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1.
Circulation ; 147(7): 532-545, 2023 02 14.
Article in English | MEDLINE | ID: mdl-36342348

ABSTRACT

BACKGROUND: Breast cancer survivors treated with anthracycline-based chemotherapy (AC) have increased risk of functional limitation and cardiac dysfunction. We conducted a 12-month randomized controlled trial in 104 patients with early-stage breast cancer scheduled for AC to determine whether 12 months of exercise training (ExT) could attenuate functional disability (primary end point), improve cardiorespiratory fitness (VO2peak), and prevent cardiac dysfunction. METHODS: Women 40 to 75 years of age with stage I to III breast cancer scheduled for AC were randomized to 3 to 4 days per week aerobic and resistance ExT for 12 months (n=52) or usual care (UC; n=52). Functional measures were performed at baseline, at 4 weeks after AC (4 months), and at 12 months, comprising: (1) cardiopulmonary exercise testing to quantify VO2peak and functional disability (VO2peak ≤18.0 mL·kg-1·min-1); (2) cardiac reserve (response from rest to peak exercise), quantified with exercise cardiac magnetic resonance measures to determine changes in left and right ventricular ejection fraction, cardiac output, and stroke volume; (3) standard-of-care echocardiography-derived resting left ventricular ejection fraction and global longitudinal strain; and (4) biochemistry (troponin and BNP [B-type natriuretic peptide]). RESULTS: Among 104 participants randomized, greater study attrition was observed among UC participants (P=0.031), with 93 women assessed at 4 months (ExT, n=49; UC, n=44) and 87 women assessed at 12 months (ExT, n=49; UC, n=38). ExT attenuated functional disability at 4 months (odds ratio, 0.32 [95% CI, 0.11-0.94]; P=0.03) but not at 12 months (odds ratio, 0.27 [95% CI, 0.06-1.12]; P=0.07). In a per-protocol analysis, functional disability was prevented entirely at 12 months among participants adherent to ExT (ExT, 0% versus UC, 20%; P=0.005). Compared with UC at 12 months, ExT was associated with a net 3.5-mL·kg-1·min-1 improvement in VO2peak that coincided with greater cardiac output, stroke volume, and left and right ventricular ejection fraction reserve (P<0.001 for all). There was no effect of ExT on resting measures of left ventricular function. Postchemotherapy troponin increased less in ExT than in UC (8-fold versus 16-fold increase; P=0.002). There were no changes in BNP in either group. CONCLUSIONS: In women with early-stage breast cancer undergoing AC, 12 months of ExT did not attenuate functional disability, but provided large, clinically meaningful benefits on VO2peak and cardiac reserve. REGISTRATION: URL: https://www.anzctr.org.au/; Unique identifier: ACTRN12617001408370.


Subject(s)
Breast Neoplasms , Heart Diseases , Humans , Female , Infant, Newborn , Stroke Volume , Anthracyclines/adverse effects , Ventricular Function, Left , European Union , Cardiotoxicity/prevention & control , Cardiotoxicity/etiology , United Kingdom , Ventricular Function, Right , Heart Diseases/diagnostic imaging , Heart Diseases/prevention & control , Antibiotics, Antineoplastic/pharmacology , Exercise , Breast Neoplasms/drug therapy , Breast Neoplasms/pathology , Troponin
2.
Am J Physiol Heart Circ Physiol ; 326(5): H1269-H1278, 2024 05 01.
Article in English | MEDLINE | ID: mdl-38457351

ABSTRACT

Increased left atrial (LA) size and reduced LA function have been associated with heart failure and atrial fibrillation (AF) in at-risk populations. However, atrial remodeling has also been associated with exercise training and the relationship between fitness, LA size, and function has not been defined across the fitness spectrum. In a cross-sectional study of 559 ostensibly healthy participants, comprising 304 males (mean age, 46 ± 20 yr) and 255 females (mean age, 47 ± 15 yr), we sought to define the relationship between cardiorespiratory fitness (CRF), LA size, and function. We also aimed to interrogate sex differences in atrial factors influencing CRF. Echocardiographic measures included biplane measures of LA volumes indexed to body surface area (LAVi) and atrial deformation using two-dimensional speckle tracking. CRF was measured as peak oxygen consumption (V̇o2peak) during cardiopulmonary exercise testing (CPET). Using multivariable regression, age, sex, weight, and LAVi (P < 0.001 for all) predicted V̇o2peak (P < 0.001, R2 = 0.66 for combined model). After accounting for these variables, heart rate reserve added strength to the model (P < 0.001, R2 = 0.74) but LA strain parameters did not predict V̇o2peak. These findings add important nuance to the perception that LA size is a marker of cardiac pathology. LA size should be considered in the context of fitness, and it is likely that the adverse prognostic associations of increased LA size may be confined to those with LA enlargement and low fitness.NEW & NOTEWORTHY Left atrial (LA) structure better predicts cardiorespiratory fitness (CRF) than LA function. LA function adds little statistical value to predictive models of peak oxygen uptake (V̇o2peak) in healthy individuals, suggesting limited discriminatory for CRF once LA size is factored. In the wider population of ostensibly healthy individuals, the association between increased LA volume and higher CRF provides an important counter to the association between atrial enlargement and heart failure symptoms in those with cardiac pathology.


