Yilmaz Kardas Begumhan, Diken Mehmet Emin, Bayhan Hamza, Acar Mikail, Dogan Serap
Department of Molecular Biology and Genetics, Faculty of Science and Literature, Balikesir University, Balikesir, Turkey.
Science and Technology Application and Research Center, Balikesir University, Balikesir, Turkey.
J Sci Food Agric. 2023 Mar 15;103(4):1901-1911. doi: 10.1002/jsfa.12257. Epub 2022 Oct 19.
Plants have important chemical compounds to protect organisms from many mutagens but they may also have dangerous toxic substances that must be tested before use. Lallemantia iberica has been used by local people for treatment of some diseases but it was never tested for its cell protective and antimutagenic/antirecombinogenic properties. In this study, it was aimed to determine the cytoprotective, antimutagenic/antirecombinogenic, antibacterial, antioxidant and phenolic profile of L. iberica by MTS assay, micronucleus test/somatic mutation recombination test (SMART), disc diffusion method, ABTS/DPPH tests and liquid chromatography (LC), respectively.
MTS assay results showed that both of the extracts supported the normal growth of healthy human lymphocytes and there was no significant difference between extracts. Although there was no significant increase in micronucleus concentration (‰) of the cultures treated with ethanol or methanol extracts, methanol extract caused slightly lower micronucleus concentration (12.64 ± 3.65‰) than the ethanol extract (24.46 ± 4.50‰). SMART results showed that ethanol and methanol extracts prevented harmful mitotic recombination. Lallemantia iberica also showed antibacterial activity against all of the strains tested, and the largest inhibition zones were observed with Pseudomonas aeruginosa (17.9 mm) and Enterobacter aerogenes (13.8 mm). Methanol extracts showed better antioxidant activities (ABTS IC : 104.07 μg mL , DPPH IC : 58.8 μg mL ) than ethanol extracts (ABTS IC : 344.03 μg mL , DPPH IC : 233.7 μg mL ). According to the LC results, the most abundant phenolic compounds were rutin hydrate (1796.4 ± 62.9 mg kg ) and p-coumaric acid (228.1 ± 7.60 mg kg ).
Lallemantia iberica extracts had cell-protective, antimutagenic/antirecombinogenic, antibacterial and strong antioxidant characteristics in relation to their rich phenolic content. © 2022 Society of Chemical Industry.
植物含有重要的化合物以保护生物体免受多种诱变剂的影响,但它们也可能含有危险的有毒物质,在使用前必须进行检测。当地居民一直使用纤细扁柄草治疗某些疾病,但从未对其细胞保护和抗诱变/抗重组特性进行过检测。在本研究中,旨在分别通过MTS法、微核试验/体细胞突变重组试验(SMART)、纸片扩散法、ABTS/DPPH试验和液相色谱法(LC)来确定纤细扁柄草的细胞保护、抗诱变/抗重组、抗菌、抗氧化和酚类成分。
MTS试验结果表明,两种提取物均支持健康人淋巴细胞的正常生长,且提取物之间无显著差异。虽然用乙醇或甲醇提取物处理的培养物的微核浓度(‰)没有显著增加,但甲醇提取物导致的微核浓度(12.64±3.65‰)略低于乙醇提取物(24.46±4.50‰)。SMART结果表明,乙醇和甲醇提取物可防止有害的有丝分裂重组。纤细扁柄草对所有测试菌株均表现出抗菌活性,其中对铜绿假单胞菌(17.9mm)和产气肠杆菌(13.8mm)观察到的抑菌圈最大。甲醇提取物的抗氧化活性(ABTS IC₅₀:104.07μg mL⁻¹,DPPH IC₅₀:58.8μg mL⁻¹)优于乙醇提取物(ABTS IC₅₀:344.03μg mL⁻¹,DPPH IC₅₀:233.7μg mL⁻¹)。根据LC结果,含量最丰富的酚类化合物是水合芦丁(1796.4±62.9mg kg⁻¹)和对香豆酸(228.1±7.60mg kg⁻¹)。
纤细扁柄草提取物因其丰富的酚类含量而具有细胞保护、抗诱变/抗重组、抗菌和强抗氧化特性。©2022化学工业协会。