Surgery Clinical Trial
Official title:
Dietary Restriction in Vascular Surgery
A randomized, controlled trial to evaluate patient compliance and biologic mechanisms of a short-term pre-operative Protein-Calorie Restriction (PCR) diet in comparison to a normal ad libitum diet for 4 days before elective vascular surgery involving a major operation. This study is a step in the long-term primary scientific objective to test the hypothesis that brief up regulation of endogenous H2S via pre-operative PCR in elective major surgery improves clinical outcomes in humans. After a successful pilot study of the PCR diet conducted inpatient before carotid endarterectomy, the investigators now aim to expand the study to at home diet among a variety of vascular surgery procedures.
Hydrogen sulfide (H2S) has emerged as a critical gaseous signaling molecule with a role in
multiple processes including ischemia-reperfusion (IR) injury, angiogenesis, intimal
hyperplasia, and anti-inflammatory mechanisms. It even appears to hold anti-atherosclerotic
properties. However, the gas is toxic with a half-life of minutes, and it can be rapidly
oxidized. Furthermore, no clinically useful pharmacologic H2S donors have been developed to
date. In a 2015 Cell paper, the study investigators link substantial upregulation of
endogenous H2S to short-term manipulation of mammalian dietary intake: simple dietary
restriction. The current project serves as the second phase in the accelerated translation of
this important discovery toward clinical utility that may substantively impact the vascular
patient at several levels: protection from IR injury, intimal hyperplasia, peri-procedural
events such as stroke, cardiac dysfunction and myocardial infarction (MI), and promotion of
angiogenesis.
Chronic protein and calorie dietary restriction (PCR; reduced food intake without
malnutrition) is known for extending longevity in multiple species. PCR is also an
established approach to positively impact metabolic fitness and resistance to multiple forms
of acute stress. Despite these wide-ranging benefits, potential clinical applications have
never been considered feasible in humans due to the practical difficulties associated with
voluntary food restriction combined with the assumption that PCR benefits take a long time to
accrue. Recent preclinical studies by the applicants reveal a rapid onset of PCR benefits
against surgically induced traumatic inflammation, IR injury, and the fibroproliferative
vascular response to injury in rodents. Mechanistically, rapid changes in adipose phenotype
and associated adipokine profiles appear to underlie these benefits; but the key mediator
appears to be endogenous H2S. This field thus stands poised to move to clinical utility, and
vascular surgery offers an optimal risk/benefit ratio for translation of the PCR/H2S
hypothesis.
For the current project the investigators will complete a randomized, controlled trial to
evaluate patient compliance and biologic mechanisms of a short-term pre-operative PCR diet in
comparison to a normal ad libitum diet for 4 days before elective major vascular surgery.
Both Endpoints relate to the long-term primary scientific objective to test the hypothesis
that brief upregulation of endogenous H2S via pre-operative PCR in elective major surgery
improves clinical outcomes in humans. After a successful pilot study of the PCR diet
conducted inpatient before carotid endarterectomy titled Short-Term Endogenous Hydrogen
Sulfide Upregulation (NCT03303534), the investigators now aim to expand the study to at home
diet among a variety of vascular surgery procedures.
Eighty subjects undergoing carotid artery endarterectomy, aortic aneurysm repair (open, and
endovascular if groin cut down planned), open lower extremity arterial procedures (bypasses,
aneurysm repair, arterial and bypass graft reconstructions), major amputation of the lower
extremity (below knee and above knee amputations), or open hemodialysis access procedures for
either symptomatic or asymptomatic disease will be recruited and enrolled at Brigham and
Women's Hospital. Using a randomized (3:2), parallel design, patients will receive either the
PCR diet (n=48; ScandiShake [any of 4 flavors] mixed with almond milk, calculated
individually for a total daily volume to achieve 30% caloric restriction and 70% protein
restriction, based on body weight and activity level), or continued routine ad libitum diet
(n=32). Daily physical activity will be assessed by questionnaire to determine the activity
factor for accurate calorie restriction calculations. Water intake is ad libitum for both
cohorts, and both diets can be consumed throughout the day and night (except on the day of
surgery). Patients will consume their assigned diets for the four days leading up to surgery
until midnight the day of surgery when both cohorts will be fasted for the procedure (per
standard clinical guidelines).
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