Subject(s)
Atrial Function, Left , Atrial Remodeling , Cardiorespiratory Fitness , Heart Atria , Humans , Female , Male , Heart Atria/diagnostic imaging , Heart Atria/physiopathology , Middle Aged , Adult , Cross-Sectional Studies , Oxygen Consumption , Exercise Test , Echocardiography , Sex Factors , Aged , Heart Rate
3.
BMC Cancer ; 20(1): 655, 2020 Jul 14.
Article in English | MEDLINE | ID: mdl-32664946

ABSTRACT

BACKGROUND: Anthracycline chemotherapy (AC) is an efficacious (neo) adjuvant treatment for early-stage breast cancer (BCa), but is associated with an increased risk of cardiac dysfunction and functional disability. Observations suggest that regular exercise may be a useful therapy for the prevention of cardiovascular morbidity but it is yet to be interrogated in a large randomised trial. The primary aims of this study are to: 1) determine if 12-months of ET commenced at the onset of AC can reduce the proportion of BCa patients with functional disability (peak VO2, < 18 ml/kg/min), and 2) compare current standard-of-care for detecting cardiac dysfunction (resting left-ventricular ejection fraction assessed from 3-dimensional echocardiography) to measures of cardiac reserve (peak exercise cardiac output assessed from exercise cardiac magnetic resonance imaging) for predicting the development of functional disability 12-months following AC. Secondary aims are to assess the effects of ET on VO2peak, left ventricular morphology, vascular stiffness, cardiac biomarkers, body composition, bone mineral density, muscle strength, physical function, habitual physical activity, cognitive function, and multidimensional quality of life. METHODS: One hundred women with early-stage BCa (40-75 years) scheduled for AC will be randomized to 12-months of structured exercise training (n = 50) or a usual care control group (n = 50). Participants will be assessed at baseline, 4-weeks following completion of AC (4-months) and at 12-months for all measures. DISCUSSION: Women diagnosed with early-stage BCa have increased cardiac mortality. More sensitive strategies for diagnosing and preventing AC-induced cardiovascular impairment are critical for reducing cardiovascular morbidity and improving long-term health outcomes in BCa survivors. TRIAL REGISTRATION: Australia & New Zealand Clinical Trials Registry (ANZCTR), ID: 12617001408370 . Registered on 5th of October 2017.


Subject(s)
Anthracyclines/adverse effects , Breast Neoplasms/drug therapy , Cancer Survivors/statistics & numerical data , Cardiotoxicity/therapy , Cardiovascular Diseases/prevention & control , Exercise Therapy/methods , Adult , Aged , Breast Neoplasms/pathology , Cardiotoxicity/diagnosis , Cardiotoxicity/etiology , Cardiovascular Diseases/chemically induced , Cardiovascular Diseases/diagnosis , Female , Follow-Up Studies , Humans , Middle Aged , Prognosis , Randomized Controlled Trials as Topic
4.
J Cardiopulm Rehabil Prev ; 44(1): 5-14, 2024 Jan 01.
Article in English | MEDLINE | ID: mdl-38032257

