» Authors » Sudarat Thanonkeo

Sudarat Thanonkeo

Explore the profile of Sudarat Thanonkeo including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 15
Citations 72
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Mueangnak K, Kitwetcharoen H, Thanonkeo S, Klanrit P, Apiraksakorn J, Klanrit P, et al.
Sci Rep . 2025 Jan; 15(1):376. PMID: 39747130
Celosia argentea is a plant known for producing bioactive compounds, including betalains, which possess various biological and pharmaceutical properties. This study aimed to investigate the effect of biotic and abiotic...
2.
Kitwetcharoen H, Phannarangsee Y, Klanrit P, Thanonkeo S, Tippayawat P, Klanrit P, et al.
Heliyon . 2024 Dec; 10(24):e40939. PMID: 39720042
The use of alternative ingredients as supplements to or blends with kombucha tea to improve organoleptic properties and health effects has recently increased. Indian gooseberry fruit is among the most...
3.
Sang A Roon T, Klanrit P, Klanrit P, Thanonkeo P, Apiraksakorn J, Thanonkeo S, et al.
Plants (Basel) . 2024 Nov; 13(22). PMID: 39599435
The prevalence of synthetic colorants in commercial products has raised concerns regarding potential risks, including allergic reactions and carcinogenesis, associated with their use or consumption. Natural plant extracts have gained...
4.
Phannarangsee Y, Jiawkhangphlu B, Thanonkeo S, Klanrit P, Yamada M, Thanonkeo P
Sci Rep . 2024 Mar; 14(1):5563. PMID: 38448501
Byproducts from the sugarcane manufacturing process, specifically sugarcane molasses (SM) and sugarcane bagasse (SB), can be used as alternative raw materials for sorbitol production via the biological fermentation process. This...
5.
Dolpatcha S, Phong H, Thanonkeo S, Klanrit P, Yamada M, Thanonkeo P
Sci Rep . 2023 Nov; 13(1):21000. PMID: 38017261
Second-generation bioethanol production using lignocellulosic biomass as feedstock requires a highly efficient multistress-tolerant yeast. This study aimed to develop a robust yeast strain of P. kudriavzevii via the adaptive laboratory...
6.
Phung L, Kitwetcharoen H, Chamnipa N, Boonchot N, Thanonkeo S, Tippayawat P, et al.
Sci Rep . 2023 May; 13(1):7859. PMID: 37188725
Several raw materials have been used as partial supplements or entire replacements for the main ingredients of kombucha to improve the biological properties of the resulting kombucha beverage. This study...
7.
Pilap W, Thanonkeo S, Klanrit P, Thanonkeo P
Sci Rep . 2022 Dec; 12(1):22062. PMID: 36543886
Ethanol production at high temperatures using lignocellulosic biomass as feedstock requires a highly efficient thermo and lignocellulosic inhibitor-tolerant ethanologenic yeast. In this study, sixty-three yeast isolates were obtained from tropical...
8.
Phong H, Klanrit P, Dung N, Thanonkeo S, Yamada M, Thanonkeo P
Sci Rep . 2022 Aug; 12(1):13965. PMID: 35978081
High-temperature ethanol fermentation by thermotolerant yeast is considered a promising technology for ethanol production, especially in tropical and subtropical regions. In this study, optimization conditions for high-temperature ethanol fermentation of...
9.
Nuanpeng S, Thanonkeo S, Klanrit P, Thanonkeo P
Braz J Microbiol . 2018 Mar; 49 Suppl 1:140-150. PMID: 29588196
Ethanol production from sweet sorghum juice (SSJ) using the thermotolerant Saccharomyces cerevisiae strain DBKKUY-53 immobilized in an alginate-loofah matrix (ALM) was successfully developed. As found in this study, an ALM...
10.
Pilap W, Thanonkeo S, Klanrit P, Thanonkeo P
3 Biotech . 2018 Feb; 8(2):126. PMID: 29450116
In this work, the newly isolated thermotolerant DBKKUY-103 exhibited a high ethanol fermentation efficiency at high temperatures using sweet sorghum juice (SSJ). The highest ethanol concentrations and productivities achieved under...