剂,从而到样品3。
实施例4
一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱8,猕猴桃10,富硒酵母0.01,甜菜红0.5,柠檬酸钙120,D-甘露糖醇20,山梨糖醇200,普洱茶12,枸杞24,雪菊11,茯苓9,肉桂12,卵磷脂0.5,女贞子1。
其中的甜菜碱为天然生物提取的纯度为98.7%的甜菜碱,并将该组合物制成食品,从而到样品4。
实施例5
一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱105,猕猴桃160,富硒酵母0.02,甜菜红1.4,柠檬酸钙160,叶酸0.05,D-甘露糖醇170,维生素B6为0.3,山梨糖醇400,维生素B12为0.05,螺旋藻8,葡萄籽粉16,肠浒苔5,淫羊藿6,蛹虫草3,普洱茶14,枸杞25,雪菊12,茯苓12,肉桂13,卵磷脂1,女贞子2。
其中的甜菜碱为化学合成的纯度为99.1%的甜菜碱,并将该组合物制成食品添加物,从而到样品5。
实施例6
一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱200,猕猴桃300,富硒酵母0.03,甜菜红2,柠檬酸钙200,叶酸0.1,D-甘露糖醇300,维生素B6为0.5,山梨糖醇600,维生素B12为0.1,螺旋藻16,葡萄籽粉33,肠浒苔11,淫羊藿12,蛹虫草6,普洱茶16,枸杞26,雪菊13,茯苓15,肉桂14,卵磷脂1.5,女贞子3。
其中的甜菜碱为天然生物提取的纯度为98.8%的甜菜碱,并将该组合物制成药物的口服液,从而到样品6。
实施例7
一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱8,猕猴桃10,富硒酵母0.01,甜菜红0.5,柠檬酸钙120,D-甘露糖醇20,山梨糖醇200,普洱茶12,枸杞24,雪菊11,茯苓9,肉桂12,卵磷脂0.5,女贞子1,银杏叶7,三七2.5,红花3,大黄7,玫瑰花19,牛蒡根13。
其中的甜菜碱为化学合成的纯度为98.9%的甜菜碱,并将该组合物制成食品,从而到样品7。
实施例8
一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱105,猕猴桃160,富硒酵母0.02,甜菜红1.4,柠檬酸钙160,叶酸0.05,D-甘露糖醇170,维生素B6为0.3,山梨糖醇400,维生素B12为0.05,螺旋藻8,葡萄籽粉16,肠浒苔5,淫羊藿6,蛹虫草3,普洱茶14,枸杞25,雪菊12,茯苓12,肉桂13,卵磷脂1,女贞子2,银杏叶8,三七3,红花4,大黄8,玫瑰花20,牛蒡根14。
其中的甜菜碱为天然生物提取的纯度为98.6%的甜菜碱,并将该组合物制成食品添加物,从而到样品8。
实施例9
一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱200,猕猴桃300,富硒酵母0.03,甜菜红2,柠檬酸钙200,叶酸0.1,D-甘露糖醇300,维生素B6为0.5,山梨糖醇600,维生素B12为0.1,螺旋藻16,葡萄籽粉33,肠浒苔11,淫羊藿12,蛹虫草6,普洱茶16,枸杞26,雪菊13,茯苓15,肉桂14,卵磷脂1.5,女贞子3,银杏叶9,三七3.5,红花5,大黄9,玫瑰花21,牛蒡根15。
其中的甜菜碱为化学合成的纯度为98.9%的甜菜碱,并将该组合物制成药物的片剂,从而到样品9。
试验对比及结果:
针对上述的9个组合物样品,分别各通过十名试验者进行试验,利用一段时间对本产品的服用,检测试验者在这段时间内身体内各项指标的变化。
对于样品1,十名试验者的平均年龄为35.5岁,通过连续在十二个星期内服用样品1,试验者身体内各项指标变化的均质如下。
项目 | 食用前 | 食用后 | 参考范围 | 指标变化 |
ALT(丙氨酸氨基转移酶)(U/L) | 162.5 | 83.4 | 0-41 | 79.1 |
