磷脂小体:提高植物成分生物利用度的新途径

Shivam Sharma, N. Gupta
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引用次数: 0

摘要

植物成分,在现代正被提高天然疗法的水平。它是最近引进的一种新型给药系统。目前已发展成为提高植物药物口服生物利用度的最完善的自组装系统。通常被认为是磷脂体。植物成分在天然分子中具有亲水性和亲脂性之间的良性调节,有助于胃肠道汁液的分解通过富含脂质的生物膜。这可以通过磷脂体技术来实现。但由于水溶性降低、渗透性差以及最重要的代谢率,草药的递送成为挑战。因此,磷脂复合物作为一种纽带,保持了许多受欢迎的草药的结合效率。例如银杏叶,葡萄籽,绿茶等,它只能进化为各种补救用途。关键词:植物成分;磷脂体;生物利用度;*通讯作者Email: shivamsharma41197@gmail.com 2020年7月28日收稿,2020年8月7日收稿期刊首页:http://www.ajptr.com/ Sharma et. al., Am。从古代开始,植物化学和植物药理学的研究已经很好地确立了植物草本植物在自然行为中的各种创造及其众多的健康前景优势。一些具有生物活性的植物成分存在于极性溶剂(水)中。然而,水溶性植物成分在口服或局部应用后吸收较弱。由于它们的分子质量大,脂溶性降低,不能被被动分布包裹。因此,许多植物成分可能具有不同的环系统,因此它们不能通过基本的分散过程从肠液浸入血液。此外,少量植物分子来源于破碎环境,可溶于脂类和添加油脂,由于其二倍体特性,多次表现出通过小肠的抑制作用。每一种天然产物的功效都是基于复合物的释放。结果表明其生物利用度较中草药低。磷脂小体由脂类分子复合物组成,具有小的细胞样结构,由“phyto”(植物)和“some”(细胞样)组成。磷脂体是一种创新的方法,它涉及将磷脂层掺入标准化提取物中,以提高吸收和生物利用度。这种类型的植物体技术可以标记为提高植物分子生物利用度的模型。值得注意的是,它可以增加更大的临床优势,也保证了输送到组织部位,而不需要营养保护。很少有水溶性植物分子能通过草药与磷脂复合物的反应而修饰成亲脂性,因此称为磷脂体技术。磷脂小体技术是1989年出现的,它是建立在对植物中特定的多酚类化合物进行化学分析检验的基础上的。这些复合物通常是多酚和其自身植物属的提取物的组合,此外,这些复合物用于开发光光体以标记其优越的生物利用度和直接评估其非光光体药物的有效性。磷脂体的性质
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Review On Phytosomes: As A Emerging Strategy To Improve The Bioavailability Of Phytoconstituents
Phytoconstituents, in modern time phytosomes are being increase the level of natural remedies. It is recently introduced system to have used as a novel drug delivery. However nowadays it has been developed into the most well-turned and self assembled system to raise the oral bioavailability of phyto-drugs. That generally recognized as phytosomes. Phytoconstituents have a benignant moderation between hydrophilic and lipophilic in nature molecules which is helps in breakdown of gastro-intestinal sap to pass the lipid rich bio-membrane of cells. It can just be achieved as a result of phytosomes technique. But the delivery of herbal drugs is turn into the challenges owing to reduced aqueous dissolubility, poor permeations and foremost metabolite rate. Therefore, phytosome works as linkage for retain the efficiency toward develop the incorporation of numerous well-liked herbal drugs. E.g. Ginkgo biloba, grape seeds, green tea etc. it can merely be evolved for a variety of remedial use. Keyword: Phyto-constituents, Phytosomes, Bioavailability, Novel drug delivery. *Corresponding Author Email: shivamsharma41197@gmail.com Received 28 July 2020, Accepted 07 August 2020 Journal home page: http://www.ajptr.com/ Sharma et. al., Am. J. PharmTech Res. 2020;10(5) ISSN: 2249-3387 www.ajptr.com 122 INTRODUCTION From ancient times, phyto-chemical and phyto-pharmacological studies have been well establish the various creations in natural behavior and their numerous health promising advantages of botanical herbs. Some of the biologically active phyto-constituents are consist in the nature of polar solvents (water). 1 However, water-soluble phyto-constituents are weakly absorbed when it takes orally or after applied topically. Owing to their big molecular mass and reduced lipid solubility profile it cannot be wrapped by passive distribution. Thus, there are many phytoconstituents which possibly will have various rings system and therefore, they could not be immersed from the intestinal fluid into the blood through basic dispersion course. Also, a small number of phyto-molecules are originated in broke environment which is soluble in lipids along with added oils as well as and it repeatedly show the inhibition to pass the small intestine owing to its diploid characters. The efficiency of every natural product is based on release of complexes. So it resultant shows the lower bioavailability over the herbal drugs . Phytosomes are consist of lipid molecular complex along with have small cell like structures which is composed of “phyto” which means plant and “some” meaning cell-like. Phytosome is innovative approach which is involved the incorporation of phospholipids layer into standardized extracts for improving absorption and bioavailability . This type of phytosomal technology can be marked the model to increase the bioavailability of phyto-molecules. Significantly, it can increase the greater clinical advantage and also ensured the delivery to the tissues site, and without conciliate nutrient protection. Few of the water-soluble phyto-molecules can be modified into lipid-friendly nature by reacting herbal drugs with phospholipids complex, therefore, it is called phytosomes technology . Phytosomes technology was come in 1989, which is set on the plant chemical analysis examination of definite polyphenolics compounds. These are usually combination of polyphenols and extraction of its own plant genus, in addition, these complexes is experienced for the development of phytosome to mark the superior bioavailability and its effectiveness in straight assessment to its non-phytosomes drugs . PROPERTIES OF PHYTOSOMES
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