- ICH GCP
- US-Register für klinische Studien
- Klinische Studie NCT00337428
Concomitant Use of Gardasil (V501, Human Papillomavirus [Types 6, 11, 16, 18] Recombinant Vaccine) With Combined Diptheria, Tetanus, Pertussis and Poliomyelitis Vaccine in Adolescents (V501-024)(COMPLETED)
27. September 2016 aktualisiert von: Merck Sharp & Dohme LLC
An Open-Label, Randomized, Multicenter Study of the Safety, Tolerability, and Immunogenicity of Gardasil (V501) Given Concomitantly With REPEVAX™ in Healthy Adolescents 11-17 Years of Age
Data from this study are expected to demonstrate that Gardasil (V501, Human Papillomavirus [Types 6, 11, 16, 18] Recombinant Vaccine), when administered concomitantly with a combined diphtheria, tetanus, pertussis, and poliomyelitis vaccine in adolescents remains immunogenic and well-tolerated and it does not impair the immunogenicity of the concomitant vaccines.
Studienübersicht
Status
Abgeschlossen
Intervention / Behandlung
- Biologisch: Comparator: Quadrivalent Human Papillomavirus (Types 6, 11, 16, 18) Recombinant (qHPV) Vaccine from Current Manufacturing Facility (CMF)
- Biologisch: Comparator: REPEVAX™ (Concomitant)
- Biologisch: Comparator: REPEVAX™ (Non-Concomitant)
- Biologisch: Comparator: Quadrivalent Human Papillomavirus (Types 6, 11, 16, 18) Recombinant (qHPV) Vaccine from Future Manufacturing Facility (FMF)
Studientyp
Interventionell
Einschreibung (Tatsächlich)
843
Phase
- Phase 3
Teilnahmekriterien
Forscher suchen nach Personen, die einer bestimmten Beschreibung entsprechen, die als Auswahlkriterien bezeichnet werden. Einige Beispiele für diese Kriterien sind der allgemeine Gesundheitszustand einer Person oder frühere Behandlungen.
Zulassungskriterien
Studienberechtigtes Alter
11 Jahre bis 17 Jahre (Kind)
Akzeptiert gesunde Freiwillige
Ja
Studienberechtigte Geschlechter
Alle
Beschreibung
Inclusion Criteria:
- Must be healthy boys or girls, 11-17 years of age
- Must be a virgin with no intention of becoming sexually active during the study period
- Must have been properly vaccinated against diphtheria, tetanus, pertussis and polio
Exclusion Criteria:
- Must not have received a vaccine against diphtheria, tetanus, pertussis and polio in the past 5 years
- Must not have received any prior human papillomavirus (HPV) vaccine
Studienplan
Dieser Abschnitt enthält Einzelheiten zum Studienplan, einschließlich des Studiendesigns und der Messung der Studieninhalte.
Wie ist die Studie aufgebaut?
Designdetails
- Hauptzweck: Verhütung
- Zuteilung: Zufällig
- Interventionsmodell: Parallele Zuordnung
- Maskierung: Keine (Offenes Etikett)
Waffen und Interventionen
Teilnehmergruppe / Arm |
Intervention / Behandlung |
|---|---|
|
Experimental: Group 1
Concomitant/CMF
|
GARDASIL™ (quadrivalent human papillomavirus [types 6, 11, 16, 18] virus-like particle [VLP] vaccine, referred to as qHPV vaccine) made at the current manufacturing facility was administered as 0.5-mL intramuscular dose at Day 1, Month 2, and Month 6.
REPEVAX™ (diphtheria, tetanus, pertussis [acellular, component] and poliomyelitis [inactivated] vaccine, Sanofi Pasteur, Swiftwater, PA U.S.A) was administered as a single 0.5-mL intramuscular dose at Day 1 in a limb opposite that of quadrivalent HPV injection.
|
|
Experimental: Group 2
Non-Concomitant/CMF
|
GARDASIL™ (quadrivalent human papillomavirus [types 6, 11, 16, 18] virus-like particle [VLP] vaccine, referred to as qHPV vaccine) made at the current manufacturing facility was administered as 0.5-mL intramuscular dose at Day 1, Month 2, and Month 6.
