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dc.contributor.advisorSoeroso, Noni N.
dc.contributor.advisorSinaga, Bintang YM.
dc.contributor.advisorMutiara, Erna
dc.contributor.authorAfiani, Dina
dc.date.accessioned2019-08-22T01:44:30Z
dc.date.available2019-08-22T01:44:30Z
dc.date.issued2019
dc.identifier.urihttp://repositori.usu.ac.id/handle/123456789/16964
dc.description.abstractLatar Belakang : Nikotin adalah komponen psikoaktif yang mengandung tembakau. Nikotin dimetabolisme di hati menjadi kotinin (COT), dan kemudian menjadi trans-3’-hidroksikotinin (3HC). Biomarker urin dapat memberikan informasi tentang asupan dan metabolism nikotin. Tujuan : Mengidentifikasi kadar nikotin dan kotinin di dalam urin pada perokok aktif Metode Penelitian :Sampel konsekutif dan penelitian deskriptif.Seluruh sampel berjenis kelamin laki-laki, perokok atau memiliki riwayat merokok.Peneliti menilai kadar nikotin dan kotinin dengan menggunakan teknik Liquid Chromatography tandem-Mass Spectometry (LC-MS/MS). Hasil : Penelitian ini meliputi 46 sampel terdiri dari 23 orang perokok aktif dan 23 orang mantan perokok. Diperoleh rerata ± SD nikotin adalah 1276.4 ± 918.5 ng/ml, rerata ± SD kotinin adalah 2210.9 ± 1659.4 ng/ml, rerata ± SD trans-3’-hidroksikotinin adalah 2196.0 ± 2417.3 ng/ml pada perokok aktif. Kesimpulan : Terdapat peningkatan kadar nikotin dan kotinin di urin pada perokok aktif.en_US
dc.description.abstractIntroduction: Nicotine is a psychoactive component contained in tobacco. Nicotine is metabolized in the liver into cotinine (COT), and then into trans-3’-hydroxicotinine (3HC). Urine biomarkers can provide information about the intake and metabolism of nicotine. Aim: Identified nicotine and cotinine levels in the urine of the active smokers. Methods: The samples were consecutive, and the study was descriptive. All subjects were male and smokers or had a history of smoking. The nicotine and cotinine levels of subjects were assessed using the Liquid Chromatography tandem-Mass Spectrometry (LCMS/MS). Results: A total of 46 subjects participated in the study consisting of 23 active smokers and 23 former smokers. The mean ± SD of nicotine obtained was 1276.4 ± 918.5 ng/ml, the mean ± SD of cotinine obtained was 2210.9 ± 1659.4 ng/ml, and the mean ± SD trans-3’-hydroxicotinine was 2196.0 ± 2417.3 ng/ml for active smokers. Conclusion: There was an increase in the nicotine and cotinine levels in the urine of active smokers.en_US
dc.language.isoiden_US
dc.publisherUniversitas Sumatera Utaraen_US
dc.subjectNikotinen_US
dc.subjectKotininen_US
dc.subjectPerokoken_US
dc.titleProfil Nikotin, Kotinin dan Trans-3’-Hidroksikotinin di Urin Perokok Aktifen_US
dc.typeThesisen_US
dc.identifier.nimNIM147107016
dc.description.pages79 Halamanen_US
dc.description.typeTesis Magisteren_US


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