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首页> 外文期刊>PLoS One >Adriamycin does not damage podocytes of zebrafish larvae
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Adriamycin does not damage podocytes of zebrafish larvae

机译:Adriamycin不会损害斑马鱼幼虫的幽面粒细胞

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摘要

Podocytes are highly specialized epithelial cells that are essential for an intact glomerular filtration barrier in the kidney. Several glomerular diseases like focal segmental glomerulosclerosis (FSGS) are initially due to podocyte injury and loss. Since causative treatments for FSGS are not available until today, drug screening is of great relevance. In order to test a high number of drugs, FSGS needs to be reliably induced in a suitable animal model. The zebrafish larva is an ideal model for kidney research due to the vast amount of offsprings, the rapid development of a simple kidney and a remarkable homology to the mammalian glomerulus. Zebrafish larvae possess a size-selective glomerular filtration barrier at 4 days post fertilization including podocytes with interdigitating foot processes that are connected by a slit membrane. Adriamycin is an anthracycline which is often used in mice and rats to induce a FSGS-like phenotype. In this study, we aimed to induce a similar phenotype to zebrafish larvae by adding adriamycin to the tank water in different concentrations. Surprisingly, zebrafish larvae did not develop glomerular injury and displayed an intact filtration barrier after treatment with adriamycin. This was shown by (immuno-) histology, our filtration assay, in vivo imaging by 2-photon microcopy, RT-(q)PCR as well as transmission electron microscopy. To summarize, adriamycin is unable to induce a podocyte-related damage in zebrafish larvae and therefore major effort must be made to establish FSGS in zebrafish larvae to identify effective drugs by screenings.
机译:巨粒细胞是高度专业的上皮细胞,对于肾脏中的完整肾小球过滤屏障是必不可少的。几种肾小球疾病等局灶性细分肾小球粥样硬化(FSG)最初是由于泛骨细胞损伤和损失。由于在今天的FSGs的原因处理不可用,因此药物筛选具有很大的相关性。为了测试大量药物,需要可靠地在合适的动物模型中诱导FSG。斑马鱼幼虫是由于大量后代的肾脏研究的理想模型,简单的肾脏的快速发展以及对哺乳动物肾小球的显着同源性。斑马鱼幼虫在施肥后4天具有尺寸选择性的肾小球过滤屏障,包括具有狭缝膜连接的跨型脚工艺的诱饵。 Adriamycin是一种蒽环苷,通常用于小鼠和大鼠,以诱导类似FSG的表型。在这项研究中,我们旨在通过将Zerrafish幼虫添加到不同浓度的油箱水中诱导类似的表型。令人惊讶的是,斑马鱼幼虫没有发育肾小球损伤,并在用亚霉素处理后显示完整的过滤屏障。通过(免疫)组织学,我们的过滤测定,通过2-光子微核,RT-(Q)PCR以及透射电子显微镜的体内成像。为了总结,Adriamycin无法诱导斑马鱼幼虫的泛细胞相关损伤,因此必须进行重大努力,以在斑马鱼幼虫中建立FSG,以通过筛选鉴定有效的药物。

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