REPEVAX™ (diphtheria, tetanus, pertussis [acellular, component] and poliomyelitis [inactivated] vaccine, Sanofi Pasteur, Swiftwater, PA U.S.A) was administered as a single 0.5-mL intramuscular dose at Month 1 in a limb opposite that of quadrivalent HPV injection.
|
|
Experimental: Group 3
Concomitant/FMF
|
REPEVAX™ (diphtheria, tetanus, pertussis [acellular, component] and poliomyelitis [inactivated] vaccine, Sanofi Pasteur, Swiftwater, PA U.S.A) was administered as a single 0.5-mL intramuscular dose at Day 1 in a limb opposite that of quadrivalent HPV injection.
GARDASIL™ (quadrivalent human papillomavirus [types 6, 11, 16, 18] virus-like particle [VLP] vaccine, referred to as qHPV vaccine) made at the future manufacturing facility was administered as 0.5-mL intramuscular dose at Day 1, Month 2, and Month 6.
|
|
Experimental: Group 4
Non-Concomitant/FMF
|
REPEVAX™ (diphtheria, tetanus, pertussis [acellular, component] and poliomyelitis [inactivated] vaccine, Sanofi Pasteur, Swiftwater, PA U.S.A) was administered as a single 0.5-mL intramuscular dose at Month 1 in a limb opposite that of quadrivalent HPV injection.
GARDASIL™ (quadrivalent human papillomavirus [types 6, 11, 16, 18] virus-like particle [VLP] vaccine, referred to as qHPV vaccine) made at the future manufacturing facility was administered as 0.5-mL intramuscular dose at Day 1, Month 2, and Month 6.
|
Was misst die Studie?
Primäre Ergebnismessungen
Ergebnis Maßnahme |
Maßnahmenbeschreibung |
Zeitfenster |
|---|---|---|
|
Geometric Mean Titers (GMTs) for Anti-HPV 6 at Month 7 (4 Weeks Postdose 3)
Zeitfenster: Up to 7 Months (4 Weeks Postdose 3)
|
Serum antibodies to HPV Type 6 were measured with a Competitive Luminex Immunoassay.
Titers were reported in milli Merck Units (mMU)/milliliter (mL).
GMTs from participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) were compared to GMTs from participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared GMTs for each HPV type using an ANOVA model with a response of log individual titers and fixed effects for treatment group, manufacturing facility, study site, and the treatment-by-site interaction.
|
Up to 7 Months (4 Weeks Postdose 3)
|
|
Geometric Mean Titers (GMTs) for Anti-HPV 11 at Month 7 (4 Weeks Postdose 3)
Zeitfenster: Up to 7 Months (4 Weeks Postdose 3)
|
Serum antibodies to HPV Type 11 were measured with a Competitive Luminex Immunoassay.
Titers were reported in milli Merck Units (mMU)/milliliter (mL).
GMTs from participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) were compared to GMTs from participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared GMTs for each HPV type using an ANOVA model with a response of log individual titers and fixed effects for treatment group, manufacturing facility, study site, and the treatment-by-site interaction.
|
Up to 7 Months (4 Weeks Postdose 3)
|
|
Geometric Mean Titers (GMTs) for Anti-HPV 16 at Month 7 (4 Weeks Postdose 3)
Zeitfenster: Up to 7 Months (4 Weeks Postdose 3)
|
Serum antibodies to HPV Type 16 were measured with a Competitive Luminex Immunoassay.
Titers were reported in milli Merck Units (mMU)/milliliter (mL).
GMTs from participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) were compared to GMTs from participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared GMTs for each HPV type using an ANOVA model with a response of log individual titers and fixed effects for treatment group, manufacturing facility, study site, and the treatment-by-site interaction.
|
Up to 7 Months (4 Weeks Postdose 3)
|
|
Geometric Mean Titers (GMTs) for Anti-HPV 18 at Month 7 (4 Weeks Postdose 3)
Zeitfenster: Up to 7 Months (4 Weeks Postdose 3)
|
Serum antibodies to HPV Type 18 were measured with a Competitive Luminex Immunoassay.
Titers were reported in milli Merck Units (mMU)/milliliter (mL).
