Sign in to use this feature.

Years

Between: -

Subjects

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Journals

Article Types

Countries / Regions

Search Results (23)

Search Parameters:
Keywords = obstructive HCM management

Order results
Result details
Results per page
Select all
Export citation of selected articles as:
20 pages, 298 KB  
Review
Cardiac Myosin Inhibitors (CMIs) and Surgical Referral in Patients with Hypertrophic Cardiomyopathy
by Benedetto Ferraresi, Antonio Nenna, Mohamad Jawabra, Diletta Corrado, Andrea Faggiano, Stefano Carugo, Carmelo Dominici, Giovanni Casali, Massimo Chello and Mario Lusini
J. Cardiovasc. Dev. Dis. 2026, 13(5), 187; https://doi.org/10.3390/jcdd13050187 - 29 Apr 2026
Viewed by 1551
Abstract
The management of obstructive hypertrophic cardiomyopathy (HCM) has been transformed by the advent of cardiac myosin inhibitors (CMIs), such as mavacamten and aficamten. Unlike traditional pharmacotherapy, which primarily addresses symptoms, CMIs target the underlying mechanism of sarcomeric hypercontractility, offering significant reductions in left [...] Read more.
The management of obstructive hypertrophic cardiomyopathy (HCM) has been transformed by the advent of cardiac myosin inhibitors (CMIs), such as mavacamten and aficamten. Unlike traditional pharmacotherapy, which primarily addresses symptoms, CMIs target the underlying mechanism of sarcomeric hypercontractility, offering significant reductions in left ventricular outflow tract (LVOT) gradients and improved functional capacity. This review evaluates the evolving role of CMIs in refining surgical candidate selection and postoperative care. Clinically, CMIs function as an in vivo “biological test” to distinguish between dynamic, functional obstruction—often manageable with medication—and fixed anatomical obstruction driven by complex septal or mitral substrates. While clinical trials demonstrate that CMIs can delay or prevent the need for SRT in a significant proportion of patients, surgery remains the definitive solution for those with dominant structural anomalies or drug intolerance. Consequently, the therapeutic paradigm is shifting from a binary “drugs or surgery” approach to a synergistic model. In this framework, CMIs optimize the identification of patients truly requiring structural myectomy while serving as a valuable adjunct for managing residual hypercontractility, ultimately facilitating a personalized, multidisciplinary approach to HCM treatment. Full article
(This article belongs to the Special Issue Hypertrophic Cardiomyopathy: Genetics, Mechanisms and Therapies)
►▼ Show Figures

Graphical abstract

12 pages, 5973 KB  
Case Report
Combined Fixed and Dynamic Left Ventricular Outflow Tract Obstruction in Hypertrophic Cardiomyopathy Due to a Coexisting Subaortic Membrane: A Case Report
by Katherine Zambrano-Cevallos, Silvia Zurita-Fuentes, Liliana Cardenas, Luis Miguel Guerrero, Alejandra García, Juan Jaramillo-Merino, Sofía Gavilánez-Zambrano, Marlon Rojas-Cadena and Juan S. Izquierdo-Condoy
J. Clin. Med. 2026, 15(8), 3115; https://doi.org/10.3390/jcm15083115 - 19 Apr 2026
Cited by 2 | Viewed by 1242
Abstract
Introduction: Hypertrophic cardiomyopathy (HCM) is a common myocardial disease worldwide and is associated with heart failure symptoms and sudden cardiac death. In a subset of patients, it may produce dynamic left ventricular outflow tract obstruction (LVOTO) and systolic anterior motion (SAM)-related mitral valve [...] Read more.
Introduction: Hypertrophic cardiomyopathy (HCM) is a common myocardial disease worldwide and is associated with heart failure symptoms and sudden cardiac death. In a subset of patients, it may produce dynamic left ventricular outflow tract obstruction (LVOTO) and systolic anterior motion (SAM)-related mitral valve dysfunction through drag forces and altered mitral–septal geometry. In contrast, subaortic stenosis caused by a subaortic membrane is an uncommon congenital lesion that may lead to fixed subvalvular LVOTO in adulthood. The coexistence of these entities is rare and can substantially complicate diagnosis and management. Case presentation: A 51-year-old woman with HCM, paroxysmal atrial fibrillation, and heart failure presented with acute decompensation and cardiogenic shock. After initial hemodynamic stabilization and cardioversion for atrial fibrillation with rapid ventricular response, multimodality imaging with transthoracic and transesophageal echocardiography, coronary computed tomography angiography, and cardiac magnetic resonance demonstrated dual LVOTO, with a dynamic component related to HCM/SAM physiology and a fixed component caused by an elongated subaortic membrane, accompanied by severe SAM-related mitral regurgitation. Echocardiography showed a resting peak LVOT gradient of 49 mmHg, increasing to 85 mmHg with the Valsalva maneuver. After exclusion of obstructive coronary artery disease and evaluation for selected phenocopies, the patient underwent septal myectomy, subaortic membrane resection, and adjunctive mitral valve plication. Early postoperative echocardiography showed reduction in the maximum provoked LVOT gradient to 38 mmHg and improvement of mitral regurgitation from severe to mild. At 3-month follow-up, she remained in sinus rhythm, improved to New York Heart Association functional class II, and had no documented readmissions for heart failure. Conclusions: Combined fixed and dynamic LVOTO due to concomitant subaortic membrane and HCM is exceedingly rare. Accurate diagnosis requires a high index of suspicion and a multimodality imaging strategy to define the obstructive mechanisms and support mechanism-based surgical management and avoid incomplete treatment when a coexisting fixed lesion is present. Full article
►▼ Show Figures

