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RecruitingNCT05505110MOTHER SEEDUpdated Nov 10, 2025

MOdification Of THe Early-Life Respiratory Microbiome Through Vaginal SEEDing

An Early Phase 1 interventional study of Vaginal Seeding and Sterile Swab in C-section, Vaginal Seeding and Respiratory, sponsored by Vanderbilt University Medical Center. Recruiting at 1 site in United States. Open to female participants aged 18 Years to 40 Years. Per ClinicalTrials.gov, last updated 2025-11-10.

Sponsored by Vanderbilt University Medical Center · Early Phase 1, Interventional, and Other

From the registry’s dates

  • Started Nov 2022; still recruiting 3 years 10 months later.
Phase
Early Phase 1
Study type
Interventional
Enrollment
20
Allocation
Randomized
Ages
18 Years to 40 Years
Sex
Female
01

Study summary

This is a single-center, parallel-arm, blind, sham-controlled, feasibility randomized controlled trial (RCT) to be conducted in healthy cesarean-born children. Eligible children will be randomized 1:1 to have their nose swabbed with either maternal vaginal secretions or a sterile swab (intervention vs. control group, respectively). The main hypothesis is that conducting an RCT assessing the utility of vaginal seeding in modifying the early-life upper respiratory tract (URT) microbiome of children born by cesarean section (C-section) is feasible and that the intervention is safe.

Read the detailed description

Eligible children will be randomized 1:1 to have their nose swabbed with either maternal vaginal secretions or a sterile swab (intervention vs. control group, respectively). The procedure will be performed following birth by C-section and immediately after the initial newborn care by the general pediatric team. The mother and child will then receive usual medical care as determined by their health care providers. Follow-up will occur at multiple time points during the child's first 6 months of life. One planned interim analysis to assess the safety of the procedure will be conducted.

The intervention aims to transfer the maternal vaginal microbiome to the nasal cavity of cesarean-born children at birth (i.e., vaginal seeding of the URT). Hence, the intervention simply attempts to replicate the natural exposure to maternal vaginal secretions during vaginal delivery in children born by C-section.

02

Conditions studied

  • C-section
  • Vaginal Seeding
  • Respiratory
  • Microbiome

Keywords

  • C-section
  • Vaginal seeding
  • Respiratory
  • Microbiome
03

In context

Lead sponsor

Vanderbilt University Medical Center is the lead sponsor of 824 studies on the registry; 164 are open to participants now.

Of its 122 completed or terminated interventional studies of FDA-regulated products, 91 (75%) have results posted.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years to 40 Years
Sexes eligible
Female
Accepts healthy volunteers
No

Inclusion criteria

For the mother:

  • Female 18-40 years of age who is in good general health, is fully able to provide consent to participate in the study, anticipates being available for the duration of the study, and is willing to comply with all study procedures
  • Singleton pregnancy
  • Completed ≧3 prenatal care visits at Vanderbilt University Medical Center (any facility)
  • Having rectovaginal swabs collected at ≧36 weeks of gestation to screen for Group B Streptococcus (GBS) as part of prenatal screening tests
  • Having a scheduled (planned or non-emergency) C-section at Vanderbilt University Medical Center (main campus only)
  • No intent to relocate outside the middle Tennessee region within 12 months of recruitment

For the child:

  • Estimated gestational age ≧37 weeks
  • Birth weight ≧2,500 grams

Exclusion criteria

Exclusion Criteria:

For the mother:

  • Past medical history of any of the following:

    • Previous child with GBS infection or prior positive GBS testing
    • Hepatitis B, hepatitis C, or human immunodeficiency virus (HIV) infection
    • Genital herpes simplex virus (HSV) infection, genital herpetic lesions, or prior positive genital HSV testing
    • Genital human papilloma virus (HPV) infection, genital HPV lesions, or prior positive genital HPV testing
    • Diabetes type I or type II
  • Laboratory evidence during the current pregnancy of any of the following:

