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阿鲁达叶和根水醇提取物的超高效液相色谱-质谱联用-电喷雾电离-四极杆飞行时间质谱分析及抗真菌活性

UPLC-MS-ESI-QTOF Analysis and Antifungal Activity of the Arruda Leaf and Root Hydroalcoholic Extracts.

作者信息

Thassya Lucas Dos Santos Antonia, Pereira Carneiro Joara Nályda, Pereira da Cruz Rafael, Lima Sales Débora, Cosmo Andrade Jacqueline, de Oliveira Almeida Waltécio, Martins da Costa José Galberto, Riceli Vasconcelos Ribeiro Paulo, Sousa de Brito Edy, Alves Batista Francisco Lucas, Alves Magalhães Francisco Ernani, Iriti Marcello, Morais-Braga Maria Flaviana Bezerra, Coutinho Henrique Douglas Melo

机构信息

Department of Biological Chemistry, Regional University of Cariri-URCA, Col Antonio Luis, 1161, 63105-000 Pimenta, Crato-CE, Brazil.

Brejo Santo Campus, Federal University of Cariri-UFCA, R. Olegario Emidio de Araujo, s/n, 63260-000 Centro, Brejo Santo-CE, Brazil.

出版信息

Antibiotics (Basel). 2019 Nov 28;8(4):240. doi: 10.3390/antibiotics8040240.

Abstract

The aim of this study was to identify and evaluate the chemical compositions and effects of the leaf and root hydroalcoholic extracts (HELST and HERST) against different strains of . Chemical analysis was performed by Ultra-Performance Liquid Chromatography Coupled to Quadrupole/Time of Flight System (UPLC-MS-ESI-QTOF). The Inhibitory Concentration of 50% of the growth (IC as well as the intrinsic and combined action of the extracts with the antifungal fluconazole (FCZ) were determined by the microdilution method while the minimum fungicidal concentrations (MFCs) and the effect on fungal morphological transitions were analyzed by subculture and in humid chambers, respectively. From the preliminary phytochemical analysis, the phenols and flavonoids were the most abundant. The intrinsic IC values for HELST ranged from 5716.3 to 7805.8 µg/mL and from 6175.4 to 51070.9 µg/mL for the HERST, whereas the combination of the extracts with fluconazole presented IC values from 2.65 to 278.41 µg/mL. The MFC of the extracts, individually, for all the tested strains was ≥16384 µg/mL. When fluconazole was combined with each extract, the MFC against CA URM 5974 was reduced (HELST: 2048 and HERST: 4096 µg/mL). Synergism was observed against standard (CA) and (CT) strains and with the root extract against the CT isolate. The leaf extract inhibited the morphological transition of all strains while the root extract inhibited only CT strains.

摘要

本研究的目的是鉴定和评估叶和根水醇提取物(HELST和HERST)对不同菌株的化学成分及其作用。通过超高效液相色谱-四极杆/飞行时间系统(UPLC-MS-ESI-QTOF)进行化学分析。采用微量稀释法测定50%生长抑制浓度(IC)以及提取物与抗真菌药氟康唑(FCZ)的内在和联合作用,同时分别通过传代培养和在潮湿箱中分析最低杀菌浓度(MFC)及其对真菌形态转变的影响。从初步的植物化学分析来看,酚类和黄酮类最为丰富。HELST的内在IC值范围为5716.3至7805.8μg/mL,HERST的内在IC值范围为6175.4至51070.9μg/mL,而提取物与氟康唑联合使用时的IC值为2.65至278.41μg/mL。提取物对所有测试菌株的单独MFC均≥16384μg/mL。当氟康唑与每种提取物联合使用时,对光滑念珠菌URM 5974的MFC降低(HELST:2048μg/mL,HERST:4096μg/mL)。观察到对标准光滑念珠菌(CA)和热带念珠菌(CT)菌株有协同作用,且根提取物对CT分离株有协同作用。叶提取物抑制所有菌株的形态转变,而根提取物仅抑制CT菌株。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae33/6963564/3469e33aae77/antibiotics-08-00240-g001.jpg

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