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首页> 外文期刊>BMC Dermatology >Effectiveness of isopropyl myristate/cyclomethicone D5 solution of removing cuticular hydrocarbons from human head lice (Pediculus humanus capitis)
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Effectiveness of isopropyl myristate/cyclomethicone D5 solution of removing cuticular hydrocarbons from human head lice (Pediculus humanus capitis)

机译:肉豆蔻酸异丙酯/环甲硅油D5溶液从人头虱(Pediculus humanus capitis)去除表皮碳氢化合物的功效

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Background In the treatment of human head lice infestation, healthcare providers are increasingly concerned about lice becoming resistant to existing pesticide treatments. Traditional pesticides, used to control these pests, have a neurological mechanism of action. This publication describes a topical solution with a non-traditional mechanism of action, based on physical disruption of the wax layer that covers the cuticle of the louse exoskeleton. This topical solution has been shown clinically to cure 82% of patients with only a 10-minute treatment time, repeated once after 7?days. All insects, including human head lice, have a wax-covered exoskeleton. This wax, composed of hydrocarbons, provides the insect with protection against water loss and is therefore critical to its survival. When the protective wax is disrupted, water loss becomes uncontrollable and irreversible, leading to dehydration and death. A specific pattern of hydrocarbons has been found in all of the head louse cuticular wax studied. Iso-octane effectively removes these hydrocarbons from human head lice’s cuticular wax. Methods A method of head louse cuticle wax extraction and analysis by gas chromatography was developed. Human head lice (Pediculus humanus capitis) were collected from infested patients and subjected to any of three extraction solvents comprising either the test product or one of two solvents introduced as controls. A gas chromatograph equipped with a flame ionization detector (GC/FID) was used to determine the presence of hydrocarbons in the three head lice extracts. Results In the study reported herein, the test product isopropyl myristate/cyclomethicone D5 (IPM/D5) was shown to perform comparably with iso-octane, effectively extracting the target hydrocarbons from the cuticular wax that coats the human head louse exoskeleton. Conclusions Disruption of the integrity of the insect cuticle by removal of specific hydrocarbons found in the cuticular wax appears to offer a mechanism for killing lice without the likelihood of encountering genetic resistance.
机译:背景技术在治疗人头虱的过程中,医疗保健提供者越来越关注虱子对现有农药的治疗产生抵抗力。用于控制这些害虫的传统农药具有神经作用机制。该出版物基于覆盖虱子外骨骼表皮的蜡层的物理破坏,描述了具有非传统作用机理的局部解决方案。这种局部用药溶液已在临床上显示仅用10分钟的治疗时间即可治愈82%的患者,并在7天后重复一次。所有昆虫,包括人类头虱,都有蜡覆盖的外骨骼。这种由碳氢化合物组成的蜡为昆虫提供了防止水分流失的保护,因此对其生存至关重要。当保护蜡被破坏时,失水变得不可控制且不可逆转,从而导致脱水和死亡。在所有研究的头虱表皮蜡中都发现了特定的碳氢化合物图案。异辛烷有效地从人头虱的表皮蜡中去除了这些碳氢化合物。方法建立头虱表皮蜡的气相色谱分析方法。从受感染的患者中收集人头虱(人为Pediculus humanus capitis),并使其经受三种提取溶剂中的任一种,所述提取溶剂包含测试产物或作为对照引入的两种溶剂中的一种。配备有火焰离子检测器(GC / FID)的气相色谱仪用于确定三种头虱提取物中碳氢化合物的存在。结果在本文报道的研究中,测试产品肉豆蔻酸异丙酯/环甲硅油D5(IPM / D5)与异辛烷具有相似的性能,可以有效地从覆盖人头虱外骨骼的表皮蜡中提取目标烃。结论通过去除表皮蜡中发现的特定烃类破坏昆虫表皮的完整性似乎为杀死虱子提供了一种机制,而不会遇到遗传抗性。

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