Literature DB >> 26830477

Plant Lysophosphatidic Acids: A Rich Source for Bioactive Lysophosphatidic Acids and Their Pharmacological Applications.

Byung-Hwan Lee1, Sun-Hye Choi, Hyeon-Joong Kim, Seok-Won Jung, Ho-Kyoung Kim, Seung-Yeol Nah.   

Abstract

Lysophosphatidic acid (1-acyl-2-lyso-sn-glycero-3-phosphatidic acid; LPA) is a simple and minor phospholipid in plants. Plant LPAs are merely metabolic intermediates in de novo lipid synthesis in plant cell membranes or for glycerophospholipid storage. The production and metabolisms of LPAs in animals are also well characterized and LPAs have diverse cellular effects in animal systems; i.e., from brain development to wound healing through the activation of G protein-coupled LPA receptors. Recent studies show that various foodstuffs such as soybean, cabbage and seeds such as sesame and sunflower contain bioactive LPAs. Some LPAs are produced from phosphatidic acid during the digestion of foodstuff. In addition, herbal medicines such as corydalis tuber, and especially ginseng, contain large amounts of LPAs compared to foodstuffs. Herbal LPAs bind to cell surface LPA receptors in animal cells and exert their biological effects. Herbal LPAs elicit [Ca(2+)]i transient and are coupled to various Ca(2+)-dependent ion channels and receptor regulations via the activation of LPA receptors. They also showed beneficial effects of in vitro wound healing, in vivo anti-gastric ulcer, anti-Alzheimer's disease, autotaxin inhibition and anti-metastasis activity. Thus, herbal LPAs can be useful agents for human health. Humans can utilize exogenous plant-derived LPAs for preventive or therapeutic purposes if plant-derived LPAs are developed as functional foods or natural medicine targeting LPA receptors. This brief review article introduces the known rich sources of herbal LPAs and herbal LPA binding protein, describes their biological effects, and further addresses possible clinical applications.

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Year:  2016        PMID: 26830477     DOI: 10.1248/bpb.b15-00575

Source DB:  PubMed          Journal:  Biol Pharm Bull        ISSN: 0918-6158            Impact factor:   2.233


  7 in total

Review 1.  Ginseng gintonin, aging societies, and geriatric brain diseases.

Authors:  Sun-Hye Choi; Rami Lee; Sung Min Nam; Do-Geun Kim; Ik-Hyun Cho; Hyoung-Chun Kim; Yoonjeong Cho; Hyewhon Rhim; Seung-Yeol Nah
Journal:  Integr Med Res       Date:  2020-06-13

2.  Mechanotransduction-Induced Lipid Production System with High Robustness and Controllability for Microalgae.

Authors:  Myung Kwon Cho; Hwa Sung Shin
Journal:  Sci Rep       Date:  2016-09-09       Impact factor: 4.379

Review 3.  Lysophosphatidic Acid Signaling in Obesity and Insulin Resistance.

Authors:  Kenneth D'Souza; Geena V Paramel; Petra C Kienesberger
Journal:  Nutrients       Date:  2018-03-23       Impact factor: 5.717

4.  Bioactive lipids in gintonin-enriched fraction from ginseng.

Authors:  Hee-Jung Cho; Sun-Hye Choi; Hyeon-Joong Kim; Byung-Hwan Lee; Hyewon Rhim; Hyoung-Chun Kim; Sung-Hee Hwang; Seung-Yeol Nah
Journal:  J Ginseng Res       Date:  2017-12-11       Impact factor: 6.060

5.  Gintonin regulates inflammation in human IL-1β-stimulated fibroblast-like synoviocytes and carrageenan/kaolin-induced arthritis in rats through LPAR2.

Authors:  Mijin Kim; Bongjun Sur; Thea Villa; Jaesuk Yun; Seung Yeol Nah; Seikwan Oh
Journal:  J Ginseng Res       Date:  2021-02-09       Impact factor: 6.060

6.  Effects of Gintonin-enriched fraction on the gene expression of six lysophosphatidic receptor subtypes.

Authors:  Rami Lee; Byung-Hwan Lee; Sun-Hye Choi; Yeon-Jin Cho; Han-Sung Cho; Hyoung-Chun Kim; Hyewhon Rhim; Ik-Hyun Cho; Man Hee Rhee; Seung-Yeol Nah
Journal:  J Ginseng Res       Date:  2021-02-22       Impact factor: 6.060

Review 7.  Panax ginseng as an adjuvant treatment for Alzheimer's disease.

Authors:  Hyeon-Joong Kim; Seok-Won Jung; Seog-Young Kim; Ik-Hyun Cho; Hyoung-Chun Kim; Hyewhon Rhim; Manho Kim; Seung-Yeol Nah
Journal:  J Ginseng Res       Date:  2018-01-12       Impact factor: 6.060

  7 in total

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