一些边缘药用植物的抗氧化、抗菌及酚类成分分析

Sultan Ülger, Serpil Uğraş
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Antioxidant activities were determined by DPPH and ABTS analyses and the total phenolic component contents were determined by the Folin-Ciocalteu method. \nResults: The maximum extract yield was obtained in the ethanol extracts of the plants (AeE;10.4011% CmE;2.4898%), the minimum extract yield was obtained in the acetone extracts (AeA;0.8422% CmA;0.3510%). The hexane extract of A. elongatum has no inhibition activity against E. faecalis and L. monocytogenes, but it has inhibition activity against other indicator microorganisms. The other extracts of A. elongatum and all extracts of C. macrospermum were found to have inhibitory activity against all indicator microorganisms. Furthermore, the highest phenolic content was calculated as 54.60±0.486 µg mL-1 (AeE) and the lowest content as 3.47±0.001 µg mL-1 (CmA). 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引用次数: 0

摘要

目的:这些植物生长在安纳托利亚东部地区,被称为kari (Arum elongatum;Ae)和mende (Chaerophyllum macrospermum;Cm),用于缓解疼痛和伤口愈合等治疗目的。目的是确定这些植物的一些生物学特性,这些特性也可用于药用。材料-方法:首先制备干燥植物的己烷(H)、乙醇(E)和丙酮(A)提取物,采用琼脂孔扩散法测定提取物对13种指示微生物的抑菌活性。采用DPPH和ABTS法测定其抗氧化活性,采用Folin-Ciocalteu法测定其总酚含量。结果:乙醇提取物(AeE;10.4011% CmE;2.4898%)得率最高,丙酮提取物(AeA;0.8422% CmA;0.3510%)得率最低。长藤己烷提取物对粪肠杆菌和单核增生乳杆菌无抑制作用,但对其他指示微生物有抑制作用。结果表明,长柄荆芥其他提取物和大精荆芥所有提取物对所有指示微生物均有抑制活性。此外,酚类物质含量最高为54.60±0.486µg mL-1 (AeE),最低为3.47±0.001µg mL-1 (CmA)。DPPH法最高IC50为32.4140µg mL-1 (CmH),最低IC50为12.7876µg mL-1 (AeA); ABTS法最高IC50为10.3203µg mL-1 (CmE),最低IC50为0.2744µg mL-1 (CmA)。结论:该植物提取物具有较强的抗菌活性和抗氧化活性。
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Antioxidant, Antimicrobial and Phenolic Component Analysis of Some Edge Medicinal Plants
Objective: The plants, which grow wild in the Eastern Anatolia Region and are known as kari (Arum elongatum;Ae) and mende (Chaerophyllum macrospermum;Cm), are used for treatment purposes such as pain reliever and wound healing properties. It is aimed to determine some biological properties of these plants, which are also used medicinally. Material-Method: Firstly, hexane(H), ethanol(E) and acetone(A) extracts of dried plants were prepared and antimicrobial activities of extracts against 13 indicator microorganisms were determined by agar well diffusion method. Antioxidant activities were determined by DPPH and ABTS analyses and the total phenolic component contents were determined by the Folin-Ciocalteu method. Results: The maximum extract yield was obtained in the ethanol extracts of the plants (AeE;10.4011% CmE;2.4898%), the minimum extract yield was obtained in the acetone extracts (AeA;0.8422% CmA;0.3510%). The hexane extract of A. elongatum has no inhibition activity against E. faecalis and L. monocytogenes, but it has inhibition activity against other indicator microorganisms. The other extracts of A. elongatum and all extracts of C. macrospermum were found to have inhibitory activity against all indicator microorganisms. Furthermore, the highest phenolic content was calculated as 54.60±0.486 µg mL-1 (AeE) and the lowest content as 3.47±0.001 µg mL-1 (CmA). As a result of the DPPH method the highest IC50 was calculated as 32.4140 µg mL-1 (CmH) and the lowest IC50 as 12.7876 µg mL-1 (AeA) and ABTS method the highest IC50 was calculated as 10.3203 µg mL-1 (CmE), and the lowest IC50 as 0.2744 µg mL-1 (CmA). Conclusion: These results show that the plant extracts have strong antimicrobial activity and antioxidant activity.
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