Physicochemical Characterization and Antitumor Activity of Fucoidan and Its Degraded Products from (Turner) C. Agardh.

TitlePhysicochemical Characterization and Antitumor Activity of Fucoidan and Its Degraded Products from (Turner) C. Agardh.
Publication TypeJournal Article
Year of Publication2023
AuthorsLuo, B, Wang, Z, Chen, J, Chen, X, Li, J, Li, Y, Li, R, Liu, X, Song, B, Cheong, K-L, Zhong, S
JournalMolecules
Volume28
Issue6
Date Published2023 Mar 13
ISSN1420-3049
KeywordsCarcinoma, Hepatocellular, Fucose, HeLa Cells, Humans, Hydrogen Peroxide, Liver Neoplasms, Polysaccharides, Sargassum, Sulfates
Abstract

Fucoidan has many biological functions, including anti-tumor activity. Additionally, it has been suggested that low-molecular-weight fucoidans have greater bioactivities. This study aimed to examine the degradation, purification, physicochemical characterization and in vitro antitumor activity of fucoidan from (Turner) C. Agardh. Fucoidan was isolated using DEAE-cellulose-52 (F1, F2), Vc-HO degration, and Sepharose CL-6B gel (DF1, DF2) from crude Sargassum fucoidans. Physicochemical characteristics of four isolated fucoidans were examined using chemical and monosaccharide composition, average molecular weight (Mw), and FTIR. Furthermore, the anti-proliferative effects of purified fucoidans on human hepatocellular carcinoma cells (HepG2), human Burkitt Lymphoma cells (MCF-7), human uterine carcinoma cells (Hela) and human lung cancer cells (A549) were analyzed by MTT method. The apoptosis of HepG2 cells was detected by flow cytometry. Our data suggest that the contents of polysaccharide, L-fucose and sulfate of DF2 were the highest, which were 73.93%, 23.02% and 29.88%, respectively. DF1 has the smallest molecular weight (14,893 Da) followed by DF2 (21,292 Da). The four fractions are mainly composed of fucose, mannose and rhamnose, and the infrared spectra are similar, all of which contain polysaccharide and sulfate characteristic absorption peaks. The results of MTT assay showed that the four fractions had inhibitory effects on HepG2 and A549 in the range of 0.5-8 mg/mL, and the four fractions had strong cytotoxic effects on HepG2 cells. DF2 had the best inhibitory effect on HepG2 (IC = 2.2 mg/mL). In general, the antitumor activity of Sargassum fucoidans is related to the content of L-fucose, sulfate and molecular weight, and Sargassum fucoidan has the best inhibitory effect on HepG2 hepatocellular carcinoma cells. Furthermore, when compared to MCF-7, Hela, and A549 cells, Sargassum fucoidans had the best capacity to reduce the viability of human hepatocellular carcinoma cells (HepG2) and to induce cell apoptosis, proving itself to have a good potential in anti-liver cancer therapy.

DOI10.3390/molecules28062610
Alternate JournalMolecules
PubMed ID36985583
PubMed Central IDPMC10057303
Grant List2020A01034 and 2022A01045 / / the Project of Science and Technology of Zhanjiang City /
2020A1515010860 and 2021A1515012455 / / Guangdong Basic and the Applied Basic Research Foundation /
230419100 / / the Guangdong Ocean University Innovation Program /
002029002009 / / the Nanhai Youth Scholar Project of Guangdong Ocean University /
R17034 / / the Scientific Research Foundation of Guangdong Ocean University /
2020KTSCX051 / / the Guangdong Province ordinary universities characteristic innovation project /
2021KCXTD021 / / the Guangdong Provincial Department of Education and the Innovative Team Program of High Education of the Guangdong Province /