ABSTRACT

PURPOSE: Improvements in diagnosis and treatment mean that the long-term health of breast cancer survivors (BCS) is increasingly dictated by cardiovascular comorbidities. This is partly a consequence of exposure to cardiotoxic therapies, which result in cardiac dysfunction and decreased cardiorespiratory fitness (CRF). Exercise training (ExT) is a key therapeutic strategy for secondary prevention and increasing CRF in adults with established cardiovascular disease. Exercise-based cardio-oncology rehabilitation (CORE) has been proposed as an emerging strategy to address CRF and cardiac impairment in BCS. This review aims to (1) provide an overview of the impact of breast cancer therapy on CRF; (2) provide an up-to-date summary of the effects of ExT on CRF and cardiac function in BCS undergoing cardiotoxic therapy; and (3) discuss how traditional ExT approaches can be adapted for BCS undergoing therapy. REVIEW METHODS: A literature review was performed based on an intensive literature search for systematic reviews and meta-analyses, randomized and non-randomized controlled trials and single-arm trials investigating the impact of exercise training or cardiac rehabilitation on CRF and/or cardiac function in BCS who are undergoing or have completed cardiotoxic cancer therapy. SUMMARY: Overall, current evidence suggests that ExT induces clinically meaningful benefits for CRF in BCS during and after therapy. There is also emerging evidence that ExT can improve peak exercise measures of cardiac function; however, there is a need for further research to understand how to adapt these effective ExT approaches into clinical CORE-based settings.


Subject(s)
Breast Neoplasms , Cancer Survivors , Cardiorespiratory Fitness , Adult , Humans , Female , Systematic Reviews as Topic , Exercise , Exercise Therapy
5.
J Appl Physiol (1985) ; 136(6): 1293-1302, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38482572

ABSTRACT

This systematic review and meta-analysis examined the physiological mechanisms responsible for lower peak exercise leg oxygen uptake (V̇o2) in patients with chronic disease. Studies measuring peak leg V̇o2 (primary outcome) and its physiological determinants during large (cycle) or small muscle mass exercise (single-leg knee extension, SLKE) in patients with chronic disease were included in this meta-analysis. Pooled estimates for each outcome were reported as a weighted mean difference (WMD) between chronic disease and controls. We included 10 studies that measured peak leg V̇o2 in patients with chronic disease (n = 109, mean age: 45 yr; encompassing chronic obstructive pulmonary disease, COPD, heart failure with reduced ejection fraction, HFrEF, or chronic renal failure, RF) and age-matched controls (n = 88). In pooled analysis, peak leg V̇o2 (WMD; -0.23 L/min, 95% CI: -0.32 to -0.13), leg oxygen (O2) delivery (WMD: -0.27 L/min, 95% CI: -0.37 to -0.17), and muscle O2 diffusive conductance (WMD: -5.2 mL/min/mmHg, 95% CI: -7.1 to -3.2) were all significantly lower during cycle and SLKE exercise in chronic disease versus controls. These results highlight that during large and small muscle mass exercise in patients with COPD, HFrEF, or RF, there is no single factor causing peak V̇o2 limitations. Specifically, the lower peak V̇o2 in these pathologies is due to not only the expected impairments in convective O2 delivery but also impairments in muscle oxygen diffusive transport from capillary to mitochondria. Whether impaired muscle O2 transport is caused solely by inactivity or additional muscle pathology remains in question.NEW & NOTEWORTHY Peripheral (skeletal muscle and vasculature) factors contribute significantly to reduced exercise capacity during both large and small muscle mass exercise in chronic diseases such as COPD, HFrEF, or RF and should be important targets of therapy in addition to the primary organs (lungs, heart, and kidneys) affected by disease.


Subject(s)
Leg , Muscle, Skeletal , Oxygen Consumption , Humans , Oxygen Consumption/physiology , Leg/blood supply , Muscle, Skeletal/metabolism , Muscle, Skeletal/physiopathology , Chronic Disease , Exercise/physiology , Pulmonary Disease, Chronic Obstructive/physiopathology , Pulmonary Disease, Chronic Obstructive/metabolism , Oxygen/metabolism , Heart Failure/physiopathology , Heart Failure/metabolism
6.
Physiol Rep ; 12(6): e15979, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38490814

