Searched for: in-biosketch:yes
person:mullim04
The Immune Response to Eastern Equine Encephalitis Virus Acquired Through Organ Transplantation
Raabe, Vanessa; Lai, Lilin; Xu, Yong; Huerta, Chris; Wang, Dongli; Pouch, Stephanie M; Burke, Crystal W; Piper, Ashley E; Gardner, Christina L; Glass, Pamela J; Mulligan, Mark J
The human immune response to eastern equine encephalitis virus (EEEV) infection is poorly characterized due to the rarity of infection. We examined the humoral and cellular immune response to EEEV acquired from an infected donor via liver transplantation. Both binding and highly neutralizing antibodies to EEEV as well as a robust EEEV-specific IgG memory B cell response were generated. Despite triple-drug immunosuppressive therapy, a virus-specific CD4+ T cell response, predominated by interferon-γ production, was generated. T cell epitopes on the E2 envelope protein were identified by interferon-γ ELISpot. Although these results are from a single person who acquired EEEV by a non-traditional mechanism, to our knowledge this work represents the first analysis of the human cellular immune response to EEEV.
PMCID:7541818
PMID: 33072022
ISSN: 1664-302x
CID: 4641932
Safety and Immunogenicity of Two RNA-Based Covid-19 Vaccine Candidates
Walsh, Edward E; Frenck, Robert W; Falsey, Ann R; Kitchin, Nicholas; Absalon, Judith; Gurtman, Alejandra; Lockhart, Stephen; Neuzil, Kathleen; Mulligan, Mark J; Bailey, Ruth; Swanson, Kena A; Li, Ping; Koury, Kenneth; Kalina, Warren; Cooper, David; Fontes-Garfias, Camila; Shi, Pei-Yong; Türeci, Özlem; Tompkins, Kristin R; Lyke, Kirsten E; Raabe, Vanessa; Dormitzer, Philip R; Jansen, Kathrin U; Şahin, Uğur; Gruber, William C
BACKGROUND:Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infections and the resulting disease, coronavirus disease 2019 (Covid-19), have spread to millions of persons worldwide. Multiple vaccine candidates are under development, but no vaccine is currently available. Interim safety and immunogenicity data about the vaccine candidate BNT162b1 in younger adults have been reported previously from trials in Germany and the United States. METHODS:In an ongoing, placebo-controlled, observer-blinded, dose-escalation, phase 1 trial conducted in the United States, we randomly assigned healthy adults 18 to 55 years of age and those 65 to 85 years of age to receive either placebo or one of two lipid nanoparticle-formulated, nucleoside-modified RNA vaccine candidates: BNT162b1, which encodes a secreted trimerized SARS-CoV-2 receptor-binding domain; or BNT162b2, which encodes a membrane-anchored SARS-CoV-2 full-length spike, stabilized in the prefusion conformation. The primary outcome was safety (e.g., local and systemic reactions and adverse events); immunogenicity was a secondary outcome. Trial groups were defined according to vaccine candidate, age of the participants, and vaccine dose level (10 μg, 20 μg, 30 μg, and 100 μg). In all groups but one, participants received two doses, with a 21-day interval between doses; in one group (100 μg of BNT162b1), participants received one dose. RESULTS:A total of 195 participants underwent randomization. In each of 13 groups of 15 participants, 12 participants received vaccine and 3 received placebo. BNT162b2 was associated with a lower incidence and severity of systemic reactions than BNT162b1, particularly in older adults. In both younger and older adults, the two vaccine candidates elicited similar dose-dependent SARS-CoV-2-neutralizing geometric mean titers, which were similar to or higher than the geometric mean titer of a panel of SARS-CoV-2 convalescent serum samples. CONCLUSIONS:The safety and immunogenicity data from this U.S. phase 1 trial of two vaccine candidates in younger and older adults, added to earlier interim safety and immunogenicity data regarding BNT162b1 in younger adults from trials in Germany and the United States, support the selection of BNT162b2 for advancement to a pivotal phase 2-3 safety and efficacy evaluation. (Funded by BioNTech and Pfizer; ClinicalTrials.gov number, NCT04368728.).
