0000000000083418

AUTHOR

Wangdong Jin

showing 5 related works from this author

Theabrownin Inhibits Cell Cycle Progression and Tumor Growth of Lung Carcinoma through c-myc-Related Mechanism.

2017

Green tea, the fresh leaves of Camellia sinensis, is not only a health-promoting beverage but also a traditional Chinese medicine used for prevention or treatment of cancer, such as lung cancer. Theabrownin (TB) is the main fraction responsible for the medicinal effects of green tea, but whether it possesses anti-cancer effect is unknown yet. This study aimed to determine the in vitro and in vivo anti-lung cancer effect of TB and explore the underlying molecular mechanism, by using A549 cell line and Lewis lung carcinoma-bearing mice. In cellular experiment, MTT assay was performed to evaluate the inhibitory effect and IC50 values of TB, and flow cytometry was conducted to analyze the cell …

0301 basic medicineCyclin DCellCyclin A03 medical and health sciences0302 clinical medicinec-mycmedicinePharmacology (medical)Lung cancertheabrowninTUNELOriginal ResearchA549 cellPharmacologybiologyCancerCell cyclemedicine.diseaseMolecular biologylung cancer030104 developmental biologymedicine.anatomical_structure030220 oncology & carcinogenesisCancer cellbiology.proteincell cycleFrontiers in pharmacology
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Acute hepatotoxicity induced by quetiapine fumarate in larval zebrafish

2016

medicine.medical_specialtybusiness.industryPharmacology030227 psychiatry03 medical and health sciences0302 clinical medicineEndocrinologymedicine.anatomical_structureInternal medicineQuetiapine FumarateZebrafish larvaemedicine030211 gastroenterology & hepatologyYolk sacbusinessFundamental Toxicological Sciences
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In Vivo Cardiotoxicity Induced by Sodium Aescinate in Zebrafish Larvae

2016

Sodium aescinate (SA) is a widely-applied triterpene saponin product derived from horse chestnut seeds, possessing vasoactive and organ-protective activities with oral or injection administration in the clinic. To date, no toxicity or adverse events in SA have been reported, by using routine models (in vivo or in vitro), which are insufficient to predict all aspects of its pharmacological and toxicological actions. In this study, taking advantage of transparent zebrafish larvae (Danio rerio), we evaluated cardiovascular toxicity of SA at doses of 1/10 MNLC, 1/3 MNLC, MNLC and LC10 by yolk sac microinjection. The qualitative and quantitative cardiotoxicity in zebrafish was assessed at 48 h p…

0301 basic medicinesodium aescinateEmbryo NonmammalianHeart malformationDrug Evaluation PreclinicalPharmaceutical Science010501 environmental sciencesPharmacology01 natural sciencesAnalytical ChemistryHeart RateDrug DiscoveryToxicity Tests ChronicZebrafishYolk SacbiologyCommunicationHeartLC10medicine.anatomical_structureChemistry (miscellaneous)LarvaToxicityMolecular MedicineHeart Defects CongenitalMicroinjectionscardiotoxicityHemorrhagelarvaelcsh:QD241-44103 medical and health scienceslcsh:Organic chemistryIn vivoHeart ratemedicineMNLCAnimalsPhysical and Theoretical ChemistryYolk sacAdverse effect0105 earth and related environmental sciencesCardiotoxicityDose-Response Relationship DrugOrganic ChemistryThrombosisSaponinsbiology.organism_classificationzebrafishTriterpenes030104 developmental biologyMolecules
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Anti-proliferative and apoptosis-inducing effect of theabrownin against non-small cell lung adenocarcinoma A549 cells

2016

With the highest cancer incidence rate, lung cancer, especially non-small cell lung cancer (NSCLC), is the leading cause of cancer death in the world. Tea (leaves of Camellia sinensis) has been widely used as a traditional beverage beneficial to human health, including anti-NSCLC activity. Theabrownin (TB) is one major kind of tea pigment responsible for the beneficial effects of tea liquor. However, its effect on NSCLC is unknown. The aim of the present study was to evaluate anti-proliferative and apoptosis-inducing effect of TB on NSCLC (A549) cells, using MTT assay, morphological observation (DAPI staining), in situ terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL) ass…

0301 basic medicinep53ApoptosisBiology03 medical and health scienceschemistry.chemical_compound0302 clinical medicineA549 cellsPharmacology (medical)MTT assayDAPIOriginal ResearchPharmacologyA549 cellTUNEL assayCell growthTheabrowninlcsh:RM1-950Molecular biologylung cancer030104 developmental biologyReal-time polymerase chain reactionlcsh:Therapeutics. PharmacologyTerminal deoxynucleotidyl transferasechemistryApoptosis030220 oncology & carcinogenesisA549 cells;Frontiers in Pharmacology
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Theabrownin triggersDNAdamage to suppress human osteosarcoma U2OScells by activating p53 signalling pathway

2018

Abstract Osteosarcoma becomes the second leading cause of cancer death in the younger population. Current outcomes of chemotherapy on osteosarcoma were unsatisfactory to date, demanding development of effective therapies. Tea is a commonly used beverage beneficial to human health. As a major component of tea, theabrownin has been reported to possess anti‐cancer activity. To evaluate its anti‐osteosarcoma effect, we established a xenograft model of zebrafish and employed U2OS cells for in vivo and in vitro assays. The animal data showed that TB significantly inhibited the tumour growth with stronger effect than that of chemotherapy. The cellular data confirmed that TB‐triggered DNA damage an…

0301 basic medicineApoptosisCatechinHistones0302 clinical medicineRNA Small InterferingZebrafisheducation.field_of_studyCaspase 3ChemistryCell CycleGene Expression Regulation NeoplasticLarva030220 oncology & carcinogenesisMolecular MedicineOsteosarcomaOriginal ArticlePoly(ADP-ribose) PolymerasesSignal TransductionCell SurvivalDNA damagePoly ADP ribose polymerasePopulationBone NeoplasmsCaspase 303 medical and health sciencesAnimal dataosteosarcomaCell Line TumormedicineAnimalsHumanstheabrownineducationP53OsteoblastsMesenchymal Stem CellsOriginal ArticlesCell Biologymedicine.diseaseAntineoplastic Agents PhytogenicXenograft Model Antitumor AssaysKi-67 Antigen030104 developmental biologyApoptosisCell cultureCancer researchDNA damageCisplatinTumor Suppressor Protein p53Journal of Cellular and Molecular Medicine
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