ABSTRACT

Postural orthostatic tachycardia syndrome (POTS) is characterized by an excessive heart rate (HR) response upon standing and symptoms indicative of inadequate cerebral perfusion. We tested the hypothesis that during lower body negative pressure (LBNP), individuals with POTS would have larger decreases in cardiac and cerebrovascular function measured using magnetic resonance (MR) imaging. Eleven patients with POTS and 10 healthy controls were studied at rest and during 20 min of -25 mmHg LBNP. Biventricular volumes, stroke volume (SV), cardiac output (Qc), and HR were determined by cardiac MR. Cerebral oxygen uptake (VO2 ) in the superior sagittal sinus was calculated from cerebral blood flow (CBF; MR phase contrast), venous O2 saturation (SvO2 ; susceptometry-based oximetry), and arterial O2 saturation (pulse oximeter). Regional cerebral perfusion was determined using arterial spin labelling. HR increased in response to LBNP (p < 0.001) with no group differences (HC: +9 ± 8 bpm; POTS: +13 ± 11 bpm; p = 0.35). Biventricular volumes, SV, and Qc decreased during LBNP (p < 0.001). CBF and SvO2 decreased with LBNP (p = 0.01 and 0.03, respectively) but not cerebral VO2 (effect of LBNP: p = 0.28; HC: -0.2 ± 3.7 mL/min; POTS: +1.1 ± 2.0 mL/min; p = 0.33 between groups). Regional cerebral perfusion decreased during LBNP (p < 0.001) but was not different between groups. These data suggest patients with POTS have preserved cardiac and cerebrovascular function.


Subject(s)
Postural Orthostatic Tachycardia Syndrome , Humans , Postural Orthostatic Tachycardia Syndrome/diagnostic imaging , Lower Body Negative Pressure , Cardiac Output/physiology , Cerebrovascular Circulation/physiology , Heart Rate/physiology , Blood Pressure/physiology
7.
J Appl Physiol (1985) ; 137(3): 461-472, 2024 Sep 01.
Article in English | MEDLINE | ID: mdl-38935800

ABSTRACT

In a 77-year-old former world-record-holding male marathoner (2:08:33.6), this study sought to investigate the impact of lifelong intensive endurance exercise on cardiac structure, function, and the trajectory of functional capacity (determined by maximal oxygen consumption, V̇o2max) throughout the adult lifespan. As a competitive runner, our athlete (DC) reported performing up to 150-300 miles/wk of moderate-to-vigorous exercise and sustained 10-15 h/wk of endurance exercise after retirement from competition. DC underwent maximal cardiopulmonary exercise testing in 1970 (aged 27 yr), 1991 (aged 49 yr), and 2020 (aged 77 yr) to determine V̇o2max. At his evaluation in 2020, DC also underwent comprehensive cardiac assessments including resting echocardiography, and resting and exercise cardiac magnetic resonance to quantify cardiac structure and function at rest and during peak supine exercise. DC's V̇o2max showed minimal change from 27 yr (69.7 mL/kg/min) to 49 yr (68.1 mL/kg/min), although it eventually declined by 36% by the age of 77 yr (43.6 mL/kg/min). DC's V̇o2max at 77 yr, was equivalent to the 50th percentile for healthy 20- to 29-yr-old males and 2.4 times the requirement for maintaining functional independence. This was partly due to marked ventricular dilatation (left-ventricular end-diastolic volume: 273 mL), which facilitates a large peak supine exercise stroke volume (200 mL) and cardiac output (22.2 L/min). However, at the age of 78 yr, DC developed palpitations and fatigue and was found to be in atrial fibrillation requiring ablation procedures to revert his heart to sinus rhythm. Overall, this life study of a world champion marathon runner exemplifies the substantial benefits and potential side effects of many decades of intense endurance exercise.NEW & NOTEWORTHY This life study of a 77-yr-old former world champion marathon runner exemplifies the impact of lifelong high-volume endurance exercise on functional capacity (V̇o2max equivalent to a 20- to 29-yr-old), partly due to extreme ventricular remodeling that facilitates a large cardiac output during exercise despite reduced maximal heart rate. Although it is possible that this extreme remodeling may contribute to developing atrial fibrillation, the net benefits of extreme exercise throughout this athlete's lifespan favor increased health span and expected longevity.


Subject(s)
Marathon Running , Oxygen Consumption , Physical Endurance , Ventricular Remodeling , Aged , Humans , Male , Athletes , Exercise/physiology , Exercise Test/methods , Heart/physiology , Marathon Running/physiology , Oxygen Consumption/physiology , Physical Endurance/physiology , Running/physiology , Ventricular Remodeling/physiology
8.
JACC CardioOncol ; 6(1): 33-37, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38510287

ABSTRACT

•Exercise intolerance is common among breast cancer survivors.•Exercise intolerance in breast cancer survivors is related to cardiac, vascular, and skeletal muscle impairments.•Holistic rehabilitation or pharmacological therapies are needed to address these impairments.

