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Mariana Barboza Gardner

Title(s)Assistant Scientist, School of Veterinary Medicine
SchoolUniversity of California, Davis
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    Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Researchers can login to make corrections and additions, or contact us for help. to make corrections and additions.
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    Altmetrics Details PMC Citations indicate the number of times the publication was cited by articles in PubMed Central, and the Altmetric score represents citations in news articles and social media. (Note that publications are often cited in additional ways that are not shown here.) Fields are based on how the National Library of Medicine (NLM) classifies the publication's journal and might not represent the specific topic of the publication. Translation tags are based on the publication type and the MeSH terms NLM assigns to the publication. Some publications (especially newer ones and publications not in PubMed) might not yet be assigned Field or Translation tags.) Click a Field or Translation tag to filter the publications.
    1. Nod-like receptors are critical for gut-brain axis signalling in mice. J Physiol. 2019 12; 597(24):5777-5797. Pusceddu MM, Barboza M, Keogh CE, Schneider M, Stokes P, Sladek JA, Kim HJD, Torres-Fuentes C, Goldfild LR, Gillis SE, Brust-Mascher I, Rabasa G, Wong KA, Lebrilla C, Byndloss MX, Maisonneuve C, Bäumler AJ, Philpott DJ, Ferrero RL, Barrett KE, Reardon C, Gareau MG. PMID: 31652348.
      View in: PubMed   Mentions: 2     Fields:    
    2. Discovery of Serotransferrin Glycoforms: Novel Markers for Diagnosis of Liver Periductal Fibrosis and Prediction of Cholangiocarcinoma. Biomolecules. 2019 09 27; 9(10). Jamnongkan W, Lebrilla CB, Barboza M, Techasen A, Loilome W, Sithithaworn P, Khuntikeo N, Pairojkul C, Chamadol N, Thanan R, Yongvanit P. PMID: 31569686.
      View in: PubMed   Mentions:    Fields:    
    3. Functional circuitry of neuro-immune communication in the mesenteric lymph node and spleen. Brain Behav Immun. 2019 11; 82:214-223. Murray K, Barboza M, Rude KM, Brust-Mascher I, Reardon C. PMID: 31445965.
      View in: PubMed   Mentions:    Fields:    
    4. Immunoglobulin A N-glycosylation Presents Important Body Fluid-specific Variations in Lactating Mothers. Mol Cell Proteomics. 2019 11; 18(11):2165-2177. Goonatilleke E, Smilowitz JT, Mariño KV, German BJ, Lebrilla CB, Barboza M. PMID: 31409668.
      View in: PubMed   Mentions: 1     Fields:    Translation:HumansCells
    5. T-cell derived acetylcholine aids host defenses during enteric bacterial infection with Citrobacter rodentium. PLoS Pathog. 2019 04; 15(4):e1007719. Ramirez VT, Godinez DR, Brust-Mascher I, Nonnecke EB, Castillo PA, Gardner MB, Tu D, Sladek JA, Miller EN, Lebrilla CB, Bevins CL, Gareau MG, Reardon C. PMID: 30973939.
      View in: PubMed   Mentions: 4     Fields:    Translation:AnimalsCells
    6. Liquid Chromatography-Tandem Mass Spectrometry Approach for Determining Glycosidic Linkages. Anal Chem. 2018 11 06; 90(21):13073-13080. Galermo AG, Nandita E, Barboza M, Amicucci MJ, Vo TT, Lebrilla CB. PMID: 30299929.
      View in: PubMed   Mentions: 1     Fields:    Translation:AnimalsCells
    7. Intact glycosphingolipidomic analysis of the cell membrane during differentiation yields extensive glycan and lipid changes. Sci Rep. 2018 Jul 20; 8(1):10993. Wong M, Xu G, Park D, Barboza M, Lebrilla CB. PMID: 30030471.
