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result(s) for
"Aman, M. Javad"
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Human monoclonal antibodies against chikungunya virus target multiple distinct epitopes in the E1 and E2 glycoproteins
by
Cohen, Courtney A.
,
Aman, M. Javad
,
Hofmann, Daniel
in
Adult
,
Animals
,
Antibodies, Monoclonal - immunology
2019
Chikungunya virus (CHIKV) is a mosquito-transmitted alphavirus that causes persistent arthritis in a subset of human patients. We report the isolation and functional characterization of monoclonal antibodies (mAbs) from two patients infected with CHIKV in the Dominican Republic. Single B cell sorting yielded a panel of 46 human mAbs of diverse germline lineages that targeted epitopes within the E1 or E2 glycoproteins. MAbs that recognized either E1 or E2 proteins exhibited neutralizing activity. Viral escape mutations localized the binding epitopes for two E1 mAbs to sites within domain I or the linker between domains I and III; and for two E2 mAbs between the β-connector region and the B-domain. Two of the E2-specific mAbs conferred protection in vivo in a stringent lethal challenge mouse model of CHIKV infection, whereas the E1 mAbs did not. These results provide insight into human antibody response to CHIKV and identify candidate mAbs for therapeutic intervention.
Journal Article
Post-exposure immunotherapy for two ebolaviruses and Marburg virus in nonhuman primates
by
Aman, M. Javad
,
Tierney, Kevin
,
Zhu, Wenjun
in
631/250/251
,
631/326/596/2041
,
631/326/596/2042
2019
The 2013–2016 Ebola virus (EBOV) disease epidemic demonstrated the grave consequences of filovirus epidemics in the absence of effective therapeutics. Besides EBOV, two additional ebolaviruses, Sudan (SUDV) and Bundibugyo (BDBV) viruses, as well as multiple variants of Marburg virus (MARV), have also caused high fatality epidemics. Current experimental EBOV monoclonal antibodies (mAbs) are ineffective against SUDV, BDBV, or MARV. Here, we report that a cocktail of two broadly neutralizing ebolavirus mAbs, FVM04 and CA45, protects nonhuman primates (NHPs) against EBOV and SUDV infection when delivered four days post infection. This cocktail when supplemented by the anti-MARV mAb MR191 exhibited 100% efficacy in MARV-infected NHPs. These findings provide a solid foundation for clinical development of broadly protective immunotherapeutics for use in future filovirus epidemics.
Current experimental monoclonal antibodies (mAbs) for Ebola virus (EBOV) post-exposure immunotherapy are ineffective against Sudan (SUDV) or Marburg virus (MARV). Here, authors develop cocktails of mAbs that protect nonhuman primates against EBOV, SUDV, and MARV infection when given four days post infection.
Journal Article
Ebola Virus-Like Particle-Based Vaccine Protects Nonhuman Primates against Lethal Ebola Virus Challenge
by
Aman, M. Javad
,
Warfield, Kelly L.
,
Swenson, Dana L.
in
Animals
,
Antibodies
,
Antibodies, Viral - blood
2007
Background. Currently, there are no licensed vaccines or therapeutics for the prevention or treatment of infection by the highly lethal filoviruses, Ebola virus (EBOV) and Marburg virus (MARV), in humans.We previously had demonstrated the protective efficacy of virus-like particle (VLP)-based vaccines against EBOV and MARV infection in rodents. Methods. To determine the efficacy of vaccination with Ebola VLPs (eVLPs) in nonhuman primates, we vaccinated cynomolgus macaques with eVLPs containing EBOV glycoprotein (GP), nucleoprotein (NP), and VP40 matrix protein and challenged the macaques with 1000 pfu of EBOV. Results. Serum samples from the eVLP-vaccinated nonhuman primates demonstrated EBOV-specific antibody titers, as measured by enzyme-linked immunosorbent assay, complement-mediated lysis assay, and anti-body dependent cell-mediated cytotoxicity assay. CD44+ T cells from eVLP-vaccinated macaques but not from a naive macaque responded with vigorous production of tumor necrosis factor-α after EBOV-peptide stimulation. All 5 eVLP-vaccinated monkeys survived challenge without clinical or laboratory signs of EBOV infection, whereas the control animal died of infection. Conclusion. On the basis of safety and efficacy, eVLPs represent a promising filovirus vaccine for use in humans.
