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MICHAEL GOMEZ

Michael Gomez

Michael Gomez is a Research Associate II on the Diagnostics Team in the Sabeti Lab. He is particularly interested in leveraging the power of CRISPR-based diagnostics to create surveillance tools for low-resource settings. Additionally, he is passionate about improving global health through community partnerships and field work.
Michael earned a BA in Health Science and a minor in Political Science from Boston University. As an undergraduate, Michael spent much of his time outside of class working in the community service center, directing a food rescue program during the pandemic to provide food insecurity relief to communities across the Boston area. This work, combined with his studies in the life sciences, motivated him to work in roles that would lead to meaningful improvements in public health. His first role out of school was working in a clinical testing laboratory at BU to detect SARS-COV-2 in patient samples across the university community. Following that experience, he transitioned to an assay development and optimization role at Sherlock Biosciences. At Sherlock he paired isothermal amplification technologies with CRISPR Cas12 and CAS13a systems to detect a panel of sexually transmitted infections for an over-the-counter device.

Currently, Michael is working in the Sabeti Lab to further develop the mCARMEN technology to detect a variety of avian and swine influenza subtypes. Additionally, Michael has contributed to the lab’s response to the recent avian influenza outbreak (H5N1) by developing and carrying out a surveillance system to detect the presence of influenza virus in commercial and raw milk samples.

Outside of the lab, you can probably find Michael working on his makeshift garden on his Allston balcony, taking online language classes, picking up a new hobby (sewing being most recent), or going on a last-minute solo trip to a country with the best flight deals.

SELECTED PUBLICATIONS

Ebola Virus Epidemiology, Transmission, and Evolution during Seven Months in Sierra Leone

Cell. 2015.
Park DJ, Dudas G, Wohl S, Goba A, Whitmer SL, Andersen KG, Sealfon RS, Ladner JT, Kugelman JR, Matranga CB, Winnicki SM, Qu J, Gire SK, Gladden-Young A, Jalloh S, Nosamiefan D, Yozwiak NL, Moses LM, Jiang PP, Lin AE, Schaffner SF, Bird B, Towner J, Mamoh M, Gbakie M, Kanneh L, Kargbo D, Massally JL, Kamara FK, Konuwa E, Sellu J, Jalloh AA, Mustapha I, Foday M, Yillah M, Erickson BR, Sealy T, Blau D, Paddock C, Brault A, Amman B, Basile J, Bearden S, Belser J, Bergeron E, Campbell S, Chakrabarti A, Dodd K, Flint M, Gibbons A, Goodman C, Klena J, McMullan L, Morgan L, Russell B, Salzer J, Sanchez A, Wang D, Jungreis I, Tomkins-Tinch C, Kislyuk A, Lin MF, Chapman S, MacInnis B, Matthews A, Bochicchio J, Hensley LE, Kuhn JH, Nusbaum C, Schieffelin JS, Birren BW, Forget M, Nichol ST, Palacios GF, Ndiaye D, Happi C, Gevao SM, Vandi MA, Kargbo B, Holmes EC, Bedford T, Gnirke A, Ströher U, Rambaut A, Garry RF, Sabeti PC

Genomic surveillance elucidates Ebola virus origin and transmission during the 2014 outbreak.

Science. 2014.
Gire SK, Goba A, Andersen KG, Sealfon RS, Park DJ, Kanneh L, Jalloh S, Momoh M, Fullah M, Dudas G, Wohl S, Moses LM, Yozwiak NL, Winnicki S, Matranga CB, Malboeuf CM, Qu J, Gladden AD, Schaffner SF, Yang X, Jiang PP, Nekoui M, Colubri A, Coomber MR, Fonnie M, Moigboi A, Gbakie M, Kamara FK, Tucker V, Konuwa E, Saffa S, Sellu J, Jalloh AA, Kovoma A, Koninga J, Mustapha I, Kargbo K, Foday M, Yillah M, Kanneh F, Robert W, Massally JL, Chapman SB, Bochicchio J, Murphy C, Nusbaum C, Young S, Birren BW, Grant DS, Scheiffelin JS, Lander ES, Happi C, Gevao SM, Gnirke A, Rambaut A, Garry RF, Khan SH, Sabeti PC.

Sequence-based association and selection scans identify drug resistance loci in the Plasmodium falciparum malaria parasite.

Proc Natl Acad Sci U S A. 2012.
Park DJ, Lukens AK, Neafsey DE, Schaffner SF, Chang HH, Valim C, Ribacke U, Van Tyne D, Galinsky K, Galligan M, Becker JS, Ndiaye D, Mboup S, Wiegand RC, Hartl DL, Sabeti PC, Wirth DF, Volkman SK.

Harnessing genomics and genome biology to understand malaria biology

Nat Rev Genet. 2012.
Volkman SK1, Neafsey DE, Schaffner SF, Park DJ, Wirth DF.

Identification and functional validation of the novel antimalarial resistance locus PF10_0355 in Plasmodium falciparum.

PLoS Genet. 2011.
Van Tyne D1, Park DJ, Schaffner SF, Neafsey DE, Angelino E, Cortese JF, Barnes KG, Rosen DM, Lukens AK, Daniels RF, Milner DA Jr, Johnson CA, Shlyakhter I, Grossman SR, Becker JS, Yamins D, Karlsson EK, Ndiaye D, Sarr O, Mboup S, Happi C, Furlotte NA, Eskin E, Kang HM, Hartl DL, Birren BW, Wiegand RC, Lander ES, Wirth DF, Volkman SK, Sabeti PC.

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