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AQUAT TOXICOL :臺灣師大聯盟專家 | 銀銅納米顆粒對斑馬魚胚胎側線毛細胞的毒性作用(附NMT實驗體系)
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期刊:Aquatic Toxicology
主題:銀銅納米顆粒對斑馬魚胚胎側線毛細胞的毒性作用
標題:Toxic e?ects of silver and copper nanoparticles on lateral-line hair cells of
zebra?sh embryos
影響因子:3.794
檢測指標:Ca2+流速
檢測部位:斑馬魚胚胎側線毛細胞
Ca2+流速流實驗處理方法:
斑馬魚胚胎在受精后0-96 h(hpf),0, 0.9, 9.3, 27.8 μM的AgNPs,和0,0.16,1.6,15.8μM的CuNP分別進行處理
Ca2+流速流實驗測試液成份:
0.5mM NaCl, 0.2mM CaSO4, 0.2mM MgSO4, 0.16mM KH2PO4, and 0.16mM K2HPO4 (pH 7.0),300μM MOPS,0.1 mg/l tricaine
作者:臺灣師范大學林豊益、Hsiu-Ju Yen
NMT非損傷微測技術檢測斑馬魚毛細胞離子流
NMT非損傷微測技術檢測斑馬魚皮膚離子細胞
英文摘要
The potential toxicity of nanoparticles (NPs) to the
early stages of fish is still unclear. In this study, we investigated
the toxic effects of silver (AgNPs) and copper nanoparticles (CuNPs) on
lateral-line hair cells of zebrafish embryos.
Zebrafish embryos
were incubated in different concentrations of AgNPs and CuNPs at 0?96?h
post-fertilization (hpf). Both AgNPs and CuNPs were found to cause toxic
effects in zebrafish embryos in a dose-dependent manner. Values of the
96-h 50% lethal concentration (LC50) of AgNPs and CuNPs were 6.1?ppm
(56.5?μM) and 2.61?ppm (41.1?μM), respectively.
The number of
FM1-43-labeled hair cells and the microstructure of hair bundles were
significantly impaired by AgNPs [≥1?ppm (9.3?μM)] and CuNPs [≥0.01?ppm
(0.16?μM)]. Ca2+ influxes at hair bundles of hair cells were measured
with a scanning ion-selective microelectrode technique to evaluate the
function of hair cells.
AgNPs [≥0.1?ppm (0.9?μM)] and CuNPs
[≥0.01?ppm (0.16?μM)] were both found to significantly reduce Ca2+
influxes. Similar toxic effects were also found in hatched embryos
subjected to 4?h of exposure (96?100?hpf) to AgNPs and CuNPs. This study
revealed that lateral-line hair cells of zebrafish are susceptible to
AgNPs and CuNPs, and these contaminants in aquatic environments could
pose a threat to fish survival.
中文摘要(谷歌機翻)
納米粒子(NPs)對魚類早期的潛在毒性尚不清楚。在這項研究中,我們研究了銀(AgNPs)和銅納米顆粒(CuNPs)對斑馬魚胚胎側線毛細胞的毒性作用。
在受精后0~96h(hpf),將斑馬魚胚胎在不同濃度的AgNPs和CuNPs中孵育。發現AgNPs和CuNPs都以劑量依賴的方式對斑馬魚胚胎產生毒性作用。
AgNPs和CuNPs的96小時50%致死濃度(LC50)的值分別為6.1ppm(56.5μM)和2.61ppm(41.1μM)。
AgNPs [≥1ppm(9.3μM)]和CuNPs [≥0.01ppm(0.16μM)]顯著損害了FM1-43標記的毛細胞數量和發束的微觀結構。用掃描離子選擇性微電極技術測量毛細胞發束處的Ca2+流入,以評估毛細胞的功能。
發現AgNPs
[≥0.1ppm(0.9μM)]和CuNPs
[≥0.01ppm(0.16μM)]均可顯著降低Ca2+流入量。在孵化4h(96?100hpf)的AgNPs和CuNPs孵化的胚胎中也發現了類似的毒性效應。這項研究表明,斑馬魚的側線毛細胞對AgNPs和CuNPs敏感,這些污染物在水生環境中可能對魚類的存活構成威脅。

結果表明:在經歷96小時AgNP或CuNP處理的胚胎中也發現了毛細胞的功能損傷。使用NM測量L1神經瘤的毛細胞的Ca2+流入量(圖A),在0.1,1和3ppm(0.9,9.3和27.8μM)的AgNP組中,Ca2+流入量顯著減少26%,46%和91%(圖B)。在0.01
ppm(0.16μM)CuNP組中,Ca2+流入量減少了38%,而在0.1和1
ppm(1.6和15.8μM)CuNP組中,Ca2+流入幾乎檢測不到(圖C)
文章鏈接:
https://www.sciencedirect.com/science/article/pii/S0166445X19304114?via%3Dihub
聯盟專家暨本文作者介紹

林豊益,博士,教授。臺灣師范大學生命科學學院生理組,主要從事魚類環境生理、水生環境毒理、機械性感覺生理、斑馬魚疾病模式與藥物篩選研究。
近期代表性成果
近期代表性成果
Lin LY, et al,.
Role of Calcium-Sensing Receptor in Mechanotransducer Channel Mediated
Ca2+ Influx in Hair Cells of Zebrafish Larvae . frontiers in physiology
.2018 ;(9):649
Hung Giun Yi, et al,. Incidence of immune thrombocytopenia in Taiwan: a nationwide population-based study . Transfusion .2018 ;(58):2712-2719
Horng JL, et al,.
Potassium Regulation in Medaka (Oryzias latipes) Larvae Acclimated to
Fresh Water: Passive Uptake and Active Secretion by the Skin Cells. .
Sci Rep. .2017 ;(7):16215
Hung GY, et al,. Cancer in adolescents: Incidences and trends during 1995-2009 in Taiwan. . Cancer Lett .2016 ;(372):110-117
Hung
GY, et al,. Changing incidence patterns of hepatocellular carcinoma
among age groups in Taiwan . J Hepatol .2015 ;(63):1390-1396
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