    • GBS bacteriuria in urine samples collected at any time (performed as standard of care)
    • GBS colonization in rectovaginal swabs collected at ≧36 weeks of gestation (performed as standard of care)
    • Chlamydia, trichomoniasis, or gonorrhea in urine samples collected at ≧36 weeks of gestation (performed as part of the screening procedures for this study)
    • Hepatitis B, hepatitis C, HIV, or syphilis in blood samples collected at ≧36 weeks of gestation (performed as part of the screening procedures for this study)
  • Uncontrolled gestational diabetes
  • Any serious obstetric disease (e.g., preeclampsia with severe features, placental abruption or severe bleeding, or thromboembolic disease) as deemed by the PI or co-investigators
  • Prior abnormal Pap smear
  • C-section scheduled for a genitourinary infection that would have interfered with vaginal delivery (e.g., genital herpetic lesions)
  • Lack of available prenatal screening tests
  • Use of systemic (i.e., oral, intramuscular, or intravenous) antibiotics in the 4 weeks prior to delivery (except for those being administered as part of the C-section)
  • Use of systemic (i.e., oral, intramuscular, or intravenous) immunosuppressive, biologic, or chemotherapeutic agents in the 3 months prior to delivery (except for systemic immunosuppressive agents not being used for their immunosuppressive effects [e.g., prenatal intramuscular beclomethasone for fetal lung maturation])
  • Fever (≧100.4°F [38°C]) in the 72 hours prior to delivery
  • Symptoms (e.g., dysuria, pruritus, or discharge) suggestive of a genitourinary infection (e.g., bacterial vaginosis, vaginal yeast infection, chorioamnionitis, or urinary tract infection) on the day of delivery
  • Symptoms (e.g., pain, tenderness, tingling, burning, itching, or swollen lymph nodes) suggestive of genital HSV infection on the day of delivery
  • Other symptoms (e.g., new-onset rhinorrhea, sore throat, cough, body aches, chills, nausea, vomiting, or diarrhea) suggestive of an acute infectious disease on the day of delivery
  • Physical exam findings (e.g., fever [≧100.4°F (38°C)] or vesicles, warts, or ulcers in the genital, perineal, or anal region) suggestive of a genitourinary infection on the day of delivery (performed as part of the screening procedures for this study if not performed as standard of care)
  • Maternal vaginal pH>4.5 on the day of delivery (performed as part of the screening procedures for this study)
  • Need for a switch from a scheduled C-section to an emergency C-section
  • Prelabor prolonged rupture of membranes (i.e., ≧18 hours prior to delivery)
  • Pregnancy as the result of an assisted reproductive technology or surrogacy
  • Participation in another clinical trial that involves an intervention that could impact the quality or interpretation of the study data as deemed by the PI or co-investigators
  • Other past or current medical problems that could compromise the safety of participants, interfere with their ability to comply with study requirements, or impact the quality or interpretation of the study data as deemed by the PI or co-investigators

For the child:

  • Need for neonatal measures outside routine clinical care (i.e., drying, tactile stimulation, bulb syringe or catheter suction of nose and mouth, or temperature maintenance) in the delivery room
  • Transfer to the neonatal intensive care unit immediately after delivery
  • Thick particulate meconium noted during delivery
  • Physical exam findings (e.g., tachypnea, nasal flaring, retractions, cyanosis, or grunting) suggestive of neonatal acute respiratory distress immediately after delivery (performed as part of the screening procedures for this study)
  • Prenatal diagnosis of a serious genetic, respiratory, cardiovascular, or neurological disease
  • Prenatal diagnosis of intrauterine growth restriction
  • Prenatal diagnosis of a major congenital anomaly (e.g., cleft lip or palate, cystic hygroma, or giant omphalocele)
  • Participation in another clinical trial that involves an intervention that could impact the quality or interpretation of the study data as deemed by the PI or co-investigators
  • Other past or current medical problems that could compromise the safety of participants, interfere with their ability to comply with study requirements, or impact the quality or interpretation of the study data as deemed by the PI or co-investigators
05

Study design

Phase
Early Phase 1
Primary purpose
Other
Allocation
Randomized
Intervention model
Parallel assignment
Masking
Quadruple (Participant, Care provider, Investigator, Outcomes assessor)
Enrollment
20 participants (estimated)

Study arms

  • Active comparator
    Intervention Group

    Vaginal Seeding

    Biological: Vaginal Seeding

  • Sham comparator
    Control Group

    Sterile Swab

    Other: Sterile Swab

Interventions

  • BiologicalVaginal Seeding

    Following birth by C-section and immediately after the initial newborn care by the general pediatric team, children randomized to the intervention group will have their nasal cavity swabbed with maternal vaginal secretions.

  • OtherSterile Swab

    Following birth by C-section and immediately after the initial newborn care by the general pediatric team, children randomized to the control group will have their nasal cavity swabbed with a sterile swab.

