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首页> 外文期刊>Journal of bronchology & interventional pulmonology >Rationale for the Development and the Mechanism of Action of Endoscopic Thermal Vapor Ablation (InterVapor) for the Treatment of Emphysema
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Rationale for the Development and the Mechanism of Action of Endoscopic Thermal Vapor Ablation (InterVapor) for the Treatment of Emphysema

机译:内镜热蒸汽消融(InterVapor)治疗肺气肿的发展及其作用机理的基本原理

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摘要

Background: Emphysema remains a disabling disease despite current treatment. Novel approaches to the underlying physiological abnormalities responsible for symptom generation are warranted.Methods: A review of current hypotheses and preclinical and clinical data on the utility of endoscopic thermal vapor ablation (InterVapor?) in the treatment of emphysema.Results: In animal studies, thermal energy in the form of heated water vapor both in healthy and in papain-in-duced emphysema in dogs and sheep leads to an inflammatory response followed by healing with airway and parenchymal fibrosis. The fibrosis and associated distal atelectasis result in volume reduction. The amount of thermal energy delivered has been based on the amount of target tissue mass determined from a high-resolution computed tomogram. Early human studies indicated the feasibility of InterVapor with 5 cal/g tissue; however, the dose appeared insufficient to induce lobar volume reduction. A study using 10 cal/g to 1 upper lobe (n = 44) induced a mean of 46% lobar volume reduction at 12 months along with significant improvements in the physiology and health outcomes.Conclusions: InterVapor induces lung volume reduction in patients with emphysema. The mechanism of action is through a thermally induced inflammatory response followed by healing with subsequent remodeling of tissue (fibrosis and distal atelectasis).
机译:背景:尽管有目前的治疗方法,肺气肿仍然是致残性疾病。方法:对内窥镜热蒸气消融(InterVapor?)在治疗肺气肿中的效用的当前假说以及临床前和临床数据进行回顾,结果是必要的:在动物研究中,在狗和绵羊中,在健康状态和木瓜诱发的肺气肿中,以热水蒸气的形式产生的热能都会导致炎症反应,随后气道和实质性纤维化愈合。纤维化和相关的远端肺不张导致体积减少。所传递的热能的数量已经基于从高分辨率计算机断层扫描图确定的目标组织质量的数量。早期的人体研究表明,InterVapor具有5 cal / g组织的可行性。然而,剂量似乎不足以引起大叶体积的减少。使用10 cal / g到1的上叶(n = 44)进行的一项研究在12个月时平均使肺叶体积减少46%,同时生理和健康结局也得到了显着改善。结论:InterVapor导致肺气肿患者的肺体积减少。作用机理是通过热诱导的炎症反应,然后愈合并随后进行组织重塑(纤维化和远端肺不张)。

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