GMTs from participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) were compared to GMTs from participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared GMTs for each HPV type using an ANOVA model with a response of log individual titers and fixed effects for treatment group, manufacturing facility, study site, and the treatment-by-site interaction.
|
Up to 7 Months (4 Weeks Postdose 3)
|
|
Number of Participants Who Seroconverted for HPV Type 6 (HPV 6 ≥20 mMU/mL) by Month 7 (4 Weeks Postdose 3)
Zeitfenster: Up to 7 Months (4 Weeks Postdose 3)
|
Seroconversion to HPV Type 6 was defined as changing serostatus from seronegative to seropositive as measured by GMT.
The cutoff value for HPV seropositivity was ≥20 mMU/mL.
Seroconversion of participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) was compared to seroconversion of participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared seroconversion for each HPV type using methods developed by Miettinen and Nurminen adjusting for manufacturing facility for qHPV vaccine.
|
Up to 7 Months (4 Weeks Postdose 3)
|
|
Number of Participants Who Seroconverted for HPV Type 11 (HPV 11 ≥16 mMU/mL) by Month 7 (4 Weeks Postdose 3)
Zeitfenster: Up to 7 Months (4 Weeks Postdose 3)
|
Seroconversion to HPV Type 11 was defined as changing serostatus from seronegative to seropositive as measured by GMT.
The cutoff value for HPV seropositivity was ≥16 mMU/mL.
Seroconversion of participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) was compared to seroconversion of participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared seroconversion for each HPV type using methods developed by Miettinen and Nurminen adjusting for manufacturing facility for qHPV vaccine.
|
Up to 7 Months (4 Weeks Postdose 3)
|
|
Number of Participants Who Seroconverted for HPV Type 16 (HPV 16 ≥20 mMU/mL) by Month 7 (4 Weeks Postdose 3)
Zeitfenster: Up to 7 Months (4 Weeks Postdose 3)
|
Seroconversion to HPV Type 16 was defined as changing serostatus from seronegative to seropositive as measured by GMT.
The cutoff value for HPV seropositivity was ≥20 mMU/mL.
Seroconversion of participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) was compared to seroconversion of participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared seroconversion for each HPV type using methods developed by Miettinen and Nurminen adjusting for manufacturing facility for qHPV vaccine.
|
Up to 7 Months (4 Weeks Postdose 3)
|
|
Number of Participants Who Seroconverted for HPV Type 18 (HPV 18 ≥24 mMU/mL) by Month 7 (4 Weeks Postdose 3)
Zeitfenster: Up to 7 Months (4 Weeks Postdose 3)
|
Seroconversion to HPV Type 18 was defined as changing serostatus from seronegative to seropositive as measured by GMT.
The cutoff value for HPV seropositivity was ≥24 mMU/mL.
Seroconversion of participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) was compared to seroconversion of participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared seroconversion for each HPV type using methods developed by Miettinen and Nurminen adjusting for manufacturing facility for qHPV vaccine.
|
Up to 7 Months (4 Weeks Postdose 3)
|
|
Number of Participants Who Achieved Acceptable Levels of Titers to Diphtheria (Diphtheria ≥0.1 IU/mL) One Month Post-vaccination With REPEVAX™
Zeitfenster: Up to 1 Month (1 Month Postdose 1)
|
Diphtheria antitoxin titers were measured using a neutralization assay in Vero cell culture that compares the antitoxin level in the serum of participants with the World Health Organization International Standard for Diphtheria Antitoxin.
An acceptable level of response was defined as ≥0.1 International Units (IU)/milliliter (mL).
Response levels of participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) were compared to participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared response levels using methods developed by Miettinen and Nurminen adjusting for manufacturing facility for qHPV vaccine.
|
Up to 1 Month (1 Month Postdose 1)
|
|
Number of Participants Who Achieved Acceptable Levels of Titers to Tetanus (Tetanus ≥0.1 IU/mL) One Month Post-vaccination With REPEVAX™
Zeitfenster: Up to 1 Month (1 Month Postdose 1)
|
Tetanus antitoxin titers were measured using an indirect, non-competitive enzyme immunoassay (EIA) that compares the antitoxin level in the serum of participants with the World Health Organization International Standard for Tetanus Immunoglobulin.
An acceptable level of response was defined as ≥0.1 International Units (IU)/milliliter (mL).
