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Chemistry

D-Index
77
Citations
16071
World Ranking
4149
National Ranking
1309

Overview

David M. Lubman is affiliated with the University of Michigan-Ann Arbor in the United States. Their research primarily spans the field of Biochemistry, Genetics, and Molecular Biology, with a focus on several subfields, including Molecular Biology, Spectroscopy, Cancer Research, Biomedical Engineering, and Epidemiology.

The scientist's work covers multiple main topics, reflecting diverse research interests. These include:

  • Glycosylation and Glycoproteins Research
  • Extracellular vesicles in disease
  • MicroRNA in disease regulation
  • Genomics and Phylogenetic Studies
  • Nanopore and Nanochannel Transport Studies
  • Liver Disease Diagnosis and Treatment
  • Galectins and Cancer Biology

David M. Lubman has contributed to various publication venues, with a notable presence in the following journals:

  • Journal of Proteome Research (9 publications)
  • ACS Omega (4 publications)
  • Mass Spectrometry Reviews (2 publications)
  • Journal of Chromatography B (2 publications)
  • Acta Pharmaceutica Sinica B (1 publication)

The scientist's recent papers illustrate current research directions and topics of interest:

  • The role of N-glycosylation in cancer (2023, Acta Pharmaceutica Sinica B)
  • A guide to mass spectrometric analysis of extracellular vesicle proteins for biomarker discovery (2021, Mass Spectrometry Reviews)
  • Glycopeptide Biomarkers in Serum Haptoglobin for Hepatocellular Carcinoma Detection in Patients with Nonalcoholic Steatohepatitis (2020, Journal of Proteome Research)
  • Column-based Technology for CD9-HPLC Immunoaffinity Isolation of Serum Extracellular Vesicles (2021, Journal of Proteome Research)
  • Rapid separation of blood plasma exosomes from low-density lipoproteins via a hydrophobic interaction chromatography method on a polyester capillary-channeled polymer fiber phase (2021, Analytica Chimica Acta)

Collaboration is a significant aspect of their research, as shown by frequent co-authors, which include:

  • Jianhui Zhu
  • Neehar D. Parikh
  • Amit G. Singal
  • Yehia Mechref
  • Yu Lin

Best Publications

  • Isoelectric focusing nonporous RP HPLC: a two-dimensional liquid-phase separation method for mapping of cellular proteins with identification using MALDI-TOF mass spectrometry.

    Daniel B. Wall;Maureen T. Kachman;Siyuan Gong;Robert Hinderer

  • Comparative serum glycoproteomics using lectin selected sialic acid glycoproteins with mass spectrometric analysis: application to pancreatic cancer serum.

    Jia Zhao;Diane M. Simeone;David Heidt;Michelle A. Anderson

  • Multiple Sclerosis An Important Role for Post-Translational Modifications of Myelin Basic Protein in Pathogenesis

    J. K. Kim;F. G. Mastronardi;D. D. Wood;D. M. Lubman

  • Differentiation of bacteria using protein profiles from matrix‐assisted laser desorption/ionization time‐of‐flight mass spectrometry

    Teresa C. Cain;David M. Lubman;Walter J. Weber;A. Vertes

  • Detection of 500‐nucleotide DNA by laser desorption mass spectrometry

    K. Tang;N. I. Taranenko;S. L. Allman;L. Y. Cháng

  • N-linked glycosylation profiling of pancreatic cancer serum using capillary liquid phase separation coupled with mass spectrometric analysis.

