TY - JOUR
T1 - Renal Carcinogenesis, Tumor Heterogeneity, and Reactive Oxygen Species
T2 - Tactics Evolved
AU - Shanmugasundaram, Karthigayan
AU - Block, Karen
N1 - Funding Information:
Grant support was provided by Veterans Administration Merit Award (K.B.) and NIH P30 CA054174 (K.B.).
Publisher Copyright:
© Copyright 2016, Mary Ann Liebert, Inc.
PY - 2016/10/20
Y1 - 2016/10/20
N2 - Significance: The number of kidney cancers is growing 3-5% each year due to unknown etiologies. Intra- and inter-tumor mediators increase oxidative stress and drive tumor heterogeneity. Recent Advances: Technology advancement in state-of-the-art instrumentation and methodologies allows researchers to detect and characterize global landscaping modifications in genes, proteins, and pathophysiology patterns at the single-cell level. Critical Issues: We postulate that the sources of reactive oxygen species (ROS) and their activation within subcellular compartments will change over a timeline of tumor evolvement and contribute to tumor heterogeneity. Therefore, the complexity of intracellular changes within a tumor and ROS-induced tumor heterogeneity coupled to the advancement of detecting these events globally are limited at the level of data collection, organization, and interpretation using software algorithms and bioinformatics. Future Directions: Integrative and collaborative research, combining the power of numbers with careful experimental design, protocol development, and data interpretation, will translate cancer biology and therapeutics to a heightened level or leave the abundant raw data as stagnant and underutilized. Antioxid. Redox Signal. 25, 685-701.
AB - Significance: The number of kidney cancers is growing 3-5% each year due to unknown etiologies. Intra- and inter-tumor mediators increase oxidative stress and drive tumor heterogeneity. Recent Advances: Technology advancement in state-of-the-art instrumentation and methodologies allows researchers to detect and characterize global landscaping modifications in genes, proteins, and pathophysiology patterns at the single-cell level. Critical Issues: We postulate that the sources of reactive oxygen species (ROS) and their activation within subcellular compartments will change over a timeline of tumor evolvement and contribute to tumor heterogeneity. Therefore, the complexity of intracellular changes within a tumor and ROS-induced tumor heterogeneity coupled to the advancement of detecting these events globally are limited at the level of data collection, organization, and interpretation using software algorithms and bioinformatics. Future Directions: Integrative and collaborative research, combining the power of numbers with careful experimental design, protocol development, and data interpretation, will translate cancer biology and therapeutics to a heightened level or leave the abundant raw data as stagnant and underutilized. Antioxid. Redox Signal. 25, 685-701.
KW - NOX oxidases
KW - high-throughput analysis
KW - mitochondrial electron transfer chain
KW - oxidative stress
KW - renal cancer
KW - tumor heterogeneity
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U2 - 10.1089/ars.2015.6569
DO - 10.1089/ars.2015.6569
M3 - Review article
C2 - 27287984
AN - SCOPUS:84991627937
SN - 1523-0864
VL - 25
SP - 685
EP - 701
JO - Antioxidants and Redox Signaling
JF - Antioxidants and Redox Signaling
IS - 12
ER -