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Proteomics. Clinical Applications|August 5, 2015
Modern strategies to identify new molecular targets for the treatment of liver diseases: The promising role of Proteomics and Redox Proteomics investigationsAndrea Scaloni, Erika Codarin, Vittorio Di Maso, et al.Proteomics. Clinical Applications|August 5, 2015
Protein content in aqueous humor from patients with pseudoexfoliation (PEX) investigated by capillary LC MALDI-TOF/TOF MSEmilia Hardenborg, Amelie Botling-Taube, Jörg Hanrieder, et al.Proteomics. Clinical Applications|August 5, 2015
Proteomics analysis of liver pathological calcification suggests a role for the IQ motif containing GTPase activating protein 1 in myofibroblast functionFariba Kalantari, Patrick Auguste, Tahereh Ziafazeli, et al.Proteomics. Clinical Applications|August 5, 2015
Protein carbonylation in kidney medulla of the spontaneously hypertensive ratRaymond Tyther, Ahmad Ahmeda, Edward Johns, et al.Proteomics. Clinical Applications|August 5, 2015
In this issue: Proteomics - Clinical Applications 3/2009Proteomics. Clinical Applications|July 22, 2017
Altered signaling associated with chronic arsenic exposure in human skin keratinocytesSartaj Ahmad Mir, Santosh Renuse, Gajanan Sathe, et al.Proteomics. Clinical Applications|November 10, 2015
Quantitative MS analysis of therapeutic mAbs and their glycosylation for pharmacokinetics studyYuting Cong, Zhang Zhang, Shen Zhang, et al.Proteomics. Clinical Applications|November 10, 2015
Proteome effects of antipsychotic drugs: Learning from preclinical modelsLucia Carboni, Enrico DomeniciProteomics. Clinical Applications|December 12, 2017
A 14-Protein Signature for Rapid Identification of Poor Prognosis Stage III Metastatic MelanomaErin K Sykes, Cassandra E McDonald, Shila Ghazanfar, et al.Proteomics. Clinical Applications|November 2, 2017
Proteomic Analysis of IPEC-J2 Cells in Response to Coinfection by Porcine Transmissible Gastroenteritis Virus and Enterotoxigenic Escherichia coli K88Lu Xia, Lei Dai, Liqi Zhu, et al.Pageof 145