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来自印度尼西亚种植的秋葵荚的粗多糖增强了因细菌感染引起的免疫反应。

Crude Polysaccharides from Okra Pods () Grown in Indonesia Enhance the Immune Response due to Bacterial Infection.

作者信息

Wahyuningsih Sri Puji Astuti, Pramudya Manikya, Putri Intan Permata, Winarni Dwi, Savira Nadyatul Ilma Indah, Darmanto Win

机构信息

Department of Biology, Faculty of Science and Technology, Airlangga University, Surabaya 60115, Indonesia.

出版信息

Adv Pharmacol Sci. 2018 Oct 9;2018:8505383. doi: 10.1155/2018/8505383. eCollection 2018.

Abstract

Okra pods were widely consumed by Indonesians to maintain health. The aim of this study was at investigating the potential of crude polysaccharides from okra pods on immune response in mice infected with Thirty male Balb/C mice were divided into six groups: normal control, negative control, and treatment groups (administration of crude polysaccharides at doses of 25, 50, 75, and 100 mg/kg). Crude polysaccharides were administrated for fourteen days. Furthermore, mice were exposed to at the fifteenth day. Two weeks after the end of treatment, the parameters were measured. This study showed that crude polysaccharides at a dose of 75 and 100 mg/kg improved phagocytic activity, spleen index, and splenocytes proliferation. Rising of TNF- levels was shown in groups treated with crude polysaccharides at doses of 25, 50, and 100 mg/kg. All treatment groups showed a decreasing level of IL-17. Crude okra polysaccharides also showed a slight increase in NK cells activity and IFN- level. Thus, crude okra polysaccharides could act as an effective material to enhance immune response including phagocytic activity, spleen index, splenocytes proliferation, and control immune responses through cytokine production.

摘要

秋葵荚被印度尼西亚人广泛食用以维持健康。本研究的目的是调查秋葵荚粗多糖对感染[具体病原体未给出]的小鼠免疫反应的影响。将30只雄性Balb/C小鼠分为六组:正常对照组、阴性对照组和治疗组(分别给予25、50、75和100mg/kg剂量的粗多糖)。连续14天给予粗多糖。此外,在第15天让小鼠接触[具体病原体未给出]。治疗结束两周后,测量各项参数。本研究表明,75和100mg/kg剂量的粗多糖可提高吞噬活性、脾脏指数和脾细胞增殖。25、50和100mg/kg剂量粗多糖治疗组的TNF-水平升高。所有治疗组的IL-17水平均降低。秋葵粗多糖还使NK细胞活性和IFN-水平略有增加。因此,秋葵粗多糖可作为一种有效的物质来增强免疫反应,包括吞噬活性、脾脏指数、脾细胞增殖,并通过细胞因子产生来控制免疫反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4f5/6198543/29433213e6d7/APS2018-8505383.001.jpg

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