壳斗果提取物的生化筛选、体外和体内表征:实验与计算相结合的研究。

IF 2.2 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Current pharmaceutical biotechnology Pub Date : 2024-11-01 DOI:10.2174/0113892010332012241027022502
Syeda Aaliya Shehzadi, Muhammad Ayaz Ashraf, Nusrat Shafiq, Fatima Rida, Aneela Javed, Farhan Younas, Waqar Un-Nisa, Waleed Younus
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引用次数: 0

摘要

背景:有几种药用植物被确定为治疗世界上最致命疾病癌症的药物。作为葫芦科(Cucurbitaceae)药用植物的一员,Citrullus colocynthis(C. colocynthis)具有多种药理作用:在本研究中,我们重点对 C. colocynthis 果实提取物进行了植物化学分析、抗菌、抗癌和硅学研究。我们分别研究了可乐果全果、果皮和果肉的氯仿、纯乙醇和乙醇提取物:植物化学分析显示,在果实的不同部位存在生物碱、黄酮类、类固醇、酚类、皂苷和苷类化合物。利用气相色谱-质谱(GC-MS)分析法,通过与美国国家标准与技术研究所(NIST)资料库的数据进行比较,确定了一些化合物。采用琼脂井扩散法检测了所有提取物对五种不同细菌菌株(如鲍曼不动杆菌、肺炎双球菌、金黄色葡萄球菌、绿脓杆菌和大肠杆菌)的抗菌活性。不同菌株的抑菌区(ZOI)在 11 毫米到 27 毫米之间:结果:与非极性溶剂(氯仿提取物)相比,果皮的极性溶剂提取物(乙醇提取物和乙醇酸性提取物)对所有细菌菌株都表现出良好的敏感性,而氯仿提取物只对金黄色葡萄球菌和绿脓杆菌有活性。用 MTT 法评估了大叶芹所有提取物对人脑癌细胞系(U-87)的细胞毒活性:结论:乙醇提取物(ET-PL)以及全果和果肉的乙醇提取物的细胞存活率显示出良好的效果。与果皮相比,癌细胞 U-87 似乎对极性溶剂(乙醇和乙醇水溶液)果肉提取物更敏感。此外,根据无创结果,还通过分子对接和 MMGBSA 研究,对 ET-PP 中鉴定出的化合物进行了筛选,以确定其作为抗菌剂和抗癌剂的潜力。这些研究有力地支持了体外研究结果,并确定了新的候选药物。
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Biochemical Screening, In-vitro and In-silico Characterization of Citrullus colocynthis Fruit Extracts: A Combined Experimental and Computation Study.

Background: Several medicinal plants are identified as therapeutic agents for the world's most deadly disease cancer. A member of the "Cucurbitaceae" family of medicinal plants, Citrullus colocynthis (C. colocynthis) has various pharmacological actions.

Aims and objectives: In the present study we have focused on the phytochemical analysis, antimicrobial, anticancer and in silico investigation of fruit extracts of C. colocynthis. The chloroform, pure ethanolic and aq. ethanolic extracts of C. colocynthis whole fruit, peel and pulp separately have been investigated.

Methods: The phytochemical analysis revealed the presence of alkaloids, flavonoids, steroids, phenols, saponins and glycosides in various parts of the fruit. Some compounds have been identified using GC-MS analysis by comparing with NIST library data. The antimicrobial activity of all extracts was checked by agar well diffusion method against five different bacterial strains such as A. baumannii, K. pneumonia, S. aureus, P. aeruginosa and E. coli. The zone of inhibition (ZOI) ranged between 11 mm to 27 mm against different strains.

Results: The polar solvent extracts (ethanolic and aq. ethanolic extract) of peel showed good sensitivity against all bacterial strains as compared to non-polar solvent (chloroform extract), which showed activity only against Staphylococcus aureus and Pseudomonas aeruginosa. The cytotoxic activity of C. colocynthis all extracts against human brain cancer cell lines (U-87) was assessed using MTT assay.

Conclusion: The % cell viability of ethanolic (ET-PL), and aq. ethanolic extract of whole fruit and pulp showed promising results. The cancerous cell line U-87 seems to be more sensitive towards polar solvents (ethanolic and aq. ethanolic) pulp extracts than peel. Further, based on invitro results, compounds identified in ET-PP were screened for their potential as antibacterial and anticancer agents through molecular docking and MMGBSA studies. These studies strongly supported the in-vitro study results and identified new drug candidates.

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来源期刊
Current pharmaceutical biotechnology
Current pharmaceutical biotechnology 医学-生化与分子生物学
CiteScore
5.60
自引率
3.60%
发文量
203
审稿时长
6 months
期刊介绍: Current Pharmaceutical Biotechnology aims to cover all the latest and outstanding developments in Pharmaceutical Biotechnology. Each issue of the journal includes timely in-depth reviews, original research articles and letters written by leaders in the field, covering a range of current topics in scientific areas of Pharmaceutical Biotechnology. Invited and unsolicited review articles are welcome. The journal encourages contributions describing research at the interface of drug discovery and pharmacological applications, involving in vitro investigations and pre-clinical or clinical studies. Scientific areas within the scope of the journal include pharmaceutical chemistry, biochemistry and genetics, molecular and cellular biology, and polymer and materials sciences as they relate to pharmaceutical science and biotechnology. In addition, the journal also considers comprehensive studies and research advances pertaining food chemistry with pharmaceutical implication. Areas of interest include: DNA/protein engineering and processing Synthetic biotechnology Omics (genomics, proteomics, metabolomics and systems biology) Therapeutic biotechnology (gene therapy, peptide inhibitors, enzymes) Drug delivery and targeting Nanobiotechnology Molecular pharmaceutics and molecular pharmacology Analytical biotechnology (biosensing, advanced technology for detection of bioanalytes) Pharmacokinetics and pharmacodynamics Applied Microbiology Bioinformatics (computational biopharmaceutics and modeling) Environmental biotechnology Regenerative medicine (stem cells, tissue engineering and biomaterials) Translational immunology (cell therapies, antibody engineering, xenotransplantation) Industrial bioprocesses for drug production and development Biosafety Biotech ethics Special Issues devoted to crucial topics, providing the latest comprehensive information on cutting-edge areas of research and technological advances, are welcome. Current Pharmaceutical Biotechnology is an essential journal for academic, clinical, government and pharmaceutical scientists who wish to be kept informed and up-to-date with the latest and most important developments.
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