Integrating cellular sarcoplasmic reticulum (SR) Ca2+ release with the known Ca2+ activation properties of RyR2s remains challenging. The sharp increase in SR Ca2+ permeability above a threshold SR luminal [Ca2+] is not reflected in RyR2 kinetics from single-channel studies. Additionally, the current paradigm that global Ca2+ release (Ca2+ waves) arises from interacting local events (Ca2+ sparks) faces a key issue that these events rarely activate neighboring sites. We present a multiscale model that reproduces Ca2+ sparks and waves in skinned ventricular myocytes using experimentally validated RyR2 kinetics. The model spans spatial domains from 10−8 to 10−4 m and timescales from 10−6 to 10 s. Ca2+ release sites are distributed in cubic voxels (0.25-µm sides) informed by super-resolution micrographs. We use parallel computing to calculate Ca2+ transport, diffusion, and buffering. Substantial increases in SR Ca2+ release occur, and Ca2+ waves initiate when Ca2+ sparks become prolonged above a threshold SR [Ca2+]. These prolonged events (Ca2+ embers) are much more likely than Ca2+ sparks to activate release from neighboring sites and accumulate increases in cytoplasmic [Ca2+] along with an associated fall in Ca2+ buffering power. This primes the cytoplasm for Ca2+-induced Ca2+ release (CICR) that produces Ca2+ waves. Thus, Ca2+ ember formation and CICR are both essential for initiation and propagation of Ca2+ waves. Cell architecture, along with the differential effects of RyR2 opening and closing rates, collectively determines the SR [Ca2+] threshold for Ca2+ embers, waves, and the phenomenon of store overload–induced Ca2+ release.
Skip Nav Destination
Article navigation
Article|
March 06 2025
Novel Ca2+ wave mechanisms in cardiac myocytes revealed by multiscale Ca2+ release model
Morris Vysma
,
Morris Vysma
(Investigation, Methodology, Software, Writing - review & editing)
1
School of Engineering, University of Newcastle
, Callaghan, Australia
Search for other works by this author on:
James S. Welsh
,
James S. Welsh
(Conceptualization, Data curation, Formal analysis, Methodology, Software, Supervision)
1
School of Engineering, University of Newcastle
, Callaghan, Australia
Search for other works by this author on:
Derek R. Laver
(Conceptualization, Formal analysis, Investigation, Methodology, Project administration, Software, Supervision, Visualization, Writing - original draft, Writing - review & editing)
2
School of Biomedical Sciences and Pharmacy, University of Newcastle and Hunter Medical Research Institute
, Callaghan, Australia
Correspondence to Derek R. Laver: [email protected]
Search for other works by this author on:
Morris Vysma
Investigation, Methodology, Software, Writing - review & editing
1
School of Engineering, University of Newcastle
, Callaghan, Australia
James S. Welsh
Conceptualization, Data curation, Formal analysis, Methodology, Software, Supervision
1
School of Engineering, University of Newcastle
, Callaghan, Australia
Derek R. Laver
Conceptualization, Formal analysis, Investigation, Methodology, Project administration, Software, Supervision, Visualization, Writing - original draft, Writing - review & editing
2
School of Biomedical Sciences and Pharmacy, University of Newcastle and Hunter Medical Research Institute
, Callaghan, Australia
Correspondence to Derek R. Laver: [email protected]
Disclosures: The authors declare no competing interests exist.
Received:
January 15 2024
Revision Received:
August 18 2024
Revision Received:
January 07 2025
Accepted:
February 06 2025
Online ISSN: 1540-7748
Print ISSN: 0022-1295
Funding
Funder(s):
NSW Health Infrastructure
Funder(s):
Hunter Medical Research Institute
Funder(s):
Australian Government Research Training Program
© 2025 Vysma et al.
2025
Vysma et al.
This article is distributed under the terms as described at https://rupress.org/pages/terms102024/.
J Gen Physiol (2025) 157 (3): e202413543.
Article history
Received:
January 15 2024
Revision Received:
August 18 2024
Revision Received:
January 07 2025
Accepted:
February 06 2025
Citation
Morris Vysma, James S. Welsh, Derek R. Laver; Novel Ca2+ wave mechanisms in cardiac myocytes revealed by multiscale Ca2+ release model. J Gen Physiol 5 May 2025; 157 (3): e202413543. doi: https://doi.org/10.1085/jgp.202413543
Download citation file:
Sign in
Don't already have an account? Register
Client Account
You could not be signed in. Please check your email address / username and password and try again.
Could not validate captcha. Please try again.
Sign in via your Institution
Sign in via your Institution
116
Views
Suggested Content
RYR2 Proteins Contribute to the Formation of Ca2+ Sparks in Smooth Muscle
J Gen Physiol (March,2004)
Life and death of a cardiac calcium spark
J Gen Physiol (August,2013)
The Spark and Its Ember: Separately Gated Local Components of Ca2+ Release in Skeletal Muscle
J Gen Physiol (February,2000)
Email alerts
Advertisement