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Natural Product Research
Formerly Natural Product Letters
Volume 37, 2023 - Issue 11
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Research Articles

Structural characterization of a pectic polysaccharide from laoshan green tea and its inhibitory effects on the production of NO, TNF-α and IL-6

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Pages 1797-1805 | Received 05 Jun 2022, Accepted 02 Sep 2022, Published online: 09 Sep 2022

References

  • Chen H, Sun J, Liu J, Gou YR, Zhang X, Wu XN, Sun R, Tang SX, Kan J, Qian CL, et al. 2019. Structural characterization and anti-inflammatory activity of alkali-soluble polysaccharides from purple sweet potato. Int J Biol Macromol. 131:484–494.
  • Chen GJ, Yuan QX, Saeeduddin M, Ou SY, Zeng XX, Ye H. 2016. Recent advances in tea polysaccharides: extraction, purification, physicochemical characterization and bioactivities. Carbohydr Polym. 153:663–678.
  • Cordeiro Caillot AR, de Lacerda Bezerra I, Palhares LCGF, Santana-Filho AP, Chavante SF, Sassaki GL. 2018. Structural characterization of blackberry wine polysaccharides and immunomodulatory effects on LPS-activated RAW 264.7 macrophages. Food Chem. 257:143–149.
  • Gao X, Ho CT, Li X, Lin X, Zhang Y, Chen Z, Li B. 2018. Phytochemicals, anti-inflammatory, antiproliferative, and methylglyoxal trapping properties of Zijuan tea. J Food Sci. 83(2):517–524.
  • Herold K, Mrowka R. 2019. Inflammation-dysregulated inflammatory response and strategies for treatment. Acta Physiol (Oxf). 226(3):e13284.
  • Huang Z, Zong MH, Lou WY. 2022. Preparation, structural elucidation and immunomodulatory activity of a polysaccharide from Millettia Speciosa Champ. Ind Crop Prod. 182(114889):114889.
  • Hwang KC, Shin HY, Kim WJ, Seo MS, Kim H. 2021. Effects of a high-molecular-weight polysaccharides isolated from Korean persimmon on the antioxidant, anti-inflammatory, and antiwrinkle activity. Molecules. 26(6):1600.
  • Ji XL, Liu F, Peng Q, Wang M. 2018. Purification, structural characterization, and hypolipidemic effects of a neutral polysaccharide from Ziziphus Jujuba cv. Food Chem. 245:1124–1130.
  • Jin MY, Li MY, Huang RM, Wu XY, Sun YM, Xu ZL. 2021. Structural features and anti-inflammatory properties of pectic polysaccharides: a review. Trends Food Sci Technol. 107:284–298.
  • Ji XL, Yan YZ, Hou CY, Shi MM, Liu YQ. 2020. Structural characterization of a galacturonic acid-rich polysaccharide from Ziziphus Jujuba cv. Muzao. Int J Biol Macromol. 147:844–852.
  • Košťálová Z, Hromádková Z. 2019. Structural characterisation of polysaccharides from roasted hazelnut skins. Food Chem. 286:179–184.
  • Le B, Pham TNA, Yang SH. 2020. Prebiotic potential and anti-inflammatory activity of soluble polysaccharides obtained from soybean residue. Foods. 9(12):1808–1820.
  • Liu CY, Meng J, Qiu JY, Geng XQ, Sun HQ, Zhu ZY. 2022. Structural characterization and prebiotic potential of an acidic polysaccharide from Imperial Chrysanthemum. Nat Prod Res. 36(2):586–594.
  • Li J, Wang WJ, Zheng GD, Li LY. 2017. Physicochemical properties and antioxidant activities of polysaccharides from Gynura procumbens leaves by fractional precipitation. Int J Biol Macromol. 95:719–724.
  • Li F, Wei YL, Liang L, Huang LL, Yu GY, Li QH. 2021a. A novel low-molecular-mass pumpkin polysaccharide: structural characterization, antioxidant activity, and hypoglycemic potential. Carbohydr Polym. 251:117090.
  • Li X, Wei ZL, Wang XY, Duan FX, Xiong LD, Li JW, Tian J, Jia LR, Gao H. 2021b. Premna microphylla Turcz leaf pectin exhibited antioxidant and anti-inflammatory activities in LPS-stimulated RAW 264.7 macrophages. Food Chem. 349:129164.
  • Ohishi T, Goto S, Monira P, Isemura M, Nakamura Y. 2016. Anti-inflammatory action of green tea. Antiinflamm Antiallergy Agents Med Chem. 15(2):74–90.
