Toxicity, Antibacterial, and Phytochemical Analyses of Antrocaryon klaineanum Pierre Extracts.

IF 2.1 Q3 PHARMACOLOGY & PHARMACY
Cédric Sima Obiang, Thiery Ndong Mba, Joseph Privat Ondo, Rick Léonid Ngoua Meye Misso, Juliette Ornely Orango Bourdette, Elvis Otogo N'Nang, Joefred Mbogho Abogho, Elvis Jolinom Mbot, Louis Clément Obame Engonga, Edouard Nsi Emvo
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Abstract

Medicinal plants are traditionally used in Gabon to treat several types of illnesses. The study's purpose was to determine the toxic, antibacterial, and anti-inflammatory effects of Antrocaryon klaineanum Pierre extracts and to characterize their phytochemical compounds. Toxicity was evaluated on frog tadpoles (Phrynobatrachus africanus Hallowell). The microorganism susceptibility test was performed by the diffusion method, while minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) were evaluated using the microdilution technique. Anti-inflammatory activity was tested through protein denaturation and membrane stabilization methods. Chromatography and molecular network techniques were used to characterize chemical compounds. The lethality test showed that the lethal concentration (LC50) increased from 110.03 ± 1.25 to 15.86 ± 2.21 μg/mL after 24 and 96 hours of exposure. In tadpoles exposed to 7.81 μg/mL extract, the first mortalities (12.5%) were observed on the fifth day of exposure. A relative decrease in mature erythrocytes exposed to plant extracts was observed. The antibacterial activity shows that the Ak F2, Ak F3, and Ak F4 fractions (from the water-ethanol crude extract) gave the greatest antibacterial activities compared to the other extracts. The water, water-acetone, and water-ethanol extracts showed good inhibition of denaturation. The haemolysis test shows that the extracts exhibited good anti-inflammatory activities. Phytochemical characterisation revealed four major compounds, including monogallate epicatechin and hydroxy-ergostadian. The molecular network revealed five main clusters. Our study shows that A. klaineanum Pierre could be a promising natural product for the isolation of molecules with potential biological activities.

真核虫提取物的毒性、抗菌和植物化学分析。
加蓬传统上使用药用植物来治疗几种疾病。本研究的目的是确定鹿心果提取物的毒性、抗菌和抗炎作用,并对其植物化学成分进行表征。对蛙蝌蚪(Phrynobatrachus africanus Hallowell)进行毒性评价。微生物药敏试验采用扩散法,最小抑菌浓度(MIC)和最小杀菌浓度(MBC)采用微稀释法。通过蛋白变性和膜稳定法检测抗炎活性。利用色谱和分子网络技术对化合物进行了表征。致死试验表明,24、96 h后,致死浓度(LC50)由110.03±1.25增加到15.86±2.21 μg/mL。暴露于7.81 μg/mL提取物的蝌蚪,第5天出现首次死亡(12.5%)。观察到暴露于植物提取物的成熟红细胞相对减少。抑菌活性表明,水乙醇粗提物中akf2、akf3和akf4部位抑菌活性最强。水提取物、水丙酮提取物和水乙醇提取物均具有良好的抑制变性作用。溶血试验表明,提取物具有良好的抗炎活性。植物化学特征揭示了四种主要化合物,包括单allate表儿茶素和羟基麦角苷。分子网络显示出五个主要的簇。本研究表明,在分离具有潜在生物活性的分子方面,kaineanum Pierre可能是一种很有前途的天然产物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.30
自引率
3.60%
发文量
0
审稿时长
17 weeks
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