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2015, ISBN 0199334412, x, 559 p., 16 unnumbered p.s of plates
"He first full biography of Jonas Salk offers a complete picture of the enigmatic figure, from his early years working on an influenza vaccine--for which he... 
Influenza vaccines | MEDICAL / History | AIDS vaccines | SCIENCE / History | Poliomyelitis | United States | Poliomyelitis vaccine | Vaccination | MEDICAL / Diseases | Salk, Jonas, 1914-1995 | Virologists | History
Book
Nature (London), ISSN 1476-4687, 2016, Volume 536, Issue 7617, pp. 474 - 478
Zika virus (ZIKV) is a flavivirus that is responsible for the current epidemic in Brazil and the Americas(1,2). ZIKV has been causally associated with fetal... 
CHALLENGE | HEALTHY-ADULTS | IMMUNOGENICITY | AMERICA | NEUTRALIZING ANTIBODY | SAFETY | MULTIDISCIPLINARY SCIENCES | INFECTION | MICE | MODEL | Antibody Specificity | Immunoglobulin G - isolation & purification | Vaccines, DNA - genetics | Zika Virus - genetics | Vaccines, Subunit - genetics | Humans | Viral Vaccines - genetics | Vaccines, DNA - immunology | Adoptive Transfer | Microcephaly - virology | CD4-Positive T-Lymphocytes - immunology | Zika Virus Infection - virology | Antibodies, Neutralizing - immunology | Immunoglobulin G - immunology | Gene Deletion | Brazil | Zika Virus Infection - complications | Female | Zika Virus Infection - prevention & control | Zika Virus - immunology | Microcephaly - complications | Vaccines, Inactivated - genetics | Viral Envelope Proteins - genetics | Vaccines, Subunit - chemistry | Vaccines, Subunit - immunology | Zika Virus - chemistry | Vaccines, DNA - chemistry | Vaccines, Inactivated - immunology | Animals | Viral Envelope Proteins - chemistry | Viral Vaccines - chemistry | Zika Virus Infection - immunology | Antibodies, Viral - immunology | Viral Envelope Proteins - immunology | Mice | CD8-Positive T-Lymphocytes - immunology | Viral Vaccines - immunology | Vaccines, Inactivated - chemistry | Product development | Viral vaccines | Epidemics | Immunoglobulin G | Analysis | Vaccination | World health | DNA vaccines | Birth defects | T cells | Studies | Encephalitis | Immunization | Fetuses | Zika virus | Vaccines | Microcephaly | Deoxyribonucleic acid--DNA
Journal Article
Journal of Virology, ISSN 0022-538X, 10/2011, Volume 85, Issue 20, pp. 10605 - 10616
Journal Article
Vaccine, ISSN 0264-410X, 2016, Volume 35, Issue 3, pp. 452 - 458
Highlights • DTaP-IPV-HB-PRP-T immunogenicity is similar when given concomitantly with a meningococcal C conjugate vaccine or alone. • The safety profile of... 
Allergy and Immunology | Co-administration | Meningococcal C | Safety | Immunogenicity | Vaccination | Hexavalent | MEDICINE, RESEARCH & EXPERIMENTAL | DIFFERENCE | COMBINATION VACCINES | B VACCINE | IMMUNOLOGY | TETANUS TOXOID CONJUGATE | Haemophilus Vaccines - adverse effects | Poliovirus Vaccine, Inactivated - administration & dosage | Humans | Infant | Haemophilus Vaccines - administration & dosage | Pneumococcal Vaccines - administration & dosage | Healthy Volunteers | Vaccines, Combined - administration & dosage | Vaccines, Combined - immunology | Meningococcal Vaccines - adverse effects | Poliovirus Vaccine, Inactivated - immunology | Hepatitis B Antibodies - blood | Diphtheria-Tetanus-Pertussis Vaccine - administration & dosage | Diphtheria-Tetanus-Pertussis Vaccine - immunology | Immunization Schedule | Antibodies, Bacterial - blood | Rotavirus Vaccines - administration & dosage | Diphtheria-Tetanus-Pertussis Vaccine - adverse effects | Hepatitis B Vaccines - administration & dosage | Haemophilus Vaccines - immunology | Vaccines, Combined - adverse effects | Hepatitis B Vaccines - adverse effects | Finland | Poliovirus Vaccine, Inactivated - adverse effects | Hepatitis B Vaccines - immunology | Meningococcal Vaccines - immunology | Meningococcal Vaccines - administration & dosage | Usage | Infants | Vaccines | Antigens | Hepatitis | Immunization | Pain | Poliomyelitis | Viruses | Tetanus | Diphtheria | Age | Whooping cough
Journal Article
Journal Article
Vaccine, ISSN 0264-410X, 2011, Volume 29, Issue 25, pp. 4264 - 4273
Abstract Tetravalent meningococcal serogroups ACWY conjugate vaccines will provide an advantage to those at most risk of invasive meningococcal disease; namely... 