Figure 1

10 pages, 2063 KB  
Case Report
MELAS Syndrome Presenting with Hypertrophic Cardiomyopathy and Advanced Heart Failure: A Multisystem Diagnostic Challenge
by Jozef Dodulík, Marie Lazárová, Eva Kapsová and Jan Václavík
J. Clin. Med. 2026, 15(3), 1109; https://doi.org/10.3390/jcm15031109 - 30 Jan 2026
Cited by 1 | Viewed by 1534
Abstract
Background: Mitochondrial encephalomyopathy with lactic acidosis and stroke-like episodes (MELAS) is a rare multisystem disorder caused by mitochondrial DNA mutations, most commonly the m.3243A>G variant in the MT-TL1 gene. Although neurological manifestations predominate, cardiac involvement, including hypertrophic cardiomyopathy (HCM), heart failure (HF), and [...] Read more.
Background: Mitochondrial encephalomyopathy with lactic acidosis and stroke-like episodes (MELAS) is a rare multisystem disorder caused by mitochondrial DNA mutations, most commonly the m.3243A>G variant in the MT-TL1 gene. Although neurological manifestations predominate, cardiac involvement, including hypertrophic cardiomyopathy (HCM), heart failure (HF), and arrhythmias, may be the initial or dominant presentation and often remains underrecognized. Case Presentation: We report a 43-year-old man with chronic kidney disease (CKD) and long-standing bilateral sensorineural hearing loss who presented with progressive dyspnea and acute decompensated HF. Transthoracic echocardiography revealed severe left ventricular (LV) systolic dysfunction with diffuse hypertrophy. Cardiac magnetic resonance showed non-ischemic cardiomyopathy with diffuse late gadolinium enhancement and increased LV wall thickness. Coronary angiography excluded obstructive disease. Initial endomyocardial biopsy performed at a referring center showed nonspecific hypertrophy and fibrosis without diagnostic features. Given the multisystem involvement, a metabolic or genetic etiology was suspected. Whole-exome sequencing identified the pathogenic m.3243A>G MT-TL1 mutation, confirming MELAS syndrome. The patient was managed with guideline-directed HF therapy, received an implantable cardioverter-defibrillator for primary prevention, and was subsequently evaluated for heart transplantation. Conclusions: This case highlights the importance of considering mitochondrial disorders in the differential diagnosis of unexplained cardiomyopathy, particularly when cardiac dysfunction coexists with renal impairment and auditory deficits. Comprehensive multimodality evaluation and genetic testing are essential to establishing a unifying diagnosis and optimizing management. Full article
(This article belongs to the Special Issue Heart Failure: Challenges and Future Options)
►▼ Show Figures

Graphical abstract

10 pages, 650 KB  
Article
Sex-Specific Differences in Patients with Hypertrophic Cardiomyopathy: A Cohort Study from Vienna
by Christopher Mann, Rodi Tosun, Shehroz Masood, Theresa M. Dachs, Franz Duca, Christina Binder-Rodriguez, Christian Hengstenberg, Marianne Gwechenberger, Thomas A. Zelniker and Daniel Dalos
J. Pers. Med. 2026, 16(1), 56; https://doi.org/10.3390/jpm16010056 - 21 Jan 2026
Cited by 2 | Viewed by 1152
Abstract
Background: Hypertrophic cardiomyopathy (HCM) is the most common inherited cardiovascular disease and affects male patients more often than women. Prior studies, however, suggested that women are diagnosed later and at advanced stages of the disease, present with more pronounced symptoms, and experience [...] Read more.
Background: Hypertrophic cardiomyopathy (HCM) is the most common inherited cardiovascular disease and affects male patients more often than women. Prior studies, however, suggested that women are diagnosed later and at advanced stages of the disease, present with more pronounced symptoms, and experience worse outcomes. Objectives: To investigate sex-specific differences in clinical, laboratory, and comprehensive imaging characteristics in a contemporary cohort of HCM patients from a tertiary referral center in Austria. Methods: We retrospectively analyzed 321 HCM patients enrolled in a prospective registry (2018–2024). All patients underwent a comprehensive baseline evaluation, including medical history, laboratory assessment, transthoracic echocardiography, and cardiac magnetic resonance imaging. Results: At diagnosis, women were significantly older (62 vs. 53 years, p < 0.001) and presented with more advanced functional class (NYHA ≥ II: 80% vs. 49%, p < 0.001). Six-minute walking distance was lower and obstructive HCM was more prevalent in women (425 vs. 505 m, p < 0.001, and 55% vs. 32%, p < 0.001, respectively). Echocardiographic assessment revealed higher diastolic filling pressures (E/E′ 18 vs. 10, p < 0.001), larger indexed atrial volumes (29.5 vs. 26.6 mL/m2, p < 0.001), a higher left ventricular ejection fraction (70% vs. 62%, p < 0.001), and a larger indexed interventricular septal thickness in women (10.2 vs. 9.3 mm/m2, p = 0.004). Moreover, serum levels of NT-proBNP were significantly higher in women (760 vs. 338 pg/L, p < 0.001). Conclusions: Female patients with HCM were diagnosed at an older age, presented with more advanced symptoms, had higher rates of obstructive physiology, and a phenotype characterized by diastolic dysfunction and elevated biomarkers, closely resembling heart failure with preserved ejection fraction. Recognizing these sex-specific disparities is crucial in improving diagnostic awareness and individualized therapeutic management. Full article
(This article belongs to the Section Personalized Medical Care)
►▼ Show Figures

