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1.
J Biol Chem ; 286(15): 12944-51, 2011 Apr 15.
Artículo en Inglés | MEDLINE | ID: mdl-21321114

RESUMEN

The technology described here allows the chemical synthesis of vaccines requiring correctly folded epitopes and that contain difficult or long peptide sequences. The final self-adjuvanting product promotes strong humoral and/or cell-mediated immunity. A module containing common components of the vaccine (T helper cell epitope and the adjuvanting lipid moiety S-[2,3-bis(palmitoyloxy)propyl]cysteine) was assembled to enable a plug and play approach to vaccine assembly. The inclusion within the module of a chemical group with chemical properties complementary and orthogonal to a chemical group present in the target epitope allowed chemoselective ligation of the two vaccine components. The heat-stable enterotoxin of enterotoxigenic Escherichia coli that requires strict conformational integrity for biological activity and the reproductive hormone luteinizing hormone-releasing hormone were used as the target epitopes for the antibody vaccines. An epitope from the acid polymerase of influenza virus was used to assemble a CD8(+) T cell vaccine. Evaluation of each vaccine candidate in animals demonstrated the feasibility of the approach and that the type of immune response required, viz. antibody or cytotoxic T lymphocyte, dictates the nature of the chemical linkage between the module and target epitope. The use of a thioether bond between the module and target epitope had little or no adverse effect on antibody responses, whereas the use of a disulfide bond between the module and target epitope almost completely abrogated the antibody response. In contrast, better cytotoxic T lymphocyte responses were obtained when a disulfide bond was used.


Asunto(s)
Adyuvantes Inmunológicos , Epítopos de Linfocito T , Lipopéptidos , Vacunas Sintéticas , Adyuvantes Inmunológicos/síntesis química , Adyuvantes Inmunológicos/farmacología , Animales , Toxinas Bacterianas/síntesis química , Toxinas Bacterianas/inmunología , Toxinas Bacterianas/farmacología , Linfocitos T CD8-positivos/inmunología , Escherichia coli Enterotoxigénica/química , Escherichia coli Enterotoxigénica/inmunología , Enterotoxinas/síntesis química , Enterotoxinas/inmunología , Enterotoxinas/farmacología , Epítopos de Linfocito T/inmunología , Epítopos de Linfocito T/farmacología , Proteínas de Escherichia coli , Hormona Liberadora de Gonadotropina/síntesis química , Hormona Liberadora de Gonadotropina/inmunología , Hormona Liberadora de Gonadotropina/farmacología , Lipopéptidos/síntesis química , Lipopéptidos/inmunología , Lipopéptidos/farmacología , Ratones , Ratones Endogámicos BALB C , Orthomyxoviridae/química , Orthomyxoviridae/inmunología , Vacunas Sintéticas/inmunología , Vacunas Sintéticas/farmacología
2.
JCI Insight ; 6(5)2021 03 08.
Artículo en Inglés | MEDLINE | ID: mdl-33561017

RESUMEN

The impact of respiratory virus infections on global health is felt not just during a pandemic, but endemic seasonal infections pose an equal and ongoing risk of severe disease. Moreover, vaccines and antiviral drugs are not always effective or available for many respiratory viruses. We investigated how induction of effective and appropriate antigen-independent innate immunity in the upper airways can prevent the spread of respiratory virus infection to the vulnerable lower airways. Activation of TLR2, when restricted to the nasal turbinates, resulted in prompt induction of innate immune-driven antiviral responses through action of cytokines, chemokines, and cellular activity in the upper but not the lower airways. We have defined how nasal epithelial cells and recruitment of macrophages work in concert and play pivotal roles to limit progression of influenza virus to the lungs and sustain protection for up to 7 days. These results reveal underlying mechanisms of how control of viral infection in the upper airways can occur and support the implementation of strategies that can activate TLR2 in nasal passages to provide rapid protection, especially for at-risk populations, against severe respiratory infection when vaccines and antiviral drugs are not always effective or available.


Asunto(s)
Inmunidad Innata/efectos de los fármacos , Factores Inmunológicos/farmacología , Gripe Humana , Lipopéptidos/farmacología , Pulmón , Infecciones del Sistema Respiratorio , Receptor Toll-Like 2/metabolismo , Animales , Antivirales/farmacología , Antivirales/uso terapéutico , Modelos Animales de Enfermedad , Femenino , Humanos , Factores Inmunológicos/uso terapéutico , Virus de la Influenza A , Gripe Humana/tratamiento farmacológico , Gripe Humana/inmunología , Gripe Humana/metabolismo , Gripe Humana/virología , Lipopéptidos/uso terapéutico , Pulmón/efectos de los fármacos , Pulmón/inmunología , Pulmón/metabolismo , Pulmón/virología , Masculino , Ratones Endogámicos C57BL , Infecciones por Orthomyxoviridae/tratamiento farmacológico , Infecciones por Orthomyxoviridae/inmunología , Infecciones por Orthomyxoviridae/metabolismo , Infecciones por Orthomyxoviridae/virología , Sistema Respiratorio/efectos de los fármacos , Sistema Respiratorio/inmunología , Sistema Respiratorio/metabolismo , Sistema Respiratorio/virología , Infecciones del Sistema Respiratorio/tratamiento farmacológico , Infecciones del Sistema Respiratorio/inmunología , Infecciones del Sistema Respiratorio/metabolismo , Infecciones del Sistema Respiratorio/virología , Receptor Toll-Like 2/agonistas
3.
Vaccine ; 38(3): 597-607, 2020 01 16.
Artículo en Inglés | MEDLINE | ID: mdl-31740096

