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NCT Number: NCT07802262

Prenatal Exercise and Glucose Regulation

Gestational diabetes mellitus (GDM) is the most common disease during pregnancy and is characterized by an inability to regulate blood glucose (sugar) levels because of resistance to the hormone, insulin, which is responsible for getting glucose out of the blood. Aerobic training (AT, "cardio," for example: walking) is commonly used to regulate blood glucose levels in similar populations, like diabetics, but another form of exercise known as resistance training (RT, for example: weightlifting), has shown to be just as effective. Further, exercise intensity, regardless of the type, is directly proportional to blood glucose control. However, no study has compared AT and RT exercise modalities or intensity on blood glucose regulation in GDM, even though women with GDM share a similar insulin resistant phenotype as diabetics. Therefore, long-term objective of this study is to compare the effects of exercise type and intensity on glucose regulation and insulin sensitivity after four acute exercise sessions: low intensity RT (LOW-RT), low intensity AT (LOW-AT), moderate intensity RT (MOD-RT), moderate intensity AT (MOD-AT). Researchers will address the following aims:

Specific Aim 1: Determine the impact of exercise type and intensity on glucose regulation using continuous glucose monitoring during- and for 24 hours after four acute exercise sessions: LOW-RT, LOW-AT, MODRT, and MOD-AT. Researchers hypothesize that RT and moderate intensity will elicit better glucose control compared to AT and low intensity, respectively.

Specific Aim 2: Determine the impact of exercise type and intensity on insulin sensitivity by quantifying the quantitative insulin-sensitivity check index (QUICKI) before and after four acute exercise sessions: LOWRT, LOW-AT, MOD-RT, and MOD-AT. Researchers hypothesize that RT and moderate intensity will elicit greater insulin sensitivity compared to AT and low intensity, respectively.

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Key information

Age range

18 year–35 year

Sex eligibility

Female

Study type

Interventional

Phase

Not applicable

Primary location

About this study

Gestational diabetes mellitus (GDM) is defined as an inability to manage blood glucose (sugar) levels that is first diagnosed during pregnancy and poses a significant threat to the mom and baby. Even so, current pharmacological treatment strategies may not affect the root cause of the problem (reduced sensitivity to insulin) in the same way that other adjuvant therapies, like exercise, do. In fact, exercise has been coined as "medicine" in many professional organizations because of its regenerative nature, owing to its ability to improve physiological outcomes just like pharmacological treatments.

As such, exercise prescription, like drug prescription, must be specific and consider several key variables, such as those described in the FITT principle for exercise: frequency (how often), intensity (how hard), time (how many minutes), and type (which kind of exercise). Although resistance training (RT, a type of exercise) and higher intensities of exercise are tremendously influential on insulin sensitivity and consequent glucose regulation in populations with similar physiological burdens as GDM (e.g., type 2 diabetes mellitus), no study to date has thoroughly explored the impact of these variables in GDM. Furthermore, in general, prenatal exercise recommendations prescribing FITT are for the very general health of the mom and baby. However, "general health" tends to be quite myopic for a population such as GDM, whose characteristic physiological issue is insulin insensitivity, which thus should be the main target. Therefore, a major obstacle in the field of prenatal exercise is determining what FITT exercise prescription is optimal for insulin sensitivity and glucose regulation in GDM, and not simply overall health (again, much like medicine). In effect, my long-term goal is to determine the appropriate FITT prescription for optimal insulin sensitivity and glucose regulation in GDM. My central hypothesis is that the current FITT prescription for prenatal exercise in GDM grossly underestimates what is needed for optimal insulin sensitivity and glucose regulation. To begin testing my hypothesis, in the proposed study, I will seek to address two aims:

Specific Aim 1: Determine the impact of exercise type (resistance training [RT], aerobic training [AT]) and intensity (low, moderate) on glucose regulation in GDM by assessing real-time blood glucose levels using continuous glucose monitoring (CGM) during and for 24 hours after an acute bout of exercise in four conditions: low intensity RT (LOW-RT), low intensity AT (LOW-AT), moderate intensity RT (MOD-RT), and moderate intensity AT (MOD-AT). The hypothesis is that MOD-RT will elicit the most optimal glucose regulation throughout the 24-hour window, followed by MOD-AT, then LOW-RT, and finally LOW-AT.