Figure 1

18 pages, 295 KB  
Review
Coexistence of Hypertrophic Cardiomyopathy and Arterial Hypertension: Current Insights and Future Directions
by Vasiliki Katsi, Konstantia Papadomarkaki, Konstantinos Manousiadis, Epameinondas Triantafyllou, Christos Fragoulis and Konstantinos Tsioufis
Diseases 2026, 14(1), 1; https://doi.org/10.3390/diseases14010001 - 22 Dec 2025
Viewed by 3283
Abstract
Background: Hypertrophic cardiomyopathy (HCM) is the most common inherited cardiac disease. Arterial hypertension represents the leading modifiable risk factor for cardiovascular morbidity and mortality globally. Their coexistence is frequent, affecting approximately 40–60% of adults with HCM, yet the implications of this overlap remain [...] Read more.
Background: Hypertrophic cardiomyopathy (HCM) is the most common inherited cardiac disease. Arterial hypertension represents the leading modifiable risk factor for cardiovascular morbidity and mortality globally. Their coexistence is frequent, affecting approximately 40–60% of adults with HCM, yet the implications of this overlap remain insufficiently investigated. Methods: We conducted a narrative review of the existing literature addressing the clinical profile and management strategies in patients with concomitant HCM and hypertension. Particular emphasis was placed on pharmacologic treatment and the role of emerging therapies for this population. Results: Patients with both conditions are generally older, with more cardiometabolic comorbidities and greater functional limitation than those with isolated HCM. Hypertension may confound diagnosis and is linked to a higher prevalence of atrial fibrillation and stroke. Its effect on ventricular arrhythmias, sudden cardiac death and mortality is less clear. Management is challenging, as vasodilatory antihypertensives can exacerbate left ventricular outflow tract obstruction. β-blockers and non-dihydropyridine calcium channel blockers are preferred, while novel agents such as myosin inhibitors and SGLT2 inhibitors show potential but require further study. Conclusions: The coexistence of HCM and hypertension is frequent but insufficiently studied, with major implications for diagnosis and treatment. Further research is essential to optimize management and outcomes. Full article
(This article belongs to the Special Issue Feature Papers in Section 'Cardiology' in 2024–2025)
25 pages, 932 KB  
Review
Mavacamten for Obstructive Hypertrophic Cardiomyopathy: Targeting Sarcomeric Hypercontractility with Demonstrated Long-Term Safety and Efficacy—A Narrative Review
by Ghaith K. Mansour, Ali F. Altebainawi, Ahmad W. Hajjar, Sabry Babiker H. Sayed, Fares A. Alazem and Muhammad Raihan Sajid
J. Clin. Med. 2025, 14(23), 8594; https://doi.org/10.3390/jcm14238594 - 4 Dec 2025
Cited by 1 | Viewed by 4021
Abstract
Hypertrophic cardiomyopathy (HCM) is the most prevalent hereditary cardiovascular disorder characterized by unexplained left ventricular hypertrophy, sarcomeric hypercontractility, and dynamic left ventricular outflow tract (LVOT) obstruction in approximately 70% of patients. Current therapies predominantly offer symptomatic relief through indirect modulation of cardiac function, [...] Read more.
Hypertrophic cardiomyopathy (HCM) is the most prevalent hereditary cardiovascular disorder characterized by unexplained left ventricular hypertrophy, sarcomeric hypercontractility, and dynamic left ventricular outflow tract (LVOT) obstruction in approximately 70% of patients. Current therapies predominantly offer symptomatic relief through indirect modulation of cardiac function, leaving the underlying molecular pathophysiology unaddressed. Mavacamten, a first-in-class, selective allosteric inhibitor of β-cardiac myosin ATPase, exemplifies a precision pharmacological approach by directly targeting the sarcomeric hypercontractility fundamental to obstructive HCM (oHCM). This review synthesizes extensive clinical and preclinical evidence delineating mavacamten’s mechanism of action, pharmacokinetics influenced by CYP2C19 genotype variability, and its demonstrated efficacy and long-term safety in improving functional capacity, symptom burden, and cardiac remodeling. Landmark trials, including EXPLORER-HCM and MAVERICK-HCM, underscore mavacamten’s ability to reduce LVOT gradients, enhance diastolic function, and lower cardiac biomarkers, heralding a paradigm shift from symptomatic management to disease-modifying therapy. Despite current knowledge gaps in long-term outcomes and diverse population responses, mavacamten establishes a critical foundation for molecularly targeted therapeutics in HCM and broader cardiomyopathies. Full article
(This article belongs to the Section Cardiovascular Medicine)
►▼ Show Figures