Response levels of participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) were compared to participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared response levels using methods developed by Miettinen and Nurminen adjusting for manufacturing facility for qHPV vaccine.
|
Up to 1 Month (1 Month Postdose 1)
|
|
Number of Participants Who Achieved Acceptable Levels of Titers to Poliovirus Type 1 (Poliovirus Type 1 ≥1:8) One Month Postvaccination With REPEVAX™
Zeitfenster: Up to 1 Month (1 Month Postdose 1)
|
Poliovirus antibody was measured using a poliovirus neutralization assay that assesses the ability of serial dilutions of participant sera to neutralize known amounts of type-specific Sabin poliovirus strains (Types 1, 2, and 3).
An acceptable level of response was defined as participants who achieve detectable serum neutralizing antibodies at a ≥1:8 dilution of sera.
The response of participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) was compared to participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared response levels using methods developed by Miettinen and Nurminen adjusting for manufacturing facility for qHPV vaccine.
|
Up to 1 Month (1 Month Postdose 1)
|
|
Number of Participants Who Achieved Acceptable Levels of Titers to Poliovirus Type 2 (Poliovirus Type 2 ≥1:8) One Month Postvaccination With REPEVAX™
Zeitfenster: Up to 1 Month (1 Month Postdose 1)
|
Poliovirus antibody was measured using a poliovirus neutralization assay that assesses the ability of serial dilutions of participant sera to neutralize known amounts of type-specific Sabin poliovirus strains (Types 1, 2, and 3).
An acceptable level of response was defined as participants who achieve detectable serum neutralizing antibodies at a ≥1:8 dilution of sera.
The response of participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) was compared to participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared response levels using methods developed by Miettinen and Nurminen adjusting for manufacturing facility for qHPV vaccine.
|
Up to 1 Month (1 Month Postdose 1)
|
|
Number of Participants Who Achieved Acceptable Levels of Titers to Poliovirus Type 3 (Poliovirus Type 3 ≥1:8) One Month Postvaccination With REPEVAX™
Zeitfenster: Up to 1 Month (1 Month Postdose 1)
|
Poliovirus antibody was measured using a poliovirus neutralization assay that assesses the ability of serial dilutions of participant sera to neutralize known amounts of type-specific Sabin poliovirus strains (Types 1, 2, and 3).
An acceptable level of response was defined as participants who achieve detectable serum neutralizing antibodies at a ≥1:8 dilution of sera.
The response of participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) was compared to participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared response levels using methods developed by Miettinen and Nurminen adjusting for manufacturing facility for qHPV vaccine.
|
Up to 1 Month (1 Month Postdose 1)
|
|
Geometric Mean Titers (GMTs) For Pertussis (Anti-PT) One Month Postvaccination With REPEVAX™
Zeitfenster: Up to 1 Month (1 Month Postdose 1)
|
Serum antibodies to Pertussis Toxoid Antibody (anti-PT) were measured with an enzyme-linked immunosorbent assay (ELISA).
Titers were reported in ELISA units/mL (ELU/mL) and the lower limit of quantitation for the assay was 5.0 ELU/mL.
GMTs from participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) were compared to GMTs from participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared GMTs using an ANOVA model with a response of log individual titers and fixed effects for treatment group, manufacturing facility, study site, and the treatment-by-site interaction.
|
Up to 1 Month (1 Month Postdose 1)
|
|
Geometric Mean Titers (GMTs) For Pertussis (Anti-FHA) One Month Postvaccination With REPEVAX™
Zeitfenster: Up to 1 Month (1 Month Postdose 1)
|
Serum antibodies to Pertussis Filamentous Haemagglutin Antibody (anti-FHA) were measured with an ELISA.
Titers were reported in ELU/mL and the lower limit of quantitation for the assay was 3.0 ELU/mL.
GMTs from participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) were compared to GMTs from participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared GMTs using an ANOVA model with a response of log individual titers and fixed effects for treatment group, manufacturing facility, study site, and the treatment-by-site interaction.
|
Up to 1 Month (1 Month Postdose 1)
|
|
Geometric Mean Titers (GMTs) For Pertussis (Anti-PRN) One Month Postvaccination With REPEVAX™
Zeitfenster: Up to 1 Month (1 Month Postdose 1)
|
Serum antibodies to Pertussis Pertactin (anti-PRN) were measured with an ELISA.