PMID: 33053279
ISSN: 1533-4406
CID: 4641532
High titers of multiple antibody isotypes against the SARS-CoV-2 spike receptor-binding domain and nucleoprotein associate with better neutralization [PrePrint]
Noval, Maria G; Kaczmarek, Maria E; Koide, Akiko; Rodriguez-Rodriguez, Bruno A; Louie, Ping; Tada, Takuya; Hattori, Takamitsu; Panchenko, Tatyana; Romero, Larizbeth A; Teng, Kai Wen; Bazley, Andrew; de Vries, Maren; Samanovic, Marie I; Weiser, Jeffrey N; Aifantis, Ioannis; Cangiarella, Joan; Mulligan, Mark J; Desvignes, Ludovic; Dittmann, Meike; Landau, Nathaniel R; Aguero-Rosenfeld, Maria; Koide, Shohei; Stapleford, Kenneth A
ORIGINAL:0014801
ISSN: 2692-8205
CID: 4636922
LY-CoV555, a rapidly isolated potent neutralizing antibody, provides protection in a non-human primate model of SARS-CoV-2 infection [PrePrint]
Jones, Bryan E; Brown-Augsburger, Patricia L; Corbett, Kizzmekia S; Westendorf, Kathryn; Davies, Julian; Cujec, Thomas P; Wiethoff, Christopher M; Blackbourne, Jamie L; Heinz, Beverly A; Foster, Denisa; Higgs, Richard E; Balasubramaniam, Deepa; Wang, Lingshu; Bidshahri, Roza; Kraft, Lucas; Hwang, Yuri; Žentelis, Stefanie; Jepson, Kevin R; Goya, Rodrigo; Smith, Maia A; Collins, David W; Hinshaw, Samuel J; Tycho, Sean A; Pellacani, Davide; Xiang, Ping; Muthuraman, Krithika; Sobhanifar, Solmaz; Piper, Marissa H; Triana, Franz J; Hendle, Jorg; Pustilnik, Anna; Adams, Andrew C; Berens, Shawn J; Baric, Ralph S; Martinez, David R; Cross, Robert W; Geisbert, Thomas W; Borisevich, Viktoriya; Abiona, Olubukola; Belli, Hayley M; de Vries, Maren; Mohamed, Adil; Dittmann, Meike; Samanovic, Marie; Mulligan, Mark J; Goldsmith, Jory A; Hsieh, Ching-Lin; Johnson, Nicole V; Wrapp, Daniel; McLellan, Jason S; Barnhart, Bryan C; Graham, Barney S; Mascola, John R; Hansen, Carl L; Falconer, Ester
SARS-CoV-2 poses a public health threat for which therapeutic agents are urgently needed. Herein, we report that high-throughput microfluidic screening of antigen-specific B-cells led to the identification of LY-CoV555, a potent anti-spike neutralizing antibody from a convalescent COVID-19 patient. Biochemical, structural, and functional characterization revealed high-affinity binding to the receptor-binding domain, ACE2 binding inhibition, and potent neutralizing activity. In a rhesus macaque challenge model, prophylaxis doses as low as 2.5 mg/kg reduced viral replication in the upper and lower respiratory tract. These data demonstrate that high-throughput screening can lead to the identification of a potent antiviral antibody that protects against SARS-CoV-2 infection.
PMCID:7536866
PMID: 33024963
ISSN: 2692-8205
CID: 4626872
Serosurvey on healthcare personnel caring for patients with Ebola virus disease and Lassa virus in the United States
Kraft, Colleen S; Mehta, Aneesh K; Varkey, Jay B; Lyon, G Marshall; Vanairsdale, Sharon; Bell, Sonia; Burd, Eileen M; Sexton, Mary Elizabeth; Cassidy, Leslie Anne; Olinger, Patricia; Rengarajan, Kalpana; Raabe, Vanessa N; Davis, Emily; Henderson, Scott; DesRoches, Paula; Xu, Yongxian; Mulligan, Mark J; Ribner, Bruce S
OBJECTIVE:Healthcare personnel (HCP) were recruited to provide serum samples, which were tested for antibodies against Ebola or Lassa virus to evaluate for asymptomatic seroconversion. SETTING/METHODS:From 2014 to 2016, 4 patients with Ebola virus disease (EVD) and 1 patient with Lassa fever (LF) were treated in the Serious Communicable Diseases Unit (SCDU) at Emory University Hospital. Strict infection control and clinical biosafety practices were implemented to prevent nosocomial transmission of EVD or LF to HCP. PARTICIPANTS/METHODS:All personnel who entered the SCDU who were required to measure their temperatures and complete a symptom questionnaire twice daily were eligible. RESULTS:No employee developed symptomatic EVD or LF. EVD and LF antibody studies were performed on sera samples from 42 HCP. The 6 participants who had received investigational vaccination with a chimpanzee adenovirus type 3 vectored Ebola glycoprotein vaccine had high antibody titers to Ebola glycoprotein, but none had a response to Ebola nucleoprotein or VP40, or a response to LF antigens. CONCLUSIONS:Patients infected with filoviruses and arenaviruses can be managed successfully without causing occupation-related symptomatic or asymptomatic infections. Meticulous attention to infection control and clinical biosafety practices by highly motivated, trained staff is critical to the safe care of patients with an infection from a special pathogen.
