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Fluorescent polydopamine nanoparticles as a probe for zebrafish sensory hair cells targeted in vivo imaging

机译:荧光聚多巴胺纳米颗粒作为针对斑马鱼感官毛细胞的探针用于体内成像

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摘要

Fluorescent polydopamine nanoparticles (FPNPs) are prepared via the ethylenediamine (EDA)-induced degradation of as-prepared non-fluorescent polydopamine (PDA) and used for targeted bioimaging. The reductive treatment of PDA in the presence of EDA yields fluorescent precipitates, inspiring us to seek various biological approaches to preparing FPNPs with excellent optical and biocompatible properties. Moreover, we firstly found that FPNPs selectively label neuromast hair cells in the lateral line of zebrafish, their applications as a reliable fluorescent indicator to investigate the neuromast hair cells, to in turn determine the viability of hair cells, was demonstrated. FPNPs also provided a minimal toxicity enable to assay the number of functional hair cells per neuromast in live animals as development proceeds. Upon combined incubation with TO-PRO-3, a well-established hair cell marker, all hair cells that were rapidly labeled with FPNPs were observed to be also completely labeled with the TO-PRO-3, labeling hair cells in neuromasts positioned in the supraorbital, otic and occipital lateral line as well as in posterior lateral line of living zebrafish larvae. Their potential efficacy for biological applications was demonstrated by their excellent optical and biocompatible properties, offering new opportunities in cancer research, real-time monitoring of stem cell transplantation and other cell-based therapies.
机译:通过乙二胺(EDA)诱导的已制备的非荧光聚多巴胺(PDA)降解制备了荧光聚多巴胺纳米颗粒(FPNP),并将其用于靶向生物成像。在EDA存在下对PDA进行还原处理会产生荧光沉淀,这启发我们寻求各种生物学方法来制备具有出色的光学和生物相容性的FPNP。此外,我们首先发现FPNPs选择性标记斑马鱼侧线中的神经肥大毛细胞,它们被用作可靠的荧光指示剂,用于研究神经肥大毛细胞,进而确定毛细胞的活力。 FPNPs还提供了最小的毒性,使得能够随着发育的进行来分析活体动物中每个神经肥大的功能性毛细胞的数量。与完善的毛细胞标记物TO-PRO-3组合孵育后,观察到所有快速用FPNPs标记的毛细胞也被TO-PRO-3完全标记,从而将毛细胞标记在斑马鱼幼体的眶上,耳和枕外侧线以及后外侧线。它们具有出色的光学和生物相容性,证明了其在生物学应用中的潜在功效,为癌症研究,干细胞移植的实时监测和其他基于细胞的疗法提供了新的机会。

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