Journal Article
Near-germline human monoclonal antibodies neutralize and protect against multiple arthritogenic alphaviruses
by
Aman, M. Javad
,
Angeliadis, Matthew
,
Holtsberg, Frederick W.
in
Alphavirus - immunology
,
Alphavirus - pathogenicity
,
Alphavirus Infections - immunology
2021
Arthritogenic alphaviruses are globally distributed, mosquito-transmitted viruses that cause rheumatological disease in humans and include Chikungunya virus (CHIKV), Mayaro virus (MAYV), and others. Although serological evidence suggests that some antibody-mediated heterologous immunity may be afforded by alphavirus infection, the extent to which broadly neutralizing antibodies that protect against multiple arthritogenic alphaviruses are elicited during natural infection remains unknown. Here, we describe the isolation and characterization of MAYV-reactive alphavirus monoclonal antibodies (mAbs) from a CHIKV-convalescent donor. We characterized 33 human mAbs that cross-reacted with CHIKV and MAYV and engaged multiple epitopes on the E1 and E2 glycoproteins. We identified five mAbs that target distinct regions of the B domain of E2 and potently neutralize multiple alphaviruses with differential breadth of inhibition. These broadly neutralizing mAbs (bNAbs) contain few somatic mutations and inferred germline–revertants retained neutralizing capacity. Two bNAbs, DC2.M16 and DC2.M357, protected against both CHIKV- and MAYV-induced musculoskeletal disease in mice. These findings enhance our understanding of the cross-reactive and cross-protective antibody response to human alphavirus infections.
Journal Article
A \Trojan horse\ bispecific-antibody strategy for broad protection against ebolaviruses
by
Aman, M. Javad
,
Mittler, Eva
,
Kuehne, Ana I.
in
Animals
,
Antibodies
,
Antibodies, Bispecific - immunology
2016
There is an urgent need for monoclonal antibody (mAb) therapies that broadly protect against Ebola virus and other filoviruses. The conserved, essential interaction between the filovirus glycoprotein, GP and its entry receptor Niemann-Pick C1 (NPC1) provides an attractive target for such mAbs but is shielded by multiple mechanisms, including physical sequestration in late endosomes. Here, we describe a bispecific-antibody strategy to target this interaction, in which mAbs specific for NPC1 or the GP receptor-binding site are coupled to a mAb against a conserved, surface-exposed GP epitope. Bispecific antibodies, but not parent mAbs, neutralized all known ebolaviruses by coopting viral particles themselves for endosomal delivery and conferred postexposure protection against multiple ebolaviruses in mice. Such \"Trojan horse\" bispecific antibodies have potential as broad antifilovirus immunotherapeutics.
Journal Article
Protective efficacy of a novel alpha hemolysin subunit vaccine (AT62) against Staphylococcus aureus skin and soft tissue infections
by
Aman, M. Javad
,
Thompson, Christopher D.
,
Lee, Jean C.
in
abscess
,
adjuvants
,
Allergy and Immunology
2016
•An AT62 vaccine reduced S. aureus infection in a surgical wound infection model.•AT62 is the first vaccine to show protection in the surgical wound infection model.•The AT62 vaccine did not protect against S. aureus subcutaneous abscess formation.•The AT62 vaccine reduced S. aureus necrotic skin lesions and weight loss in mice.•AT62 merits consideration as a component of a multivalent S. aureus vaccine.
Alpha hemolysin (Hla) is a pore-forming toxin produced by most Staphylococcus aureus isolates. Hla is reported to play a key role in the pathogenesis of staphylococcal infections, such as skin and soft tissue infection, pneumonia, and lethal peritonitis. This study makes use of a novel recombinant subunit vaccine candidate (AT62) that was rationally designed based on the Hla heptameric crystal structure. AT62 comprises a critical structural domain at the N terminus of Hla, and it has no inherent toxic properties. We evaluated the efficacy of AT62 in protection against surgical wound infection and skin and soft tissue infection. Mice were vaccinated on days 0, 14, and 28 with 20μg AT62 or bovine serum albumin (BSA) mixed with Sigma adjuvant system®. Mice immunized with AT62 produced a robust antibody response against native Hla. In the surgical wound infection model, mice immunized with AT62 and challenged with a USA300 S. aureus strain showed a significantly reduced bacterial burden in the infected tissue compared to animals given BSA. Similarly, mice passively immunized with rabbit IgG to AT62 showed reduced wound infection and tissue damage. Subcutaneous abscess formation was not prevented by immunization with AT62. However, in a skin necrosis infection model, immunization with the AT62 vaccine resulted in smaller lesions and reduced mouse weight loss compared to controls. Although AT62 immunization reduced tissue necrosis, it did not reduce the bacterial burdens in the lesions compared to controls. Our data indicate that AT62 may be a valuable component of a multivalent vaccine against S. aureus.
Journal Article
Staphylococcus aureus adaptive evolution: Recent insights on how immune evasion, immunometabolic subversion and host genetics impact vaccine development
by
Wong Fok Lung, Tania
,
Yeaman, Michael R.
