Antioxidant capacities and in vitro anti-microbial activities of rice (Oryza sativa var Bajong) from Borneo

被引:0
作者
Xiu Qian Lam [1 ]
Heng Yen Khong [2 ]
Siow Phing Tay [1 ]
Isabel Lim Fong [1 ]
机构
[1] Department of Paraclinical Sciences, Faculty of Medicine and Health Sciences, Universiti Malaysia Sarawak, Sarawak, Kota Samarahan
[2] Faculty of Applied Sciences, Universiti Teknologi MARA Sarawak Branch, Sarawak, Kota Samarahan
关键词
Amino acids; Antimicrobial; Antioxidant; Flavonoids; Oryza sativa var Bajong; Phenolics;
D O I
10.1186/s13065-025-01453-x
中图分类号
学科分类号
摘要
Rice contains antioxidants and phenolic components that exert anti-inflammatory and anticancer properties. Different geographical areas produce rice with various chemical constituents and phytochemicals, in turn these confer differential protective effects including antimicrobial and anticancer properties. Sarawak rice, Oryza sativa var Bajong (Bajong), a fragrant dark purple rice grain harvested from two locations in Sarawak, namely interior Lubok Nibong (LN) and coastal Sri Aman (SA), was assessed for their antioxidant properties and antimicrobial activities. The rice was extracted using methanol solvent and evaluated for total phenolic content (TPC), total flavonoid contents (TFC), as well as their antioxidant and antimicrobial activities based on the Folin–Ciocalteu assay, the aluminium calorimetric method, 2,2-diphenyl-1-picrylhydrazyl (DPPH) free radical scavenging activity and disk diffusion assay, respectively. Using dual-wavelength measurement, Bajong LN showed 2.16% higher amylose content than Bajong SA. Furthermore, 24-h extract of Bajong LN and 48-h extract of Bajong SA exhibited high antioxidant properties (34–70 µg/mL) and were rich in phenolic (46.54 ± 2.62 mg GAE/g; 25.28 ± 3.91 mg GAE/g) and flavonoid contents (5.53 ± 0.36 mg QCE/g; 7.7 ± 2.19 mg QCE/g) respectively. It is interesting to note that 72-h Bajong extract exhibited the largest zone of inhibition (9–9.3 mm) against Gram-negative Pseudomonas aeruginosa (Ps. aeruginosa), which correlated to the high TPC and TFC despite a reduction of antioxidant activity due to prolonged extraction hours. These significant results conferred added value to a staple, health-promoting Bajong had warranted it to be further investigated as a nutraceutical and pharmaceutical crop. © The Author(s) 2025.
引用
收藏
相关论文
共 71 条
[61]  
Sumczynski D., Kotaskova E., Druzbikova H., Mlcek J., Determination of contents and antioxidant activity of free and bound phenolics compounds and in vitro digestibility of commercial black and red rice (Oryza sativa L.) varieties, Food Chem, 211, pp. 339-346, (2016)
[62]  
Tyagi A., Shabbir U., Chen X., Chelliah R., Elahi F., Ham H.J., Oh D.H., Phytochemical profiling and cellular antioxidant efficacy of different rice varieties in colorectal adenocarcinoma cells exposed to oxidative stress, PLoS ONE, (2022)
[63]  
Vora J., Srivastava A., Modi H., Antibacterial and antioxidant strategies for acne treatment through plant extracts, Info Med Unlocked, 13, pp. 128-132, (2018)
[64]  
Waditzer M., Bucar F., Flavonoids as inhibitors of bacterial efflux pumps, Molecules, 26, 22, (2021)
[65]  
Wang X., Su J., Chu X., Zhang X., Kan Q., Liu R., Fu X., Adsorption and desorption characteristics of total flavonoids from acanthopanax senticosus on macroporous adsorption resins, Molecules, 26, 14, (2021)
[66]  
Wei C., Ge Y., Zhao S., Liu D., Jiliu J., Wu Y., Hu X., Wei M., Wang Y., Wang W., Wang L., Cao L.K., Effect of fermentation time on molecular structure and physicochemical properties of corn ballast starch, Front Nutr, (2022)
[67]  
Wen T.X., Extraction and analysis of antioxidant capacity in rice bran extracts from different sarawak local rice varieties, (2015)
[68]  
Xu D.P., Li Y., Meng X., Zhou T., Zhou Y., Zheng J., Zhang J.J., Li H.B., Natural antioxidants in foods and medicinal plants: extraction, assessment and resources, Int J Mol Sci, (2017)
[69]  
Xue Y., Lim S., Brakenhielm E., Cao Y., Adipose angiogenesis: quantitative methods to study microvessel growth, regression and remodeling in vivo, Nat Protoc, 5, 5, pp. 912-920, (2010)
[70]  
Yang Z., Xu C., Wang W., Xu X., Yang H.M., Wang Z.Y., Rose S.P., Pirgozliev V., Dietary amylose and amylopectin ratio changes starch digestion and intestinal microbiota diversity in goslings, Br Poult Sci, 63, 5, pp. 691-700, (2022)