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April 5, 2026Annals of Medicine and Surgery0 citationsOpen Access

Mechanical complications of transcatheter aortic valve replacement: a review article

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RARudaina Ismail Osman AhmedMSMazin SalahHAHasan Abua’Isha

Key Result

Transcatheter aortic valve replacement has revolutionized severe aortic stenosis treatment, though it carries inherent risks including vascular complications, stroke, and conduction disturbances.

Key Points

  • The review aims to summarize the mechanical complications of transcatheter aortic valve replacement and their management.
  • Review of epidemiology and pathophysiology of aortic stenosis.
  • Analysis of management strategies and complication outcomes associated with TAVR.
  • Evaluation of delivery routes and their implications.
  • Discussion of advancements in device technology and procedural techniques.
  • TAVR is increasingly accepted as a less invasive alternative for high-risk patients.
  • Complications such as stroke, vascular issues, and acute kidney injury are significant in TAVR.
  • Ongoing research aims to improve complication management and expand patient eligibility for TAVR.

Structured PICO

P
Population
Patients with aortic stenosis (AS), including elderly populations and younger adults with bicuspid aortic valves
I
Intervention
Transcatheter aortic valve replacement (TAVR)
C
Comparator
Surgical aortic valve replacement (SAVR) (historical standard)
O
Outcome
Mechanical complications and management strategiessafety

This review summarizes the evolution, delivery routes, and mechanical complications of TAVR, highlighting its role as a transformative therapy for aortic stenosis.

Abstract

Aortic stenosis (AS) represents a prevalent valvular heart disease, particularly affecting the elderly population, with substantial implications for morbidity and mortality. This review examines the epidemiology, pathophysiology, management strategies, complications, and future implications of AS and its treatment modalities, focusing primarily on transcatheter aortic valve replacement (TAVR). The prevalence of AS is rising as the population ages, with notable differences observed across various demographic groups and regions. Additionally, AS can also occur in younger adults, typically due to a bicuspid aortic valve, the most common congenital heart defect, which further contributes to the condition’s growing clinical significance. Surgical aortic valve replacement (SAVR) has historically been the standard treatment for severe AS, but TAVR methods have emerged as a less invasive alternative, particularly for high-risk surgical candidates. SAVR has historically been the standard treatment for severe AS, but TAVR has undergone rapid evolution and widespread acceptance, with over 200 000 procedures performed globally. Various delivery routes for TAVR exist, each with its advantages and limitations, including transfemoral, subclavian, direct aortic, transapical, and transcarotid approaches. Complications associated with TAVR include vascular complications, stroke, conduction disturbances, coronary artery obstruction, acute kidney injury, infections, and others. Strategies for complication prevention and management are actively researched and implemented. The review also discusses future implications of TAVR, highlighting advancements in device technology, procedural techniques, patient selection criteria, and the expanding patient population eligible for TAVR. Despite challenges and complications, TAVR has revolutionized the treatment landscape for AS and offers hope for patients previously deemed unsuitable for surgery.

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Cite This Study

Ahmed et al. (2026) studied this question. Transcatheter aortic valve replacement has revolutionized severe aortic stenosis treatment, though it carries inherent risks including vascular complications, stroke, and conduction disturbances.

synapsesocial.com/papers/69d1fe07a79560c99a0a4801https://doi.org/10.1097/ms9.0000000000004935
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