    Jia Zhao;Weilian Qiu;Diane M. Simeone;David M. Lubman

  • Protein pI shifts due to posttranslational modifications in the separation and characterization of proteins

    Kan Zhu;Jia Zhao;David M. Lubman;Fred R. Miller

  • Improving the resolution of matrix-assisted laser desorption/ionization time-of-flight mass spectrometry by exploiting the correlation between ion position and velocity

    Steven M. Colby;Timothy B. King;James P. Reilly;D. M. Lubman

  • Plasma glycoprotein profiling for colorectal cancer biomarker identification by lectin glycoarray and lectin blot

    Yinghua Qiu;Tasneem H. Patwa;Li Xu;Li Xu;Kerby Shedden

  • How isolated are molecules in a molecular beam

    David M. Lubman;Charles T. Rettner;Richard N. Zare

  • Comparison of an Optimized Ultracentrifugation Method versus Size-Exclusion Chromatography for Isolation of Exosomes from Human Serum

    Mingrui An;Jing Wu;Jianhui Zhu;David M. Lubman

  • Multiphoton ionization of azulene and naphthalene

    D. M. Lubman;R. Naaman;R. Naaman;R. N. Zare

  • Protein Digest Analysis by Pressurized Capillary Electrochromatography Using an Ion Trap Storage/Reflectron Time-of-Flight Mass Detector

    Jing Tao Wu;Peiqing Huang;Michael X. Li;David M. Lubman

  • Glycoprotein microarrays with multi-lectin detection: unique lectin binding patterns as a tool for classifying normal, chronic pancreatitis and pancreatic cancer sera.

    Jia Zhao;Tasneem H. Patwa;Weilian Qiu;Kerby Shedden

  • CD90 is Identified as a Candidate Marker for Cancer Stem Cells in Primary High-Grade Gliomas Using Tissue Microarrays

    Jintang He;Yashu Liu;Thant Zhu;Jianhui Zhu

  • Mass spectrometry of aromatic molecules with resonance-enhanced multiphoton ionization

    David M. Lubman;Mel N. Kronick

  • An ion trap storage/time-of-flight mass spectrometer

    Steven M. Michael;Mingta Chien;David M. Lubman

  • Aberrant glycosylation and cancer biomarker discovery: a promising and thorny journey.

    Mengmeng Wang;Jianhui Zhu;David M Lubman;Chunfang Gao

  • A 2-D liquid separations/mass mapping method for interlysate comparison of ovarian cancers.

    Maureen T. Kachman;Haixing Wang;Donald R. Schwartz;Kathleen R. Cho

  • Urinary Glycoprotein Biomarker Discovery for Bladder Cancer Detection Using LC/MS-MS and Label-Free Quantification

    Na Yang;Shun Feng;Kerby Shedden;Xiaolei Xie

  • Pulsed laser desorption with resonant two-photon ionization detection in supersonic beam mass spectrometry

    Roger. Tembreull;David M. Lubman

  • Applicability of resonant two-photon ionization in supersonic beam mass spectrometry to halogenated aromatic hydrocarbons

    Roger. Tembreull;Chung Hang. Sin;Ping. Li;Ho Ming. Pang

  • Bladder Cancer Associated Glycoprotein Signatures Revealed by Urinary Proteomic Profiling

    Paweena Kreunin;Jia Zhao;Charles Rosser;Virginia Urquidi

  • Screening of glycosylation patterns in serum using natural glycoprotein microarrays and multi-lectin fluorescence detection.

    Tasneem H. Patwa;Jia Zhao;Michelle A. Anderson;Diane M. Simeone

Frequent Co-Authors

Diane M. Simeone
Diane M. Simeone New York University Langone Medical Center
Theodore S. Lawrence
Theodore S. Lawrence University of Michigan–Ann Arbor
Christian G. Huber
Christian G. Huber University of Salzburg
Kathleen R. Cho
Kathleen R. Cho University of Michigan–Ann Arbor
Jorge A. Marrero
Jorge A. Marrero University of Pennsylvania
Peter D.R. Higgins
Peter D.R. Higgins University of Michigan–Ann Arbor
Richard N. Zare
Richard N. Zare Stanford University
Max S. Wicha
Max S. Wicha University of Michigan–Ann Arbor
Thomas J. Giordano
Thomas J. Giordano University of Michigan–Ann Arbor
Ron Naaman
Ron Naaman Weizmann Institute of Science

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