Allergy and Immunology | Tetravalent meningococcal vaccine | Hexavalent vaccine | Conjugate vaccine | DTaP-HBV-IPV/Hib combination vaccine | Bactericidal activity | MEDICINE, RESEARCH & EXPERIMENTAL | NEISSERIA-MENINGITIDIS | PREVENTION | IMMUNOSORBENT-ASSAY ELISA | SERUM ANTIBODIES | IMMUNOLOGY | PROTECTIVE LEVEL | TODDLERS | CAPSULAR POLYSACCHARIDE | IMPACT | INFLUENZAE TYPE-B | DISEASE | Haemophilus Vaccines - adverse effects | Poliovirus Vaccine, Inactivated - administration & dosage | Humans | Vaccines, Conjugate - adverse effects | Infant | Male | Haemophilus Vaccines - administration & dosage | Vaccines, Combined - administration & dosage | Vaccines, Combined - immunology | Antibodies, Viral - blood | Meningococcal Vaccines - adverse effects | Poliovirus Vaccine, Inactivated - immunology | Vaccines, Conjugate - immunology | Female | Diphtheria-Tetanus-acellular Pertussis Vaccines - adverse effects | Antibodies, Bacterial - blood | Diphtheria-Tetanus-acellular Pertussis Vaccines - immunology | Tetanus Toxoid - adverse effects | Haemophilus Vaccines - immunology | Tetanus Toxoid - administration & dosage | Vaccines, Conjugate - administration & dosage | Vaccines, Combined - adverse effects | Poliovirus Vaccine, Inactivated - adverse effects | Diphtheria-Tetanus-acellular Pertussis Vaccines - administration & dosage | Meningococcal Vaccines - immunology | Meningococcal Vaccines - administration & dosage | Tetanus Toxoid - immunology
Journal Article
Vaccine, ISSN 0264-410X, 09/2018, Volume 36, Issue 37, pp. 5519 - 5523
A newly developed bovine-human reassortant pentavalent vaccine (BRV-PV, ROTASIIL®) was tested for its potential effect on the immunogenicity of concomitantly... 
Bovine-human reassortant pentavalent rotavirus vaccine (BRV-PV) | Immune response | Interference | DTwP-HepB-Hib vaccine | Oral polio vaccine (OPV) | MEDICINE, RESEARCH & EXPERIMENTAL | Bovine-human reassortant pentavalent | rotavirus vaccine (BRV-PV) | EFFICACY | ORAL POLIOVIRUS | IMMUNOLOGY | TRIAL | IMPACT | MONOVALENT | BIVALENT | Immunogenicity, Vaccine | Poliovirus Vaccine, Oral - immunology | Immunoglobulin G - blood | Poliovirus Vaccine, Inactivated - administration & dosage | Humans | Infant | Male | Haemophilus Vaccines - administration & dosage | Poliovirus Vaccine, Oral - administration & dosage | Vaccines, Combined - administration & dosage | Vaccines, Combined - immunology | Antibodies, Viral - blood | Poliovirus Vaccine, Inactivated - immunology | Diphtheria-Tetanus-Pertussis Vaccine - administration & dosage | Reassortant Viruses - immunology | Cattle | Diphtheria-Tetanus-Pertussis Vaccine - immunology | Vaccines, Attenuated - administration & dosage | Female | Immunization Schedule | Rotavirus Vaccines - administration & dosage | Rotavirus Vaccines - immunology | Hepatitis B Vaccines - administration & dosage | Haemophilus Vaccines - immunology | Vaccines, Attenuated - immunology | Animals | Hepatitis B Vaccines - immunology | Rotavirus Infections - prevention & control | Analysis | Vaccines | Laboratories | Immunoglobulin G | Vaccination | Antibodies | Viruses | Infants | Pertussis | Confidence intervals | Hepatitis | Randomization | Poliomyelitis | Population | Hepatitis B virus | Age | Antigens | Diphtheria | Whooping cough | Immunogenicity | Lymphocytes B | Tetanus | Binding sites | Hepatitis B
Journal Article
Pediatrics, ISSN 0031-4005, 01/2009, Volume 123, Issue 1, pp. 301 - 312
OBJECTIVE. Our goal was to compare the safety and immunogenicity of a combination vaccine (DTaP5-IPV-Hib; Pentacel) with that of its separately administered,... 
