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Some electronic cigarettes may increase health risks

High-voltage (e-cigarettes) may expose users to increased levels of , including and acetaldehyde, according to research led by , PhD, PharmD, a researcher in the Department of Health Behavior at (RPCI). The study was published online by Nicotine and Tobacco Research, a peer-reviewed journal.

E-cigarettes are the battery-operated devices in which heat is applied to a liquid solution (e-liquid) filled with nicotine, flavors and other chemicals. The user then inhales the resulting vapor. The e-liquid is primarily composed of glycerin (VG) and propylene glycol (PG).

Some e-cigarette devices allow the user to change the voltage of the device to increase vapor production and nicotine delivery. Dr. Goniewicz and colleagues examined various chemicals in vapors generated from the same e-cigarette but at variable voltages. They found that when an e-cigarette was operated at lower voltage, the vapors generated contain only traces of some toxic chemicals. These compounds included formaldehyde, a known carcinogen; acetaldehyde, which is considered a possible carcinogen to humans; and two chemicals known to irritate nasal, lung and/or mucous tissues, acrolein and acetone. When the voltage was increased, the levels of toxicants also significantly increased.

“These results suggest that some types of electronic cigarettes might expose their users to the same or even higher levels of carcinogenic formaldehyde than tobacco smoke,” says Dr. Goniewicz. “Users of high-voltage e-cigarettes need to be warned about this increased risk of harmful effects.”

The researchers examined two factors that demonstrated increased health risk to users: nicotine solvent and battery output voltage, says Dr. Goniewicz. Goniewicz recommends further research to examine other product characteristics that may impact toxicity, such as the types of heating elements, flavorings, additives and product storage conditions.

This study, “Carbonyl compounds in vapors – effects of nicotine solvent and battery output voltage,” was conducted in collaboration with scientists from the Medical University of Silesia in Poland.

Source

Carbonyl Compounds in Electronic Cigarette Vapors-Effects of Nicotine Solvent and Battery Output Voltage, Leon Kosmider, Pharm, Andrzej Sobczak, PhD, Maciej Fik, Pharm, Jakub Knysak, Pharm, Marzena Zaciera, Ph, Jolanta Kurek, Ph and Maciej Lukasz Goniewicz, Pharm, PhD, Nicotine Tob Res, DOI: 10.1093/ntr/ntu078, published online 15 May 2014.

Oxford University Press