9.
Eur J Prev Cardiol ; 2024 Aug 08.
Article in English | MEDLINE | ID: mdl-39116385

ABSTRACT

AIM: Blood pressure (BP) responses to exercise are frequently measured, with the concern that greater increases are a marker of disease. We sought to characterize the normal exercise BP response in healthy adults and its relationships with age, sex, and fitness. METHODS: 589 participants (median age 46 [IQR 24-56] years, 81% male) underwent cardiopulmonary exercise testing with repeated, automated BP measures. An exaggerated maximal systolic BP (SBPmax) was defined from current guidelines as ≥210 mmHg in males and ≥190 mmHg in females. Individual linear regression analyses defined the relationship between BP and workload (SBP/W-slope and DBP/W-slope). Participants with or without an exaggerated SBPmax and above or below median SBP/W-slope were compared. RESULTS: An exaggerated SBPmax was found in 51% of males and 64% of females and was more prevalent in endurance-trained athletes (males 58%, females 72%, p<0.001). The mean SBP/W-slope was lower in males (0.24±0.10 mmHg/W) than females (0.27±0.12 mmHg/W), p=0.031. In both sexes, peak oxygen uptake (VO2peak) was inversely correlated with SBP/W-slope (p<0.01). Those with an exaggerated SBPmax and below-median SBP/W-slope were 10 years younger and had a 20% higher VO2peak, on average (p<0.001). A non-exaggerated SBPmax and above-median SBP/W-slope was observed in older individuals with the lowest VO2peak. CONCLUSION: In a large cohort of healthy individuals, an exaggerated SBPmax was common and associated with higher fitness. In contrast, higher SBP indexed to workload was associated with older age, lower fitness, and female sex. Thus, sex, age and fitness should be considered when evaluating BP response to exercise.


We evaluated the predictors of blood pressure responses to exercise in 589 healthy individuals. We showed that there is a strong, positive relationship between the increase in systolic blood pressure during exercise with cardiorespiratory fitness and exercise workload.During intensive exercise, high maximal systolic blood pressures are more prevalent in young fit individuals than older, less fit individuals. Systolic blood pressure measures are higher in females than males when indexed to workload.Previous diagnostic cut-offs for peak exercise blood pressure are frequently exceeded in healthy individuals and are likely to have poor disease specificity. Workload-indexed exercise blood pressure is therefore a more informative metric than peak exercise blood pressure.

10.
JACC CardioOncol ; 6(4): 496-513, 2024 Aug.
Article in English | MEDLINE | ID: mdl-39239327

ABSTRACT

The landscape of cancer therapeutics is continually evolving, with successes in improved survivorship and reduced disease progression for many patients with cancer. Improved cancer outcomes expose competing comorbidities, some of which may be exacerbated by cancer therapies. The leading cause of disability and death for many early-stage cancers is cardiovascular disease (CVD), which is often attributed to direct or indirect cardiac injury from cancer therapy. In this review, the authors propose that toxicities related to conventional and novel cancer therapeutics should be considered beyond the heart. The authors provide a framework using the oxygen pathway to understand the impact of cancer treatment on peak oxygen uptake, a marker of integrative cardiopulmonary function and CVD risk. Peripheral toxicities and the impact on oxygen transport are discussed. Consideration for the broad effects of cancer therapies will improve the prediction and identification of cancer survivors at risk for CVD, functional disability, and premature mortality and those who would benefit from therapeutic intervention, ultimately improving patient outcomes.

11.
Can J Cardiol ; 39(11S): S368-S374, 2023 11.
Article in English | MEDLINE | ID: mdl-37480990

ABSTRACT

Heart transplantation (HTP) is a life-saving therapy for selected individuals with end-stage refractory heart failure. Despite improvements in quality of life and survival, HTP recipients' peak aerobic power (peak VO2) remains up to 50% lower than age-matched healthy control subjects owing to abnormal cardiovascular and skeletal muscle function. Currently, little is known regarding the effect of exercise training (ET) to improve peak VO2 after HTP. This brief review aims to summarise existing evidence regarding the role of ET on peak VO2 and its determinants, highlights the upper limits of endurance performance in highly trained HTP athletes, and identifies areas for future HTP exercise rehabilitation research.


