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Critical Reviews in Biochemistry and Molecular Biology|September 16, 2020
RAGE and its ligands: from pathogenesis to therapeuticsNitish Jangde, Rashmi Ray, Vivek RaiCell Communication and Signaling : CCS|October 28, 2020
Lysophosphatidic acid-RAGE axis promotes lung and mammary oncogenesis via protein kinase B and regulating tumor microenvironmentRashmi Ray, Nitish Jangde, Satyendra Kumar Singh, et al.Cell Death & Disease|October 29, 2021
p32 promotes melanoma progression and metastasis by targeting EMT markers, Akt/PKB pathway, and tumor microenvironmentSunita Sinha, Satyendra Kumar Singh, Nitish Jangde, et al.Medical Oncology (Northwood, London, England)|September 9, 2020
MYH9 suppresses melanoma tumorigenesis, metastasis and regulates tumor microenvironmentSatyendra Kumar Singh, Sunita Sinha, Jyotirmayee Padhan, et al.Biochimie|August 5, 2018
Cysteine mediated disulfide bond formation in RAGE V domain facilitates its functionally relevant dimerizationNitish Jangde, Rashmi Ray, Sunita Sinha, et al.STAR Protocols|February 4, 2022
Protocol for accelerated skeletal muscle regeneration and hypertrophic muscle formation in miceRashmi Ray, Vivek RaiBlood|January 11, 2017
Lysophosphatidic acid converts monocytes into macrophages in both mice and humansRashmi Ray, Vivek RaiNeuroscience and Biobehavioral Reviews|January 3, 2016
RAGE axis in neuroinflammation, neurodegeneration and its emerging role in the pathogenesis of amyotrophic lateral sclerosisRashmi Ray, Judyta K Juranek, Vivek RaiReviews in the Neurosciences|July 31, 2015
Receptor for advanced glycation end-products in neurodegenerative diseasesJudyta Juranek, Rashmi Ray, Marta Banach, et al.Cell Reports|March 3, 2021
Atx regulates skeletal muscle regeneration via LPAR1 and promotes hypertrophyRashmi Ray, Sunita Sinha, Vassilis Aidinis, et al.Pageof 7