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IH, Brain Health, and T2D

Intermittent Hypoxia Training and Cerebrovascular Health in Older Adults With Type 2 Diabetes

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07173543
Enrollment
80
Registered
2025-09-15
Start date
2025-09-22
Completion date
2028-06-30
Last updated
2026-03-13

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Aging, Type 2 Diabetes

Brief summary

The purpose of this study is to use a randomized, placebo-controlled study design to rigorously examine the therapeutic potential of intermittent hypoxia (IH) for improving cerebrovascular health in older adults with and without type 2 diabetes mellitus (T2DM).

Detailed description

Aging is considered a major risk factor for the development of various cardio- and cerebrovascular related diseases, with vascular endothelial dysfunction representing one of the earliest vascular complications. Age-related cerebrovascular endothelial dysfunction contributes to a progressive decrease in cerebral blood flow, which is associated with lower measures of cognitive function, including information-processing speed, executive function, and global cognition in older adults. Similar to aging, type 2 diabetes mellitus (T2DM) also negatively impacts vascular endothelial function. There is a large body of evidence that clearly demonstrates there is an interplay between aging and T2DM and that the presence of both risk factors together promotes greater endothelial dysfunction than that of either condition alone. In this context, certain measures of cerebral blood flow are reduced to a greater extent in older individuals with T2DM compared to those without. Moreover, the exaggerated cerebral perfusion deficits frequently observed among older adults with T2DM are linked to cognitive decrements. To this point, the rate of cognitive decline due to aging is increased 1.5 to 2.0-fold in individuals with T2DM. Taken together, older adults with T2DM are at greater risk for developing dementia and Alzheimer's disease when compared age-matched controls. Exploration of non-pharmacological therapies for the improvement of cerebrovascular health and cognition have become more common over the past decade. Intermittent hypoxia (IH) is a therapeutic intervention that combines multiple, brief (\ 1-10 minutes) episodes of moderate hypoxia, interspersed with episodes of normoxia. In preclinical and human studies, repeated bouts of IH improve measures of respiratory, autonomic, cardio-, and cerebrovascular health. The investigators previously demonstrated that cerebral blood flow is increased with each episode of hypoxia and a single session of IH improves nitic oxide (NO) mediated endothelial function in the internal carotid artery (ICA; major supplier of overall brain blood flow) of young adults. While cerebral blood flow is also augmented during a single session of IH in older adults, the magnitude of change appears to be less, which might suggest older adults with and without T2DM may need repeated sessions of IH for improvements in cerebrovascular health to occur. The investigator's central hypothesis is that experimental use of IH will effectively and progressively improve cerebrovascular health and cognition in older adults with T2DM. Specifically, the investigators will evaluate the interplay between aging and T2DM and how it influences cerebral endothelial function as well as the cerebrovascular responses to IH (Aim 1) and test the effectiveness of IH training for the improvement of cerebrovascular health in older adults living with diabetes (Aim 2). Collectively, the proposed studies will provide 1) novel understanding of cerebrovascular function in older adults with and without T2DM, and 2) important insight into the therapeutic potential of IH for improving cerebrovascular health and cognition in older adults living with T2DM.

Interventions

OTHERIntermittent Hypoxia 1 (IH1)

Intermittent Hypoxia 1 (IH1): 5 cycles of normoxia (4 minutes)/hypoxia (6 minutes) per session. 3 sessions per week for 8 weeks

OTHERIntermittent Hypoxia 2 (IH2)

Intermittent Hypoxia 1 (IH2): 5 cycles of normoxia (4 minutes)/hypoxia (6 minutes) per session. 3 sessions per week for 4 weeks

OTHERSHAM - normoxia

Participants will receive normoxia (no hypoxia) over 50 minutes.

Sponsors

Darren P Casey
Lead SponsorOTHER
American Diabetes Association
CollaboratorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
OTHER
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
60 Years to 85 Years
Healthy volunteers
Yes

Inclusion criteria

For 30 patients with documented Type 2 diabetes Inclusion Criteria: * Willing and able to provide written, signed informed consent after the nature of the study has been explained, and prior to any research-related procedures. * Age is \> or = 60 and \< or = 85 years of age * Documented Type 2 diabetes * Scoring 26 or higher on the MoCA test

Exclusion criteria

* diagnosis of type 2 diabetes \< 1 year prior to enrollment * HbA1c \<6.5% or \>10.0% * body mass index \> 40 kg/m 2 * incident cardiovascular events in the last year (heart attack, stroke) * symptomatic coronary artery disease and/or heart failure * uncontrolled hypertension * obstructive sleep apnea * pulmonary disease * dementia * renal impairment with creatinine clearance (eGFR) of \<60 ml/min * smoking or history of smoking within past one year 30 nondiabetic control subjects will also be studied. Inclusion criteria: * Willing and able to provide written, signed informed consent after the nature of the study has been explained, and prior to any research-related procedures. * Age is \> or = 60 and \< or = 85 years of age * Scoring 26 or higher on the MoCA test

Design outcomes

Primary

MeasureTime frameDescription
Internal Carotid Artery (ICA) shear-mediated dilationBaseline and post 2-,4-,5-,6-, and 8-weeksICA dilation (% change) will be determined using Doppler ultrasound in response to acute hypercapnia.
Cerebral blood flow responsivenessBaseline and after 50 minutes of IH or SHAMCerebral blood flow will be determined using Doppler ultrasound in response to acute hypoxia.
Cognitive function testingBaseline and post 4- and 8-weeksWorking memory will be assessed using a facial recognition n-back task test

Countries

United States

Contacts

CONTACTDarren Casey, PHD
darren-casey@uiowa.edu13193841009

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Mar 14, 2026