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Roots and stems of Kadsura coccinea extract induced developmental toxicity in zebrafish embryos/larvae through apoptosis and oxidative stress

机译:通过凋亡和氧化应激,Kadsura Coccinea的根和茎促进斑马鱼胚胎/幼虫的发育毒性

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摘要

Context Although the roots and stems of Kadsura coccinea (Lem.) A. C. Smith. [Schisandraceae] are herbs and traditional foods in Li nationality, its toxicity remains unclear. Objective To study developmental toxicity of K. coccinea consumption and explain underlying mechanisms. Materials and methods Zebrafish were applied to assess LC50 values of hydroethanol extract (KCH) and water extract (KCW) of Kadsura coccinea. In further study, three concentrations groups of KCH (3.75, 7.5 and 15 μg/mL for embryo, 7.5, 15 and 30 μg/mL for larvae) and control group (n = 30) were administered. At specific stages of zebrafish development, spontaneous movement, hatching rate, etc., were measured. Gene expressions related to developmental toxicity were examined. Results The LC50 value of KCH (24 or 45 μg/mL) was lower than KCW (1447 or 2011 μg/mL) in embryos or larvae. The inhibited spontaneous movement (20%), hatching rate (20%), body length (12%) and eye area (30%) were observed after KCH treatment. Moreover, the decreased liver areas (25%) and fluorescence intensity (33%), increased ALT (37%) and AST levels (42%) were found in larvae treated with KCH (30 μg/mL). The increased ROS (89%), MDA concentrations (30%), apoptosis generation (62%) and decreased T-SOD activity (16%) were also observed. The represented genes of developmental hepatotoxicity, oxidative stress and apoptosis in zebrafish were activated after KCH (15 or 30 μg/mL) treatment. Discussion and conclusions These results demonstrate that KCH has developmental toxicity on zebrafish. Our study provides a scientific basis for further research on the toxicity of Kadsura coccinea.
机译:背景虽然是Kadsura Coccinea(LEM)A. C.史密斯的根源和茎。 [Schisandraceae]是李民族的草药和传统食品,其毒性尚不清楚。目的研究K.Coccinea消费的发育毒性,解释潜在机制。材料和方法应用斑马鱼评估Kadsura Coccinea的羟乙醇提取物(KCH)和水提取物(KCW)的LC50值。在进一步研究中,施用三组浓度的Kch(3.75,7.5和15μg/ ml,幼虫,7.5,15和30μg/ ml)和对照组(n = 30)。在斑马鱼发育的特定阶段,测量自发运动,孵化率等。研究了与发育毒性有关的基因表达。结果KCH(24或45μg/ ml)的LC50值低于胚胎或幼虫的KCW(1447或2011μg/ ml)。在KCH处理后,观察到抑制的自发运动(20%),阴影率(20%),体长(12%)和眼部区域(30%)。此外,在用Kch(30μg/ ml)处理的幼虫中发现了降低的肝脏区域(25%)和荧光强度(33%),增加(37%)和AST水平(42%)。还观察到增加的ROS(89%),MDA浓度(30%),凋亡产生(62%)和降低的T-SOD活性(16%)。在KCH(15或30μg/ mL)处理后,激活斑马鱼的发育肝毒性,氧化应激和凋亡的所代表的基因。讨论和结论这些结果表明KCH对斑马鱼具有发育毒性。我们的研究为进一步研究Kadsura Coccinea的毒性提供了科学依据。

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