AST(门冬氨酸氨基转移酶)(U/L) | 57.6 | 33.5 | 0-40 | 24.1 |
TC(总胆固醇)(mmol/l) | 7.27 | 5 | 2.8-5.7 | 2.27 |
TG(甘油三酯)(mmol/l) | 12.35 | 6.09 | 0-2.3 | 6.26 |
GGT(谷氨酰胺酶)(U/L) | 94.4 | 78.9 | 11-61 | 15.5 |
Hcy(同型半胱氨酸)(mmol/l) | 19.3 | 11.2 | 6-15 | 8.1 |
由此可以看出,样品1具有显著的降同型半胱氨酸和抗氧化的功效,同时又能保护肝细胞,具有抗脂肪肝和降压的效果,适用于相应的患者使用。
对于样品2,十名试验者的平均年龄为35.1岁,通过连续在十二个星期内服用样品2,试验者身体内各项指标变化的均质如下。
项目 | 食用前 | 食用后 | 参考范围 | 指标变化 |
ALT(丙氨酸氨基转移酶)(U/L) | 165.4 | 71.9 | 0-41 | 93.5 |
AST(门冬氨酸氨基转移酶)(U/L) | 58.7 | 27.6 | 0-40 | 31.1 |
TC(总胆固醇)(mmol/l) | 7.79 | 4.9 | 2.8-5.7 | 2.89 |
TG(甘油三酯)(mmol/l) | 12.37 | 5.32 | 0-2.3 | 7.05 |
GGT(谷氨酰胺酶)(U/L) | 88.6 | 71.2 | 11-61 | 17.4 |
Hcy(同型半胱氨酸)(mmol/l) | 19.7 | 9.6 | 6-15 | 10.1 |
由此可以看出,样品2具有显著的降同型半胱氨酸和抗氧化的功效,同时又能保护肝细胞,具有抗脂肪肝和降压的效果,适用于相应的患者使用。
对于样品3,十名试验者的平均年龄为34.8岁,通过连续在十二个星期内服用样品3,试验者身体内各项指标变化的均质如下。
项目 | 食用前 | 食用后 | 参考范围 | 指标变化 |
ALT(丙氨酸氨基转移酶)(U/L) | 160.3 | 70.1 | 0-41 | 90.2 |
AST(门冬氨酸氨基转移酶)(U/L) | 57.7 | 29.6 | 0-40 | 28.1 |
TC(总胆固醇)(mmol/l) | 7.23 | 4.7 | 2.8-5.7 | 2.53 |
TG(甘油三酯)(mmol/l) | 11.79 | 5.19 | 0-2.3 | 6.6 |
GGT(谷氨酰胺酶)(U/L) | 92 | 76.2 | 11-61 | 15.8 |
Hcy(同型半胱氨酸)(mmol/l) | 19.8 | 10.8 | 6-15 | 9 |
由此可以看出,样品3具有显著的降同型半胱氨酸和抗氧化的功效,同时又能保护肝细胞,具有抗脂肪肝和降压的效果,适用于相应的患者使用。
对于样品4,十名试验者的平均年龄为35.7岁,通过连续在十二个星期内服用样品4,试验者身体内各项指标变化的均质如下。
项目 | 食用前 | 食用后 | 参考范围 | 指标变化 |
ALT(丙氨酸氨基转移酶)(U/L) | 166.2 | 76.2 | 0-41 | 89.8 |
AST(门冬氨酸氨基转移酶)(U/L) | 59.9 | 30.2 | 0-40 | 29.7 |
TC(总胆固醇)(mmol/l) | 7.81 | 4.9 | 2.8-5.7 | 2.91 |
TG(甘油三酯)(mmol/l) | 12.92 | 6.1 | 0-2.3 | 6.82 |
GGT(谷氨酰胺酶)(U/L) | 97.3 | 80.2 | 11-61 | 17.1 |
Hcy(同型半胱氨酸)(mmol/l) | 19.2 | 9.7 | 6-15 | 9.5 |
由此可以看出,样品4具有显著的降同型半胱氨酸和抗氧化的功效,同时又能保护肝细胞,具有抗脂肪肝和降压的效果,适用于相应的患者使用。
对于样品5,十名试验者的平均年龄为34.3岁,通过连续在十二个星期内服用样品5,试验者身体内各项指标变化的均质如下。
