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PeriOperative Medicine - Metabolic Inflexibility as a Mechanism for Myocardial Injury After Non-Cardiac Surgery

Observational MINS

For patients and families

In plain language

An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.

What is being studied
The protocol lists: Pre-operative Metabolic Inflexibility.
Who it may be relevant to
Registry conditions: MINS. Basic parameters: from 18 years · All.
What needs checking
Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
Where it takes place
Center list to be confirmed — check the primary protocol.
Next step
Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →

Overview

The goal of this observational study is to learn whether metabolic inflexibility, which means reduced ability of the body to switch between using fats and sugars for energy, is associated with myocardial injury after non-cardiac surgery (MINS) in adults undergoing major elective abdominal cancer surgery. The main question it aims to answer is: Does pre-operative metabolic inflexibility predict myocardial injury after non-cardiac surgery (MINS) within the first 72 hours after surgery? Participants will continue with their usual surgical care and pre-planned CPET (which can measure metabolic flexibility). As part of the study, participants will: * Have additional blood samples taken before and after surgery * Have an echocardiogram and, where possible, muscle ultrasound * Wear a wrist-worn activity monitor before surgery * Have routine clinical and surgical information collected from their medical records * Receive a follow-up phone call around 90 days after surgery

Detailed description

The POM-MIMIC study (PeriOperative Medicine - Metabolic Inflexibility as a mechanism for Myocardial Injury after Non-Cardiac Surgery) is a prospective, observational cohort study designed to improve perioperative risk stratification for myocardial injury after non-cardiac surgery (MINS). MINS affects up to 25% of patients undergoing major surgery and significantly increases long and short term mortality (1). Despite its clinical importance, the ability to predict MINS remains limited.

This study aims to evaluate if perioperative metabolic inflexibility, (the impaired ability of cells to adapt fuel usage to demand), is a driver of MINS. The study hypothesises that systemic metabolic dysfunction creates a state of cardiac vulnerability, priming the heart for injury when exposed to the multi-faceted immune/inflammatory and haemodynamic stressors of surgery and anaesthesia.

This study involves a prospective, multicentre observational cohort study of patients undergoing major abdominal cancer surgery. The study investigators will employ a deep, multi-modal phenotyping strategy to characterise each patient's intrinsic "metabolic resilience phenotype", with the goal of describing novel endotypes of MINS. The investigators propose that the endotypes of MINS are:

Immune mediated / inflammatory endotype: Driven by pre-existing inflammation and perioperative immune dysregulation

Metabolic / proteomic endotype: Driven by metabolic inflexibility and may involve direct metabolic injury to cardiomyocytes, lipotoxicity, oxidative stress, and unique troponin fragment signatures

Type II MI / Ischaemic-dominant endotype: Classic supply-demand mismatch (e.g. from intraoperative hypotension), likely amplified in metabolically vulnerable hearts

Mixed phenotype: A combination of the above, reflecting the interaction of metabolic, immune, and haemodynamic stressors

The phenotyping strategy will integrate:

Functional assessment: Cardiopulmonary exercise testing (CPET) to quantify metabolic flexibility via substrate utilisation

Structural assessment: Advanced imaging (CT/ultrasound) to quantify body composition, including myosteatosis and cardiac steatosis, which are markers of metabolic vulnerability

Biological assessment: High-dimensional immunophenotyping, targeted proteomics to identify novel troponin sub-fragment signatures which may reveal if injury is ischaemic, metabolic, or inflammatory, as well as in vitro studies using patient serum on human IPSC-derived cardiomyocytes to test for direct metabotoxicity

An exploratory outcome of reviewing intra-operative data for hypotension, anaesthetic type, and haemodynamics will assess for the ischaemic phenotype.