      View in: PubMed   Mentions: 1     Fields:    Translation:HumansAnimalsCells
    8. Enterocyte glycosylation is responsive to changes in extracellular conditions: implications for membrane functions. Glycobiology. 2017 09 01; 27(9):847-860. Park D, Xu G, Barboza M, Shah IM, Wong M, Raybould H, Mills DA, Lebrilla CB. PMID: 28486580.
      View in: PubMed   Mentions: 5     Fields:    Translation:HumansCells
    9. Glycosylation of human milk lactoferrin exhibits dynamic changes during early lactation enhancing its role in pathogenic bacteria-host interactions. Mol Cell Proteomics. 2012 Jun; 11(6):M111.015248. Barboza M, Pinzon J, Wickramasinghe S, Froehlich JW, Moeller I, Smilowitz JT, Ruhaak LR, Huang J, Lönnerdal B, German JB, Medrano JF, Weimer BC, Lebrilla CB. PMID: 22261723.
      View in: PubMed   Mentions: 38     Fields:    Translation:HumansCells
    10. Bacteroides in the infant gut consume milk oligosaccharides via mucus-utilization pathways. Cell Host Microbe. 2011 Nov 17; 10(5):507-14. Marcobal A, Barboza M, Sonnenburg ED, Pudlo N, Martens EC, Desai P, Lebrilla CB, Weimer BC, Mills DA, German JB, Sonnenburg JL. PMID: 22036470.
      View in: PubMed   Mentions: 118     Fields:    Translation:HumansAnimalsCells
    11. Nano-LC-MS/MS of glycopeptides produced by nonspecific proteolysis enables rapid and extensive site-specific glycosylation determination. Anal Chem. 2011 Jul 15; 83(14):5541-7. Froehlich JW, Barboza M, Chu C, Lerno LA, Clowers BH, Zivkovic AM, German JB, Lebrilla CB. PMID: 21661761.
      View in: PubMed   Mentions: 14     Fields:    Translation:HumansAnimalsCells
    12. Lactosomes: structural and compositional classification of unique nanometer-sized protein lipid particles of human milk. J Agric Food Chem. 2010 Nov 10; 58(21):11234-42. Argov-Argaman N, Smilowitz JT, Bricarello DA, Barboza M, Lerno L, Froehlich JW, Lee H, Zivkovic AM, Lemay DG, Freeman S, Lebrilla CB, Parikh AN, German JB. PMID: 20925428.
      View in: PubMed   Mentions: 6     Fields:    Translation:Humans
    13. Glycoprotein expression in human milk during lactation. J Agric Food Chem. 2010 May 26; 58(10):6440-8. Froehlich JW, Dodds ED, Barboza M, McJimpsey EL, Seipert RR, Francis J, An HJ, Freeman S, German JB, Lebrilla CB. PMID: 20415418.
      View in: PubMed   Mentions: 21     Fields:    Translation:HumansCells
    14. Consumption of human milk oligosaccharides by gut-related microbes. J Agric Food Chem. 2010 May 12; 58(9):5334-40. Marcobal A, Barboza M, Froehlich JW, Block DE, German JB, Lebrilla CB, Mills DA. PMID: 20394371.
      View in: PubMed   Mentions: 117     Fields:    Translation:HumansCells
    15. Glycoprofiling bifidobacterial consumption of galacto-oligosaccharides by mass spectrometry reveals strain-specific, preferential consumption of glycans. Appl Environ Microbiol. 2009 Dec; 75(23):7319-25. Barboza M, Sela DA, Pirim C, Locascio RG, Freeman SL, German JB, Mills DA, Lebrilla CB. PMID: 19801485.
      View in: PubMed   Mentions: 19     Fields:    Translation:Cells
    16. Sulfates are main targets of immune responses to cruzipain and are involved in heart damage in BALB/c immunized mice. Int Immunol. 2008 Apr; 20(4):461-70. Acosta DM, Arnaiz MR, Esteva MI, Barboza M, Stivale D, Orlando UD, Torres S, Laucella SA, Couto AS, Duschak VG. PMID: 18195050.