项目 | 食用前 | 食用后 | 参考范围 | 指标变化 |
ALT(丙氨酸氨基转移酶)(U/L) | 162.6 | 71.1 | 0-41 | 91.5 |
AST(门冬氨酸氨基转移酶)(U/L) | 60.4 | 29.2 | 0-40 | 31.2 |
TC(总胆固醇)(mmol/l) | 7.96 | 5.1 | 2.8-5.7 | 2.86 |
TG(甘油三酯)(mmol/l) | 12.21 | 5.2 | 0-2.3 | 7.01 |
GGT(谷氨酰胺酶)(U/L) | 93.1 | 75.9 | 11-61 | 17.2 |
Hcy(同型半胱氨酸)(mmol/l) | 19.4 | 9.8 | 6-15 | 9.6 |
由此可以看出,样品5具有显著的降同型半胱氨酸和抗氧化的功效,同时又能保护肝细胞,具有抗脂肪肝和降压的效果,适用于相应的患者使用。
对于样品6,十名试验者的平均年龄为34岁,通过连续在十二个星期内服用样品6,试验者身体内各项指标变化的均质如下。
项目 | 食用前 | 食用后 | 参考范围 | 指标变化 |
ALT(丙氨酸氨基转移酶)(U/L) | 156.6 | 71.2 | 0-41 | 85.4 |
AST(门冬氨酸氨基转移酶)(U/L) | 58.3 | 30.5 | 0-40 | 27.8 |
TC(总胆固醇)(mmol/l) | 7.58 | 4.9 | 2.8-5.7 | 2.68 |
TG(甘油三酯)(mmol/l) | 12.69 | 5.77 | 0-2.3 | 6.92 |
GGT(谷氨酰胺酶)(U/L) | 97 | 80.1 | 11-61 | 16.9 |
Hcy(同型半胱氨酸)(mmol/l) | 19.6 | 9.9 | 6-15 | 9.7 |
由此可以看出,样品6具有显著的降同型半胱氨酸和抗氧化的功效,同时又能保护肝细胞,具有抗脂肪肝和降压的效果,适用于相应的患者使用。
对于样品7,十名试验者的平均年龄为36.5岁,通过连续在十二个星期内服用样品7,试验者身体内各项指标变化的均质如下。
项目 | 食用前 | 食用后 | 参考范围 | 指标变化 |
ALT(丙氨酸氨基转移酶)(U/L) | 153.1 | 71.5 | 0-41 | 81.6 |
AST(门冬氨酸氨基转移酶)(U/L) | 57.3 | 29.5 | 0-40 | 27.8 |
TC(总胆固醇)(mmol/l) | 7.25 | 4.7 | 2.8-5.7 | 2.55 |
TG(甘油三酯)(mmol/l) | 12.04 | 5.9 | 0-2.3 | 6.14 |
GGT(谷氨酰胺酶)(U/L) | 95 | 79.6 | 11-61 | 15.4 |
Hcy(同型半胱氨酸)(mmol/l) | 18.7 | 10 | 6-15 | 8.7 |
由此可以看出,样品7具有显著的降同型半胱氨酸和抗氧化的功效,同时又能保护肝细胞,具有抗脂肪肝和降压的效果,适用于相应的患者使用。
对于样品8,十名试验者的平均年龄为36.1岁,通过连续在十二个星期内服用样品8,试验者身体内各项指标变化的均质如下。
项目 | 食用前 | 食用后 | 参考范围 | 指标变化 |
ALT(丙氨酸氨基转移酶)(U/L) | 160.9 | 62.7 | 0-41 | 98.2 |
AST(门冬氨酸氨基转移酶)(U/L) | 64.7 | 30.2 | 0-40 | 34.5 |
TC(总胆固醇)(mmol/l) | 8.16 | 5.15 | 2.8-5.7 | 3.01 |
TG(甘油三酯)(mmol/l) | 12.57 | 5.3 | 0-2.3 | 7.27 |
GGT(谷氨酰胺酶)(U/L) | 91.2 | 72.4 | 11-61 | 18.8 |
Hcy(同型半胱氨酸)(mmol/l) | 23 | 12.1 | 6-15 | 10.9 |
由此可以看出,样品8具有显著的降同型半胱氨酸和抗氧化的功效,同时又能保护肝细胞,具有抗脂肪肝和降压的效果,适用于相应的患者使用。
