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Climbing ability of teneral and sclerotized adult bed bugs and assessment of adhesive properties of the exoskeletal fluid using atomic force microscopy

机译:利用原子力显微镜对成年和硬化成年臭虫的攀爬能力以及骨骼外液的黏附特性进行评估

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摘要

We observed that teneral adults (<1 h post-molt) of Cimex lectularius L. appeared more adept at climbing a smooth surface compared to sclerotized adults. Differences in climbing ability on a smooth surface based on sclerotization status were quantified by measuring the height to which bed bugs climbed when confined within a glass vial. The average maximum height climbed by teneral (T) bed bugs (n = 30, height climbed = 4.69 cm) differed significantly (P< 0.01) from recently sclerotized (RS) bed bugs (n = 30, height climbed = 1.73 cm at ~48 h post molt), sclerotized group 1 (S1) bed bugs (n = 30, S1 = 2.42 cm at >72 h), and sclerotized group 2 (S2) bed bugs (n = 30, height climbed = 2.64 cm at >72 h post molt). When heights from all climbing events were summed, teneral bed bugs (650.8 cm climbed) differed significantly (P< 0.01) from recently sclerotized (82 cm climbed) and sclerotized (group 1 = 104.6 cm climbed, group 2 = 107.8 cm climbed) bed bugs. These findings suggested that the external surface of teneral bed bug exoskeletons possess an adhesive property. Using atomic force microscopy (AFM), we found that adhesion force of an exoskeletal (presumably molting) fluid decreased almost five-fold from 88 to 17 nN within an hour of molting. Our findings may have implications for laboratory safety and the effectiveness of bed bug traps, barriers, and biomimetic-based adhesives.
机译:我们观察到,Cimex lectularius L.的成年成年(蜕皮后<1小时)与硬化成年相比,似乎更擅长攀登光滑表面。基于硬化状态,在光滑表面上爬升能力的差异通过测量臭虫在玻璃小瓶中时爬升的高度来量化。 ten虫(T)臭虫(n = 30,爬高4.69 cm)的平均最大高度与最近硬化的(RS)臭虫(n = 30,爬高= 1.73 cm)有显着差异(P <0.01)蜕皮后48小时),硬化的第1组(S1)臭虫(n> 30,S1 = 2.42 cm(> 72 h))和硬化的第2组(S2)的臭虫(n = 30,爬高= 2.64 cm在>蜕皮后72小时)。将所有攀爬事件的高度相加后,ten虫床(攀爬650.8 cm)与刚硬化(攀爬82 cm)和硬化(第1组=攀爬104.6 cm,第2组=攀爬107.8 cm)的床显着不同(P <0.01)错误。这些发现表明,bed虫外骨骼的外表面具有粘附性。使用原子力显微镜(AFM),我们发现外骨骼(大概是蜕皮)液体的附着力在蜕皮后一小时内从88 nN下降了近五倍。我们的发现可能对实验室安全以及臭虫陷阱,屏障和仿生粘合剂的有效性有影响。

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