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Myofibril orientation as a metric for characterizing heart disease.

Publication ,  Journal Article
Ma, W; Gong, H; Jani, V; Lee, KH; Landim-Vieira, M; Papadaki, M; Pinto, JR; Aslam, MI; Cammarato, A; Irving, T
Published in: Biophysical journal
February 2022

Myocyte disarray is a hallmark of many cardiac disorders. However, the relationship between alterations in the orientation of individual myofibrils and myofilaments to disease progression has been largely underexplored. This oversight has predominantly been because of a paucity of methods for objective and quantitative analysis. Here, we introduce a novel, less-biased approach to quantify myofibrillar and myofilament orientation in cardiac muscle under near-physiological conditions and demonstrate its superiority as compared with conventional histological assessments. Using small-angle x-ray diffraction, we first investigated changes in myofibrillar orientation at increasing sarcomere lengths in permeabilized, relaxed, wild-type mouse myocardium from the left ventricle by assessing the angular spread of the 1,0 equatorial reflection (angle σ). At a sarcomere length of 1.9 μm, the angle σ was 0.23 ± 0.01 rad, decreased to 0.19 ± 0.01 rad at a sarcomere length of 2.1 μm, and further decreased to 0.15 ± 0.01 rad at a sarcomere length of 2.3 μm (p < 0.0001). Angle σ was significantly larger in R403Q, a MYH7 hypertrophic cardiomyopathy model, porcine myocardium (0.24 ± 0.01 rad) compared with wild-type myocardium (0.14 ± 0.005 rad; p < 0.0001), as well as in human heart failure tissue (0.19 ± 0.006 rad) when compared with nonfailing samples (0.17 ± 0.007 rad; p = 0.01). These data indicate that diseased myocardium suffers from greater myofibrillar disorientation compared with healthy controls. Finally, we showed that conventional, histology-based analysis of disarray can be subject to user bias and/or sampling error and lead to false positives. Our method for directly assessing myofibrillar orientation avoids the artifacts introduced by conventional histological approaches that assess myocyte orientation and only indirectly evaluate myofibrillar orientation, and provides a precise and objective metric for phenotypically characterizing myocardium. The ability to obtain excellent x-ray diffraction patterns from frozen human myocardium provides a new tool for investigating structural anomalies associated with cardiac diseases.

Published In

Biophysical journal

DOI

EISSN

1542-0086

ISSN

0006-3495

Publication Date

February 2022

Volume

121

Issue

4

Start / End Page

565 / 574

Related Subject Headings

  • Swine
  • Sarcomeres
  • Myofibrils
  • Myocardium
  • Myocardial Contraction
  • Mice
  • Heart Ventricles
  • Cardiomyopathy, Hypertrophic
  • Biophysics
  • Animals
 

Citation

APA
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ICMJE
MLA
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Ma, W., Gong, H., Jani, V., Lee, K. H., Landim-Vieira, M., Papadaki, M., … Irving, T. (2022). Myofibril orientation as a metric for characterizing heart disease. Biophysical Journal, 121(4), 565–574. https://doi.org/10.1016/j.bpj.2022.01.009
Ma, Weikang, Henry Gong, Vivek Jani, Kyoung Hwan Lee, Maicon Landim-Vieira, Maria Papadaki, Jose R. Pinto, M Imran Aslam, Anthony Cammarato, and Thomas Irving. “Myofibril orientation as a metric for characterizing heart disease.Biophysical Journal 121, no. 4 (February 2022): 565–74. https://doi.org/10.1016/j.bpj.2022.01.009.
Ma W, Gong H, Jani V, Lee KH, Landim-Vieira M, Papadaki M, et al. Myofibril orientation as a metric for characterizing heart disease. Biophysical journal. 2022 Feb;121(4):565–74.
Ma, Weikang, et al. “Myofibril orientation as a metric for characterizing heart disease.Biophysical Journal, vol. 121, no. 4, Feb. 2022, pp. 565–74. Epmc, doi:10.1016/j.bpj.2022.01.009.
Ma W, Gong H, Jani V, Lee KH, Landim-Vieira M, Papadaki M, Pinto JR, Aslam MI, Cammarato A, Irving T. Myofibril orientation as a metric for characterizing heart disease. Biophysical journal. 2022 Feb;121(4):565–574.
Journal cover image

Published In

Biophysical journal

DOI

EISSN

1542-0086

ISSN

0006-3495

Publication Date

February 2022

Volume

121

Issue

4

Start / End Page

565 / 574

Related Subject Headings

  • Swine
  • Sarcomeres
  • Myofibrils
  • Myocardium
  • Myocardial Contraction
  • Mice
  • Heart Ventricles
  • Cardiomyopathy, Hypertrophic
  • Biophysics
  • Animals