对于样品9,十名试验者的平均年龄为34.9岁,通过连续在十二个星期内服用样品9,试验者身体内各项指标变化的均质如下。
由此可以看出,样品9具有显著的降同型半胱氨酸和抗氧化的功效,同时又能保护肝细胞,具有抗脂肪肝和降压的效果,适用于相应的患者使用。
以上描述了本发明的主要技术特征和基本原理及相关优点,对于本领域技术人员而言,显然本发明不限于上述示范性实施例的细节,而且在不背离本发明的构思或基本特征的情况下,能够以其他的具体形式实现本发明。因此,无论从哪一点来看,均应将实施例看作是示范性的,而且是非限制性的,本发明的范围由所附权利要求而不是上述说明限定,因此旨在将落在权利要求的等同要件的含义和范围内的所有变化囊括在本发明内。
此外,应当理解,虽然本说明书按照实施方式加以描述,但并非每个实施方式仅包含一个独立的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施例中的技术方案也可以经适当组合,形成本领域技术人员可以理解的其他实施方式。
Claims (7)
1.一种具有抗氧化和降同型半胱氨酸的组合物,包括以下成分,按重量份数为:甜菜碱8-200,猕猴桃10-300,富硒酵母0.01-0.03,甜菜红0.5-2,柠檬酸钙120-200,叶酸0-0.1,D-甘露糖醇20-300,维生素B6为0-0.5,山梨糖醇200-600,维生素B12为0-0.1,螺旋藻0-16,葡萄籽粉0-33,肠浒苔0-11,淫羊藿0-12,蛹虫草0-6;
所述的甜菜碱为天然生物提取或化学合成的纯度为98.5%以上的甜菜碱。
2.根据权利要求1所述的一种具有抗氧化和降同型半胱氨酸的组合物,其特征在于,包括以下成分,按重量份数为:甜菜碱8-200,猕猴桃10-300,富硒酵母0.01-0.03,甜菜红0.5-2,柠檬酸钙120-200,叶酸0-0.1,D-甘露糖醇20-300,维生素B6为0-0.5,山梨糖醇200-600,维生素B12为0-0.1,螺旋藻0-16,葡萄籽粉0-33,肠浒苔0-11,淫羊藿0-12,蛹虫草0-6,普洱茶12-16,枸杞24-26,雪菊11-13,茯苓9-15,肉桂12-14,卵磷脂0.5-1.5,女贞子1-3。
3.根据权利要求2所述的一种具有抗氧化和降同型半胱氨酸的组合物,其特征在于,包括以下成分,按重量份数为:甜菜碱8-200,猕猴桃10-300,富硒酵母0.01-0.03,甜菜红0.5-2,柠檬酸钙120-200,叶酸0-0.1,D-甘露糖醇20-300,维生素B6为0-0.5,山梨糖醇200-600,维生素B12为0-0.1,螺旋藻0-16,葡萄籽粉0-33,肠浒苔0-11,淫羊藿0-12,蛹虫草0-6,普洱茶12-16,枸杞24-26,雪菊11-13,茯苓9-15,肉桂12-14,卵磷脂0.5-1.5,女贞子1-3,银杏叶7-9,三七2.5-3.5,红花3-5,大黄7-9,玫瑰花19-21,牛蒡根13-15。
4.根据权利要求3所述的一种具有抗氧化和降同型半胱氨酸的组合物,其特征在于,包括以下成分,按重量份数为:甜菜碱105,猕猴桃160,富硒酵母0.02,甜菜红1.4,柠檬酸钙160,叶酸0.05,D-甘露糖醇170,维生素B6为0.3,山梨糖醇400,维生素B12为0.05,螺旋藻8,葡萄籽粉16,肠浒苔5,淫羊藿6,蛹虫草3,普洱茶14,枸杞25,雪菊12,茯苓12,肉桂13,卵磷脂1,女贞子2,银杏叶8,三七3,红花4,大黄8,玫瑰花20,牛蒡根14。
5.根据权利要求1所述的一种具有抗氧化和降同型半胱氨酸的组合物,其特征在于,所述组合物用于食品或食品添加物的用途。
6.根据权利要求1所述的一种具有抗氧化和降同型半胱氨酸的组合物,其特征在于,所述组合物用于药物的用途。
7.根据权利要求6所述的一种具有抗氧化和降同型半胱氨酸的组合物,其特征在于,所述组合物的药物用途制成颗粒剂、口服液或片剂。
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