The Emerging Role of Lithotripsy in Structural Heart Interventions

Jonathan X Fang1,2, Leo Kar Lok Lai3, Gennaro Giustino4

  • 1Center for Structural Heart Disease, Henry Ford Health System, Detroit, MI, USA. fangjonathan@gmail.com.

PubMed

Insights

Lithotripsy is emerging as a valuable tool for structural heart interventions, aiding procedures like valve repair and large-bore access. Further research is needed to confirm its efficacy and optimize its use in complex cardiac cases.

Area of Science:

  • Cardiovascular Medicine
  • Interventional Cardiology
  • Medical Device Technology

Background:

  • Lithotripsy, initially used for kidney stones, is now finding applications in cardiovascular disease.
  • Its role is expanding from treating calcified coronary and peripheral artery disease to valvular and structural heart interventions.

Purpose of the Study:

  • To provide a narrative review of the emerging role of lithotripsy in valvular and structural heart interventions.
  • To overview current applications and future directions of lithotripsy in structural cardiology.

Main Methods:

  • Comprehensive literature review of publications on lithotripsy in structural heart interventions (PubMed, Google Scholar).
  • Inclusion of case examples from a tertiary referral center (Henry Ford Health).

Main Results:

  • Lithotripsy facilitates large-bore access, treats valvular stenosis (mitral/aortic), manages paravalvular leaks, and aids other structural procedures.
  • Current data is limited, with most applications relying on case reports/series; multi-center studies and RCTs are needed.
  • Early clinical successes are reported for off-label use, highlighting the need for translational research and bench-testing.

Conclusions:

  • Lithotripsy shows promise in various structural heart interventions, with early successes reported.
  • Further research, including multi-center studies and randomized controlled trials, is essential to establish efficacy and optimize its application.
  • Translational research is crucial for determining optimal energy transfer conditions for valvular and annular lithotripsy.
Abstract

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