Figure 1

11 pages, 465 KB  
Review
Cellular and Molecular Mechanisms of Heart Failure and Sudden Cardiac Death in Hypertrophic Cardiomyopathy and Methods Used for Their Pathogenetic Correction
by Lev Kakturskiy, Yury Belov, Liudmila Mikhaleva, Andrey Lysenko, Zarina Gioeva, Natalia Tikhonova and Nikita Gutyrchik
Biomedicines 2025, 13(12), 2926; https://doi.org/10.3390/biomedicines13122926 - 28 Nov 2025
Cited by 1 | Viewed by 1537
Abstract
Background/Objectives: This paper provides a review of the literature data concerning the cellular and molecular mechanisms of heart failure and sudden cardiac death in hypertrophic cardiomyopathy (HCM), and explores approaches used for their pathogenetic correction. Methods: This study highlights genetically determined targets [...] Read more.
Background/Objectives: This paper provides a review of the literature data concerning the cellular and molecular mechanisms of heart failure and sudden cardiac death in hypertrophic cardiomyopathy (HCM), and explores approaches used for their pathogenetic correction. Methods: This study highlights genetically determined targets of primary damage to the cardiomyocyte ultra-structure—the actomyosin complex of sarcomeres and mitochondria. Results/Conclusions: Damage to these structures leads to heart failure and an increased risk of sudden cardiac death, manifesting against a background of phenotypic features such as cardiac remodeling, asymmetric hypertrophy, left ventricular outflow tract obstruction, myofiber disarray, and atrial fibrillation. Both invasive and non-invasive approaches for the pathogenetic management of these fatal complications are characterized. Full article
(This article belongs to the Section Cell Biology and Pathology)
►▼ Show Figures

Graphical abstract

14 pages, 364 KB  
Article
Integrating Cardiopulmonary Exercise Testing and Stress Echocardiography to Predict Clinical Outcomes in Hypertrophic Cardiomyopathy
by Geza Halasz, Paolo Ciacci, Raffaella Mistrulli, Guido Giacalone, Aurora Ferro, Giulio Francesco Romiti, Fiammetta Albi, Domenico Gabrielli and Federica Re
J. Clin. Med. 2025, 14(20), 7231; https://doi.org/10.3390/jcm14207231 - 14 Oct 2025
Cited by 2 | Viewed by 1558
Abstract
Background: Hypertrophic cardiomyopathy (HCM) is a heterogeneous myocardial disease in which conventional prognostic models, primarily focused on sudden cardiac death, often fail to identify patients at risk of clinically relevant events such as heart failure progression or rehospitalization. Cardiopulmonary exercise testing (CPET) quantifies [...] Read more.
Background: Hypertrophic cardiomyopathy (HCM) is a heterogeneous myocardial disease in which conventional prognostic models, primarily focused on sudden cardiac death, often fail to identify patients at risk of clinically relevant events such as heart failure progression or rehospitalization. Cardiopulmonary exercise testing (CPET) quantifies functional capacity, while stress echocardiography (SE) provides mechanistic insights into exercise-induced hemodynamic changes. Their combined application (CPET–SE) may enhance risk stratification in patients with HCM. Methods: In this retrospective study, 388 patients with obstructive and non-obstructive HCM (mean age 48 ± 15 years, 63.1% male) underwent baseline CPET–SE between 2010 and 2022 and were followed for a median of 7.4 years [IQR 4.3–10.2]. Echocardiographic parameters were assessed at rest and peak exercise, and CPET indices included peak oxygen consumption (pVO2), ventilatory efficiency, and anaerobic threshold. The primary outcome was a composite of heart failure hospitalization or progression to end-stage HCM. Results: Over a median follow-up of 7.4 years, 63 patients (16.2%) experienced an event of the primary outcome. Patients who developed a primary outcome had greater left atrial diameter (45.0 vs. 41.0 mm, p < 0.001) and indexed volume at rest (36.4 vs. 29.0 mL/m2, p < 0.001), with further dilation during stress (p = 0.046); increased LV wall thickness (p = 0.001); higher average E/e′ at rest and during stress (p ≤ 0.004); and higher pulmonary artery systolic pressure at rest (p = 0.027) and during stress (p = 0.044). CPET findings included lower pVO2 (16.0 vs. 19.5 mL/kg/min, p = 0.001), reduced % predicted pVO2 (p = 0.006), earlier anaerobic threshold (p = 0.032), impaired ventilatory efficiency (p = 0.048), and chronotropic incompetence (p < 0.001) in patients who experienced a primary outcome. Multivariable analysis identified dyslipidemia (OR 2.58), higher E/e′ (OR 1.06), and lower pVO2 (OR 0.92) as independently associated with the primary outcome. Conclusions: CPET–SE provided a comprehensive evaluation of patients with HCM, associating aerobic capacity to its hemodynamic determinants. Reduced pVO2 showed the strongest association with adverse outcomes, while exercise-induced diastolic dysfunction and elevated pulmonary pressures identified a high-risk phenotype. Incorporating CPET–SE into longitudinal management of patients with HCM may enable earlier detection of physiological decompensation and guide personalized therapeutic strategies. Full article
(This article belongs to the Special Issue What’s New in Cardiomyopathies: Diagnosis, Treatment and Management)
►▼ Show Figures