Titers were reported in ELU/mL and the lower limit of quantitation for the assay was 5.0 ELU/mL.
GMTs from participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) were compared to GMTs from participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared GMTs using an ANOVA model with a response of log individual titers and fixed effects for treatment group, manufacturing facility, study site, and the treatment-by-site interaction.
|
Up to 1 Month (1 Month Postdose 1)
|
|
Geometric Mean Titers (GMTs) For Pertussis (Anti-FIM) One Month Postvaccination With REPEVAX™
Zeitfenster: Up to 1 Month (1 Month Postdose 1)
|
Serum antibodies to Pertussis Fimbrial Agglutinogens Antibody (anti-FIM) were measured with an ELISA.
Titers were reported in ELU/mL and the lower limit of quantitation for the assay was 5.0 ELU/mL.
GMTs from participants who received qHPV vaccine and REPEVAX™ together at Day 1 (concomitant) were compared to GMTs from participants who received qHPV vaccine at Day 1 followed by REPEVAX™ 1 month later (non-concomitant).
An analysis of non-inferiority compared GMTs for each HPV Type using an ANOVA model with a response of log individual titers and fixed effects for treatment group, manufacturing facility, study site, and the treatment-by-site interaction.
|
Up to 1 Month (1 Month Postdose 1)
|
Mitarbeiter und Ermittler
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Sponsor
Publikationen und hilfreiche Links
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Studienaufzeichnungsdaten
Diese Daten verfolgen den Fortschritt der Übermittlung von Studienaufzeichnungen und zusammenfassenden Ergebnissen an ClinicalTrials.gov. Studienaufzeichnungen und gemeldete Ergebnisse werden von der National Library of Medicine (NLM) überprüft, um sicherzustellen, dass sie bestimmten Qualitätskontrollstandards entsprechen, bevor sie auf der öffentlichen Website veröffentlicht werden.
Haupttermine studieren
Studienbeginn
1. Mai 2006
Primärer Abschluss (Tatsächlich)
1. Mai 2007
Studienabschluss (Tatsächlich)
1. Mai 2007
Studienanmeldedaten
Zuerst eingereicht
14. Juni 2006
Zuerst eingereicht, das die QC-Kriterien erfüllt hat
15. Juni 2006
Zuerst gepostet (Schätzen)
16. Juni 2006
Studienaufzeichnungsaktualisierungen
Letztes Update gepostet (Schätzen)
16. November 2016
Letztes eingereichtes Update, das die QC-Kriterien erfüllt
27. September 2016
Zuletzt verifiziert
1. September 2016
Mehr Informationen
Begriffe im Zusammenhang mit dieser Studie
Zusätzliche relevante MeSH-Bedingungen
- Erkrankungen des zentralen Nervensystems
- Erkrankungen des Nervensystems
- RNA-Virusinfektionen
- Viruserkrankungen
- Infektionen
- Infektionen der Atemwege
- Erkrankungen der Atemwege
- Neubildungen nach histologischem Typ
- Neubildungen
- Neuromuskuläre Erkrankungen
- Infektionen des zentralen Nervensystems
- Bordetella-Infektionen
- Gramnegative bakterielle Infektionen
- Bakterielle Infektionen
- Bakterielle Infektionen und Mykosen
- Grampositive bakterielle Infektionen
- Actinomycetales-Infektionen
- Enterovirus-Infektionen
- Picornaviridae-Infektionen
- Erkrankungen des Rückenmarks
- Clostridium-Infektionen
- Corynebacterium-Infektionen
- Myelitis
- Keuchhusten
- Tetanus
- Diphtherie
- Neubildungen, Drüsen und Epithelien
- Poliomyelitis
- Physiologische Wirkungen von Arzneimitteln
- Immunologische Faktoren
- Impfungen
Andere Studien-ID-Nummern
- V501-024
- 2005_093
Diese Informationen wurden ohne Änderungen direkt von der Website clinicaltrials.gov abgerufen. Wenn Sie Ihre Studiendaten ändern, entfernen oder aktualisieren möchten, wenden Sie sich bitte an register@clinicaltrials.gov. Sobald eine Änderung auf clinicaltrials.gov implementiert wird, wird diese automatisch auch auf unserer Website aktualisiert .