Person: Lin, Aaron
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Publication Zika virus evolution and spread in the Americas
(SpringerNature, 2017) Metsky, Hayden C; Matranga, Christian B; Wohl, Shirlee; Schaffner, Stephen; Freije, Catherine; Winnicki, Sarah; West, Kendra L.; Qu, James; Baniecki, Mary; Gladden-Young, Adrianne; Lin, Aaron; Tomkins-Tinch, Christopher; Ye, Simon H; Park, Daniel; Luo, Cynthia; Barnes, Kayle; Shah, Rickey; Chak, Bridget; Barbosa-Lima, Giselle; Delatorre, Edson; Vieira, Yasmine R; Paul, Lauren M; Tan, Amanda L; Barcellona, Carolyn M; Porcelli, Mario C; Vasquez, Chalmers; Cannons, Andrew C; Cone, Marshall R; Hogan, Kelly N; Kopp, Edgar W; Anzinger, Joshua J; Garcia, Kimberly F; Parham, Leda A; Gelvez Ramirez, Rosa Margarita; Miranda Montoya, Maria Consuelo; Rojas, Diana P; Brown, Catherine M; Hennigan, Scott; Sabina, Brandon; Scotland, Sarah; Gangavarapu, Karthik; Grubaugh, Nathan D; Oliveira, Glenn; Robles-Sikisaka, Refugio; Rambaut, Andrew; Gehrke, Lee; Smole, Sandra; Halloran, M Elizabeth; Villar Centeno, Luis Angel; Mattar, Salim; Lorenzana, Ivette; Cerbino-Neto, Jose; Valim, Clarissa; Degrave, Wim; Bozza, Patricia T; Gnirke, Andreas; Andersen, Kristian G; Isern, Sharon; Michael, Scott; Bozza, Fernando A; Souza, Thiago ML; Bosch, Irene; Yozwiak, Nathan L; MacInnis, Bronwyn L; Sabeti, PardisDespite great attention given to the recent Zika virus (ZIKV) epidemic in the Americas, much remains unknown about its epidemiology and evolution, in part due to a lack of genomic data. We applied multiple sequencing approaches to generate 100 ZIKV genomes from clinical and mosquito samples from 10 countries and territories, greatly expanding the observed viral genetic diversity from this outbreak. We analyzed the timing and patterns of introductions into distinct geographic regions, confirming phylogenetic evidence for the origin and rapid expansion of the outbreak in Brazil, and for multiple introductions from Brazil into Honduras, Colombia, Puerto Rico, other Caribbean islands, and the continental US. We find that ZIKV circulated undetected in many regions of the Americas for up to a year before the first locally transmitted cases were confirmed, highlighting the challenge of effective surveillance for this virus. We further characterize genetic variation across the outbreak to identify mutations with possible functional implications for ZIKV biology and pathogenesis.
Publication In vivo Ebola virus infection leads to a strong innate response in circulating immune cells
(BioMed Central, 2016) Caballero, Ignacio S.; Honko, Anna N.; Gire, Stephen K.; Winnicki, Sarah; Melé, Marta; Gerhardinger, Chiara; Lin, Aaron; Rinn, John; Sabeti, Pardis; Hensley, Lisa E.; Connor, John H.Background: Ebola virus is the causative agent of a severe syndrome in humans with a fatality rate that can approach 90 %. During infection, the host immune response is thought to become dysregulated, but the mechanisms through which this happens are not entirely understood. In this study, we analyze RNA sequencing data to determine the host response to Ebola virus infection in circulating immune cells. Results: Approximately half of the 100 genes with the strongest early increases in expression were interferon-stimulated genes, such as ISG15, OAS1, IFIT2, HERC5, MX1 and DHX58. Other highly upregulated genes included cytokines CXCL11, CCL7, IL2RA, IL2R1, IL15RA, and CSF2RB, which have not been previously reported to change during Ebola virus infection. Comparing this response in two different models of exposure (intramuscular and aerosol) revealed a similar signature of infection. The strong innate response in the aerosol model was seen not only in circulating cells, but also in primary and secondary target tissues. Conversely, the innate immune response of vaccinated macaques was almost non-existent. This suggests that the innate response is a major aspect of the cellular response to Ebola virus infection in multiple tissues. Conclusions: Ebola virus causes a severe infection in humans that is associated with high mortality. The host immune response to virus infection is thought to be an important aspect leading to severe pathology, but the components of this overactive response are not well characterized. Here, we analyzed how circulating immune cells respond to the virus and found that there is a strong innate response dependent on active virus replication. This finding is in stark contrast to in vitro evidence showing a suppression of innate immune signaling, and it suggests that the strong innate response we observe in infected animals may be an important contributor to pathogenesis. Electronic supplementary material The online version of this article (doi:10.1186/s12864-016-3060-0) contains supplementary material, which is available to authorized users.