Figure 1

22 pages, 1565 KB  
Review
The Evolving Role of Cardiac Imaging in Hypertrophic Cardiomyopathy: Diagnosis, Prognosis, and Clinical Practice
by Ilaria Dentamaro, Marco Maria Dicorato, Alessio Falagario, Sebastiano Cicco, Sergio Dentamaro, Michele Correale, Vincenzo Manuppelli, Gaetano Citarelli, Francesco Mangini, Corrado Fiore, Paolo Colonna, Enrica Petruccelli, Laura Piscitelli, Guido Giovannetti, Michele Davide Latorre, Cinzia Forleo, Paolo Basile, Maria Cristina Carella, Vincenzo Ezio Santobuono, Marco Matteo Ciccone and Andrea Igoren Guaricciadd Show full author list remove Hide full author list
Biomedicines 2025, 13(9), 2138; https://doi.org/10.3390/biomedicines13092138 - 1 Sep 2025
Cited by 8 | Viewed by 5911
Abstract
Hypertrophic cardiomyopathy (HCM) is a cardiac disorder characterized by unexplained left ventricular hypertrophy and a clinical presentation that is heterogeneous, ranging from asymptomatic cases to sudden cardiac death (SCD). The condition’s complex pathophysiology encompasses myocyte disarray, fibrosis, and impaired cellular metabolism. Advancements in [...] Read more.
Hypertrophic cardiomyopathy (HCM) is a cardiac disorder characterized by unexplained left ventricular hypertrophy and a clinical presentation that is heterogeneous, ranging from asymptomatic cases to sudden cardiac death (SCD). The condition’s complex pathophysiology encompasses myocyte disarray, fibrosis, and impaired cellular metabolism. Advancements in non-invasive cardiac imaging, notably echocardiography and cardiac magnetic resonance (CMR), have led to substantial progress in the domains of early diagnosis, phenotypic characterization, and risk stratification. Echocardiography is the preferred diagnostic modality, as it provides a comprehensive evaluation of ventricular hypertrophy patterns, left ventricular outflow tract (LVOT) obstruction, mitral valve abnormalities, left atrial size, and diastolic function. Novel techniques, such as speckle-tracking strain imaging, have emerged as means to detect subclinical myocardial dysfunction and to provide significant prognostic information. Cine-CMR sequences, tissue characterization with late gadolinium enhancement, and quantitative techniques such as strain imaging have been shown to enhance diagnostic precision and prognostic evaluation. The integration of multimodality imaging has been demonstrated to enhance the management of patients with HCM, both in the short term and in the long term, by facilitating individualized monitoring. This review summarizes the role of cardiac imaging in the comprehensive evaluation of HCM, emphasizing the impact of these methods on diagnosis, risk assessment, and personalized patient care, particularly in challenging clinical settings, such as cases of athlete’s heart and pathological ventricular hypertrophy. Full article
►▼ Show Figures

