Abstract
Epidemiological studies suggest cigarette smoking as a probable environmental factor for a variety of congenital anomalies, including low bone mass, increased fracture risk and poor skeletal health. Human and animal in vitro models have confirmed hypomineralization of differentiating cell lines with sidestream smoke being more harmful to developing cells than mainstream smoke. Furthermore, first reports are emerging to suggest a differential impact of conventional versus harm-reduction tobacco products on bone tissue as it develops in the embryo or in vitro. To gather first insight into the molecular mechanism of such differences, we assessed the effect of sidestream smoke solutions from Camel (conventional) and Camel Blue (harm-reduction) cigarettes using a human embryonic stem cell osteogenic differentiation model. Sidestream smoke from the conventional Camel cigarettes concentration-dependently inhibited in vitro calcification triggered by high levels of mitochondrially generated oxidative stress, loss of mitochondrial membrane potential, and reduced ATP production. Camel sidestream smoke also induced DNA damage and caspase 9-dependent apoptosis. Camel Blue-exposed cells, in contrast, invoked only intermediate levels of reactive oxygen species insufficient to activate caspase 3/7. Despite the absence of apoptotic gene activation, damage to the mitochondrial phenotype was still noted concomitant with activation of an anti-inflammatory gene signature and inhibited mineralization. Collectively, the presented findings in differentiating pluripotent stem cells imply that embryos may exhibit low bone mineral density if exposed to environmental smoke during development.
Funder
Tobacco-Related Disease Research Program
National Institutes of Health
TRDRP Cornelius Hopper Diversity Award, a TRDRP pre-doctoral fellowship
International Foundation for Ethical Research
University of California Riverside Chancellor’s Postdoctoral Fellowship
National Science Foundation
National Institute of Environmental Health Sciences T32 traineeship
Subject
Cell Biology,Clinical Biochemistry,Molecular Biology,Biochemistry,Physiology
Reference101 articles.
1. The role of research in international tobacco control;Warner;Am. J. Public Health,2005
2. Estimates of smoking before and during pregnancy, and smoking cessation during pregnancy: Comparing two population-based data sources;Tong;Public Health Rep.,2013
3. Parental smoking during pregnancy and offspring bone mass at age 10 years: Findings from a prospective birth cohort;Tobias;Osteoporos. Int.,2011
4. Neonatal bone mass: Influence of parental birthweight, maternal smoking, body composition, and activity during pregnancy;Godfrey;J Bone Miner Res.,2001
5. Centers for Disease Control and Prevention (CDC) (2008). Smoking prevalence among women of reproductive age—United States, 2006. MMWR Morb. Mortal. Wkly. Rep., 57, 849–852.
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