Related Experiment Video
Updated: Nov 2, 2025

Discovery of Metastatic Regulators using a Rapid and Quantitative Intravital Chick Chorioallantoic Membrane Model
Published on: February 3, 2021
Screening anti-metastasis drugs by cell adhesion-induced color change in a biochip
Shih-En Chou1, Kuang-Li Lee1, Pei-Kuen Wei2
1Research Center for Applied Sciences, Academia Sinica Taiwan, Taipei, 11529, Taiwan. jycheng@gate.sinica.edu.tw.
Abstract:
Metastasis is a frequent complication of cancer and accounts for more than 60% of patients' mortality. Despite technological advancements, treatment options are still limited. Ion channels participate in the regulation of cell adhesion, whilst the regulation of cell adhesion further controls metastasis formation. However, to develop a new ion channel inhibitor targeting metastasis takes tremendous effort and resources; therefore, drug repurposing is an emerging strategy in oncology. In previous studies, we have developed a metal-based nanoslit surface plasmon resonance (SPR) platform to examine the influence of drugs on the cell adhesion process. In this work, we developed a scanner-based cell adhesion kinetic examination (CAKE) system that is capable of monitoring the cell adhesion process by measuring color changes of SPR biosensors. The system's performance was demonstrated by screening the anti-metastasis ability of compounds from a commercial ion-channel inhibitor library. Out of the 274 compounds from the inhibitor library, zinc pyrithione (ZPT) and terfenadine were demonstrated to influence CL1-5 cell adhesion. The cell responses to the two compounds were then compared with those by traditional cell adhesion assays where similar behavior was observed. Further investigation of the two compounds using wound healing and transwell assays was performed and inhibitions of both cell migration and invasion by the two compounds were also observed. The results indicate that ZPT and terfenadine are potential candidates for anti-metastasis drugs. Our work has demonstrated the label-free drug screening ability of our CAKE system for finding potential drugs for cancer treatment.
Insights
This study introduces a new system to screen for anti-metastasis drugs by measuring cell adhesion. Zinc pyrithione and terfenadine show promise as potential cancer metastasis inhibitors.
Area of Science:
- Oncology
- Biotechnology
- Pharmacology
Background:
- Cancer metastasis is a major cause of mortality, with limited treatment options.
- Ion channels regulate cell adhesion, a key factor in metastasis.
- Drug repurposing offers a promising strategy for developing new anti-metastasis therapies.
Purpose of the Study:
- To develop and validate a novel scanner-based cell adhesion kinetic examination (CAKE) system for label-free drug screening.
- To screen an ion-channel inhibitor library for compounds that affect cancer cell adhesion and metastasis.
- To identify potential anti-metastasis drug candidates through high-throughput screening.
Main Methods:
- Development of a scanner-based cell adhesion kinetic examination (CAKE) system utilizing surface plasmon resonance (SPR) biosensors.
- Screening of 274 compounds from a commercial ion-channel inhibitor library using the CAKE system.
- Validation of identified compounds using traditional cell adhesion assays, wound healing, and transwell assays.
Main Results:
- The CAKE system successfully monitored cell adhesion dynamics by detecting color changes in SPR biosensors.
- Zinc pyrithione (ZPT) and terfenadine were identified as compounds influencing CL1-5 cell adhesion.
- Both ZPT and terfenadine demonstrated inhibition of cancer cell migration and invasion in subsequent assays.
Conclusions:
- The developed CAKE system provides a label-free platform for efficient drug screening against cancer metastasis.
- Zinc pyrithione (ZPT) and terfenadine are identified as potential candidates for novel anti-metastasis therapies.
- This study highlights the potential of drug repurposing for developing effective cancer treatments.
More Related Videos
08:32Analysis of Cancer Cell Invasion and Anti-metastatic Drug Screening Using Hydrogel Micro-chamber Array HMCA-based Plates
Published on: October 25, 2018
06:19Author Spotlight: Exploring the Role of Ion Channels in Cancer: Characterization and Potential Treatment Approaches
Published on: June 16, 2023