Graphical abstract

16 pages, 1138 KB  
Review
Cardiac Myosin Inhibitors in the Treatment of Hypertrophic Cardiomyopathy: Clinical Trials and Future Challenges
by Arnold Kukowka and Marek Droździk
Biomolecules 2025, 15(8), 1098; https://doi.org/10.3390/biom15081098 - 29 Jul 2025
Cited by 7 | Viewed by 7590
Abstract
Hypertrophic cardiomyopathy (HCM) is a prevalent and often underdiagnosed genetic cardiac disorder characterized by left ventricular hypertrophy and, in many cases, dynamic left ventricular outflow tract obstruction (LVOTO). The development of cardiac myosin inhibitors (CMIs) represents an emerging therapeutic approach in the pharmacological [...] Read more.
Hypertrophic cardiomyopathy (HCM) is a prevalent and often underdiagnosed genetic cardiac disorder characterized by left ventricular hypertrophy and, in many cases, dynamic left ventricular outflow tract obstruction (LVOTO). The development of cardiac myosin inhibitors (CMIs) represents an emerging therapeutic approach in the pharmacological management of obstructive HCM (oHCM). This review offers an integrated and up-to-date synthesis of the cardiac myosin inhibitor class, with a focus on mavacamten, aficamten, and the broader landscape of emerging agents. It also highlights recent clinical trial outcomes, pharmacokinetic and pharmacogenetic considerations, and potential future directions in therapy. Furthermore, we incorporate the most recent data up to May 2025, including late-breaking trial results and real-world safety findings, aiming to provide clinicians with a practical and comprehensive perspective on this evolving drug class. A narrative review was conducted by systematically searching PubMed, Scopus, Google Scholar, and ClinicalTrials.gov for English-language articles and trials published between January 2016 and May 2025. Keywords included “cardiac myosin inhibitor”, mavacamten”, “aficamten”, “MYK-224”, and “hypertrophic cardiomyopathy.” Inclusion criteria encompassed clinical trials and comprehensive reviews specifically addressing CMIs in cardiac applications. CMIs such as mavacamten and aficamten have demonstrated significant clinical benefits in reducing LVOT gradients, improving exercise capacity, and alleviating symptoms in patients with oHCM. Mavacamten is currently approved for clinical use, while aficamten is in advanced regulatory review. Comparative data suggest potential advantages of aficamten in the onset of action, pharmacokinetic profile, and tolerability. Emerging evidence supports the exploration of CMIs in pediatric populations, heart failure with preserved ejection fraction (HFpEF), and non-obstructive HCM (nHCM), although results are still preliminary. Cardiac myosin inhibitors offer a novel, pathophysiology-targeted approach to managing oHCM. While mavacamten has established efficacy, next-generation agents like aficamten may offer improved safety and versatility. Further long-term studies are needed to clarify their role across broader patient populations. Full article
►▼ Show Figures

Figure 1

16 pages, 560 KB  
Review
Comprehensive Review: Mavacamten and Aficamten in Hypertrophic Cardiomyopathy
by Helin Savsin and Tomasz Tokarek
Biomedicines 2025, 13(7), 1619; https://doi.org/10.3390/biomedicines13071619 - 1 Jul 2025
Cited by 15 | Viewed by 10283
Abstract
Hypertrophic cardiomyopathy (HCM) is the most common monogenic heart disease, with an estimated prevalence of 1:600 in the general population, and is associated with significant morbidity. HCM is characterized by left ventricular hypertrophy and interventricular septal thickening due to sarcomere protein gene mutations. [...] Read more.
Hypertrophic cardiomyopathy (HCM) is the most common monogenic heart disease, with an estimated prevalence of 1:600 in the general population, and is associated with significant morbidity. HCM is characterized by left ventricular hypertrophy and interventricular septal thickening due to sarcomere protein gene mutations. The recent emergence of cardiac myosin inhibitors (CMIs), specifically mavacamten and aficamten, has introduced a paradigm shift in HCM management by directly targeting the hypercontractile state of the disease. This review comprehensively discusses the molecular mechanisms of mavacamten and aficamten, highlighting their biochemical similarities and differences from available data. It evaluates their reported efficacy in completed clinical trials, such as reducing left ventricular outflow tract (LVOT) obstruction, improving functional capacity, and enhancing quality of life in HCM. It further provides insight and updates to ongoing trials of both CMIs. Finally, it compares and elaborates on the safety profiles of mavacamten and aficamten, discussing their favorable safety profiles shown in completed studies. In current clinical practice, only mavacamten is approved for use, and clinical insights concerning both CMIs are limited, but encouraging. In summary, cardiac myosin inhibitors are a promising class of disease-modifying drugs for HCM with proven short-term safety and efficacy, but limited data are available to fully determine their long-term effects and efficacy in diverse patient populations. Ongoing research is necessary to further explore and define their role in HCM management. Full article
(This article belongs to the Special Issue Progress in Cardiovascular Pharmacology)
►▼ Show Figures

