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Santosh Renuse

Showing results (21-30 of 84) with videos related to

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Clinical Proteomics|November 28, 2018
Correction to: Quantitative phosphoproteomic analysis reveals reciprocal activation of receptor tyrosine kinases between cancer epithelial cells and stromal fibroblastsXinyan Wu, Muhammad Saddiq Zahari, Santosh Renuse, et al.
Proteomics|July 20, 2011
Quantitative temporal proteomic analysis of human embryonic stem cell differentiation into oligodendrocyte progenitor cellsRaghothama Chaerkady, Brian Letzen, Santosh Renuse, et al.
Molecular Omics|June 14, 2021
Cerebrospinal fluid lipidomics for biomarkers of Alzheimer's diseaseSeul Kee Byeon, Anil K Madugundu, Ankit P Jain, et al.
Journal of Proteome Research|July 18, 2022
Machine Learning-Based Fragment Selection Improves the Performance of Qualitative PRM AssaysPatrick M Vanderboom, Santosh Renuse, Anthony D Maus, et al.
Journal of Proteomics|August 22, 2012
Proteomic analysis of an unsequenced plant--Mangifera indicaSantosh Renuse, H C Harsha, Praveen Kumar, et al.
Molecular Biosystems|October 31, 2014
Identification of miR-145 targets through an integrated omics analysisTai-Chung Huang, Santosh Renuse, Sneha Pinto, et al.
Proteomics. Clinical Applications|July 22, 2017
Altered signaling associated with chronic arsenic exposure in human skin keratinocytesSartaj Ahmad Mir, Santosh Renuse, Gajanan Sathe, et al.
Oncotarget|December 1, 2016
The non-receptor tyrosine kinase TNK2/ACK1 is a novel therapeutic target in triple negative breast cancerXinyan Wu, Muhammad Saddiq Zahari, Santosh Renuse, et al.
Clinical Proteomics|May 5, 2022
Correction: A SISCAPA-based approach for detection of SARS-CoV-2 viral antigens from clinical samplesKiran K Mangalaparthi, Sandip Chavan, Anil K Madugundu, et al.
Cell Reports|March 17, 2021
The mitochondrial carrier SFXN1 is critical for complex III integrity and cellular metabolismMichelle Grace Acoba, Ebru S Selen Alpergin, Santosh Renuse, et al.
Pageof 9

Showing results (21-30 of 84) with videos related to

Sort By:
Pageof 9
Clinical Proteomics|November 28, 2018
Correction to: Quantitative phosphoproteomic analysis reveals reciprocal activation of receptor tyrosine kinases between cancer epithelial cells and stromal fibroblastsXinyan Wu, Muhammad Saddiq Zahari, Santosh Renuse, et al.
Proteomics|July 20, 2011
Quantitative temporal proteomic analysis of human embryonic stem cell differentiation into oligodendrocyte progenitor cellsRaghothama Chaerkady, Brian Letzen, Santosh Renuse, et al.
Molecular Omics|June 14, 2021
Cerebrospinal fluid lipidomics for biomarkers of Alzheimer's diseaseSeul Kee Byeon, Anil K Madugundu, Ankit P Jain, et al.
Journal of Proteome Research|July 18, 2022
Machine Learning-Based Fragment Selection Improves the Performance of Qualitative PRM AssaysPatrick M Vanderboom, Santosh Renuse, Anthony D Maus, et al.
Journal of Proteomics|August 22, 2012
Proteomic analysis of an unsequenced plant--Mangifera indicaSantosh Renuse, H C Harsha, Praveen Kumar, et al.
Molecular Biosystems|October 31, 2014
Identification of miR-145 targets through an integrated omics analysisTai-Chung Huang, Santosh Renuse, Sneha Pinto, et al.
Proteomics. Clinical Applications|July 22, 2017
Altered signaling associated with chronic arsenic exposure in human skin keratinocytesSartaj Ahmad Mir, Santosh Renuse, Gajanan Sathe, et al.
Oncotarget|December 1, 2016
The non-receptor tyrosine kinase TNK2/ACK1 is a novel therapeutic target in triple negative breast cancerXinyan Wu, Muhammad Saddiq Zahari, Santosh Renuse, et al.
Clinical Proteomics|May 5, 2022
Correction: A SISCAPA-based approach for detection of SARS-CoV-2 viral antigens from clinical samplesKiran K Mangalaparthi, Sandip Chavan, Anil K Madugundu, et al.
Cell Reports|March 17, 2021
The mitochondrial carrier SFXN1 is critical for complex III integrity and cellular metabolismMichelle Grace Acoba, Ebru S Selen Alpergin, Santosh Renuse, et al.
Pageof 9