| | Nicotine is an alkaloid in tobacco that is responsible for the addictive nature of cigarette smoking and other tobacco use. Regular nicotine consumption leads to [[tolerance]]<ref>Porchet, H. C., Benowitz, N. L., & Sheiner, L. B. (1988). Pharmacodynamic model of tolerance: Application to nicotine. ''Journal of Pharmacology & Experimental Therapeutics, 244'', 231-236</ref> (i.e., higher doses are required to achieve the same effect), and [[withdrawal]]<ref>Hughes, J.R., Higgins, S.T., & Bickel, W.K. (1994). Nicotine withdrawal versus other drug withdrawal syndromes: Similarities and dissimilarities. ''Addiction, 89'', 1461-1470</ref> symptoms (e.g., irritability, restlessness, nicotine cravings) occur when use is discontinued. Intake elicits acute increases in heart rate and blood pressure<ref>Benowitz, N.L., Jacob, P., Jones, R.T., & Rosenberg, J. (1982). Interindividual variability in the metabolism and cardiovascular effects of nicotine in man. ''Journal of Pharmacology & Experimental Therapeutics, 221'', 368-372.''</ref>, as well as respiratory rate, but also decreases the volume of blood flow by causing the constriction of blood vessels. Nicotine in cigarette smoke is very easily absorbed through the lungs and buccal tissue in the oral cavity<ref>Miller, M.S., & Cocores, J.A. (1993). Nicotine dependence: Diagnosis, chemistry and pharmacologic treatments. ''Pediatrics in Review, 14'', 275-279.</ref>, and reaches the brain about seven seconds after it is inhaled in cigarette smoke<ref>Benowitz, N.L. (1991). Pharmacodynamics of nicotine: Implications for rational treatment of nicotine addiction. ''British Journal of Addiction, 86'', 495-499.</ref>. After reaching the brain, it stimulates the release of a number of [[neurotransmitters]], including [[dopamine]]<ref>Stolerman, I.P., & Shoaib, M. (1991). The neurobiology of tobacco addiction. ''Trends in Pharmacological Science, 12'', 467-473.</ref>, [[norepinephrine]]<ref>Summers, K.L., & Giacobini, E. (1995). Effects of local and repeated systemic administration of (-)nicotine on extracellular levels of acetylcholine, norepinephrine, dopamine and serotonin in rat cortex. ''Neurochemical Research, 20'', 753-759.</ref>, [[serotonin]]<ref>Ribeiro, E.B., Bettiker, R.L., Bogdanov, M., & Wurtman, R.J. (1993). Effects of systemic nicotine on serotonin release in rat brain. ''Brain Research, 621'', 311-318.</ref>, and [[acetylcholine]]<ref>Summers & Giacobini, 1995.</ref>. The increased availability of these chemicals in the brain leads to feelings of pleasure and mild euphoria, as well as increased alertness and concentration. The half-life of nicotine is approximately two hours. | | Nicotine is an alkaloid in tobacco that is responsible for the addictive nature of cigarette smoking and other tobacco use. Regular nicotine consumption leads to [[tolerance]]<ref>Porchet, H. C., Benowitz, N. L., & Sheiner, L. B. (1988). Pharmacodynamic model of tolerance: Application to nicotine. ''Journal of Pharmacology & Experimental Therapeutics, 244'', 231-236</ref> (i.e., higher doses are required to achieve the same effect), and [[withdrawal]]<ref>Hughes, J.R., Higgins, S.T., & Bickel, W.K. (1994). Nicotine withdrawal versus other drug withdrawal syndromes: Similarities and dissimilarities. ''Addiction, 89'', 1461-1470</ref> symptoms (e.g., irritability, restlessness, nicotine cravings) occur when use is discontinued. Intake elicits acute increases in heart rate and blood pressure<ref>Benowitz, N.L., Jacob, P., Jones, R.T., & Rosenberg, J. (1982). Interindividual variability in the metabolism and cardiovascular effects of nicotine in man. ''Journal of Pharmacology & Experimental Therapeutics, 221'', 368-372.''</ref>, as well as respiratory rate, but also decreases the volume of blood flow by causing the constriction of blood vessels. Nicotine in cigarette smoke is very easily absorbed through the lungs and buccal tissue in the oral cavity<ref>Miller, M.S., & Cocores, J.A. (1993). Nicotine dependence: Diagnosis, chemistry and pharmacologic treatments. ''Pediatrics in Review, 14'', 275-279.</ref>, and reaches the brain about seven seconds after it is inhaled in cigarette smoke<ref>Benowitz, N.L. (1991). Pharmacodynamics of nicotine: Implications for rational treatment of nicotine addiction. ''British Journal of Addiction, 86'', 495-499.</ref>. After reaching the brain, it stimulates the release of a number of [[neurotransmitters]], including [[dopamine]]<ref>Stolerman, I.P., & Shoaib, M. (1991). The neurobiology of tobacco addiction. ''Trends in Pharmacological Science, 12'', 467-473.</ref>, [[norepinephrine]]<ref>Summers, K.L., & Giacobini, E. (1995). Effects of local and repeated systemic administration of (-)nicotine on extracellular levels of acetylcholine, norepinephrine, dopamine and serotonin in rat cortex. ''Neurochemical Research, 20'', 753-759.</ref>, [[serotonin]]<ref>Ribeiro, E.B., Bettiker, R.L., Bogdanov, M., & Wurtman, R.J. (1993). Effects of systemic nicotine on serotonin release in rat brain. ''Brain Research, 621'', 311-318.</ref>, and [[acetylcholine]]<ref>Summers & Giacobini, 1995.</ref>. The increased availability of these chemicals in the brain leads to feelings of pleasure and mild euphoria, as well as increased alertness and concentration. The half-life of nicotine is approximately two hours. |