06

What researchers measure

Primary outcomes

  1. Feasibility of the RCT

    The study will be considered "definitively feasible as proposed," "possibly feasible as proposed," or "not feasible as proposed" based on eligibility, consent, enrollment, and loss to follow-up rates, which could be used as preliminary data to inform the design of a future phase II RCT. For this study, "enrolled" will be defined as consented and screened, with eligibility verified, and the eligibility, consent, enrollment, and loss to follow-up rates will be calculated using the following formulas: 1) eligibility rate = number of participants who are eligible\*100 / number of participants pre-screened, 2) consent rate = number of participants who provide consent\*100 / number of participants who are eligible, 3) enrollment rate = number of participants who are enrolled\*100 / number of participants consented and who complete screening procedures, and 4) loss to follow-up = number of participants who did not complete the end-of-study visit\*100 rate / number of participants randomized.

    Time frame: Six months following randomization

  2. Safety of the intervention

    To be determined by the number of adverse events, serious adverse events, and unanticipated problems throughout the study, as defined using the standards set forth in the National Cancer Institute's - Common Terminology Criteria (NCI-CTCAE) for AEs version 4.0 and the United States Department of Health and Human Services - Reviewing and Reporting Unanticipated Problems Involving Risks to Subjects or Others and Adverse Events: Office for Human Research Protections Guidance 2007

    Time frame: Six months following randomization

Secondary outcomes

  1. Timing of the intervention

    The number of minutes after birth when the intervention is performed.

    Time frame: Immediately following administration of the intervention

  2. Proportion of in-person study visits completed

    The total number of in-person study visits completed by all participants\*100 / total number of in-person visits expected for all participants for each study time point.

    Time frame: Six months following randomization

  3. Common microbial ecology metrics of the maternal vaginal microbiome and of the early-life URT microbiome

    The comparisons of the maternal vaginal microbiome on the day of delivery between study groups will be conducted using alpha-diversity (e.g., observed taxa, Shannon index, and Simpson indices), beta-diversity (e.g., Bray-Curtis, Jaccard, weighted UniFrac, and unweighted UniFrac indices), and differential abundance (at the amplicon sequence variant, genus, and/or family level) analyses. The early-life URT microbiome at each time point and over time will be compared between study groups using similar microbial ecology metrics. In pre-specified analyses, we will also compare the presence and abundance of the genus Lactobacillus and the predominant Lactobacillus amplicon sequence variants in the URT of children at each time point and over time between study groups, as this is the predominant taxa of the maternal vaginal microbiome during pregnancy.

    Time frame: At each study time point (birth, ~2 days, ~5 days, ~4 weeks, and ~6 months of age) and over time (longitudinally from birth to age 6 months)

07

Study locations

1 of 1 sites recruiting
  • Vanderbilt University Medical Center
    Nashville, Tennessee 37232, United States
    Recruiting
08

References and documents

Individual participant data

Plan to share: Yes — De-identified next-generation sequencing data generated as part of this study will be deposited into NIH-sponsored or other scientific repositories immediately following a publication. Other de-identified individual participant data (IPD) that underlie the results reported in a manuscript will be shared with other parties upon request beginning 12 months and ending 36 months following a publication. In addition, the study protocol and informed consent documents will be uploaded to clinicaltrials.gov no later than 60 days after the end-of-study visit of the last enrolled participant.

Supporting information: Study protocol, Sap, Icf

No publications or documents are linked to this record.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Nov 10, 2025, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT05505110
Lead sponsor
Vanderbilt University Medical Center
Collaborators
National Heart, Lung, and Blood Institute (NHLBI)
Responsible party
Christian Rosas-Salazar (Assistant Professor of Pediatrics, Vanderbilt University Medical Center) — Principal investigator
First posted
Aug 17, 2022
Start date
Nov 9, 2022
Primary completion
Aug 10, 2028 (estimated)
Completion
Aug 10, 2028 (estimated)
Last update
Nov 10, 2025

Study contacts

MOTHER SEED Study Team
Contact
motherseed@vumc.org
615-936-5552
Andrea E Lee, MA, MLS
Contact
andrea.e.lee@vumc.org
615-936-5552
Christian Rosas-Salazar, MD, MPH
principal investigator · Vanderbilt University Medical Center

Oversight

Data monitoring committee
Yes
FDA-regulated drug
Yes
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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