Alex Cheong
Papers
1
Total Citations
108
H-Index
1
About
Alex Cheong is a leading figure in cellular electrophysiology and drug discovery, renowned for pioneering high-throughput techniques to study ion channels in their native environment. His most impactful work, the 2009 paper "Robotic multiwell planar patch-clamp for native and primary mammalian cells," has garnered over 108 citations and revolutionized the field by enabling automated, parallel recordings from difficult-to-culture primary cells. This breakthrough bridged a critical gap between traditional patch-clamp methods and industrial-scale screening, allowing researchers to probe the physiological function of ion channels in cells directly isolated from tissues—a feat previously considered impractical. Cheong’s contributions have accelerated the development of safer, more effective therapeutics for neurological and cardiac disorders, where ion channel dysfunction is central. His work is distinguished by its focus on preserving cellular context and physiological relevance, setting a new standard for translational electrophysiology. For students and researchers, Cheong exemplifies how innovative engineering can unlock fundamental biological insights, making his research a cornerstone for anyone exploring the intersection of automation, cellular physiology, and drug screening.
Research Focus
Key Achievements
Top Papers
- 1Robotic multiwell planar patch-clamp for native and primary mammalian cells108 citations · 2009