Publication Evaluation of the Potential Impact of Ebola Virus Genomic Drift on the Efficacy of Sequence-Based Candidate Therapeutics
(American Society of Microbiology, 2015) Kugelman, Jeffrey R.; Sanchez-Lockhart, Mariano; Andersen, Kristian G; Gire, Stephen; Park, Daniel J.; Sealfon, Rachel; Lin, Aaron; Wohl, Shirlee; Sabeti, Pardis; Kuhn, Jens H.; Palacios, Gustavo F.ABSTRACT Until recently, Ebola virus (EBOV) was a rarely encountered human pathogen that caused disease among small populations with extraordinarily high lethality. At the end of 2013, EBOV initiated an unprecedented disease outbreak in West Africa that is still ongoing and has already caused thousands of deaths. Recent studies revealed the genomic changes this particular EBOV variant undergoes over time during human-to-human transmission. Here we highlight the genomic changes that might negatively impact the efficacy of currently available EBOV sequence-based candidate therapeutics, such as small interfering RNAs (siRNAs), phosphorodiamidate morpholino oligomers (PMOs), and antibodies. Ten of the observed mutations modify the sequence of the binding sites of monoclonal antibody (MAb) 13F6, MAb 1H3, MAb 6D8, MAb 13C6, and siRNA EK-1, VP24, and VP35 targets and might influence the binding efficacy of the sequence-based therapeutics, suggesting that their efficacy should be reevaluated against the currently circulating strain.
Publication Field validation of recombinant antigen immunoassays for diagnosis of Lassa fever
(Nature Publishing Group UK, 2018) Boisen, Matthew L.; Hartnett, Jessica N.; Shaffer, Jeffrey G.; Goba, Augustine; Momoh, Mambu; Sandi, John Demby; Fullah, Mohamed; Nelson, Diana K. S.; Bush, Duane J.; Rowland, Megan M.; Heinrich, Megan L.; Koval, Anatoliy P.; Cross, Robert W.; Barnes, Kayle; Lachenauer, Anna E.; Lin, Aaron; Nekoui, Mahan; Kotliar, Dylan; Winnicki, Sarah; Siddle, Katherine; Gbakie, Michael; Fonnie, Mbalu; Koroma, Veronica J.; Kanneh, Lansana; Kulakosky, Peter C.; Hastie, Kathryn M.; Wilson, Russell B.; Andersen, Kristian G.; Folarin, Onikepe O.; Happi, Christian T.; Sabeti, Pardis; Geisbert, Thomas W.; Saphire, Erica Ollmann; Khan, S. Humarr; Grant, Donald S.; Schieffelin, John S.; Branco, Luis M.; Garry, Robert F.Lassa fever, a hemorrhagic fever caused by Lassa virus (LASV), is endemic in West Africa. It is difficult to distinguish febrile illnesses that are common in West Africa from Lassa fever based solely on a patient’s clinical presentation. The field performance of recombinant antigen-based Lassa fever immunoassays was compared to that of quantitative polymerase chain assays (qPCRs) using samples from subjects meeting the case definition of Lassa fever presenting to Kenema Government Hospital in Sierra Leone. The recombinant Lassa virus (ReLASV) enzyme-linked immunosorbant assay (ELISA) for detection of viral antigen in blood performed with 95% sensitivity and 97% specificity using a diagnostic standard that combined results of the immunoassays and qPCR. The ReLASV rapid diagnostic test (RDT), a lateral flow immunoassay based on paired monoclonal antibodies to the Josiah strain of LASV (lineage IV), performed with 90% sensitivity and 100% specificity. ReLASV immunoassays performed better than the most robust qPCR currently available, which had 82% sensitivity and 95% specificity. The performance characteristics of recombinant antigen-based Lassa virus immunoassays indicate that they can aid in the diagnosis of LASV Infection and inform the clinical management of Lassa fever patients.