首站-论文投稿智能助手
典型文献
Senna petersiana inhibits key digestive enzymes and modulates dysfunctional enzyme activities in oxidative pancreatic injury
文献摘要:
Objective: To evaluate the effect of Senna petersiana leaf extracts on key digestive enzymes and FeSO4-induced oxidative injury. Methods: Dried Senna petersiana leaf powder (60 g) was defatted in n-hexane and then extracted sequentially at room temperature with dichloromethane, methanol, and distilled water. The total phytochemical content of the extracts was estimated using established methods. The in vitro antioxidant, anti-lipase, and antidiabetic activities and the effect of the extracts on intestinal glucose absorption and FeSO4-induced pancreatic oxidative injury were determined using different protocols. Moreover, GC-MS analysis was performed to identify the main compounds of the plant extract. Molecular docking analysis was also carried out to evaluate the binding energy of compounds with digestive enzymes. Results: Senna petersiana leaf extracts showed significant antioxidant activities in FRAP, DPPH, and hydroxyl radical scavenging assays. They also inhibited pancreatic lipase and lowered intestinal glucose absorption by suppressing activities of α-amylase and α-glucosidase. Treatment with the extracts also lowered lipid peroxidation (malondialdehyde), nitric oxide level, acetylcholinesterase, and ATPase activities with simultaneous improvement of antioxidant (catalase, superoxide dismutase, glutathione) capacity in the type 2 diabetes model of oxidative pancreatic injury. GC-MS characterization of the extracts revealed the presence of stilbenoids, alkaloids, and other compounds. Molecular docking screening assay indicated the extract phytochemicals showed strong interaction with the active site amino acids of the targeted digestive enzymes. Among the Senna petersiana compounds, veratramine had the highest affinity for α-amylase and lipase, whereas dihydrostilbestrol was most attracted to α-glucosidase. Conclusions: Senna petersiana inhibits carbohydrate digestive enzymes, reduces intestinal glucose absorption, and exerts ameliorative effects on FeSO4-induced oxidative pancreatic injury with significant antioxidant capabilities. Detailed in vivo studies are underway to understand the plant's therapeutic potential in diabetes management.
文献关键词:
作者姓名:
Kolawole A.Olofinsan;Ochuko L.Erukainure;Nontokozo Z.Msomi;Md.Shahidul Islam
作者机构:
Department of Biochemistry,University of KwaZulu-Natal,Westville Campus,Durban 4000,South Africa;Department of Pharmacology,University of the Free State,Bloemfontein 9300,South Africa
引用格式:
[1]Kolawole A.Olofinsan;Ochuko L.Erukainure;Nontokozo Z.Msomi;Md.Shahidul Islam-.Senna petersiana inhibits key digestive enzymes and modulates dysfunctional enzyme activities in oxidative pancreatic injury)[J].亚太热带生物医学杂志(英文版),2022(07):300-311
A类:
petersiana,stilbenoids,veratramine,dihydrostilbestrol
B类:
Senna,inhibits,key,digestive,enzymes,modulates,dysfunctional,activities,oxidative,pancreatic,injury,Objective,To,evaluate,leaf,extracts,FeSO4,induced,Methods,Dried,powder,was,defatted,hexane,then,extracted,sequentially,room,temperature,dichloromethane,methanol,distilled,water,total,content,estimated,using,established,methods,vitro,antioxidant,lipase,antidiabetic,intestinal,glucose,absorption,determined,different,protocols,Moreover,analysis,performed,identify,main,compounds,plant,Molecular,docking,also,carried,out,binding,energy,Results,showed,significant,FRAP,DPPH,hydroxyl,radical,scavenging,assays,They,inhibited,lowered,by,suppressing,amylase,glucosidase,Treatment,lipid,peroxidation,malondialdehyde,nitric,level,acetylcholinesterase,ATPase,simultaneous,improvement,catalase,superoxide,dismutase,glutathione,capacity,type,diabetes,model,characterization,revealed,presence,alkaloids,other,screening,indicated,phytochemicals,strong,interaction,active,site,amino,acids,targeted,Among,had,highest,affinity,whereas,most,attracted,Conclusions,carbohydrate,reduces,exerts,ameliorative,effects,capabilities,Detailed,vivo,studies,are,underway,understand,therapeutic,potential,management
AB值:
0.501627
相似文献
Spirulina platensis aqueous extracts ameliorate colonic mucosal damage and modulate gut microbiota disorder in mice with ulcerative colitis by inhibiting inflammation and oxidative stress
Jian WANG;Liqian SU;Lun ZHANG;Jiali ZENG;Qingru CHEN;Rui DENG;Ziyan WANG;Weidong KUANG;Xiaobao JIN;Shuiqing GUI;Yinghua XU;Xuemei LU-Guangdong Provincial Key Laboratory of Pharmaceutical Bioactive Substances,School of Life Science and Biopharmaceutics,Guangdong Pharmaceutical University,Guangzhou 510006,China;School of Pharmacy,Guangdong Pharmaceutical University,Guangzhou 510006,China;Intensive Care Unit,Shenzhen Second People's Hospital,the First Affiliated Hospital of Shenzhen University,Shenzhen 518031,China;Key Laboratory of the Ministry of Health for Research on Quality and Standardization of Biotech Products,National Institutes for Food and Drug Control,Beijing 102629,China
Integrated UHPLC-MS and network pharmacology to explore the active constituents and pharmacological mechanisms of Shenzao dripping pills against coronary heart disease
Tao Hu;Ke-Ning Zheng;Jia-Yin Liang;Dan Tang;Lu-Yong Zhang;Ming-Hua Xian;Shu-Mei Wang-Key Laboratory of Digital Quality Evaluation of Chinese Materia Medica of State Administration of Traditional Chinese Medicine,Guangdong Pharmaceutical University,Guangzhou 510006,China;Engineering&Technology Research Center for Chinese Materia Medica Quality of the Universities of Guangdong Province,Guangzhou 510006,China;School of Traditional Chinese Medicine,Guangdong Pharmaceutical University,Guangzhou 510006,China;Guangzhou Key Laboratory of Construction and Application of New Drug Screening Model Systems,Guangdong Pharmaceutical University,Guangzhou 510006,China;School of Pharmacy,Guangdong Pharmaceutical University,Guangzhou 510006,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。