  • Park H, Hwang D, Suh H, Yu K, Kim TY, Shin K. 2017. Antitumor and antimetastatic activities of rhamnogalacturonan-II-Type polysaccharide isolated from mature leaves of green tea via activation of macrophages and natural killer cells. Int J Biol Macromol. 99:179–186.
  • Ramadan G, El-Beih NM, Talaat RM, Abd El-Ghffar EA. 2017. Anti-inflammatory activity of green versus black tea aqueous extract in a rat model of human rheumatoid arthritis. Int J Rheum Dis. 20(2):203–213.
  • Shen LL, Chu XK, Zhang ZQ, Wu T. 2022. Structural characterization and in vitro anti-inflammatory estimation of an unusual pectin linked by rhamnogalacturonan I and xylogalacturonan from lotus plumule. Int J Biol Macromol. 194:100–109.
  • Shin EM, Zhou HY, Guo LY, Kim JA, Lee SH, Merfort I, Kang SS, Kim HS, Kim S, Kim YS. 2008. Anti-inflammatory effects of glycyrol isolated from Glycyrrhiza uralensis in LPS-stimulated RAW264.7 macrophages. Int Immunopharmacol. 8(11):1524–1532.
  • Tang W, Li AQ, Yin JY, Nie SP. 2021. Structural characteristics of three pectins isolated from white kidney bean. Int J Biol Macromol. 182:2152–2161.
  • Wang LB, Li LY, Gao JY, Huang J, Yang Y, Xu YQ, Liu S, Yu WQ. 2021b. Characterization, antioxidant and immunomodulatory effects of selenized polysaccharides from dandelion roots. Carbohydr Polym. 260(117796):117796.
  • Wang L, Oh JY, Jayawardena TU, Jeon YJ, Ryu BM. 2020. Anti-inflammatory and anti-melanogenesis activities of sulfated polysaccharides isolated from Hizikia fusiforme: Short communication. Int J Biol Macromol. 142:545–550.
  • Wang H, Wei G, Liu F, Banerjee G, Joshi M, Bligh SWA, Shi S, Lian H, Fan H, Gu X, et al. 2014. Characterization of two homogalacturonan pectins with immunomodulatory activity from green tea. Int J Mol Sci. 15(6):9963–9978.
  • Wang RS, Zuo M, Ding SH, Liu B, Meng C, Song B, Li WZ. 2021a. Recovery of immune activity by administration of polysaccharides of Toona sinensis and its characterization of major component. Nat Prod Res. 35(23):5513–5517.
  • Wei H, Shi YQ, Yuan ZX, Huang ZN, Cai FH, Zhu JF, Zhang WW, Li J, Xiong QP, Wang YP, et al. 2021. Isolation, identification, and anti-inflammatory activity of polysaccharides of Typha angustifolia. Biomacromolecules. 22(6):2451–2459.
  • Xia YG, Zhu RJ, Shen Y, Liang J, Kuang HX. 2020. A pectin-type polysaccharide from the root bark of Aralia elata: structural identification and biological activity. Int J Biol Macromol. 159:1206–1217.
  • Xiong BY, Zhang WC, Wu ZY, Liu R, Yang CY, Hui AL, Huang XS, Xian ZJ. 2021. Preparation, characterization, antioxidant and anti-inflammatory activities of acid-soluble pectin from okra (Abelmoschus esculentus L.). Int J Biol Macromol. 181:824–834.
  • Zhang P, Hu LH, Bai RB, Zheng XP, Ma YL, Gao X, Sun BL, Hu FD. 2017. Structural characterization of a pectic polysaccharide from Codonopsis pilosula and its immunomodulatory activities in vivo and in vitro. Int J Biol Macromol. 104(Pt A):1359–1369.
  • Zhang Y, Pan XL, Ran SQ, Wang KP. 2019. Purification, structural elucidation and anti-inflammatory activity in vitro of polysaccharides from Smilax china L. Int J Biol Macromol. 139:233–243.
  • Zhu MQ, Huang RM, Wen P, Song Y, He BL, Tan JL, Hao HL, Wang H. 2021b. Structural characterization and immunological activity of pectin polysaccharide from kiwano (Cucumis metuliferus) peels. Carbohydr Polym. 254:117371.
  • Zhu JX, Zhou H, Zhang JY, Li FL, Wei K, Wei XL, Wang YF. 2021a. Valorization of polysaccharides obtained from dark tea: Preparation, physicochemical, antioxidant, and hypoglycemic properties. Foods. 10(10):2276.
  • Zou YF, Zhang YY, Paulsen BS, Rise F, Chen ZL, Jia RY, Li LX, Song X, Feng B, Tang HQ, et al. 2020. Structural features of pectic polysaccharides from stems of two species of Radix Codonopsis and their antioxidant activities. Int J Biol Macromol. 159:704–713.

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