Figure 1

24 pages, 2711 KB  
Review
Integrative Approaches in the Management of Hypertrophic Cardiomyopathy: A Comprehensive Review of Current Therapeutic Modalities
by Marco Maria Dicorato, Gaetano Citarelli, Francesco Mangini, Rossella Alemanni, Miriam Albanese, Sebastiano Cicco, Cosimo Angelo Greco, Cinzia Forleo, Paolo Basile, Maria Cristina Carella, Marco Matteo Ciccone, Andrea Igoren Guaricci and Ilaria Dentamaro
Biomedicines 2025, 13(5), 1256; https://doi.org/10.3390/biomedicines13051256 - 21 May 2025
Cited by 12 | Viewed by 8460
Abstract
Hypertrophic cardiomyopathy (HCM) is often associated with left ventricular outflow tract (LVOT) obstruction, which affects a substantial proportion of patients. This obstruction results from a range of anatomical abnormalities involving both the valvular and subvalvular structures. Pharmacological therapies play a pivotal role in [...] Read more.
Hypertrophic cardiomyopathy (HCM) is often associated with left ventricular outflow tract (LVOT) obstruction, which affects a substantial proportion of patients. This obstruction results from a range of anatomical abnormalities involving both the valvular and subvalvular structures. Pharmacological therapies play a pivotal role in the management of LVOT obstruction, with a range of drug classes exhibiting distinct mechanisms of action. Beta-blockers, including atenolol and nadolol, are considered the first-line treatment due to their ability to reduce heart rate and myocardial contractility and enhance diastolic filling. Non-dihydropyridine calcium channel blockers, such as verapamil and diltiazem, are utilized as second-line agents when beta-blockers are ineffective or contraindicated. Disopyramid, a Class 1A antiarrhythmic agent, is employed for patients who do not respond to initial therapeutic interventions and can reduce LVOT gradients. Recent advancements in cardiac myosin modulators, such as Mavacamten and Aficamten, offer targeted therapies by modulating myosin–actin interactions to reduce LVOT gradients and improve symptoms, with promising results from clinical trials. Although gene therapy is still in its nascent stages, it has the potential to address the genetic basis of HCM by employing techniques such as genome editing, gene replacement, and the modulation of signaling pathways. For patients exhibiting severe symptoms or demonstrating unresponsiveness to medical treatment, invasive therapies, such as septal reduction therapy and alcohol septal ablation, are considered. Ultimately, the treatment and prevention of atrial fibrillation and sudden cardiac death are two key points of HCM management in both obstructive and non-obstructive forms. This review aims to provide an overview of current pharmacological and invasive strategies, as well as emerging therapies, in the management of HCM. Full article
(This article belongs to the Special Issue Advanced Research in Hypertrophic Cardiomyopathy)
►▼ Show Figures

Figure 1

20 pages, 6091 KB  
Review
The Role of Cardiac Magnetic Resonance Imaging in the Management of Hypertrophic Cardiomyopathy
by Luca Pugliese, Alessandra Luciano and Marcello Chiocchi
J. Cardiovasc. Dev. Dis. 2025, 12(5), 189; https://doi.org/10.3390/jcdd12050189 - 15 May 2025
Cited by 2 | Viewed by 2418
Abstract
Hypertrophic cardiomyopathy (HCM) is the most common genetic cardiomyopathy, caused by either sarcomere protein or other gene mutations. It is a complex and highly heterogeneous disorder, with phenotypes ranging from asymptomatic to severe disease, characterized by asymmetric left ventricular (LV) hypertrophy unexplained by [...] Read more.
Hypertrophic cardiomyopathy (HCM) is the most common genetic cardiomyopathy, caused by either sarcomere protein or other gene mutations. It is a complex and highly heterogeneous disorder, with phenotypes ranging from asymptomatic to severe disease, characterized by asymmetric left ventricular (LV) hypertrophy unexplained by loading conditions, which is also associated with myocardial fiber disarray, and preserved or increased ejection fraction without LV dilation. Comprehensive personal and family history, physical examination, and ECG testing raise suspicion of HCM, and echocardiogram represents the first-line imaging modality for confirming a diagnosis. Moreover, contrast-enhanced cardiac magnetic resonance (CMR) imaging has increasingly emerged as a fundamental diagnostic and prognostic tool in HCM management. This article reviews the role of CMR in HCM identification and differentiation from phenotypic mimics, characterization of HCM phenotypes, monitoring of disease progression, evaluation of pre- and post-septal reduction treatments, and selection of candidates for implantable cardioverter-defibrillator. By providing information on cardiac morphology and function and tissue characterization, CMR is particularly helpful in the quantification of myocardial wall thickness, the detection of hypertrophy in areas blind to echocardiogram, subtle morphologic features in the absence of LV hypertrophy, myocardial fibrosis, and apical aneurysm, the evaluation of LV outflow tract obstruction, and the assessment of LV function in end-stage dilated HCM. Full article
(This article belongs to the Special Issue Diagnosis, Treatment, and Genetics of Cardiomyopathy)
►▼ Show Figures