PMID: 32933606
ISSN: 1559-6834
CID: 4592992
RNA-Based COVID-19 Vaccine BNT162b2 Selected for a Pivotal Efficacy Study
Walsh, Edward E; Frenck, Robert; Falsey, Ann R; Kitchin, Nicholas; Absalon, Judith; Gurtman, Alejandra; Lockhart, Stephen; Neuzil, Kathleen; Mulligan, Mark J; Bailey, Ruth; Swanson, Kena A; Li, Ping; Koury, Kenneth; Kalina, Warren; Cooper, David; Fontes-Garfias, Camila; Shi, Pei-Yong; Türeci, Özlem; Thompkins, Kristin R; Lyke, Kirsten E; Raabe, Vanessa; Dormitzer, Philip R; Jansen, Kathrin U; Sahin, Uğur; Gruber, William C
BACKGROUND:Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infections and the resulting disease, coronavirus disease 2019 (COVID-19), have spread to millions of people globally. Multiple vaccine candidates are under development, but no vaccine is currently available. METHODS:Healthy adults 18-55 and 65-85 years of age were randomized in an ongoing, placebo-controlled, observer-blinded dose-escalation study to receive 2 doses at 21-day intervals of placebo or either of 2 lipid nanoparticle-formulated, nucleoside-modified RNA vaccine candidates: BNT162b1, which encodes a secreted trimerized SARS-CoV-2 receptor-binding domain, or BNT162b2, which encodes a prefusion stabilized membrane-anchored SARS-CoV-2 full-length spike. In each of 13 groups of 15 participants, 12 received vaccine and 3 received placebo. Groups were distinguished by vaccine candidate, age of participant, and vaccine dose level. Interim safety and immunogenicity data of BNT162b1 in younger adults have been reported previously from US and German trials. We now present additional safety and immunogenicity data from the US Phase 1 trial that supported selection of the vaccine candidate advanced to a pivotal Phase 2/3 safety and efficacy evaluation. RESULTS:In both younger and older adults, the 2 vaccine candidates elicited similar dose-dependent SARS-CoV-2-neutralizing geometric mean titers (GMTs), comparable to or higher than the GMT of a panel of SARS-CoV-2 convalescent sera. BNT162b2 was associated with less systemic reactogenicity, particularly in older adults. CONCLUSION/CONCLUSIONS:These results support selection of the BNT162b2 vaccine candidate for Phase 2/3 large-scale safety and efficacy evaluation, currently underway.
PMCID:7444302
PMID: 32839784
ISSN: n/a
CID: 4575412
Phase 1/2 study of COVID-19 RNA vaccine BNT162b1 in adults
Mulligan, Mark J; Lyke, Kirsten E; Kitchin, Nicholas; Absalon, Judith; Gurtman, Alejandra; Lockhart, Stephen; Neuzil, Kathleen; Raabe, Vanessa; Bailey, Ruth; Swanson, Kena A; Li, Ping; Koury, Kenneth; Kalina, Warren; Cooper, David; Fontes-Garfias, Camila; Shi, Pei-Yong; Türeci, Özlem; Tompkins, Kristin R; Walsh, Edward E; Frenck, Robert; Falsey, Ann R; Dormitzer, Philip R; Gruber, William C; Şahin, Uğur; Jansen, Kathrin U
In March 2020, the World Health Organization (WHO) declared a pandemic of coronavirus disease 2019 (COVID-19), due to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)1. With rapidly accumulating cases and deaths reported globally2, a vaccine is urgently needed. We report the available safety, tolerability, and immunogenicity data from an ongoing placebo-controlled, observer-blinded dose escalation study among 45 healthy adults, 18 to 55 years of age, randomized to receive 2 doses, separated by 21 days, of 10 µg, 30 µg, or 100 µg of BNT162b1, a lipid nanoparticle-formulated, nucleoside-modified mRNA vaccine that encodes trimerized SARS-CoV-2 spike glycoprotein receptor-binding domain (RBD). Local reactions and systemic events were dose-dependent, generally mild to moderate, and transient. A second vaccination with 100 µg was not administered due to increased reactogenicity and a lack of meaningfully increased immunogenicity after a single dose compared to the 30 μg dose. RBD-binding IgG concentrations and SARS-CoV-2 neutralizing titers in sera increased with dose level and after a second dose. Geometric mean neutralizing titers reached 1.9- to 4.6-fold that of a panel of COVID-19 convalescent human sera at least 14 days after a positive SARS-CoV-2 PCR. These results support further evaluation of this mRNA vaccine candidate. (ClinicalTrials.gov identifier: NCT04368728).