,
Aman, M. Javad
in
Adaptation
,
Antibiotics
,
Biomarkers
2022
Despite meritorious attempts, a S. aureus vaccine that prevents infection or mitigates severity has not yet achieved efficacy endpoints in prospective, randomized clinical trials. This experience underscores the complexity of host- S. aureus interactions, which appear to be greater than many other bacterial pathogens against which successful vaccines have been developed. It is increasingly evident that S. aureus employs strategic countermeasures to evade or exploit human immune responses. From entering host cells to persist in stealthy intracellular reservoirs, to sensing the environmental milieu and leveraging bacterial or host metabolic products to reprogram host immune responses, S. aureus poses considerable challenges for the development of effective vaccines. The fact that this pathogen causes distinct types of infections and can undergo transient genetic, transcriptional or metabolic adaptations in vivo that do not occur in vitro compounds challenges in vaccine development. Notably, the metabolic versatility of both bacterial and host immune cells as they compete for available substrates within specific tissues inevitably impacts the variable repertoire of gene products that may or may not be vaccine antigens. In this respect, S. aureus has chameleon phenotypes that have alluded vaccine strategies thus far. Nonetheless, a number of recent studies have also revealed important new insights into pathogenesis vulnerabilities of S. aureus . A more detailed understanding of host protective immune defenses versus S. aureus adaptive immune evasion mechanisms may offer breakthroughs in the development of effective vaccines, but at present this goal remains a very high bar. Coupled with the recent advances in human genetics and epigenetics, newer vaccine technologies may enable such a goal. If so, future vaccines that protect against or mitigate the severity of S. aureus infections are likely to emerge at the intersection of precision and personalized medicine. For now, the development of S. aureus vaccines or alternative therapies that reduce mortality and morbidity must continue to be pursued.
Journal Article
Lower Antibody Levels to Staphylococcus aureus Exotoxins Are Associated With Sepsis in Hospitalized Adults With Invasive S. aureus Infections
2012
Background. Staphylococcus aureus has numerous virulence factors, including exotoxins that may increase the severity of infection. This study was aimed at assessing whether preexisting antibodies to S. aureus toxins are associated with a lower risk of sepsis in adults with S. aureus infection complicated by bacteremia. Methods. We prospectively identified adults with S. aureus infection from 4 hospitals in Baltimore, MD, in 2009-2011. We obtained serum samples from prior to or at presentation of S. aureus bacteremia to measure total immunoglobulin G (IgG) and IgG antibody levels to 11 S. aureus exotoxins. Bacterial isolates were tested for the genes encoding S. aureus exotoxins using polymerase chain reaction (PCR). Results. One hundred eligible subjects were included and 27 of them developed sepsis. When adjusted for total IgG levels and stratified for the presence of toxin in the infecting isolate as appropriate, the risk of sepsis was significantly lower in those patients with higher levels of IgG against δ-hemolysin (Hla), δ-hemolysin (Hld), Panton Valentine leukocidin (PVL), staphylococcal enterotoxin C-1 (SEC-1), and phenol-soluble modulin α3 (PSM-α3). Conclusions. Our results suggest that higher antibody levels against Hla, Hid, PVL, SEC-1, and PSM-α3 may protect against sepsis in patients with invasive S. aureus infections.
Journal Article
Homologous and Heterologous Protection of Nonhuman Primates by Ebola and Sudan Virus-Like Particles
by
Aman, M. Javad
,
Wells, Jay B.
,
Holtsberg, Frederick W.
in
Adenoviruses
,
Animals
,
Cross Protection - immunology
2015
Filoviruses cause hemorrhagic fever resulting in significant morbidity and mortality in humans. Several vaccine platforms that include multiple virus-vectored approaches and virus-like particles (VLPs) have shown efficacy in nonhuman primates. Previous studies have shown protection of cynomolgus macaques against homologous infection for Ebola virus (EBOV) and Marburg virus (MARV) following a three-dose vaccine regimen of EBOV or MARV VLPs, as well as heterologous protection against Ravn Virus (RAVV) following vaccination with MARV VLPs. The objectives of the current studies were to determine the minimum number of vaccine doses required for protection (using EBOV as the test system) and then demonstrate protection against Sudan virus (SUDV) and Taï Forest virus (TAFV). Using the EBOV nonhuman primate model, we show that one or two doses of VLP vaccine can confer protection from lethal infection. VLPs containing the SUDV glycoprotein, nucleoprotein and VP40 matrix protein provide complete protection against lethal SUDV infection in macaques. Finally, we demonstrate protective efficacy mediated by EBOV, but not SUDV, VLPs against TAFV; this is the first demonstration of complete cross-filovirus protection using a single component heterologous vaccine within the Ebolavirus genus. Along with our previous results, this observation provides strong evidence that it will be possible to develop and administer a broad-spectrum VLP-based vaccine that will protect against multiple filoviruses by combining only three EBOV, SUDV and MARV components.
Journal Article