Dynamics of Cell Fate Decisions Mediated by the Interplay of Autophagy and Apoptosis in Cancer Cells: Mathematical Modeling and Experimental Observations
Autophagy is a conserved biological stress response in mammalian cells that is responsible for clearing damaged proteins and organelles from the cytoplasm and recycling their contents via the lysosomal pathway. In cases where the stress is not too severe, autophagy acts as a survival mechanism. In c...
Main Author: | |
---|---|
Other Authors: | |
Format: | Others |
Published: |
Virginia Tech
2017
|
Subjects: | |
Online Access: | http://hdl.handle.net/10919/79557 |
id |
ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-79557 |
---|---|
record_format |
oai_dc |
spelling |
ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-795572020-09-29T05:38:24Z Dynamics of Cell Fate Decisions Mediated by the Interplay of Autophagy and Apoptosis in Cancer Cells: Mathematical Modeling and Experimental Observations Tavassoly, Iman Animal and Poultry Sciences Tyson, John J. Clarke, Robert Baumann, William T. Li, Liwu Finkielstein, Carla V. Apoptosis Autophagy Cancer Cell Death Dynamic Modeling Live Cell Imaging Quantitative Fluorescence Microscopy Single-Cell Autophagy is a conserved biological stress response in mammalian cells that is responsible for clearing damaged proteins and organelles from the cytoplasm and recycling their contents via the lysosomal pathway. In cases where the stress is not too severe, autophagy acts as a survival mechanism. In cases of severe stress, it may lead to programmed cell death. Autophagy is abnormally regulated in a wide-range of diseases, including cancer. To integrate the existing knowledge about this decision process into a rigorous, analytical framework, we built a mathematical model of cell fate decision mediated by autophagy. The model treats autophagy as a gradual response to stress that delays the initiation of apoptosis to give the cell an opportunity to survive. We show that our dynamical model is consistent with existing quantitative measurements of time courses of autophagic responses to cisplatin treatment. To understand the function of this response in cancer cells we have provided a systems<br />biology experimental framework to study dynamical aspects of autophagy in single cancer cells using live-cell imaging and quantitative uorescence microscopy. This framework can provide new insights on function of autophagic response in cancer cells. Ph. D. 2017-10-07T06:00:30Z 2017-10-07T06:00:30Z 2013-08-21 Dissertation vt_gsexam:1530 http://hdl.handle.net/10919/79557 In Copyright http://rightsstatements.org/vocab/InC/1.0/ ETD application/pdf Virginia Tech |
collection |
NDLTD |
format |
Others
|
sources |
NDLTD |
topic |
Apoptosis Autophagy Cancer Cell Death Dynamic Modeling Live Cell Imaging Quantitative Fluorescence Microscopy Single-Cell |
spellingShingle |
Apoptosis Autophagy Cancer Cell Death Dynamic Modeling Live Cell Imaging Quantitative Fluorescence Microscopy Single-Cell Tavassoly, Iman Dynamics of Cell Fate Decisions Mediated by the Interplay of Autophagy and Apoptosis in Cancer Cells: Mathematical Modeling and Experimental Observations |
description |
Autophagy is a conserved biological stress response in mammalian cells that is responsible for clearing damaged proteins and organelles from the cytoplasm and recycling their contents via the lysosomal pathway. In cases where the stress is not too severe, autophagy acts as a survival mechanism. In cases of severe stress, it may lead to programmed cell death. Autophagy is abnormally regulated in a wide-range of diseases, including cancer. To integrate the existing knowledge about this decision process into a rigorous, analytical framework, we built a mathematical model of cell fate decision mediated by autophagy. The model treats autophagy as a gradual response to stress that delays the initiation of apoptosis to give the cell an opportunity to survive. We show that our dynamical model is consistent with existing quantitative measurements of time courses of autophagic responses to cisplatin treatment. To understand the function of this response in cancer cells we have provided a systems<br />biology experimental framework to study dynamical aspects of autophagy in single cancer cells using live-cell imaging and quantitative uorescence microscopy. This framework can provide new insights on function of autophagic response in cancer cells. === Ph. D. |
author2 |
Animal and Poultry Sciences |
author_facet |
Animal and Poultry Sciences Tavassoly, Iman |
author |
Tavassoly, Iman |
author_sort |
Tavassoly, Iman |
title |
Dynamics of Cell Fate Decisions Mediated by the Interplay of Autophagy and Apoptosis in Cancer Cells: Mathematical Modeling and Experimental Observations |
title_short |
Dynamics of Cell Fate Decisions Mediated by the Interplay of Autophagy and Apoptosis in Cancer Cells: Mathematical Modeling and Experimental Observations |
title_full |
Dynamics of Cell Fate Decisions Mediated by the Interplay of Autophagy and Apoptosis in Cancer Cells: Mathematical Modeling and Experimental Observations |
title_fullStr |
Dynamics of Cell Fate Decisions Mediated by the Interplay of Autophagy and Apoptosis in Cancer Cells: Mathematical Modeling and Experimental Observations |
title_full_unstemmed |
Dynamics of Cell Fate Decisions Mediated by the Interplay of Autophagy and Apoptosis in Cancer Cells: Mathematical Modeling and Experimental Observations |
title_sort |
dynamics of cell fate decisions mediated by the interplay of autophagy and apoptosis in cancer cells: mathematical modeling and experimental observations |
publisher |
Virginia Tech |
publishDate |
2017 |
url |
http://hdl.handle.net/10919/79557 |
work_keys_str_mv |
AT tavassolyiman dynamicsofcellfatedecisionsmediatedbytheinterplayofautophagyandapoptosisincancercellsmathematicalmodelingandexperimentalobservations |
_version_ |
1719344690687377408 |