PMID: 32785213
ISSN: 1476-4687
CID: 4555102
An Inactivated Virus Candidate Vaccine to Prevent COVID-19
Mulligan, Mark J
PMID: 32789500
ISSN: 1538-3598
CID: 4555112
Acceptability of an inactivated influenza vaccine delivered by microneedle patch: Results from a phase I clinical trial of safety, reactogenicity, and immunogenicity
Frew, Paula M; Paine, Michele Bennett; Rouphael, Nadine; Schamel, Jay; Chung, Yunmi; Mulligan, Mark J; Prausnitz, Mark R
OBJECTIVE:This study sought to evaluate the acceptability of inactivated influenza vaccine delivered by microneedle patch (MNP) in comparison to inactivated influenza vaccine (IIV) delivered by hypodermic needle. DESIGN, SETTING, AND PARTICIPANTS/METHODS:From the general population of Atlanta, Georgia, we screened 112 and enrolled 100 healthy adult subjects ages 18 to 49 years. Main Outcome(s) and Measure(s). Our participants were randomized to 4 groups of 25 per arm: (1) IIV by MNP administered by healthcare worker (HCW), (2) IIV by MNP self-administered by study participants, (3) IIV by intramuscular (IM) injection administered by HCW or (4) placebo by MNP administered by HCW. We administered four questionnaires: at Day 0 before and after study product delivery, and at Days 8 and 28. RESULTS:At baseline, 98.6% of participants receiving MNP vaccination reported an overall positive experience with MNPs, compared to 86.4% for participants receiving IM vaccination. For future influenza vaccination, study participants (N = 99) preferred MNP (n = 65, 69.9%) to injections or nasal spray (n = 20, 21.5%), and the preference for MNP increased from Day 0 to Day 28. Factor analyses resulted in two scaled measures including MNP Use Perceptions (a = 0.799, n = 5 items) and MNP Perceived Convenience (a = 0.844, n = 4 items) that were included in longitudinal assessments; while findings reflect significant differences across treatment groups on mean scores for ease of use, MNP perceived protection, MNP reliability, and MNP selection knowledge, all groups reported their belief that influenza vaccination by MNP would be reliable and protective, as well as easy-to-use and convenient. CONCLUSIONS AND RELEVANCE/CONCLUSIONS:Most participants were accepting of IIV vaccination by MNP and preferred it to injection. Delivery of IIV by MNP may help increase vaccination coverage.
PMID: 32792250
ISSN: 1873-2518
CID: 4555122
Transcriptomic and Metabolic Responses to a Live-Attenuated Francisella tularensis Vaccine
Goll, Johannes B; Li, Shuzhao; Edwards, James L; Bosinger, Steven E; Jensen, Travis L; Wang, Yating; Hooper, William F; Gelber, Casey E; Sanders, Katherine L; Anderson, Evan J; Rouphael, Nadine; Natrajan, Muktha S; Johnson, Robert A; Sanz, Patrick; Hoft, Daniel; Mulligan, Mark J
The immune response to live-attenuated Francisella tularensis vaccine and its host evasion mechanisms are incompletely understood. Using RNA-Seq and LC-MS on samples collected pre-vaccination and at days 1, 2, 7, and 14 post-vaccination, we identified differentially expressed genes in PBMCs, metabolites in serum, enriched pathways, and metabolites that correlated with T cell and B cell responses, or gene expression modules. While an early activation of interferon α/β signaling was observed, several innate immune signaling pathways including TLR, TNF, NF-κB, and NOD-like receptor signaling and key inflammatory cytokines such as Il-1α, Il-1β, and TNF typically activated following infection were suppressed. The NF-κB pathway was the most impacted and the likely route of attack. Plasma cells, immunoglobulin, and B cell signatures were evident by day 7. MHC I antigen presentation was more actively up-regulated first followed by MHC II which coincided with the emergence of humoral immune signatures. Metabolomics analysis showed that glycolysis and TCA cycle-related metabolites were perturbed including a decline in pyruvate. Correlation networks that provide hypotheses on the interplay between changes in innate immune, T cell, and B cell gene expression signatures and metabolites are provided. Results demonstrate the utility of transcriptomics and metabolomics for better understanding molecular mechanisms of vaccine response and potential host-pathogen interactions.
PMID: 32722194
ISSN: 2076-393x
CID: 4541112