Kaeoboon Somruthai, Songserm Rattanaporn, Suksungworn Rungcharn, Duangsrisai Sutsawat, Sanevas Nuttha
Department of Botany, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand.
Department of Biology and Health Sciences, Mahidol Wittayanusorn School, Nakhon Pathom 73170, Thailand.
BioTech (Basel). 2025 Jun 6;14(2):46. doi: 10.3390/biotech14020046.
Microalgae represent promising biotechnological platforms for bioactive compound production with pharmaceutical applications. This study investigated the phytochemical composition and biological activities of lipid extracts from three species to evaluate their potential as antioxidant and antidiabetic sources. Lipid extraction using chloroform-methanol (2:1) followed by GC-MS analysis revealed distinct compound distributions: 29 compounds in , 33 in , and 19 in . Major bioactive compounds included 2-hexanol, 1,3,6-heptatriene, 4-(2,3-dimethyl-2-cyclopenten-1-yl)-4-methylpentanal, -hexadecanoic acid, and octadecanoic acid. Biological activity screening encompassed antioxidant assessment through DPPH• and •NO radical scavenging assays and FRAP analysis, while antidiabetic potential was evaluated using α-glucosidase and α-amylase inhibition assays. exhibited superior bioactivity with the highest antioxidant capacity (DPPH• IC = 329.03 ± 4.30 µg/mL; •NO IC = 435.53 ± 10.20 µg/mL; FRAP = 94.74 ± 5.72 mg TE/g) and strongest enzyme inhibition (α-glucosidase IC = 752.75 ± 57.95 µg/mL; α-amylase IC = 3458.50 ± 104.01 µg/mL). This is the first report on strain KU.B2's biological properties and phytochemical profile. These findings establish as a valuable biotechnological platform for pharmaceutical bioactive compound development.
微藻是用于生产具有药物应用的生物活性化合物的有前景的生物技术平台。本研究调查了三种微藻脂质提取物的植物化学成分和生物活性,以评估它们作为抗氧化剂和抗糖尿病药物来源的潜力。使用氯仿 - 甲醇(2:1)进行脂质提取,随后进行气相色谱 - 质谱分析,结果显示出不同的化合物分布:[藻种一]中有29种化合物,[藻种二]中有33种,[藻种三]中有19种。主要生物活性化合物包括2 - 己醇、1,3,6 - 庚三烯、4 - (2,3 - 二甲基 - 2 - 环戊烯 - 1 - 基) - 4 - 甲基戊醛、十六烷酸和十八烷酸。生物活性筛选包括通过DPPH•和•NO自由基清除试验以及FRAP分析进行抗氧化评估,同时使用α - 葡萄糖苷酶和α - 淀粉酶抑制试验评估抗糖尿病潜力。[表现出优异生物活性的藻种]具有最高的抗氧化能力(DPPH• IC₅₀ = 329.03 ± 4.30 µg/mL;•NO IC₅₀ = 435.53 ± 10.20 µg/mL;FRAP = 94.74 ± 5.72 mg TE/g)和最强的酶抑制作用(α - 葡萄糖苷酶IC₅₀ = 752.75 ± 57.95 µg/mL;α - 淀粉酶IC₅₀ = 3458.50 ± 104.01 µg/mL)。这是关于[藻种]KU.B2生物特性和植物化学概况的首次报告。这些发现确立了[该藻种]作为药物生物活性化合物开发的有价值的生物技术平台。