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甲基爱康宁包裹着可卡因颗粒。

Methylecgonidine coats the crack particle.

作者信息

Wood R W, Shojaie J, Fang C P, Graefe J F

机构信息

Department of Environmental Medicine, NYU Medical Center, Tuxedo 10987, USA.

出版信息

Pharmacol Biochem Behav. 1996 Jan;53(1):57-66. doi: 10.1016/0091-3057(95)00198-0.

Abstract

Crack is a form of cocaine base self-administered by smoking. When heated, it volatilizes and may partially pyrolyze to methylecgonidine (MEG). Upon cooling, a condensation aerosol forms. Heating cocaine base in model crack pipes produced particles of about 1 micron in diameter, regardless of the amount heated; however, MEG concentration increased from < or = 2% at 10 mg per heating to as much as 5% at 30 mg per heating. Methylecgonidine was < or = 1% of the recovered material when cocaine was vaporized off a heated wire coil, but the particles were larger (2-5 microns), and the distribution disperse. The vapor pressure of MEG was higher [log P(mm Hg) = 9.994 - 3530/T] than cocaine base, consistent with MEG coating the droplet during condensation, and with evaporation during aging or dilution. Disappearance of MEG from a chamber filled with crack smoke was a two-component process, one proceeding at the rate of cocaine particle removal, and the other at the desorption rate from other surfaces. Particle diameter influences the deposition site in the respiratory tract; thus, the likely different patterns of deposition in the respiratory tract of humans and animals of crack aerosols produced by different techniques warrant consideration, as they may influence our understanding of immediate and delayed sequelae of the inhalation of cocaine and its pyrolysis product, MEG.

摘要

快克是一种通过吸烟自行服用的可卡因碱形式。加热时,它会挥发并可能部分热解为甲基芽子碱(MEG)。冷却后,会形成冷凝气溶胶。在模拟快克烟斗中加热可卡因碱,无论加热量多少,都会产生直径约1微米的颗粒;然而,MEG浓度从每次加热10毫克时的≤2%增加到每次加热30毫克时的高达5%。当可卡因从加热的线圈上蒸发时,甲基芽子碱占回收物质的≤1%,但颗粒较大(2 - 5微米),且分布分散。MEG的蒸气压高于可卡因碱[log P(mmHg)=9.994 - 3530/T],这与MEG在冷凝过程中包裹液滴以及在老化或稀释过程中蒸发一致。MEG从充满快克烟雾的腔室中消失是一个双组分过程,一个以可卡因颗粒去除的速率进行,另一个以从其他表面的解吸速率进行。颗粒直径会影响呼吸道中的沉积部位;因此,不同技术产生的快克气溶胶在人和动物呼吸道中可能不同的沉积模式值得考虑,因为它们可能会影响我们对吸入可卡因及其热解产物MEG的即时和延迟后果的理解。

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