Subject(s)
Heart Transplantation , Quality of Life , Humans , Exercise/physiology , Exercise Therapy , Muscle, Skeletal , Oxygen Consumption
12.
Can J Cardiol ; 39(11S): S315-S322, 2023 11.
Article in English | MEDLINE | ID: mdl-37758015

ABSTRACT

With significant improvements in the understanding of cancer biology, improved detection, and the use of novel adjuvant therapies, each year more Canadians are surviving a cancer diagnosis. Despite their effectiveness these therapies often result in short- and long-term deleterious effects to major organ systems, particularly cardiovascular. Cardio-oncology is an emerging field of study with the aim to improve cardiovascular health across the oncology disease spectrum. International guidelines distinguish "cardio-oncology" rehabilitation from "cancer" rehabilitation, but how this is navigated is currently unknown. How such care should be assessed and integrated acutely or in the longer term remains unknown. Accordingly, the aim of this article is to consider the cancer patient's needs beyond the scope of cardio-oncology rehabilitation to holistically integrate cancer rehabilitation across the disease trajectory.


Subject(s)
Cardiovascular Diseases , Neoplasms , Humans , Canada , Neoplasms/complications , Neoplasms/therapy , Medical Oncology , Cardiovascular Diseases/therapy
13.
Can J Cardiol ; 39(11S): S323-S334, 2023 11.
Article in English | MEDLINE | ID: mdl-37574129

ABSTRACT

Exercise capacity is a spectrum that reflects an individual's functional capacity and the dynamic nature of cardiac remodelling along with respiratory and skeletal muscle systems. The relationship of increasing physical activity, increased cardiac mass and volumes, and improved cardiorespiratory fitness (CRF) is well established in the endurance athlete. However, less emphasis has been placed on the other end of the spectrum, which includes individuals with a more sedentary lifestyle and small hearts who are at increased risk of functional disability and poor clinical outcomes. Reduced CRF is an independent predictor of all-cause mortality and cardiovascular events determined by multiple inter-related exogenous and endogenous factors. In this review, we explore the relationship of physical activity, cardiac remodelling, and CRF across the exercise spectrum, emphasising the critical role of cardiac size in determining exercise capacity. In contrast to the large compliant left ventricle of the endurance athlete, an individual with a lifetime of physical inactivity is likely to have a small, stiff heart with reduced cardiac reserve. We propose that this might contribute to the development of heart failure with preserved ejection fraction in certain individuals, and is key to understanding the link between low CRF and increased risk of heart failure.


Subject(s)
Heart Diseases , Heart Failure , Humans , Stroke Volume/physiology , Heart Failure/diagnosis , Exercise Tolerance/physiology , Ventricular Remodeling , Athletes
14.
JACC Cardiovasc Imaging ; 16(6): 768-778, 2023 06.
Article in English | MEDLINE | ID: mdl-36881424

ABSTRACT

BACKGROUND: Cardiorespiratory fitness (CRF) is associated with functional impairment and cardiac events, particularly heart failure (HF). However, the factors predisposing women to low CRF and HF remain unclear. OBJECTIVES: This study sought to evaluate the association between CRF and measures of ventricular size and function and to examine the potential mechanism linking these factors. METHODS: A total of 185 healthy women aged >30 years (51 ± 9 years) underwent assessment of CRF (peak volume of oxygen uptake [Vo2peak]) and biventricular volumes at rest and during exercise by using cardiac magnetic resonance (CMR). The relationships among Vo2peak, cardiac volumes, and echocardiographic measures of systolic and diastolic function were assessed using linear regression. The effect of cardiac size on cardiac reserve (change in cardiac function during exercise) was assessed by comparing quartiles of resting left ventricular end-diastolic volume (LVEDV). RESULTS: Vo2peak was strongly associated with resting measures of LVEDV and right ventricular end-diastolic volume (R2 = 0.58-0.63; P < 0.0001), but weakly associated with measures of resting left ventricular (LV) systolic and diastolic function (R2 = 0.01-0.06; P < 0.05). Increasing LVEDV quartiles were positively associated with cardiac reserve, with the smallest quartile showing the smallest reduction in LV end-systolic volume (quartile [Q]1: -4 mL vs Q4: -12 mL), smallest augmentation in LV stroke volume (Q1: +11 mL vs Q4: +20 mL) and cardiac output (Q1: +6.6 L/min vs Q4: +10.3 L/min) during exercise (interaction P < 0.001 for all). CONCLUSIONS: A small ventricle is strongly associated with low CRF because of the combined effect of a smaller resting stroke volume and an attenuated capacity to increase with exercise. The prognostic implications of low CRF in midlife highlight the need for further longitudinal studies to determine whether women with small ventricles are predisposed to functional impairment, exertional intolerance, and HF later in life.