RESUMEN

To facilitate the preparation of synthetic epitope-based self-adjuvanting vaccines capable of eliciting antibody responses in an out-bred population, we have developed two modular approaches. In the first, the Toll-like receptor 2 agonist Pam2Cys and the target antibody epitope are assembled as a module which is then coupled to a carrier protein as a source of antigens to stimulate T cell help. A vaccine candidate made in this way was shown to induce a specific immune response in four different strains of mice without the need for extraneous adjuvant. In the second approach, three vaccine components in the form of a target antibody epitope, a T helper cell epitope and Pam2Cys, were prepared separately each carrying different chemical functional groups. By using pH-mediated chemo-selective ligations, the vaccine was assembled in a one-pot procedure. Using this approach, a number of vaccine constructs including a lipopeptide-protein conjugate were made and also shown to elicit immune responses in different strains of mice. These two modular approaches thus constitute a powerful platform for the assembly of self-adjuvanting lipopeptide-based vaccines that can potentially be used to induce robust antibody responses in an outbred population. Finally, our study of the impact of chemical linkages on immunogenicity of a lipopeptide vaccine shows that a stable covalent bond between Pam2Cys and a B cell epitope, rather than between Pam2Cys and T helper cell epitope is critical for the induction of antibody responses and biological efficacy, indicating that Pam2Cys functions not only as an adjuvant but also participates in processing and presentation of the immunogen.


Asunto(s)
Adyuvantes Inmunológicos/síntesis química , Química Farmacéutica/métodos , Lipopéptidos/síntesis química , Vacunas de Subunidad/síntesis química , Vacunas Sintéticas/química , Adyuvantes Inmunológicos/administración & dosificación , Secuencia de Aminoácidos , Animales , Femenino , Lipopéptidos/administración & dosificación , Lipopéptidos/inmunología , Masculino , Ratones , Linfocitos T Colaboradores-Inductores/efectos de los fármacos , Linfocitos T Colaboradores-Inductores/inmunología , Vacunas de Subunidad/administración & dosificación , Vacunas de Subunidad/inmunología , Vacunas Sintéticas/administración & dosificación , Vacunas Sintéticas/inmunología
4.
Vaccine ; 33(30): 3526-32, 2015 Jul 09.
Artículo en Inglés | MEDLINE | ID: mdl-26049002

RESUMEN

The highly conserved extracellular domain of Matrix protein 2 (M2e) of influenza A virus has been previously investigated as a potential target for an universal influenza vaccine. In this study we prepared four lipopeptide influenza vaccine candidates in which the TLR2 agonist S-[2,3-bis(palmitoyloxy)propyl] cysteine, (Pam2Cys) was attached to either the N- or C-terminus of the M2e consensus sequence SLLTEVETPIRNEWGCRCNDSSDP and its analogue sequence with the two cysteine residues replaced with serine residues. The results of animal study show that each of these lipopeptides induced strong M2e-specific antibody responses in the absence of extraneous T helper cell epitope(s) which are normally incorporated in the previous studies or addition of extraneous adjuvant and that these antibodies are protective against lethal challenge with influenza virus. Comparison of different routes of inoculation demonstrated that intranasal administration of M2e lipopeptide induced higher titers of IgA and IgG2b antibodies in the bronchoalveolar lavage than did subcutaneous vaccination and was better at mitigating the severity of viral challenge. Finally, we show that anti-M2e antibody specificities absent from the antibody repertoire elicited by a commercially available influenza vaccine and by virus infection can be introduced by immunization with M2e-lipopeptide and boosted by viral challenge. Immunization with this lipidated form of the M2e epitope therefore offers a means of using a widely conserved epitope to generate protective antibodies which are not otherwise induced.


Asunto(s)
Proteínas Ligadas a Lípidos/inmunología , Proteínas de la Matriz Viral/inmunología , Administración Intranasal , Animales , Anticuerpos Antivirales/sangre , Líquido del Lavado Bronquioalveolar/química , Modelos Animales de Enfermedad , Inmunoglobulina A/análisis , Inmunoglobulina G/análisis , Proteínas Ligadas a Lípidos/administración & dosificación , Proteínas Ligadas a Lípidos/química , Proteínas Ligadas a Lípidos/genética , Lipopéptidos/química , Pulmón/inmunología , Ratones Endogámicos BALB C , Infecciones por Orthomyxoviridae/prevención & control , Análisis de Supervivencia , Vacunas de Subunidad/administración & dosificación , Vacunas de Subunidad/química , Vacunas de Subunidad/genética , Vacunas de Subunidad/inmunología , Proteínas de la Matriz Viral/administración & dosificación , Proteínas de la Matriz Viral/química , Proteínas de la Matriz Viral/genética
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