Renal Section,
Department of Medicine
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Jade-1, a candidate renal tumor suppressor that promotes apoptosis.
Proceedings of the National Academy of Sciences of the United States of America Aug, 2005 | Pubmed ID: 16046545
Role of Jade-1 in the histone acetyltransferase (HAT) HBO1 complex.
The Journal of biological chemistry Oct, 2008 | Pubmed ID: 18684714
Jade-1 inhibits Wnt signalling by ubiquitylating beta-catenin and mediates Wnt pathway inhibition by pVHL.
Nature cell biology Oct, 2008 | Pubmed ID: 18806787
Stromal endothelial cells directly influence cancer progression.
Science translational medicine Jan, 2011 | Pubmed ID: 21248315
Matrix-embedded endothelial cells are protected from the uremic milieu.
Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association Dec, 2011 | Pubmed ID: 21795755
Polycystin-1 regulates the stability and ubiquitination of transcription factor Jade-1.
Human molecular genetics Dec, 2012 | Pubmed ID: 23001567
Uremic serum and solutes increase post-vascular interventional thrombotic risk through altered stability of smooth muscle cell tissue factor.
Circulation Jan, 2013 | Pubmed ID: 23269489
Dysfunctional endothelial cells directly stimulate cancer inflammation and metastasis.
International journal of cancer Sep, 2013 | Pubmed ID: 23463345
c-Cbl, a ubiquitin E3 ligase that targets active β-catenin: a novel layer of Wnt signaling regulation.
The Journal of biological chemistry Aug, 2013 | Pubmed ID: 23744067
The c-Cbl ubiquitin ligase regulates nuclear β-catenin and angiogenesis by its tyrosine phosphorylation mediated through the Wnt signaling pathway.
The Journal of biological chemistry May, 2015 | Pubmed ID: 25784557
The Aryl Hydrocarbon Receptor is a Critical Regulator of Tissue Factor Stability and an Antithrombotic Target in Uremia.
Journal of the American Society of Nephrology : JASN Jan, 2016 | Pubmed ID: 26019318
Racial differences in colorectal cancer survival at a safety net hospital.
Cancer epidemiology 08, 2017 | Pubmed ID: 28538169
Thrombotic Microangiopathy: A Multidisciplinary Team Approach.
American journal of kidney diseases : the official journal of the National Kidney Foundation Nov, 2017 | Pubmed ID: 28720207
Targeting STUB1-tissue factor axis normalizes hyperthrombotic uremic phenotype without increasing bleeding risk.
Science translational medicine Nov, 2017 | Pubmed ID: 29167396
Uremic Solute-Aryl Hydrocarbon Receptor-Tissue Factor Axis Associates with Thrombosis after Vascular Injury in Humans.
Journal of the American Society of Nephrology : JASN 03, 2018 | Pubmed ID: 29343519
Association of Pathological Fibrosis With Renal Survival Using Deep Neural Networks.
Kidney international reports Mar, 2018 | Pubmed ID: 29725651
Matrix-Embedded Endothelial Cells Attain a Progenitor-Like Phenotype.
Advanced biosystems Sep, 2017 | Pubmed ID: 29862313
c-Cbl Expression Correlates with Human Colorectal Cancer Survival and Its Wnt/β-Catenin Suppressor Function Is Regulated by Tyr371 Phosphorylation.
The American journal of pathology 08, 2018 | Pubmed ID: 30029779
Unique aspects of peripheral artery disease in patients with chronic kidney disease.
Vascular medicine (London, England) 06, 2019 | Pubmed ID: 30823859
Intrinsic coating morphology modulates acute drug transfer in drug-coated balloon therapy.
Scientific reports 05, 2019 | Pubmed ID: 31048704
Towards minimally-invasive, quantitative assessment of chronic kidney disease using optical spectroscopy.
Scientific reports 05, 2019 | Pubmed ID: 31073168
c-Cbl: An Important Regulator and a Target in Angiogenesis and Tumorigenesis.
Cells 05, 2019 | Pubmed ID: 31126146
Segmentation of Glomeruli Within Trichrome Images Using Deep Learning.
Kidney international reports Jul, 2019 | Pubmed ID: 31317118
Metabolites in a mouse cancer model enhance venous thrombogenicity through the aryl hydrocarbon receptor-tissue factor axis.
Blood 12, 2019 | Pubmed ID: 31877217
c-Cbl targets PD-1 in immune cells for proteasomal degradation and modulates colorectal tumor growth.
