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Broadband Electrical Spectroscopy to Distinguish Single-Cell Ca2+ Changes Due to Ionomycin Treatment in a Skeletal Muscle Cell Line

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Many skeletal muscle diseases such as muscular dystrophy, myalgic encephalomyelitis/chronic fatigue syndrome (ME/CFS), and sarcopenia share the dysregulation of calcium (Ca2+) as a key mechanism of disease at a cellular level. Cytosolic concentrations of Ca2+ can signal dysregulation in organelles including the mitochondria, nucleus, and sarcoplasmic reticulum in skeletal muscle. In this work, a treatment is applied to mimic the Ca2+ increase associated with these atrophy-related disease states, and broadband impedance measurements are taken for single cells with and without this treatment using a microfluidic device. The resulting impedance measurements are fitted using a single-shell circuit simulation to show calculated electrical dielectric property contributions based on these Ca2+ changes. From this, similar distributions were seen in the Ca2+ from fluorescence measurements and the distribution of the S-parameter at a single frequency, identifying Ca2+ as the main contributor to the electrical differences being identified. Extracted dielectric parameters also showed different distribution patterns between the untreated and ionomycin-treated groups; however, the overall electrical parameters suggest the impact of Ca2+-induced changes at a wider range of frequencies.

Publisher
MDPI AG
Date Issued
2023-04-28
Language
English
Type
Genre
Form
electronic document
Media type
Creator role
Faculty
Identifier
1424-8220
Has this item been published elsewhere?
Volume
23
Volume
9
Ferguson, . C. A., Santangelo, . C., Marramiero, . L., Farina, . M., Pietrangelo, . T., & Cheng, . X. (2023). (Vols. 9). https://doi.org/10.3390/s23094358
Ferguson, Caroline A., Carmen Santangelo, Lorenzo Marramiero, Marco Farina, Tiziana Pietrangelo, and Xuanhong Cheng. 2023. https://doi.org/10.3390/s23094358.
Ferguson, Caroline A., et al. 28 Apr. 2023, https://doi.org/10.3390/s23094358.