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January 1, 2006Engineering in Life Sciences536 citations

Ten Usability Heuristics

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JNJakob NielsenLyngsø Marine (Denmark)

Key Points

  • This research aims to improve the isolation of single circulating tumor cells for genetic analysis, enhancing precision medicine.
  • Developed a novel multiple single-cell encapsulation system using hydrogel-encapsulation.
  • Equipped with a high magnification lens for better accuracy in single-cell isolation.
  • Focused on achieving high throughput and high sensitivity to detect immune-stained circulating tumor cells.
  • Achieved high efficiency in isolating a single circulating tumor cell from adjacent cells within 10 µm.
  • The system demonstrates sufficient sensitivity to detect immune-stained circulating tumor cells.
  • Enabled genome amplification without contamination from neighboring cells.

Abstract

Circulating tumor cells (CTCs) are widely known as useful biomarkers in the liquid biopsies of cancer patients. Although single-cell genetic analysis of CTCs is a promising diagnostic tool that can provide detailed clinical information for precision medicine, the capacity of single-CTC isolation for genetic analysis requires improvement. To overcome this problem, we previously developed a multiple single-cell encapsulation system for CTCs using hydrogel-encapsulation, which allowed for the high-throughput isolation of single CTCs. However, isolation of a single cell from adjacent cells remained difficult and often resulted in contamination by neighboring cells due to the limited resolution of the generated hydrogel. We developed a novel multiple single-cell encapsulation system equipped with a high magnification lens for high throughput and a more accurate single-cell encapsulation. The multiple single-cell encapsulation system has sufficient sensitivity to detect immune-stained CTCs, and could also generate a micro-scaled hydrogel that can isolate a single cell from adjacent cells within 10 µm, with high efficiency. The proposed system enables high throughput and accurate single-cell manipulation and genome amplification without contamination from neighboring cells.

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Cite This Study

Jakob Nielsen (2006) studied this question.

synapsesocial.com/papers/6a1baeb039e8e1318e0c463dhttps://doi.org/10.1002/elsc.202000024
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