Monitoring and Determining Mitochondrial Network Parameters in Live Lung Cancer Cells
Mitochondria are dynamic organelles that constantly fuse and divide, forming dynamic tubular networks. Abnormalities in mitochondrial dynamics and morphology are linked to diverse pathological states, including cancer. Thus, alterations in mitochondrial parameters could indicate early events of dise...
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doaj-721bb1d059964ccbaae015b9897941352020-11-25T02:11:10ZengMDPI AGJournal of Clinical Medicine2077-03832019-10-01810172310.3390/jcm8101723jcm8101723Monitoring and Determining Mitochondrial Network Parameters in Live Lung Cancer CellsTamara Mirzapoiazova0Haiqing Li1Anusha Nathan2Saumya Srivstava3Mohd W. Nasser4Frances Lennon5Brian Armstrong6Isa Mambetsariev7Peiguo G. Chu8Srisairam Achuthan9Surinder K. Batra10Prakash Kulkarni11Ravi Salgia12Department of Medical Oncology and Therapeutics Research, City of Hope National Medical Center, Duarte, CA 91010, USACenter for Informatics, City of Hope National Medical Center, Duarte, CA 91010, USADepartment of Medical Oncology and Therapeutics Research, City of Hope National Medical Center, Duarte, CA 91010, USADepartment of Medical Oncology and Therapeutics Research, City of Hope National Medical Center, Duarte, CA 91010, USAUniversity of Nebraska, Medical Center, Nebraska, NE 68198, USAAbbott Molecular, Des Plaines, IL 60018, USADepartment of Developmental and Stem Cell Biology, City of Hope National Medical Center, Duarte, CA 91010, USADepartment of Medical Oncology and Therapeutics Research, City of Hope National Medical Center, Duarte, CA 91010, USADepartment of Anatomic Pathology, City of Hope National Medical Center, Duarte, CA 91010, USACenter for Informatics, City of Hope National Medical Center, Duarte, CA 91010, USAUniversity of Nebraska, Medical Center, Nebraska, NE 68198, USADepartment of Medical Oncology and Therapeutics Research, City of Hope National Medical Center, Duarte, CA 91010, USADepartment of Medical Oncology and Therapeutics Research, City of Hope National Medical Center, Duarte, CA 91010, USAMitochondria are dynamic organelles that constantly fuse and divide, forming dynamic tubular networks. Abnormalities in mitochondrial dynamics and morphology are linked to diverse pathological states, including cancer. Thus, alterations in mitochondrial parameters could indicate early events of disease manifestation or progression. However, finding reliable and quantitative tools for monitoring mitochondria and determining the network parameters, particularly in live cells, has proven challenging. Here, we present a 2D confocal imaging-based approach that combines automatic mitochondrial morphology and dynamics analysis with fractal analysis in live small cell lung cancer (SCLC) cells. We chose SCLC cells as a test case since they typically have very little cytoplasm, but an abundance of smaller mitochondria compared to many of the commonly used cell types. The 2D confocal images provide a robust approach to quantitatively measure mitochondrial dynamics and morphology in live cells. Furthermore, we performed 3D reconstruction of electron microscopic images and show that the 3D reconstruction of the electron microscopic images complements this approach to yield better resolution. The data also suggest that the parameters of mitochondrial dynamics and fractal dimensions are sensitive indicators of cellular response to subtle perturbations, and hence, may serve as potential markers of drug response in lung cancer.https://www.mdpi.com/2077-0383/8/10/1723mitochondriadynamicsmorphologyimagingfractalslung cancerscanning electron microscopy |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tamara Mirzapoiazova Haiqing Li Anusha Nathan Saumya Srivstava Mohd W. Nasser Frances Lennon Brian Armstrong Isa Mambetsariev Peiguo G. Chu Srisairam Achuthan Surinder K. Batra Prakash Kulkarni Ravi Salgia |
spellingShingle |
Tamara Mirzapoiazova Haiqing Li Anusha Nathan Saumya Srivstava Mohd W. Nasser Frances Lennon Brian Armstrong Isa Mambetsariev Peiguo G. Chu Srisairam Achuthan Surinder K. Batra Prakash Kulkarni Ravi Salgia Monitoring and Determining Mitochondrial Network Parameters in Live Lung Cancer Cells Journal of Clinical Medicine mitochondria dynamics morphology imaging fractals lung cancer scanning electron microscopy |
author_facet |
Tamara Mirzapoiazova Haiqing Li Anusha Nathan Saumya Srivstava Mohd W. Nasser Frances Lennon Brian Armstrong Isa Mambetsariev Peiguo G. Chu Srisairam Achuthan Surinder K. Batra Prakash Kulkarni Ravi Salgia |
author_sort |
Tamara Mirzapoiazova |
title |
Monitoring and Determining Mitochondrial Network Parameters in Live Lung Cancer Cells |
title_short |
Monitoring and Determining Mitochondrial Network Parameters in Live Lung Cancer Cells |
title_full |
Monitoring and Determining Mitochondrial Network Parameters in Live Lung Cancer Cells |
title_fullStr |
Monitoring and Determining Mitochondrial Network Parameters in Live Lung Cancer Cells |
title_full_unstemmed |
Monitoring and Determining Mitochondrial Network Parameters in Live Lung Cancer Cells |
title_sort |
monitoring and determining mitochondrial network parameters in live lung cancer cells |
publisher |
MDPI AG |
series |
Journal of Clinical Medicine |
issn |
2077-0383 |
publishDate |
2019-10-01 |
description |
Mitochondria are dynamic organelles that constantly fuse and divide, forming dynamic tubular networks. Abnormalities in mitochondrial dynamics and morphology are linked to diverse pathological states, including cancer. Thus, alterations in mitochondrial parameters could indicate early events of disease manifestation or progression. However, finding reliable and quantitative tools for monitoring mitochondria and determining the network parameters, particularly in live cells, has proven challenging. Here, we present a 2D confocal imaging-based approach that combines automatic mitochondrial morphology and dynamics analysis with fractal analysis in live small cell lung cancer (SCLC) cells. We chose SCLC cells as a test case since they typically have very little cytoplasm, but an abundance of smaller mitochondria compared to many of the commonly used cell types. The 2D confocal images provide a robust approach to quantitatively measure mitochondrial dynamics and morphology in live cells. Furthermore, we performed 3D reconstruction of electron microscopic images and show that the 3D reconstruction of the electron microscopic images complements this approach to yield better resolution. The data also suggest that the parameters of mitochondrial dynamics and fractal dimensions are sensitive indicators of cellular response to subtle perturbations, and hence, may serve as potential markers of drug response in lung cancer. |
topic |
mitochondria dynamics morphology imaging fractals lung cancer scanning electron microscopy |
url |
https://www.mdpi.com/2077-0383/8/10/1723 |
work_keys_str_mv |
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