Colchicine, serotobenine, and kinobeon A: novel therapeutic compounds in Carthamus tinctorius L. for the management of diabetes

IF 2.3 3区 农林科学 Q3 FOOD SCIENCE & TECHNOLOGY Applied Biological Chemistry Pub Date : 2024-09-27 DOI:10.1186/s13765-024-00939-x
Samina Hanif, Zainab Shahzadi, Irfan Anjum, Zubaida Yousaf, Arusa Aftab, Sana Javed, Zainab Maqboo, Riaz Ullah, Zafar Iqbal, Muhammad Ahmer Raza
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Abstract

Diabetes, a global health concern, poses increasing mortality risks. The pathogenesis of diabetes involves multiple mechanisms, with oxidative stress being one of the key contributors. As synthetic drugs have various side effects, which can be minimized by using herbal plants. This study focuses on the In vitro antioxidant potential, α-amylase inhibition potential, identification of bioactive compounds, and hub genes in diabetes treatment mechanism by using C. tinctorius Extraction of C. tinctorious lead and flower was performed using different solvents (Distilled water, methanol, chloroform, and Dimethyl ether). After extraction different concentrations range from 25–200 mg/mL) was made and checked against activities. The antioxidant potential was assessed using 2, 2-diphenyl-1-picrylhydrazyl (DPPH), total phenolic contents (TPC), and total antioxidant capacity (TAC) assays, while antidiabetic activity was evaluated through α-amylase inhibition assay. Phytochemicals was identified by GC–MS analysis, followed by ADMET screening and network pharmacology analysis using Swiss Target Prediction, Gene Card, DesGeNet, DAVID, STRING, Cytoscape, and drug revitalization databases. Results revealed positive correlations with DPPH, TAC, and TPC. Methanol extract exhibited the highest inhibitory concentration. Screening of 46 compounds was performed by studying their pharmacokinetic properties which revealed 9 compounds effective against 204 diabetes targets. Moreover, their network analysis identified four hub genes, including AKT1, JUN, EGFR, and MMP9. These genes found highly associated with drugs like Colchicine and Serotobenine. Revitalization analysis also highlighted four genes (EGFR, PTGS2, AKT1, and MMP9) strongly correlated with FDA-approved drugs. The study suggests C. tinctorius methanol extract is a potential source for novel drugs.

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秋水仙碱、蛇床子碱和金诺贝酮 A:用于治疗糖尿病的新型荠菜治疗化合物
糖尿病是全球关注的健康问题,其造成的死亡风险与日俱增。糖尿病的发病机制涉及多个方面,氧化应激是其中一个重要因素。由于合成药物有各种副作用,使用草本植物可将副作用降至最低。本研究的重点是利用洋二仙草对体外抗氧化潜力、α-淀粉酶抑制潜力、生物活性化合物的鉴定以及糖尿病治疗机制中的枢纽基因进行研究。萃取后制成不同浓度(25-200 毫克/毫升)的产品,并检查其活性。抗氧化潜力采用 2,2-二苯基-1-苦基肼(DPPH)、总酚含量(TPC)和总抗氧化能力(TAC)测定法进行评估,抗糖尿病活性则通过α-淀粉酶抑制测定法进行评估。通过气相色谱-质谱分析鉴定了植物化学成分,然后利用瑞士靶点预测、Gene Card、DesGeNet、DAVID、STRING、Cytoscape 和药物振兴数据库进行了 ADMET 筛选和网络药理学分析。结果表明,它们与 DPPH、TAC 和 TPC 呈正相关。甲醇提取物的抑制浓度最高。通过研究 46 种化合物的药代动力学特性对其进行了筛选,结果发现 9 种化合物对 204 个糖尿病靶点有效。此外,他们还通过网络分析发现了四个枢纽基因,包括 AKT1、JUN、表皮生长因子受体和 MMP9。这些基因与秋水仙碱和丝裂霉素等药物高度相关。活化分析还强调了四个基因(表皮生长因子受体、PTGS2、AKT1 和 MMP9)与 FDA 批准的药物密切相关。研究表明,洋二仙草甲醇提取物是新型药物的潜在来源。
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来源期刊
Applied Biological Chemistry
Applied Biological Chemistry Chemistry-Organic Chemistry
CiteScore
5.40
自引率
6.20%
发文量
70
审稿时长
20 weeks
期刊介绍: Applied Biological Chemistry aims to promote the interchange and dissemination of scientific data among researchers in the field of agricultural and biological chemistry. The journal covers biochemistry and molecular biology, medical and biomaterial science, food science, and environmental science as applied to multidisciplinary agriculture.
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