High-throughput microfluidic spheroid technology for early detection of colistin-induced nephrotoxicity with gradient-based analysis

  • Lee, Yugyeong; 
  • Choi, Yunsang; 
  • Chun, Ju Lan; 
  • Kim, Hong Bin; 
  • Kim, Sejoong; 
  • 외 2명
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초록

Colistin is essential for treating multidrug-resistant Gram-negative bacterial infections but has significant nephrotoxic side effects. Traditional approaches for studying colistin's nephrotoxicity are challenged by the rapid metabolism of its prodrug, colistin methanesulfonate and the difficulty of obtaining adequate plasma from critically ill patients. To address these challenges, we developed the Spheroid Nephrotoxicity Assessing Platform (SNAP), a microfluidic device that efficiently detects colistin-induced toxicity in renal proximal tubular epithelial cell (RPTEC) spheroids within 48 hours using just 200 mu L of patient plasma. Our findings demonstrate that SNAP not only promotes higher expression of kidney-specific markers aquaporin-1 (AQP1) and low-density lipoprotein receptor-related protein 2 (LRP2) compared to traditional two-dimensional (2D) cultures, but also exhibits increased sensitivity to colistin, with significant toxicity detected at concentrations of 50 mu g ml-1 and above. Notably, SNAP's non-invasive method did not identify nephrotoxicity in plasma from healthy donors, thereby confirming its physiological relevance and showcasing superior sensitivity over 2D cultures, which yielded false-positive results. In clinical validation, SNAP accurately identified patients at risk of colistin-induced nephrotoxicity with 100% accuracy for both early and late onset and demonstrated a 75% accuracy rate in predicting the non-occurrence of nephrotoxicity. These results underline the potential of SNAP in personalized medicine, offering a non-invasive, precise and efficient tool for the assessment of antibiotic-induced nephrotoxicity, thus enhancing the safety and efficacy of treatments against resistant bacterial infections.

키워드

Aquaporin 1; Colistimethate; Colistin; Anti-bacterial Agents; Aquaporin 1; Colistin; Fluidic Devices; Medicinal Chemistry; Noninvasive Medical Procedures; Bacterial Infections; Colistin; Gradient Based; High-throughput; Multidrug Resistants; Nephrotoxicity; Side Effect; Traditional Approaches; Traditional Approachs; Two-dimensional; Personalized Medicine; Aquaporin 1; Colistimethate; Colistin; Megalin; Antiinfective Agent; Antibiotic Sensitivity; Apical Membrane; Article; Blood Level; Cell Adhesion; Cell Culture; Cell Suspension; Cell Viability; Controlled Study; Cytotoxicity; Drug Screening; Early Diagnosis; Epithelium Cell; False Positive Result; Flow Rate; Fluid Flow; Fluorescence Intensity; Gram Negative Bacterium; High Throughput Analysis; Human; Human Cell; Ic50; Immortalized Cell Line; Liver Cell Culture; Microfluidic Analysis; Nephrotoxicity; Non Invasive Procedure; Nonhuman; Quantitative Analysis; Real Time Reverse Transcription Polymerase Chain Reaction; Sensitivity And Specificity; Signal Transduction; Tumor Spheroid; Cytology; Devices; Drug Effect; High Throughput Screening; Kidney Proximal Tubule; Lab On A Chip; Metabolism; Anti-bacterial Agents; Aquaporin 1; High-throughput Screening Assays; Humans; Kidney Tubules, Proximal; Lab-on-a-chip Devices; Microfluidic Analytical Techniques; RISK-FACTORS; PLASMA; METHANESULFONATE
제목
High-throughput microfluidic spheroid technology for early detection of colistin-induced nephrotoxicity with gradient-based analysis
저자
Lee, Yugyeong; Choi, Yunsang; Chun, Ju Lan; Kim, Hong Bin; Kim, Sejoong; Kim, Eu Suk; Park, Sungsu
DOI
10.1039/d4lc00782d
발행일
2025-01
유형
Article
저널명
Lab on a Chip
권
25
호
2
페이지
275 ~ 284