Subject(s)
Heart Failure , Humans , Female , Predictive Value of Tests , Stroke Volume , Heart Failure/diagnostic imaging , Echocardiography , Longitudinal Studies , Exercise Test , Ventricular Function, Left
15.
Prog Cardiovasc Dis ; 74: 45-52, 2022.
Article in English | MEDLINE | ID: mdl-36279949

ABSTRACT

Reduced exercise tolerance and fatigue are hallmark features in both breast cancer (BC) and heart failure with preserved ejection fraction (HFpEF) and are associated with decreased physical function and quality of life. This brief review focuses on the mechanisms of exercise intolerance in women with BC across the survivorship continuum and highlights how these disturbances within the oxygen transport cascade are similar to that of HFpEF patients. Specifically, the role that impaired cardiac, peripheral vascular and skeletal muscle function play in limiting peak oxygen uptake are discussed. We propose that women with BC are at increased risk of developing HFpEF potentially due to the adverse effects of chemotherapy and concurrent adverse lifestyle behaviors on cardiovascular and skeletal muscle function.


Subject(s)
Breast Neoplasms , Heart Failure , Humans , Female , Heart Failure/diagnosis , Heart Failure/therapy , Heart Failure/metabolism , Stroke Volume/physiology , Oxygen/metabolism , Oxygen Consumption/physiology , Breast Neoplasms/therapy , Breast Neoplasms/metabolism , Quality of Life , Exercise Tolerance/physiology , Muscle, Skeletal/metabolism
16.
Med Sci Sports Exerc ; 53(10): 2054-2065, 2021 10 01.
Article in English | MEDLINE | ID: mdl-33867499

ABSTRACT

PURPOSE: Androgen deprivation therapy (ADT) for prostate cancer has multiple adverse effects on musculoskeletal health. This 12-month randomized controlled trial aimed to assess the effects of multicomponent exercise training combined with whey protein, calcium and vitamin D supplementation on bone mineral density (BMD), structure and strength, body composition, muscle strength, and physical function in ADT-treated men. METHODS: Seventy ADT-treated men were randomized to exercise plus supplementation (Ex + Suppl; n = 34) or usual care (control; n = 36). Ex + Suppl involved thrice weekly progressive resistance training plus weight-bearing impact exercise with daily multinutrient supplementation. Primary outcomes were DXA hip and spine areal BMD. Secondary outcomes included the following: tibia and radius pQCT volumetric BMD, bone structure and strength, DXA body composition, pQCT muscle and fat cross-sectional area and muscle density, and muscle strength and physical function. RESULTS: Sixty men (86%) completed the study. Mean exercise and supplement adherence were 56% and 77%, respectively. There were no effects of the intervention on bone or body composition outcomes. Ex + Suppl improved leg muscle strength (net difference, (95% confidence interval, or CI), 14.5% (-0.2 to 29.2); P = 0.007) and dynamic mobility (four-square-step test time, -9.3% (-17.3 to -1.3), P = 0.014) relative to controls. Per-protocol analysis of adherent participants (≥66% exercise, ≥80% supplement) showed Ex + Suppl preserved femoral neck aBMD (1.9% (0.1 to 3.8), P = 0.026) and improved total body lean mass (1.0 kg (-0.23 to 2.22), P = 0.044) relative to controls. CONCLUSIONS: Exercise training combined with multinutrient supplementation had a limited effect on ameliorating the adverse musculoskeletal consequences of ADT, likely related to the modest intervention adherence.


Subject(s)
Androgen Antagonists/adverse effects , Body Composition/drug effects , Bone Density/drug effects , Dietary Supplements , Exercise Therapy , Muscle Strength/drug effects , Prostatic Neoplasms/drug therapy , Aged , Biomarkers/blood , Calcium, Dietary/administration & dosage , Humans , Male , Patient Compliance , Prostatic Neoplasms/physiopathology , Vitamin D/administration & dosage , Whey Proteins/administration & dosage
17.
Med Sci Sports Exerc ; 51(8): 1573-1581, 2019 08.
Article in English | MEDLINE | ID: mdl-30829962

