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蝴蝶蛹翅组织中的伤口愈合:长距离细胞迁移、簇形成和钙振荡的实时体内成像

Wound Healing in Butterfly Pupal Wing Tissues: Real-Time In Vivo Imaging of Long-Range Cell Migration, Cluster Formation, and Calcium Oscillations.

作者信息

Nagai Shuka, Otaki Joji M

机构信息

The BCPH Unit of Molecular Physiology, Department of Chemistry, Biology and Marine Science, Faculty of Science, University of the Ryukyus, Nishihara, Okinawa 903-0213, Japan.

Department of Molecular Neuroscience, Graduate School of Frontier Biosciences, Osaka University, Suita, Osaka 565-0871, Japan.

出版信息

Insects. 2025 Jan 27;16(2):124. doi: 10.3390/insects16020124.

Abstract

Insects can repair wounds and regenerate body parts in response to physical damage. Wound healing in butterfly pupal wing tissues is developmentally interesting because ectopic color patterns develop during healing, suggesting that normal and damage-induced color patterns may use similar mechanisms. Here we physiologically investigated wound healing and ectopic color pattern formation in butterfly pupal wing tissues using the blue pansy butterfly . In response to physical puncture damage, various ectopic color patterns are formed around the damage site. After the wounding operation, we observed hemocytes migrating over long distances along the wing veins (lacunae) toward the damage site, where hemocytes and epidermal cells formed cellular clusters. Calcium oscillations were observed in cells at and near the damage site. Calcium oscillations were transiently affected by ruthenium red, an inhibitor of calcium transporters and channels, and ruthenium red caused various abnormalities in the scales of adult wings. These results suggest that cell migration, cluster formation, and calcium oscillations play important roles in wound healing and scale development at and near the damage site. Ectopic color patterns may develop in response to local calcium oscillations as a consequence of the evolutionary co-option of the healing process for normal development.

摘要

昆虫能够对身体损伤做出反应,修复伤口并再生身体部位。蝴蝶蛹翅组织的伤口愈合在发育方面很有趣,因为在愈合过程中会形成异位颜色模式,这表明正常和损伤诱导的颜色模式可能使用相似的机制。在这里,我们使用蓝堇蝶对蝴蝶蛹翅组织的伤口愈合和异位颜色模式形成进行了生理学研究。针对物理穿刺损伤,在损伤部位周围会形成各种异位颜色模式。在进行伤口操作后,我们观察到血细胞沿着翅脉(腔隙)远距离迁移至损伤部位,在那里血细胞和表皮细胞形成细胞簇。在损伤部位及附近的细胞中观察到了钙振荡。钙振荡受到钙转运体和通道抑制剂钌红的短暂影响,钌红导致成年翅膀鳞片出现各种异常。这些结果表明,细胞迁移、簇形成和钙振荡在损伤部位及附近的伤口愈合和鳞片发育中起重要作用。作为愈合过程在正常发育中进化性共选的结果,异位颜色模式可能会因局部钙振荡而形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e2b/11856899/93cbb45197d3/insects-16-00124-g001.jpg

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