Biography

Dr. Julio Martín-García

Drexel University, USA


Email: [email protected]


Qualifications

1997  Ph.D., Universidad Autónoma of Madrid, Spain

1990  B.Sc., Universidad Complutense of Madrid, Spain


Publications (Selected)

  1. Montero, M. B., Ramírez, C., & Martín, J., et al. (2025). SIX PHYSICS EXERCISES ON THE ENGLISH WAY OF ST. JAMES OF COMPOSTELLA. EDULEARN25 Proceedings, 2604–2610.
  2. Albalate, M., Arribas, P., & Torres, E., et al. (2020). High prevalence of asymptomatic COVID-19 in haemodialysis: learning day by day. Nefrologia, 40(4), 379–384.
  3. Chen, N. C., Partridge, A. T., & Tuzer, F., et al. (2018). Induction of a senescence-like phenotype in cultured human fetal microglia during HIV-1 infection. The Journals of Gerontology: Series A, 73(9), 1187–1196.
  4. Chen, N. C., Partridge, A. T., & Sell, C., et al. (2017). Fate of microglia during HIV‐1 infection: From activation to senescence?. Glia, 65(3), 431–446.
  5. Marquina, J., Martín, J., & Luengo, J., et al. (2017). Structural refinement, photoluminescence and Raman spectroscopy of Wurtzite Mn-doped ZnO pellets. Revista Mexicana de Física, 63(1), 32–39.
  6. Aiamkitsumrit, B., Dampier, W., & Martin-Garcia, J., et al. (2014). Defining differential genetic signatures in CXCR4-and the CCR5-utilizing HIV-1 co-linear sequences. PLoS ONE, 9(9), Article e107389.
  7. Swaminathan, G., Pascual, D., & Rival, G., et al. (2014). Hepatitis C virus core protein enhances HIV-1 replication in human macrophages through TLR2, JNK, and MEK1/2-dependent upregulation of TNF-α and IL-6. FEBS Letters, 588(18), 3501–3510.
  8. Swaminathan, G., Navas-Martin, S., & Martin-Garcia, J. (2014). Interplay between microRNAs, Toll-like receptors, and HIV-1: potential implications in HIV-1 replication and chronic immune activation. Discovery Medicine, 18(97), 15–27.
  9. Swaminathan, G., Navas-Martín, S., & Jack Martín-García. (2014). MicroRNAs and HIV-1 infection: antiviral activities and beyond. Journal of Molecular Biology, 426(6), 1178–1197.
  10. Aiamkitsumrit, B., Dampier, W., & Antell, G., et al. (2014). Bioinformatic analysis of HIV-1 entry and pathogenesis. Current HIV Research, 12(2), 132–161.
  11. Izura, V., Martín, J., & Herrero, M. T. (2014). P303: Impairment of autonomic nervous system in Parkinson’s disease and its modulation by L-DOPA treatment. Clinical Neurophysiology, 125, Article S130.
  12. Swaminathan, G., Martin-Garcia, J., & Navas-Martin, S. (2013). RNA viruses and microRNAs: challenging discoveries for the 21st century. Physiological Genomics, 45(22), 1035–1048.
  13. Zentner, I., Sierra, L. J., & Fraser, A. K., et al. (2013). Identification of a small‐molecule inhibitor of HIV‐1 assembly that targets the phosphatidylinositol (4, 5)‐bisphosphate binding site of the HIV‐1 matrix protein. ChemMedChem, 8(3), 426–432.
  14. Zentner, I., Sierra, L. J., & Maciunas, L., et al. (2013). Discovery of a small-molecule antiviral targeting the HIV-1 matrix protein. Bioorganic & Medicinal Chemistry Letters, 23(4), 1132–1135.
  15. Izura, V., Martin, J., & Herrero, M. T. (2013). Impairment of autonomic nervous system in Parkinson's disease and its modulation. Neurophysiologie Clinique/Clinical Neurophysiology, 43(5), 319–320.
  16. Swaminathan, G., Martin-Garcia, J., & Navas-Martin, S. (2013). MicroRNAs and RNA Viruses. Physiological Genomics. Advance online publication.
  17. Gupta, A., Swaminathan, G., & Martin-Garcia, J., et al. (2012). MicroRNAs, hepatitis C virus, and HCV/HIV-1 co-infection: new insights in pathogenesis and therapy. Viruses, 4(11), 2485–2513.
  18. Swaminathan, G., Rossi, F., & Sierra, L. J., et al. (2012). A role for microRNA-155 modulation in the anti-HIV-1 effects of Toll-like receptor 3 stimulation in macrophages. PLoS Pathogens, 8(9), Article e1002937.
  19. Kortagere, S., Madani, N., & Mankowski, M. K., et al. (2012). Inhibiting early-stage events in HIV-1 replication by small-molecule targeting of the HIV-1 capsid. Journal of Virology, 86(16), 8472–8481.
  20. Lamana, A., López-Santalla, M., & Ortiz, A. M., et al. (2012). SAT0011 The presence of the T allele on the single-nucleotide polymorphism RS7574865 on STAT4 gene is associated with greater expression of its MRNA. Annals of the Rheumatic Diseases, 71, Article 474.


Profiles Details
https://drexel.edu/medicine/faculty/profiles/julio-martin-garcia/
https://scholar.google.com/citations?user=4AEYUEsAAAAJ&hl=en
https://www.researchgate.net/profile/Martin_Julio_Garcia_Natale

WOS ResearcherID: A-5666-2009


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