Purpose

The University of Iowa's Center for Disabilities and Development is researching how pregnancy, early childhood experiences, and genetic factors influence child development, with a focus on autism spectrum disorder (ASD). Pregnant women are invited to participate in a study that tracks their pregnancy and child's early development, through simple, at-home activities using a cell phone. Participants complete short questionnaires, join an online interview, and videotape their baby's play after birth. They are also sent a kit to swab their baby's mouth to collect cheek cells for genetic testing. The study will explore whether stress and early social experience lead to genetic changes associated with autism or other developmental conditions.

Conditions

Eligibility

Eligible Ages
Between 0 Years and 50 Years
Eligible Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

A. Criteria for Pregnant Women: 1. Pregnant women in their 1st or 2nd trimester of a singleton pregnancy. 2. Age 18 to 50 years 3. Currently use a smart phone B. ASD Group at age 18 to 27 months 1. M-CHAT score >= 4 or POSI score >= 3 2. Child has subsequently clinically confirmed diagnosis of ASD, based on ADOS/TAP testing and/or other clinical evaluation C. Developmental Delay (DD) Group at age 18 to 27-months 1. Developmental screening score on SWYC in the "at risk" range. 2. Child has subsequently clinically confirmed developmental delay on clinical evaluation and/or self-report measure D. Typically Developing (TD) Group at age 18 to 27 months - None

Exclusion Criteria

A. Criteria for Pregnant Women: 1. Non-English speaking mother 2. History of severe mental illness in the past year, resulting in inpatient admission B. All children 1. <35 weeks gestational age at birth 2. History of serious neonatal complications requiring NICU admission for one week or more 3. Known genetic or syndromic condition (e.g. Down Syndrome, etc.) that impacts learning and brain development 4. Hearing impairment C. ASD Group at age 18 to 27 months - None D. Developmental Delay (DD) Group at age 18 to 27 months 1. Screen positive for ASD (M-CHAT >= 4 AND POSI >= 3) 2. First-degree relative who has been diagnosed with ASD E. Typically Developing (TD) Group at age 18 to 27 months 1. Screen positive for ASD (M-CHAT >= 4 AND POSI >= 3) 2. Developmental screening/assessment score in the "at risk" range. 3. First-degree relative who has been diagnosed with ASD

Study Design

Phase
Study Type
Observational
Observational Model
Cohort
Time Perspective
Prospective

Arm Groups

ArmDescriptionAssigned Intervention
Pregnant women/mothers Recruited prior to the 3rd trimester of pregnancy
Children with autism spectrum disorder (ASD) Children of pregnant women/mothers at 18-24 months of age
Group with developmental delay (but no ASD) Children of pregnant women/mothers at 18-24 months of age
Typically developing (TD) group Children of pregnant women/mothers at 18-24 months of age

Recruiting Locations

Center fro Disabilities and Development
Iowa City, Iowa 52246
Contact:
John Pienta, MD
319-356-7140
john-pienta@uiowa.edu

More Details

Status
Recruiting
Sponsor
University of Iowa

Study Contact

John Pienta, MD
319-356-7140
babysteps@uiowa.edu

Detailed Description

Autism spectrum disorder (ASD) is one of the most common neurodevelopmental disabilities, adversely affecting an increasing number of families worldwide. Although its etiology is strongly linked to genetic factors, perinatal experience, including prenatal stress and post-natal social experience, may also contribute to deficits in social communication in ASD, potentially via epigenetic mechanisms. For example, the oxytocin receptor gene (OXTR) is epigenetically altered by early social experience, plays a crucial role in mammalian social and cognitive development, and is associated with both genetic and epigenetic risk for ASD. However, the relationship between perinatal experience and epigenetic change in ASD is unclear. Our central hypothesis is that prenatal stress and early social experience predicts epigenetic changes in specific genes, which are associated with social communication deficits in ASD. To achieve our overall goal of discovering modifiable pathways for intervention in children at risk for ASD, we will recruit over 7,200 pregnant women to use a smartphone tool called BabySteps, to collect prospective data from the 3rd trimester of pregnancy until 30 months post-delivery. Between ages 18 to 27 months, BabySteps will be used to screen for symptoms of ASD or developmental delay (DD) in the offspring, which will trigger a full diagnostic assessment online or in person at the Center for Disabilities and Development. Children with a range of social communication deficits (including those diagnosed with ASD or non-ASD DD [n=200]) will be compared with typically developing children (TD; n=200) who are matched on race, sex, and socioeconomic status. We will examine 1) differences in DNA methylation (DNAm), and change over time, in specific ASD-associated loci and OXTR loci, and 2) differences in biologic age acceleration using epigenetic clock algorithms, as a function of age, perinatal experience, and social communication outcomes. We will compare DNAm from buccal swabs to samples collected around the time of diagnosis. We will calculate polygenic risk scores for social communication, repetitive behavior, and ASD, and assess the relative polygenic and epigenetic risk. The relationship between perinatal experience, DNAm, and social communication outcomes will be evaluated using 4 complementary measures: 1) ecological momentary assessments (EMAs) of prenatal stress and parental anxiety and depression, collected using BabySteps; 2) app-recorded free play between parent and child analyzed for dyadic synchrony and interactive behavior; 3) standardized assessments of child social communication skills; and 4) a Language ENvironment Analysis (LENA), using a LENA audio-recording device worn by the child at home and in daycare. We expect to identify epigenetic biomarkers that link prenatal stress and early social experience with social communication outcomes in ASD. A better understanding of how polygenic risk and perinatal experience-via epigenetic mechanisms-contribute to the ASD phenotype will help overcome a critical barrier to progress in the field, by identifying modifiable pathways for intervention.

Notice

Study information shown on this site is derived from ClinicalTrials.gov (a public registry operated by the National Institutes of Health). The listing of studies provided is not certain to be all studies for which you might be eligible. Furthermore, study eligibility requirements can be difficult to understand and may change over time, so it is wise to speak with your medical care provider and individual research study teams when making decisions related to participation.