Specific Aim 2: Determine the impact of exercise type (RT, AT) and intensity (low, moderate) on insulin sensitivity in GDM by calculating the quantitative insulin-sensitivity check index (QUICKI) using blood glucose levels before and after an acute bout of exercise in four conditions: LOW-RT, LOW-AT, MOD-RT, and MODAT. The hypothesis is that MOD-RT will elicit the greatest change in insulin sensitivity, followed by MOD-AT, then LOW-RT, and finally LOW-AT.

This data could be immensely informative for prescribing exercise for optimal metabolic health in GDM and could therefore be used to manage acute changes in glucose levels in this population. For example, if the hypothesis of this study is confirmed, this may mean that if a woman with GDM has a brief episode of high glucose levels (e.g., after a high-sugar meal), she may be "prescribed" a form of RT at a certain intensity to get her glucose levels back to baseline, instead of-/in concert with- pharmacological approaches, therefore, effectively using specific exercise prescription as a form of medicine. In the future, I plan to determine the optimal prescription of the other FITT variables (frequency and time) for optimizing glucose regulation in GDM. Then I will use this exercise prescription in a long-term exercise training study in GDM and examine the impacts on both the mom and baby.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Biological female
  • Singleton (one fetus)
  • 24-30-wks gestation
  • 18-35 yrs old
  • Sedentary
  • Conception without the use of assisted fertility treatments

Exclusion criteria

  • Existing other metabolic disorders
  • Currently taking medication or supplements that affect glucose metabolism
  • Taking drugs, tobacco, or alcohol during pregnancy
  • Having a contraindication to exercise

Treatment and study plan

Acute exercises sessions with different exercise types and intensities

Behavioral

During both RT sessions, participants will perform eight exercises that will target the whole body. Exercises will be performed using dumbbells at four sets of 10 repetitions, with one minute of rest between sets. The first set will be done with very light weight (warm-up). The next three sets will be the "working sets," done with a weight that will elicit the proper intensity. During AT, participants will use either a treadmill, bike, elliptical, or rower. Throughout the 45-minute session, every five minutes, the participant will report their RPE, and if they report low, speed will be increased by 0.1-0.5 mph until the proper intensity is achieved. Incline/resistance will not be used to modulate intensity, to ensure that there are no mechanical influences on AT that mimic the nature of RT.

Primary outcomes

  1. 24-hour glucose regulation

    Time frame: 24 hours

    Determine the impact of exercise type (resistance training [RT], aerobic training [AT]) and intensity (low, moderate) on glucose regulation in GDM by assessing real-time blood glucose levels using continuous glucose monitoring (CGM) during and for 24 hours after an acute bout of exercise in four conditions: low intensity RT (LOW-RT), low intensity AT (LOW-AT), moderate intensity RT (MOD-RT), and moderate intensity AT (MOD-AT).

Secondary outcomes

  1. Insulin sensitivity

    Time frame: Acute (~1 hour)

    Determine the impact of exercise type (RT, AT) and intensity (low, moderate) on insulin sensitivity by calculating the quantitative insulin-sensitivity check index (QUICKI) using blood glucose levels before and after an acute bout of exercise in four conditions: LOW-RT, LOW-AT, MOD-RT, and MODAT.

Study contacts

Contact information is provided by the study sponsor or research team.

Brittany R Tucker, PhD

CONTACT

[email protected]

484-802-6852

Jamie Baum, PhD

CONTACT

[email protected]

479-601-2499

Sponsors and collaborators

Lead sponsor

University of Central Arkansas

Other

Registry information

Official study title

The Impact of Prenatal Exercise Type and Intensity on Glucose Control in Pregnant Women

Acronym: FITT-B

Important dates

Study start
2024
Primary completion
2027
Study completion
2028
First posted
Sep 3, 2026
Registry last updated
Sep 3, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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