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首页> 外文期刊>The European respiratory journal : >Comparative airway response to high- versus low-molecular weight agents in occupational asthma.
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Comparative airway response to high- versus low-molecular weight agents in occupational asthma.

机译:职业性哮喘中高分子量和低分子量药物对气道的比较反应。

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摘要

Airway responses to occupational agents in sensitised workers may vary clinically and physiologically. The patterns of change in airway responsiveness, type of response and fall in expiratory flows following laboratory exposure to high- or low-molecular weight agents (HMW and LMW agents, respectively) were compared in sensitised workers. Data on workers who underwent specific inhalation challenges with occupational sensitisers (117 exposed to HMW agents and 130 to LMW agents) were collected from their medical charts. Maximum falls in forced expiratory volume in one second (FEV(1)) were of similar magnitude for both types of agents. Compared with HMW agents, LMW agents induced more frequently late or dual responses and higher increases in airway responsiveness. After exposure to HMW agents, there was a mean+/-sd reduction in doubling concentrations of methacholine of 0.5+/-1.7 for early responses, compared with 2.8+/-1.2 and 1.4+/-2.0 for late and dual responses, respectively. Isolated early responses were more frequently found in females, smokers, workers with a higher % predicted FEV(1) and higher provocation concentration causing a 20% fall in FEV(1), and in those with longer asthma duration. Workers' characteristics, as well as the type of agent they are sensitised to, may help to predict the type of response after specific inhalation challenge.
机译:致敏工人中气道对职业病的反应可能在临床和生理上有所不同。在致敏工人中,比较了实验室暴露于高分子量或低分子量药物(分别为HMW和LMW药物)后气道反应性的变化模式,反应类型和呼气流量下降。从他们的病历表中收集了使用职业敏化剂进行特定吸入挑战的工人的数据(117暴露于HMW药剂,130暴露于LMW药剂)。对于两种类型的代理,在一秒钟内最大呼气量下降幅度(FEV(1))大小相似。与HMW药剂相比,LMW药剂更频繁地诱发晚期或双重反应,并增加气道反应性。暴露于HMW药物后,早期反应的乙酰甲胆碱加倍浓度平均降低+/- sd 0.5 +/- 1.7,而晚期和双重反应分别降低2.8 +/- 1.2和1.4 +/- 2.0。女性,吸烟者,预测FEV(1)较高的百分比和较高的挑衅浓度导致FEV(1)下降20%的工人以及哮喘病持续时间较长的工人中,孤立的早期反应更为常见。工人的特征以及他们对药物敏感的类型,可能有助于预测特定的吸入挑战后的反应类型。

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