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Novel Efficient Bioprocessing of Marine Chitins into Active Anticancer Prodigiosin

Marine chitins (MC) have been utilized for the production of vast array of bioactive products, including chitooligomers, chitinase, chitosanase, antioxidants, anti-NO, and antidiabetic compounds. The aim of this study is the bioprocessing of MC into a potent anticancer compound, prodigiosin (PG), vi...

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Autores principales: Nguyen, Van Bon, Chen, Shan-Ping, Nguyen, Thi Hanh, Nguyen, Minh Trung, Tran, Thi Thanh Thao, Doan, Chien Thang, Tran, Thi Ngoc, Nguyen, Anh Dzung, Kuo, Yao-Haur, Wang, San-Lang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7024390/
https://www.ncbi.nlm.nih.gov/pubmed/31878048
http://dx.doi.org/10.3390/md18010015
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author Nguyen, Van Bon
Chen, Shan-Ping
Nguyen, Thi Hanh
Nguyen, Minh Trung
Tran, Thi Thanh Thao
Doan, Chien Thang
Tran, Thi Ngoc
Nguyen, Anh Dzung
Kuo, Yao-Haur
Wang, San-Lang
author_facet Nguyen, Van Bon
Chen, Shan-Ping
Nguyen, Thi Hanh
Nguyen, Minh Trung
Tran, Thi Thanh Thao
Doan, Chien Thang
Tran, Thi Ngoc
Nguyen, Anh Dzung
Kuo, Yao-Haur
Wang, San-Lang
author_sort Nguyen, Van Bon
collection PubMed
description Marine chitins (MC) have been utilized for the production of vast array of bioactive products, including chitooligomers, chitinase, chitosanase, antioxidants, anti-NO, and antidiabetic compounds. The aim of this study is the bioprocessing of MC into a potent anticancer compound, prodigiosin (PG), via microbial fermentation. This bioactive compound was produced by Serratia marcescens TKU011 with the highest yield of 4.62 mg/mL at the optimal conditions of liquid medium with initial pH of 5.65–6.15 containing 1% α-chitin, 0.6% casein, 0.05% K(2)HPO(4), and 0.1% CaSO(4). Fermentation was kept at 25 °C for 2 d. Notably, α-chitin was newly investigated as the major potential material for PG production via fermentation; the salt CaSO(4) was also found to play the key role in the enhancement of PG yield of Serratia marcescens fermentation for the first time. PG was qualified and identified based on specific UV, MALDI-TOF MS analysis. In the biological activity tests, purified PG demonstrated potent anticancer activities against A549, Hep G2, MCF-7, and WiDr with the IC(50) values of 0.06, 0.04, 0.04, and 0.2 µg/mL, respectively. Mytomycin C, a commercial anti-cancer compound was also tested for comparison purpose, showing weaker activity with the IC(50) values of 0.11, 0.1, 0.14, and 0.15 µg/mL, respectively. As such, purified PG displayed higher 2.75-fold, 1.67-fold, and 3.25-fold efficacy than Mytomycin C against MCF-7, A549, and Hep G2, respectively. The results suggest that marine chitins are valuable sources for production of prodigiosin, a potential candidate for cancer drugs.
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spelling pubmed-70243902020-03-11 Novel Efficient Bioprocessing of Marine Chitins into Active Anticancer Prodigiosin Nguyen, Van Bon Chen, Shan-Ping Nguyen, Thi Hanh Nguyen, Minh Trung Tran, Thi Thanh Thao Doan, Chien Thang Tran, Thi Ngoc Nguyen, Anh Dzung Kuo, Yao-Haur Wang, San-Lang Mar Drugs Article Marine chitins (MC) have been utilized for the production of vast array of bioactive products, including chitooligomers, chitinase, chitosanase, antioxidants, anti-NO, and antidiabetic compounds. The aim of this study is the bioprocessing of MC into a potent anticancer compound, prodigiosin (PG), via microbial fermentation. This bioactive compound was produced by Serratia marcescens TKU011 with the highest yield of 4.62 mg/mL at the optimal conditions of liquid medium with initial pH of 5.65–6.15 containing 1% α-chitin, 0.6% casein, 0.05% K(2)HPO(4), and 0.1% CaSO(4). Fermentation was kept at 25 °C for 2 d. Notably, α-chitin was newly investigated as the major potential material for PG production via fermentation; the salt CaSO(4) was also found to play the key role in the enhancement of PG yield of Serratia marcescens fermentation for the first time. PG was qualified and identified based on specific UV, MALDI-TOF MS analysis. In the biological activity tests, purified PG demonstrated potent anticancer activities against A549, Hep G2, MCF-7, and WiDr with the IC(50) values of 0.06, 0.04, 0.04, and 0.2 µg/mL, respectively. Mytomycin C, a commercial anti-cancer compound was also tested for comparison purpose, showing weaker activity with the IC(50) values of 0.11, 0.1, 0.14, and 0.15 µg/mL, respectively. As such, purified PG displayed higher 2.75-fold, 1.67-fold, and 3.25-fold efficacy than Mytomycin C against MCF-7, A549, and Hep G2, respectively. The results suggest that marine chitins are valuable sources for production of prodigiosin, a potential candidate for cancer drugs. MDPI 2019-12-23 /pmc/articles/PMC7024390/ /pubmed/31878048 http://dx.doi.org/10.3390/md18010015 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Nguyen, Van Bon
Chen, Shan-Ping
Nguyen, Thi Hanh
Nguyen, Minh Trung
Tran, Thi Thanh Thao
Doan, Chien Thang
Tran, Thi Ngoc
Nguyen, Anh Dzung
Kuo, Yao-Haur
Wang, San-Lang
Novel Efficient Bioprocessing of Marine Chitins into Active Anticancer Prodigiosin
title Novel Efficient Bioprocessing of Marine Chitins into Active Anticancer Prodigiosin
title_full Novel Efficient Bioprocessing of Marine Chitins into Active Anticancer Prodigiosin
title_fullStr Novel Efficient Bioprocessing of Marine Chitins into Active Anticancer Prodigiosin
title_full_unstemmed Novel Efficient Bioprocessing of Marine Chitins into Active Anticancer Prodigiosin
title_short Novel Efficient Bioprocessing of Marine Chitins into Active Anticancer Prodigiosin
title_sort novel efficient bioprocessing of marine chitins into active anticancer prodigiosin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7024390/
https://www.ncbi.nlm.nih.gov/pubmed/31878048
http://dx.doi.org/10.3390/md18010015
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