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Fluorescence imaging for a noninvasive in vivo toxicity-test using a transgenic silkworm expressing green fluorescent protein

机译:使用表达绿色荧光蛋白的转基因家蚕进行无创体内毒性试验的荧光成像

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摘要

In drug development, the toxicity of candidate chemicals must be carefully examined in an animal model. Here we developed a live imaging technique using silkworms for a noninvasive toxicity test applicable for drug screening. Injection of carbon tetrachloride, a tissue-injuring chemical, into transgenic silkworms expressing green fluorescent protein (GFP) induced leakage of GFP from the tissues into the hemolymph. The leakage of GFP was suppressed by pre-administration of either cimetidine, a cytochrome P450 inhibitor, or N-acetyl cysteine, a free-radical scavenger. The transgenic silkworm was made transparent by feeding a diet containing chemicals that inhibit uric acid deposition in the epithelial cells. In the transparent silkworms, GFP fluorescence in the fat body could be observed from outside the body. Injection of salicylic acid or iron sulfate, tissue-injuring chemicals, into the transparent silkworms decreased the fluorescence intensity of the GFP in the fat body. These findings suggest that the transparent GFP-expressing silkworm model is useful for evaluating the toxicity of chemicals that induce tissue injury.
机译:在药物开发中,必须在动物模型中仔细检查候选化学物质的毒性。在这里,我们开发了一种使用家蚕的实时成像技术,用于可用于药物筛选的非侵入性毒性测试。向表达绿色荧光蛋白(GFP)的转基因家蚕中注射四氯化碳(一种会伤害组织的化学物质)会诱导GFP从组织渗入淋巴液。通过预先服用西咪替丁(一种细胞色素P450抑制剂)或N-乙酰基半胱氨酸(一种自由基清除剂)可以抑制GFP的泄漏。通过饲喂含有抑制尿酸在上皮细胞中沉积的化学物质的饮食,使转基因蚕变得透明。在透明的家蚕中,可以从人体外观察到脂肪体内的GFP荧光。将水杨酸或硫酸铁(对组织有害的化学物质)注射到透明的蚕中可降低脂肪体内GFP的荧光强度。这些发现表明,表达GFP的透明蚕模型可用于评估诱导组织损伤的化学物质的毒性。

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