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Chungnam National University Researchers Develop A Rapid Water Quality Monitoring Chip for Antibiotic Detection

Chungnam National University Researchers Develop A Rapid Water Quality Monitoring Chip for Antibiotic Detection

忠南國立大學研究人員開發了一種快速水質監測芯片,用於抗生素檢測。
PR Newswire ·  12/20 21:34

DAEJEON, South Korea, Dec. 20, 2024 /PRNewswire/ -- Antimicrobial resistance (AMR) is a growing global health crisis because of microbes, such as bacteria, becoming resistant to antibiotics. A leading factor in this rise is the improper use and disposal of antibiotics in the environment. Effluents from wastewater treatment plants often contain various antibiotics including trimethoprim (TMP), which can harm ecosystems by disrupting microbial communities essential for nutrient cycling. In addition to contributing to AMR, TMP poses various health risks to humans through indirect exposure.

大田,韓國,2024年12月20日 /PRNewswire/ -- 微生物抗藥性 (AMR) 正在成爲一個日益嚴重的全球健康危機,因爲細菌等微生物對抗生素產生了耐藥性。這一現象的主要原因是抗生素在環境中的不當使用和處理。污水處理廠排放的污水通常含有各種抗生素,包括甲氧苄啶 (TMP),這會通過破壞對營養物質循環至關重要的微生物群落而損害生態系統。除了導致AMR,TMP還通過間接接觸對人類造成各種健康風險。

Scientists developed a simple TMP detection device for on-site monitoring of contaminated wastewater using selenite-enriched lanthanum hydroxide electrode and polyimide-filter microfluidic channel.
科學家們開發了一種簡單的TMP檢測設備,用於現場監測被污染的污水,採用富含亞硒酸鹽的氫氧化鈰電極和聚酰亞胺過濾微流控通道。

Traditional methods for TMP detection such as capillary electrophoresis and liquid chromatography with mass spectrometry, are often labor-intensive and time-consuming. Electrochemical (EC) methods can provide respite from these issues by offering exceptional sensitivity, real-time analytical capabilities and the potential for miniaturization.

傳統的TMP檢測方法,如毛細管電泳和質譜液相色譜,通常勞動密集且耗時。電化學 (EC) 方法通過提供卓越的靈敏度、實時分析能力和小型化的潛力,可以減輕這些問題。

Professor Tae Yoon Lee and Dr. Natarajan Karikalan of Chungnam National University, Korea, have made a pioneering advancement in EC detection methods, that shows promise to revolutionize on-site testing for TMP in contaminated wastewater. They developed a disposable microfluidic lab-on-a-chip (LOC) EC sensor, μTMP-chip, designed for real-time TMP detection. "Efficient TMP monitoring in effluents is critical for effective control protocols. Hence, we aimed to enable in situ testing of water samples," explains Prof. Lee. Their paper was made available online on September 21, 2024 and was published in Volume 499 of Chemical Engineering Journal on November 1, 2024.

韓國忠南國立大學的李太熙教授和納塔拉詹·卡里卡蘭博士在EC檢測方法方面取得了開創性的進展,這一進展有望徹底改變受污染污水中的TMP現場檢測。他們開發了一種一次性微流控芯片 (LOC) EC傳感器,μTMP-chip,旨在實現實時TMP檢測。李教授表示:「有效的TMP監測對於有效的控制協議至關重要。因此,我們的目標是實現水樣的原位測試。」他們的論文於2024年9月21日在線發佈,並於2024年11月1日發表在《化學工程雜誌》第499捲上。

The researchers designed the disposable chip by combining a special electrode made with lanthanum hydroxide and selenite, with a polyimide (PI) filter in a microfluidic channel. The analyses showed that the addition of selenite improved the electrode's ability to detect chemicals by allowing better charge flow. Additionally, the PI filter improved the μTMP-chip's real-time performance, while the efficiency dropped by 15 to 45% when the filter was removed. Additionally, the filter helped trap and isolate unwanted materials and prevented the risk of microbial growth, which could interfere with the sensor's function.

研究人員通過將一種由氫氧化鈰和亞硒酸鹽製成的特殊電極與聚酰亞胺 (PI) 過濾器結合到微流控通道中,設計了這種一次性芯片。分析表明,亞硒酸鹽的添加改善了電極檢測化學品的能力,使電荷流動更好。此外,PI過濾器提高了μTMP-chip的實時性能,當去掉過濾器時,效率下降了15%到45%。此外,過濾器還有助於捕獲和隔離多餘材料,並防止微生物生長的風險,這可能會干擾傳感器的功能。

The μTMP-chip sensor demonstrated impressive results in real-world testing, showing recovery rates of 94.3 % to 97.6 % in soil and water samples. These results, obtained through wireless testing, highlight the chip's potential for practical use in monitoring environmental samples.

μTMP芯片傳感器在實際測試中表現出色,在土壤和水樣品中恢復率達到94.3%到97.6%。這些通過無線測試獲得的結果突顯了該芯片在監測環保樣品中的實際應用潛力。

"Our current design may face challenges in detecting TMP in highly polluted environments with significant matrix interferences. However, we hope our research will inspire further exploration into developing affordable and efficient TMP detection chips," said Prof. Lee.

"我們的當前設計可能在檢測高污染環境中特別複雜的矩陣干擾時面臨挑戰。然而,我們希望我們的研究能夠激勵進一步探索開發經濟高效的TMP檢測芯片,"李教授說道。

The researchers believe that their innovative lab-on-a-chip design has the potential to improve the feasibility of on-site, real-time tracking of environmental contaminants leading to improved conservation of ecosystems and human health.

研究人員相信他們創新的芯片實驗室設計有潛力提高現場實時追蹤環境污染物的可行性,從而改善生態系統的保護和人類健康。

Reference

參考

Title of original paper: Microfluidic sensor integrated with selenite-enriched lanthanum hydroxide and in situ filtration for the on-site detection of the antibiotic trimethoprim in environmental samples
Journal: Chemical Engineering Journal
DOI: 10.1016/j.cej.2024.155982

原始論文標題:微流體傳感器與富含亞硒酸鹽的氫氧化鑭集成及原位過濾,用於現場檢測環境樣品中的抗生素三甲氧苄啶
期刊:化學工程期刊
DOI:10.1016/j.cej.2024.155982

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SOURCE Chungnam National University

來源:忠南國立大學

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