The study will recruit 300 adult patients undergoing major elective abdominal cancer surgery at UCLH and participating CIPHER-2 sites (Southampton and Plymouth). Participants will undergo routine pre-operative CPET. CPET analysis will derive VO2 peak, anaerobic threshold, metabolic crosscover and substrate utilisation metrics (fat vs carbohydrate oxidation) - the operational measure of metabolic flexibility. They will also undergo routine echocardiography and ultrasound . At this time blood sampling will be taken for targeted and untargeted metabolomics / lipidomics, biobanking of plasma/serum and PBMCs for immunophenotyping. Intra-operatively, haemodynamic monitoring as well as anaesthetic technique will be recorded. Post-operatively, hs-cTnI will be taken on days 1, 2, and 3 to assess for MINS. On days 1, 3, and 5 blood will be taken for biobanking of plasma/serum and PBMCs for immunophenotyping. On day 1 additional biomarker sampling at 24 hours will assess proteomic troponin fragmentation analysis and for mass spectrometry. Outcomes of interest include the incidence of MINS, post operative complications, length of hospital stay, and 90-day recovery metrics. See figure 1 for the participant pathway. A mechanistic substudy (n=150) will investigate inflammatory and immune profiles to explore underlying biological drivers of cardiac susceptibility to stress, these tests will utilise the blood taken for biobanking on days 1, 3, and 5. A further substudy (n=150) will assess if changes in high sensitivity troponin (hs-cTnI levels) measured before and 2 hours after CPET, are associated with the incidence of MINS. An exploratory aim of the project will be to review if there is an association between pre- and post-operative wearable signals (such as activity and heart rate) and MINS. See figure 2 for the conceptual framework of the study.

The data from samples from the MIMICS study will power four interconnected work packages:

WP1 - Immune / inflammatory predictors of MINS (n=150 sub-cohort serum samples)

WP2 - Machine learning integration for MINS prediction

WP3 - Cellular mechanisms and preclinical validation (n=150 sub-cohort serum samples)

WP4 - Targeted proteomic analysis of troponin fragmentation

Through the findings of POM-MIMIC the study investigators hope to redefine understanding of MINS by identifying endotypes. This could lead to immediate clinical benefits by enhancing preoperative risk models through integration of CPET, imaging, and blood testing. These are feasible non-invasive tests that could be rapidly adopted into standard preoperative assessments. This study has translational value as once endotype is categorised, targeted therapies which have been proven to work (such as prehabilitation for metabolic inflexibility) can be employed to reduce perioperative complications and improve outcomes. On a broader scale, this work may inform policy on perioperative cardiac care and guide future clinical trials.

Interventions

  • Other Pre-operative Metabolic Inflexibility
    Pre-operative metabolic inflexibility will be assessed as an observational exposure using data from routine pre-operative cardiopulmonary exercise testing (CPET). CPET-derived measures of substrate utilisation, including fat and carbohydrate oxidation, will be used to evaluate the participant's ability to switch between energy sources during physiological stress. Additional blood-based metabolic, immune, and cardiac biomarker analyses may be used to further characterise metabolic phenotype. No t

Primary outcome measures

  • Development of Myocardial Injury after Non-Cardiac Surgery [Time frame: From surgery to 72 hours post surgery]
Secondary outcome measures (4)
  • Clavien-Dindo Complication Grade [Time frame: From surgery to 30 days after surgery]
  • Post-Operative Morbidity Survey (POMS) [Time frame: Postoperative day 7]
  • Length of Hospital Stay [Time frame: From surgery up to hospital discharge, an expected average of 7 days after surgery]
  • Days Alive and Out of Hospital at 90 Days [Time frame: From surgery to 90 days after surgery]

Eligibility criteria

Inclusion criteria

  • Adults aged 18 or over
  • Scheduled for major elective abdominal cancer surgery with planned overnight admission
  • Scheduled for pre-operative CPET
  • Able to provide written informed consent

Exclusion criteria

  • Less than 18 years old
  • Emergency surgery
  • Unable or unwilling to undergo CPET
  • Pregnancy
  • Active sepsis
  • End-stage organ failure (e.g. on dialysis)
  • Participants without the mental capacity to consent
  • Diagnosis of Type 1 Myocardial Infarction meeting the 4th Universal Definition criteria during the immediate pre-operative period. (Note: Added based on MINS definition context)

Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.

Healthy volunteers: No

Study design

Observational model
Cohort

Study locations

Center list to be confirmed — check the primary protocol.

Identifiers

NCT: NCT07694453 · 200495 · CC-I23-213-CIPHER-2 · 363389

Primary sources (government registries)

View this study on ClinicalTrials.gov ↗