Figure 1

12 pages, 8504 KB  
Article
Altered Lactylation Myocardial Tissue May Contribute to a More Severe Energy-Deprived State of the Tissue and Left Ventricular Outflow Tract Obstruction in HOCM
by Ruoxuan Li, Jing Wang, Jia Zhao, Jiao Liu, Yuze Qin, Yue Wang, Yiming Yuan, Nan Kang, Lu Yao, Fan Yang, Ke Feng, Lanlan Zhang, Shengjun Ta, Bo Wang and Liwen Liu
Bioengineering 2025, 12(4), 379; https://doi.org/10.3390/bioengineering12040379 - 3 Apr 2025
Cited by 3 | Viewed by 2070
Abstract
Hypertrophic cardiomyopathy (HCM) is the most common hereditary cardiovascular disease. In general, obstructive hypertrophic cardiomyopathy (HOCM) is more closely related to severe clinical symptoms and adverse clinical outcomes. Therefore, it is necessary to explore the possible causes of HOCM, which may help physicians [...] Read more.
Hypertrophic cardiomyopathy (HCM) is the most common hereditary cardiovascular disease. In general, obstructive hypertrophic cardiomyopathy (HOCM) is more closely related to severe clinical symptoms and adverse clinical outcomes. Therefore, it is necessary to explore the possible causes of HOCM, which may help physicians better understand the disease and effectively control and manage the progression of the disease. In recent years, the discovery of lactylation has provided scholars with a new direction to explore the occurrence of diseases. In cardiovascular diseases, this post-translational modification can exacerbate cardiac dysfunction, and it can also promote the cardiac repair process after myocardial infarction. In this study, we used the myocardial tissue of mice carrying the Myh7 V878A gene mutation site for protein lactylation detection. Through a further analysis of the enriched pathways using KEGG enrichment, GO enrichment, and Wiki Pathways enrichment, we found that the enriched pathways with lactylation modifications in the HOCM mice mainly included the fatty acid oxidation pathway, the tricarboxylic acid cycle pathway, the adrenergic signaling pathway in cardiomyocytes, and the cardiomyocyte hypertrophy pathway. Among the above pathways, significant changes in lactylation occurred in proteins including Acads, Acaa2, Mdh2, Myl2, and Myl3. We used the COIP experiment to verify the omics results and the ELISA assay to verify the function of the enzymes. We found that a decrease in lactylation modifications also led to a decrease in enzyme function. The abnormalities of these proteins not only lead to abnormalities in energy metabolism in the myocardial tissue of HOCM but also may affect myocardial contractility, resulting in the impaired contractile function of HOCM. The results of this study lay a preliminary theoretical foundation for further exploring the pathogenesis of HOCM. Full article
(This article belongs to the Section Cellular and Molecular Bioengineering)
►▼ Show Figures

Figure 1

42 pages, 1639 KB  
Review
Acute Heart Failure and Non-Ischemic Cardiomyopathies: A Comprehensive Review and Critical Appraisal
by Lina Manzi, Federica Buongiorno, Viviana Narciso, Domenico Florimonte, Imma Forzano, Domenico Simone Castiello, Luca Sperandeo, Roberta Paolillo, Nicola Verde, Alessandra Spinelli, Stefano Cristiano, Marisa Avvedimento, Mario Enrico Canonico, Luca Bardi, Giuseppe Giugliano and Giuseppe Gargiulo
Diagnostics 2025, 15(5), 540; https://doi.org/10.3390/diagnostics15050540 - 23 Feb 2025
Cited by 14 | Viewed by 6414
Abstract
Acute heart failure (AHF) is a complex clinical syndrome characterized by the rapid or gradual onset of symptoms and/or signs of heart failure (HF), leading to an unplanned hospital admission or an emergency department visit. AHF is the leading cause of hospitalization in [...] Read more.
Acute heart failure (AHF) is a complex clinical syndrome characterized by the rapid or gradual onset of symptoms and/or signs of heart failure (HF), leading to an unplanned hospital admission or an emergency department visit. AHF is the leading cause of hospitalization in patients over 65 years, thus significantly impacting public health care. However, its prognosis remains poor with high rates of mortality and rehospitalization. Many pre-existing cardiac conditions can lead to AHF, but it can also arise de novo due to acute events. Therefore, understanding AHF etiology could improve patient management and outcomes. Cardiomyopathies (CMPs) are a heterogeneous group of heart muscle diseases, including dilated cardiomyopathy (DCM), hypertrophic cardiomyopathy (HCM), restrictive cardiomyopathy (RCM), non-dilated cardiomyopathy (NDLVC), and arrhythmogenic right ventricular cardiomyopathy (ARVC), that frequently present with HF. Patients with CMPs are under-represented in AHF studies compared to other etiologies, and therefore therapeutic responses and prognoses remain unknown. In DCM, AHF represents the most frequent cause of death despite treatment improvements. Additionally, DCM is the first indication for heart transplant (HT) among young and middle-aged adults. In HCM, the progression to AHF is rare and more frequent in patients with concomitant severe left ventricle (LV) obstruction and hypertrophy or severe LV systolic dysfunction. HF is the natural evolution of patients with RCM and HF is associated with poor outcomes irrespective of RCM etiology. Furthermore, while the occurrence of AHF is rare among patients with ARVC, this condition in NDLVC patients is currently unknown. In this manuscript, we assessed the available evidence on AHF in patients with CMPs. Data on clinical presentation, therapeutic management, and clinical outcomes according to specific CMPs are limited. Future HF studies assessing the clinical presentation, treatment, and prognosis of specific CMPs are warranted. Full article
►▼ Show Figures

Figure 1

Back to TopTop