Scientific reports 12, 2019 | Pubmed ID: 31882749
Temporal and tissue-specific activation of aryl hydrocarbon receptor in discrete mouse models of kidney disease.
Kidney international 03, 2020 | Pubmed ID: 31932072
Haploinsufficiency of Casitas B-Lineage Lymphoma Augments the Progression of Colon Cancer in the Background of Adenomatous Polyposis Coli Inactivation.
The American journal of pathology 03, 2020 | Pubmed ID: 32113662
Platelet Dysfunction and Thrombosis in JAK2-Mutated Primary Myelofibrotic Mice.
Arteriosclerosis, thrombosis, and vascular biology 10, 2020 | Pubmed ID: 32814440
Molecular Mechanisms Underlying the Cardiovascular Toxicity of Specific Uremic Solutes.
Cells 09, 2020 | Pubmed ID: 32887404
Hyperthrombotic Milieu in COVID-19 Patients.
Cells 10, 2020 | Pubmed ID: 33142844
Uraemic solutes as therapeutic targets in CKD-associated cardiovascular disease.
Nature reviews. Nephrology 06, 2021 | Pubmed ID: 33758363
Deep-Learning-Driven Quantification of Interstitial Fibrosis in Digitized Kidney Biopsies.
The American journal of pathology 08, 2021 | Pubmed ID: 34033750
Machine Learning Applications in Nephrology: A Bibliometric Analysis Comparing Kidney Studies to Other Medicine Subspecialities.
Kidney medicine Sep-Oct, 2021 | Pubmed ID: 34693256
Indoleamine 2,3-dioxygenase-1, a Novel Therapeutic Target for Post-Vascular Injury Thrombosis in CKD.
Journal of the American Society of Nephrology : JASN 11, 2021 | Pubmed ID: 34716244
Tryptophan metabolites suppress the Wnt pathway and promote adverse limb events in chronic kidney disease.
The Journal of clinical investigation 01, 2022 | Pubmed ID: 34752422
Determinants of Hemodialysis Performance: Modeling Fluid and Solute Transport in Hollow-Fiber Dialyzers.
Regenerative engineering and translational medicine Sep, 2021 | Pubmed ID: 34926787
Janus Kinase Signaling Pathway and Its Role in COVID-19 Inflammatory, Vascular, and Thrombotic Manifestations.
Cells 01, 2022 | Pubmed ID: 35053424
Pharmacologic Manipulation of Late SV40 Factor Suppresses Wnt Signaling and Inhibits Growth of Allogeneic and Syngeneic Colon Cancer Xenografts.
The American journal of pathology Jun, 2022 | Pubmed ID: 35710032
Saran Lotfollahzadeh1,
Mengwei Zhang1,
Marc Arthur Napoleon1,
Wenqing Yin1,
Josephine Orrick1,
Nagla Elzind1,
Austin Morrissey1,
Isaac E. Sellinger1,
Lauren D. Stern1,
Mostafa Belghasem2,
Jean M. Francis1,
Vipul C. Chitalia1,3,4
1Renal Section, Department of Medicine, Boston University Aram V. Chobanian & Edward Avedisian School of Medicine,
2Department of Biomedical Science, Kaiser Permanente Bernard J. Tyson School of Medicine,
3, Veterans Affairs Boston Healthcare System,
4Institute of Medical Engineering and Sciences, Massachusetts Institute of Technology
Saran Lotfollahzadeh1,
Xiaosheng Yang1,
David Jasen Wu Wong1,
Jingyan Han2,
Francesca Seta2,
Suvranu Ganguli3,
Asha Jose1,
Katya Ravid4,5,
Vipul C. Chitalia1,6,7,8
1Renal Section, Department of Medicine, Chobanian and Avedisian School of Medicine, Boston University,
2Vascular Biology Section, Department of Medicine, Chobanian and Avedisian School of Medicine, Boston University,
3Division of Interventional Radiology, Department of Radiology, Chobanian and Avedisian School of Medicine, Boston University,
4Department of Medicine, Whitaker Cardiovascular Institute, Chobanian and Avedisian School of Medicine, Boston University,
5Department of Biochemistry and Cell Biology, Chobanian and Avedisian School of Medicine, Boston University,
6, Veterans Affairs Boston Healthcare System,
7Institute of Medical Engineering and Sciences, Massachusetts Institute of Technology,
8Center of Cross-Organ Vascular Pathology, Department of Medicine, Chobanian and Avedisian School of Medicine, Boston University
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