Vaccines combined | Poliovirus vaccine inactivated | Diphtheria-tetanus-acellular pertussis vaccines | Haemophilus influenzae vaccines | poliovirus vaccine inactivated | UNITED-STATES | DIPHTHERIA | ACELLULAR PERTUSSIS-VACCINE | COMBINATION VACCINES | TETANUS TOXOIDS | vaccines combined | CHILDREN | TOXOID CONJUGATE VACCINE | diphtheria-tetanus-acellular pertussis vaccines | INACTIVATED POLIOVIRUS | PEDIATRICS | WHOLE-CELL | B CONJUGATE | Diphtheria-Tetanus-Pertussis Vaccine | Immunization, Secondary - adverse effects | Poliovirus Vaccine, Inactivated - administration & dosage | United States | Humans | Vaccines, Conjugate - adverse effects | Child, Preschool | Infant | Male | Bacterial Vaccines - pharmacokinetics | Vaccines, Combined - administration & dosage | Antibodies, Viral - blood | Vaccines, Combined - pharmacokinetics | Antibodies, Bacterial - biosynthesis | Female | Immunization Schedule | Poliovirus Vaccine, Inactivated - pharmacokinetics | Diphtheria-Tetanus-acellular Pertussis Vaccines - adverse effects | Antibodies, Bacterial - blood | Child | Antibodies, Viral - biosynthesis | Vaccines, Conjugate - metabolism | Diphtheria-Tetanus-acellular Pertussis Vaccines - pharmacokinetics | Bacterial Vaccines - adverse effects | Immunization, Secondary - methods | Vaccines, Conjugate - administration & dosage | Vaccines, Combined - adverse effects | Bacterial Vaccines - administration & dosage | Haemophilus Vaccines | Poliovirus Vaccine, Inactivated - adverse effects | Diphtheria-Tetanus-acellular Pertussis Vaccines - administration & dosage | Therapeutic Equivalency | Pertussis vaccines | Viral antibodies | Demographic aspects | Hib vaccines | Antibodies | Physiological aspects | Dosage and administration | Research | Clinical trials | Pediatrics | Vaccines | Safety | Comparative analysis
Journal Article
Journal Article
Biochemical pharmacology, ISSN 0006-2952, 2016, Volume 120, pp. 1 - 14
[Display omitted] Vaccines have been the single most significant advancement in public health, preventing morbidity and mortality in millions of people... 
Nanoparticles | Vaccine | SAPN | Adjuvant | Rationally designed | GOLD NANOPARTICLES | HEPATITIS-B-VACCINE | ESCHERICHIA-COLI | NANOPARTICLE VACCINES | MONOPHOSPHORYL-LIPID-A | TOLL-LIKE RECEPTOR-5 | T-CELL RESPONSES | IMMUNE-RESPONSES | VIRUS-LIKE PARTICLES | PHARMACOLOGY & PHARMACY | ANTIGEN-CONTAINING LIPOSOMES | Recombinant Proteins - therapeutic use | Veterinary Drugs - adverse effects | History, 21st Century | Nanoparticles - chemistry | Humans | Vaccines, Synthetic - immunology | Antigens - therapeutic use | Vaccines - chemistry | Allergy and Immunology - history | Nanoparticles - therapeutic use | Vaccines, Subunit - adverse effects | Biopharmaceutics - history | Adjuvants, Immunologic - therapeutic use | Communicable Diseases - veterinary | Chemistry, Pharmaceutical - trends | Vaccines, Synthetic - chemistry | History, 20th Century | Recombinant Proteins - chemistry | Veterinary Drugs - immunology | Protein Engineering - trends | Antigens - chemistry | Communicable Disease Control - trends | Biopharmaceutics - methods | Drug Delivery Systems - trends | Protein Engineering - veterinary | Drug Delivery Systems - adverse effects | Veterinary Drugs - chemistry | Veterinary Drugs - therapeutic use | Drug Delivery Systems - veterinary | Nanoparticles - adverse effects | Recombinant Proteins - adverse effects | Vaccines - therapeutic use | Adjuvants, Immunologic - adverse effects | Antigens - adverse effects | Vaccines, Subunit - therapeutic use | Vaccines, Synthetic - adverse effects | Adjuvants, Immunologic - chemistry | Allergy and Immunology - trends | Drug Design | Chemistry, Pharmaceutical - history | Communicable Disease Control - history | Vaccines, Subunit - chemistry | Biopharmaceutics - trends | Vaccines - immunology | Vaccines, Synthetic - therapeutic use | Vaccines, Subunit - immunology | Protein Folding | Vaccines - adverse effects | Animals | Recombinant Proteins - immunology | Communicable Diseases - immunology | Antigens - immunology | History, 19th Century | Vaccines | Rationally Designed
Journal Article