Dipanjan Banerjee
Postdoctoral AssociateAbout
Research
Publications
2025
Targeting Cardiomyocyte PCNA and POLD1 Prevents Pathologic Myocardial Hypertrophy
Pal S, Glennon M, Nixon B, Chetkof E, Shridhar P, Kathiresan C, Glasser M, Waldron C, Guo L, Clavere N, Banerjee D, Kim J, Becker J. Targeting Cardiomyocyte PCNA and POLD1 Prevents Pathologic Myocardial Hypertrophy. Circulation Research 2025, 137: 1160-1181. PMID: 40948130, PMCID: PMC12509454, DOI: 10.1161/circresaha.124.325647.Peer-Reviewed Original Research
2024
Macrophage foam cell-derived mediator promotes spontaneous fat lipolysis in atherosclerosis models
Banerjee D, Patra D, Sinha A, Chakrabarty D, Patra A, Sarmah R, Dey U, Dutta R, Bhagabati S, Mukherjee A, Kumar A, Pal D, Dasgupta S. Macrophage foam cell-derived mediator promotes spontaneous fat lipolysis in atherosclerosis models. Journal Of Leukocyte Biology 2024, 117: qiae210. PMID: 39509245, DOI: 10.1093/jleuko/qiae210.Peer-Reviewed Original ResearchConceptsperivascular adipose tissuemacrophage foam cellsadipocyte dysfunctionprogression of atherosclerosisfat lipolysissignal-regulated kinaseperivascular adipose tissue dysfunctioncell-derived mediatorsectopic lipid accumulationlipid accumulationhigh-performance liquid chromatographyadipocytesdysfunctionadipose tissueatherosclerosisvascular walllipolysisFetaatherosclerosis modelfoam cellsmacrophagesLC-MS/MS
2023
MDM2 Regulation of HIF Signaling Causes Microvascular Dysfunction in Hypertrophic Cardiomyopathy
Shridhar P, Glennon M, Pal S, Waldron C, Chetkof E, Basak P, Clavere N, Banerjee D, Gingras S, Becker J. MDM2 Regulation of HIF Signaling Causes Microvascular Dysfunction in Hypertrophic Cardiomyopathy. Circulation 2023, 148: 1870-1886. PMID: 37886847, PMCID: PMC10691664, DOI: 10.1161/circulationaha.123.064332.Peer-Reviewed Original ResearchConceptsMDM2 regulationhypertrophic cardiomyopathymicrovascular dysfunctionpost-translational modificationsearly postnatal time periodsprotein levelspathway in vivosarcomere gene mutationspharmacological methodspostnatal time periodsprotein stabilitystage of diseasegene expressionmolecular methodscapillary growthsarcomeric mutationsRecent insights of obesity-induced gut and adipose tissue dysbiosis in type 2 diabetes
Patra D, Banerjee D, Ramprasad P, Roy S, Pal D, Dasgupta S. Recent insights of obesity-induced gut and adipose tissue dysbiosis in type 2 diabetes. Frontiers In Molecular Biosciences 2023, 10: 1224982. PMID: 37842639, PMCID: PMC10575740, DOI: 10.3389/fmolb.2023.1224982.Peer-Reviewed Reviews, Practice Guidelines, Standards, and Consensus Statementsgut microbial diversitymicrobial diversitymicrobiome profilesfecal microbial transplantationmicrobiome-derived metabolitesgut-brain axisgut microbiotamicrobial homeostasisfatty acid oxidationmicrobial communitiesmicrobial transplantationpathogenic bacteriamicrobial surveillanceadipose tissuemesenteric adipose tissuemicrobial metabolitesmetabolic homeostasistype 2 diabetesgutdysbiosisSafety and antidiabetic activity of Lagenaria siceraria (Molina) Standl. juice in streptozotocin -induced diabetic rats
Das M, Banerjee D, Banerjee A, Muchahary S, Sinha A, Gogoi D, Chattopadhyay P, Dasgupta S, Deka S. Safety and antidiabetic activity of Lagenaria siceraria (Molina) Standl. juice in streptozotocin -induced diabetic rats. Journal Of Ethnopharmacology 2023, 319: 117111. PMID: 37673199, DOI: 10.1016/j.jep.2023.117111.Peer-Reviewed Original ResearchConceptsdose-dependent inhibitiondiabetic ratsanti-inflammatory efficacyWistar ratsgroups of diabetic ratsstreptozotocin-induced diabetic ratsbody weightskeletal muscle cell linemuscle cell lineadverse side effectstissue homogenatesanti-inflammatory propertiesTNF-aIL-1Bglucose tolerancenormal controlsside effectsDPP-4antidiabetic potentialdiabetic controlrats
2022
miR-210-3p Promotes Obesity-Induced Adipose Tissue Inflammation and Insulin Resistance by Targeting SOCS1-Mediated NF-κB Pathway.