      View in: PubMed   Mentions: 3     Fields:    Translation:HumansAnimalsCells
    17. Analysis and quantitation of fructooligosaccharides using matrix-assisted laser desorption/ionization Fourier transform ion cyclotron resonance mass spectrometry. Anal Chem. 2008 Jan 01; 80(1):159-65. Seipert RR, Barboza M, Niñonuevo MR, LoCascio RG, Mills DA, Freeman SL, German JB, Lebrilla CB. PMID: 18044961.
      View in: PubMed   Mentions: 6     Fields:    Translation:Cells
    18. Methods for the quantitation of human milk oligosaccharides in bacterial fermentation by mass spectrometry. Anal Biochem. 2007 Feb 01; 361(1):15-23. Ninonuevo MR, Ward RE, LoCascio RG, German JB, Freeman SL, Barboza M, Mills DA, Lebrilla CB. PMID: 17181994.
      View in: PubMed   Mentions: 17     Fields:    Translation:Cells
    19. Novel cysteine proteinase in Trypanosoma cruzi metacyclogenesis. Parasitology. 2006 Mar; 132(Pt 3):345-55. Duschak VG, Barboza M, García GA, Lammel EM, Couto AS, Isola EL. PMID: 16238824.
      View in: PubMed   Mentions: 2     Fields:    Translation:Animals
    20. Structural analysis of the N-glycans of the major cysteine proteinase of Trypanosoma cruzi. Identification of sulfated high-mannose type oligosaccharides. FEBS J. 2005 Aug; 272(15):3803-15. Barboza M, Duschak VG, Fukuyama Y, Nonami H, Erra-Balsells R, Cazzulo JJ, Couto AS. PMID: 16045752.
      View in: PubMed   Mentions: 8     Fields:    Translation:Animals
    21. Retraction of "Presence of sialic acid in N-linked oligosaccharide chains and O-linked N-acetylglucosamine in cruzipain, the major cysteine proteinase of Trypanosoma cruzi". [Mol Biochem Parasitol 2003; 127: 69-72]. Mol Biochem Parasitol. 2003 Jul; 129(2):215. PMID: 12850266.
      View in: PubMed   Mentions:    Fields:    
    22. Trypanosoma cruzi: partial characterization of minor cruzipain isoforms non-adsorbed to Concanavalin A-Sepharose. Exp Parasitol. 2003 Jul-Aug; 104(3-4):122-30. Duschak VG, Barboza M, Couto AS. PMID: 14552859.
      View in: PubMed   Mentions:    Fields:    Translation:AnimalsCells
    23. Presence of sialic acid in N-linked oligosaccharide chains and O-linked N-acetylglucosamine in cruzipain, the major cysteine proteinase of Trypanosoma cruzi. Mol Biochem Parasitol. 2003 Mar; 127(1):69-72. Barboza M, Duschak VG, Cazzulo JJ, de Lederkremer RM, Couto AS. PMID: 12615337.
      View in: PubMed   Mentions: 1     Fields:    Translation:Animals
    24. Presence of sialic acid in N-linked oligosaccharide chains and O-linked N-acetylglucosamine in cruzipain, the major cysteine proteinase of Trypanosoma cruzi. Mol Biochem Parasitol. 2003 Feb; 126(2):293-6. Barboza M, Duschak VG, Cazzulo JJ, de Lederkremer RM, Couto AS. PMID: 12615330.
      View in: PubMed   Mentions: 2     Fields:    Translation:Animals
    25. Trypanosoma cruzi: cruzipain and membrane-bound cysteine proteinase isoform(s) interacts with human alpha(2)-macroglobulin and pregnancy zone protein. Exp Parasitol. 2002 Feb; 100(2):121-30. Ramos AM, Duschak VG, Gerez de Burgos NM, Barboza M, Remedi MS, Vides MA, Chiabrando GA. PMID: 12054702.
      View in: PubMed   Mentions: 1     Fields:    Translation:HumansAnimals
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