Burkhart Craig N, Burkhart Craig G
University of North Carolina at Chapel Hill, North Carolina, USA.
J Am Acad Dermatol. 2005 Jul;53(1):129-33. doi: 10.1016/j.jaad.2005.01.134.
Head lice, like many insects, produce a protective coating for their newly laid eggs that is essential to the survival of the species. Knowledge of the composition of the sheath, which is the glue by which the egg is attached to human hair, and the nit laying process could lead to production of agents that could be used to attack louse infestations by interfering with the normally protected environment of nymph development within the egg. The physical removal of nits has become an important part of treatment of head louse infestations given the "no-nit" policy in schools. Biochemical analysis has revealed that the nit sheath of the head louse is composed of 4 bands of protein, possibly cross-linked to aliphatic components with a tertiary structure of beta sheeting. Nature has protected the louse by making the nit sheath similar in composition to the hair; thereby, agents designed to unravel the nit sheath may also damage human hair. Possible targets to destroy the nit sheath include proteases, denaturants, beta sheet breaker proteins, and small protein inhibitors of sheath formation. Better understanding of insect glues may allow us to develop compounds so that the liquid secretions of the collateral glands of the female louse, which becomes the nit sheath, do not solidify by oxidation when placed with the louse egg onto human hair. Knowledge of insect behavior, such as oviposition, may also suggest methods for repelling female lice from laying eggs onto hair. Alternatively, agents that coat the nits and restrict the oxygen transfer to the developing larvae may prove beneficial.
头虱与许多昆虫一样,会为其新产的卵分泌一种保护涂层,这对该物种的生存至关重要。了解卵鞘(即卵附着在人发上的胶水)的成分以及虱卵的产卵过程,可能会研发出一些制剂,通过干扰卵内若虫发育的正常保护环境来对抗头虱感染。鉴于学校的“无虱卵”政策,物理去除虱卵已成为头虱感染治疗的重要组成部分。生化分析表明,头虱的卵鞘由4条蛋白质带组成,可能与具有β折叠二级结构的脂肪族成分交联。大自然通过使卵鞘的成分与头发相似来保护头虱;因此,旨在解开卵鞘的制剂可能也会损伤人类头发。破坏卵鞘的可能靶点包括蛋白酶、变性剂、β折叠破坏蛋白以及鞘形成的小蛋白抑制剂。对头虱胶水有更深入的了解,可能会使我们研发出化合物,使雌虱副腺分泌的、形成卵鞘的液体分泌物在与虱卵一起放置在人发上时不会因氧化而固化。了解昆虫行为,如产卵行为,也可能会提示一些方法来驱赶雌虱在头发上产卵。或者,包裹虱卵并限制氧气向发育中幼虫转移的制剂可能会有帮助。