Patra D, Roy S, Arora L, Kabeer S, Singh S, Dey U, Banerjee D, Sinha A, Dasgupta S, Tikoo K, Kumar A, Pal D. miR-210-3p Promotes Obesity-Induced Adipose Tissue Inflammation and Insulin Resistance by Targeting SOCS1-Mediated NF-κB Pathway. Diabetes 2022, 72: 375-388. PMID: 36469307, DOI: 10.2337/db22-0284.Peer-Reviewed Original ResearchLipid-induced monokine cyclophilin-A promotes adipose tissue dysfunction implementing insulin resistance and type 2 diabetes in zebrafish and mice models of obesity
Banerjee D, Patra D, Sinha A, Roy S, Pant R, Sarmah R, Dutta R, Kanta Bhagabati S, Tikoo K, Pal D, Dasgupta S. Lipid-induced monokine cyclophilin-A promotes adipose tissue dysfunction implementing insulin resistance and type 2 diabetes in zebrafish and mice models of obesity. Cellular And Molecular Life Sciences 2022, 79: 282. PMID: 35511344, PMCID: PMC11072608, DOI: 10.1007/s00018-022-04306-1.Peer-Reviewed Original ResearchConceptsadipocyte functionadipose tissue dysfunctioncross-talktype 2 diabetesinsulin resistanceinsulin sensitivitytissue dysfunctioncyclophilin Apharmacological inhibitionmouse modeltargeted inhibitionmouse models of obesityadipose tissue inflammationmodels of obesityimprovement of insulin sensitivityadipocyte differentiationcytokine gene expressiongene expression
2021
The in vitro laboratory tests and mass spectrometry-assisted quality assessment of commercial polyvalent antivenom raised against the ‘Big Four’ venomous snakes of India
Patra A, Banerjee D, Dasgupta S, Mukherjee A. The in vitro laboratory tests and mass spectrometry-assisted quality assessment of commercial polyvalent antivenom raised against the ‘Big Four’ venomous snakes of India. Toxicon 2021, 192: 15-31. PMID: 33417947, DOI: 10.1016/j.toxicon.2020.12.015.Peer-Reviewed Original Research
2019
A novel small molecule A2A adenosine receptor agonist, indirubin-3'-monoxime, alleviates lipid-induced inflammation and insulin resistance in 3T3-L1 adipocytes.
Choudhary S, Bora N, Banerjee D, Arora L, Das A, Yadav R, Klotz K, Pal D, Jha A, Dasgupta S. A novel small molecule A2A adenosine receptor agonist, indirubin-3'-monoxime, alleviates lipid-induced inflammation and insulin resistance in 3T3-L1 adipocytes. Biochemical Journal 2019, 476: 2371-2391. PMID: 31409652, DOI: 10.1042/bcj20190251.Peer-Reviewed Original Research
2018
Inflammation-induced mTORC2-Akt-mTORC1 signaling promotes macrophage foam cell formation
Banerjee D, Sinha A, Saikia S, Gogoi B, Rathore A, Das A, Pal D, Buragohain A, Dasgupta S. Inflammation-induced mTORC2-Akt-mTORC1 signaling promotes macrophage foam cell formation. Biochimie 2018, 151: 139-149. PMID: 29883748, DOI: 10.1016/j.biochi.2018.06.001.Peer-Reviewed Original Research
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