紫外线辐射对拇舌肌损伤的实验研究

Decis. Sci. Pub Date : 2022-03-15 DOI:10.3390/sci4010012
Azhagu Raj Ramakrishnan, Krishna Kumar, Palavesam Arunachalam, M. Sankar, Prathap Selvaraj, S. Jheeta
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引用次数: 1

摘要

紫外线(UV)辐射是太阳发出的电磁辐射光谱的一部分。本研究旨在研究紫外线辐射对鱼类角质层即舌骨的有害影响。本研究在泰米尔纳德邦Thoothukudi区Srivaikuntam Taluk的Thandavarayankulam湖采集了一种健康的giuris,重1.20 g,长4.06 cm。它们被装在通风良好的容器里运到实验室。实验过程中,将6只朱氏鳗(G. giuris)放入紫外线室(UVA和UVB) 1小时。之后,从紫外线箱中收集实验鱼,使用标准方法解剖组织学和生化研究。UVA和UVB短时间照射淡水朱氏肌组织,上皮明显变性,条纹消失,隔壁增厚,纤维断裂,条纹消失,鳃动脉破裂。研究还发现,肌肉组织中的碳水化合物、蛋白质和脂质含量显著降低。本研究证实了紫外线辐射对朱氏鱼角质层的破坏作用。超微结构和生化变化的发生很大程度上取决于紫外线的能量;在这种情况下,具有更高破坏能量(4.4 eV)的UVB辐射比能量水平为3.9 eV的UVA辐射对朱氏肌的有害影响更大。
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Deleterious Effect of Ultraviolet Radiation on Glossogobius giuris: A Short Experimental Study
Ultraviolet (UV) radiation is a part of the spectrum of electromagnetic radiation emitted by the Sun. The present study was conducted to examine the deleterious effects of UV radiation on the stratum corneum of fish—namely, Glossogobius giuris. In this study, healthy living specimens of G. giuris species weighing (1.20 g) and length (4.06 cm) were collected from Thandavarayankulam lake, Srivaikuntam Taluk, Thoothukudi District, Tamil Nadu. They were transported to the laboratory in well-aerated containers. During the experiment, the fish G. giuris (n = 6) was introduced into the UV Chamber (UVA and UVB) for one hour. After that, experimental fishes were collected from the UV Chamber were dissected for histological and biochemical studies using standard methodology. The short-term exposure of UVA and UVB rays on freshwater G. giuris muscle tissue showed marked degeneration of the epithelium, the disappearance of striations, thickened septal wall, broken fibre, and the disappearance of striation, followed by branchial arterial rupture. It was also determined that carbohydrate, protein, and lipid contents of the muscle tissue were significantly reduced. This study confirmed the destructive effects of UV radiation on the stratum corneum of fish G. giuris. The ultrastructural and biochemical changes occur depending largely on the energy of the UV rays; in this case, the UVB radiation, with higher destructive energy (4.4 eV), had a greater detrimental effect on the muscles of G. giuris than UVA, with its energy level of 3.9 eV.
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