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Chemical structure and biological properties of a polysaccharide isolated from Pleurotus sajor-caju.
Seedevi, Palaniappan; Ramu Ganesan, Abirami; Mohan, Kannan; Raguraman, Vasantharaja; Sivakumar, Murugesan; Sivasankar, Palaniappan; Loganathan, Sivakumar; Rajamalar, Palasundaram; Vairamani, Shanmugam; Shanmugam, Annaian.
Afiliação
  • Seedevi P; Department of Environmental Science, Periyar University Salem 636011 Tamil Nadu India seedevisalem@gmail.com +91 9629201002.
  • Ramu Ganesan A; Centre of Advanced Study in Marine Biology, Faculty of Marine Sciences, Annamalai University Parangipettai 608 502 Tamil Nadu India.
  • Mohan K; Department of Food Science and Home Economics, School of Applied Sciences, College of Engineering, Science and Technology, Fiji National University Fiji-7222.
  • Raguraman V; Sri Vasavi College Erode Tamilnadu India.
  • Sivakumar M; Centre for Ocean Research, Sathyabama Institute of Science & Technology Chennai 600 119 Tamil Nadu India.
  • Sivasankar P; Department of Environmental Science, Periyar University Salem 636011 Tamil Nadu India seedevisalem@gmail.com +91 9629201002.
  • Loganathan S; Department of Environmental Science, Periyar University Salem 636011 Tamil Nadu India seedevisalem@gmail.com +91 9629201002.
  • Rajamalar P; Department of Environmental Science, Periyar University Salem 636011 Tamil Nadu India seedevisalem@gmail.com +91 9629201002.
  • Vairamani S; Centre of Advanced Study in Marine Biology, Faculty of Marine Sciences, Annamalai University Parangipettai 608 502 Tamil Nadu India.
  • Shanmugam A; Centre of Advanced Study in Marine Biology, Faculty of Marine Sciences, Annamalai University Parangipettai 608 502 Tamil Nadu India.
RSC Adv ; 9(35): 20472-20482, 2019 Jun 25.
Article em En | MEDLINE | ID: mdl-35514737
ABSTRACT
Herein, a polysaccharide obtained from Pleurotus sajor-caju was fractionated via anion-exchange column chromatography and purified using gel permeation column chromatography. The chemical characterization of the polysaccharide indicated that it contained 90.16% total carbohydrate, 0% protein, 12.7% ash and 5.2% moisture; on the other hand, the carbon, hydrogen and nitrogen contents were found to be 31.53, 4.28 and 3.01%, respectively. The polysaccharide has the molecular weight of 79 kDa; the chemical structure of the polysaccharide is →6)α-d-Glciv(1→6)α-d-Glciii(1→6)ß-d-Glcii(1→6)α-d-Glci(1→units. The polysaccharide exhibited the DPPH radical scavenging activity of 21.67-68.35% at 10-160 µg ml-1, ABTS radical scavenging activity of 16.01-70.09% at 25-125 µg ml-1, superoxide radical scavenging activity of 24.31-73.64% at 50-250 µg ml-1, hydroxyl radical scavenging activity of 16.64-63.51% at 25-125 µg ml-1 and reducing power of 0.366-1.678% at 10-120 µg ml; further evaluation of the polysaccharide revealed its anticancer activity of 18.61-63.21% at 100-500 µg ml-1 concentration against the AGS human gastric carcinoma cell line. The active principle of the polysaccharide may be used in the food and pharmacological industry in the future.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article