ABSTRACT

PURPOSE: Anthracycline chemotherapy (AC) is associated with acute reductions in cardiopulmonary fitness (V˙O2peak). We sought to determine whether changes in V˙O2peak and cardiac function persisted at 12 months post-AC completion, and whether changes in cardiac function explain the heightened long-term heart failure risk. METHODS: Women with breast cancer scheduled for AC (n = 28) who participated in a nonrandomized trial of exercise training (ET; n = 14) or usual care (UC; n = 14) during AC completed a follow-up evaluation 12 months post-AC completion (16 months from baseline). At baseline, 4 months, and 16 months, participants underwent a resting echocardiogram (left ventricular ejection fraction; global longitudinal strain), a blood sample (troponin; B-type natriuretic peptide), a cardiopulmonary exercise test, and cardiac MRI measures of stroke volume (SV), heart rate, and cardiac output (Qc) at rest and during intense exercise. RESULTS: Seventeen women (UC, n = 8; ET, n = 9) completed evaluation at baseline, 4 months, and 16 months. At 4 months, AC was associated with 18% and 6% reductions in V˙O2peak in the UC and ET groups, respectively, which persisted at 16 months (UC, -16%; ET, -7%) and was not attenuated by ET (interaction, P = 0.10). Exercise Qc was lower at 16 months compared with baseline and 4 months (P < 0.001), which was due to a blunted augmentation of SV during exercise (P = 0.032; a 14% reduction in peak SV), with no changes in heart rate response. There was a small reduction in resting left ventricular ejection fraction (baseline to 4 months) and global longitudinal strain (between 4 and 16 months) and an increase in troponin (baseline to 4 months), but only exercise Qc was associated with V˙O2peak (R = 0.47, P < 0.01). CONCLUSION: Marked reductions in V˙O2peak persisted 12 months after anthracycline-based chemotherapy, which was associated with impaired exercise cardiac function. CLINICAL TRIAL REGISTRATION: ACTRN12616001602415.


Subject(s)
Anthracyclines/adverse effects , Antineoplastic Agents/adverse effects , Breast Neoplasms/drug therapy , Breast Neoplasms/physiopathology , Cardiorespiratory Fitness , Cardiotoxicity/etiology , Exercise Therapy , Aged , Anthracyclines/therapeutic use , Antineoplastic Agents/therapeutic use , Cardiac Output/drug effects , Echocardiography , Exercise Tolerance , Female , Heart Rate/drug effects , Hemoglobins/metabolism , Humans , Magnetic Resonance Imaging , Middle Aged , Natriuretic Peptide, Brain/blood , Oxygen Consumption/drug effects , Risk Factors , Stroke Volume/drug effects , Troponin I/blood
19.
Endocr Relat Cancer ; 24(3): R35-R48, 2017 03.
Article in English | MEDLINE | ID: mdl-28062546

ABSTRACT

Androgen deprivation therapy (ADT) is now considered a mainstay in the treatment of metastatic and locally advanced prostate cancer (PCa). Despite well-established benefits of ADT in relation to overall survival, this treatment has been associated with a number of adverse effects, particularly with regard to key cardiometabolic risk factors including the development of insulin resistance, dyslipidemia and increases in total and regional fat mass. In non-ADT populations, increased levels of visceral adipose tissue (VAT) are thought to be a key mediator of the increased cardiometabolic risk associated with weight gain, but this has received limited attention in men treated with ADT. VAT is best assessed using tools such as computed tomography or magnetic resonance imaging; however, these tools are not readily accessible for the majority of researchers or clinicians. Recent advances allow for a method of estimating VAT using a whole-body dual-energy X-ray absorptiometry (DXA) scan that shows promise as a practical tool for researchers to evaluate changes in body fat distribution during ADT. The aim of this narrative review is to (1) review the available evidence with regard to the relationship between ADT and cardiometabolic risk; (2) discuss the role of body fat distribution on cardiometabolic risk in non-ADT populations, with a particular emphasis on the importance of visceral adiposity; (3) examine the potential influence of ADT on body fat distribution and visceral adiposity and (4) provide an overview of current tools used to measure changes in body fat distribution in men treated with ADT, highlighting the potential utility of a recently developed DXA-derived measure of VAT.


Subject(s)
Androgen Antagonists/therapeutic use , Body Fat Distribution , Prostatic Neoplasms/drug therapy , Absorptiometry, Photon , Androgen Antagonists/adverse effects , Cardiovascular Diseases/etiology , Humans , Intra-Abdominal Fat/diagnostic imaging , Male , Metabolic Diseases/etiology , Prostatic Neoplasms/diagnostic imaging , Risk
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