Handheld Device Puts Power of Lab-Based Diagnostic Testing in the Palm of Your Hand
By HospiMedica International staff writers Posted on 24 Jul 2024 |

Many common tests for infectious diseases work by detecting either antigens related to the virus or antibodies created in response to the infection. These tests, which now include widely used COVID-19 rapid antigen tests, offer the advantages of speed and broad availability. However, polymerase chain reaction (PCR) tests still surpass these in terms of accuracy, reaching nearly 100%. PCR tests, considered the gold standard in infectious disease diagnostics, excel because they detect a pathogen’s genetic material like RNA directly. This capability increases specificity, reducing the likelihood of false positives. PCR can also amplify minimal amounts of genetic material, allowing it to detect infections at very low levels. Yet, PCR requires specialized skills and expensive equipment, which limits its availability, particularly in low-resource settings.
Researchers at the University of Connecticut (Storrs, CT, USA) have now developed a platform technology that incorporates PCR-like capabilities within a handheld device, as detailed in a study published in Advanced Science. This device can detect HIV and SARS-CoV-2 with PCR-level performance but is more accessible, faster, and portable, potentially making advanced diagnostics more widespread. This new device, the lab-in-a-magnetofluidic tube (LIAMT), integrates all necessary functions into a single, portable unit unlike the multiple large machines required for PCR. LIAMT simplifies the isolation of genetic material by using magnetism instead of centrifugation. It employs tiny magnetic beads within a 1.5-milliliter tube to capture viral RNA, which is then pulled through washing steps by a magnet inside the device, effectively isolating the RNA. LIAMT does not require the thermal cycling equipment typical of PCR. Instead, it uses a constant, low-temperature process facilitated by special proteins that separate and duplicate nucleic acid strands. After amplification, the LIAMT device slightly heats the sample to melt a wax barrier, releasing a solution of CRISPR enzymes that emit a fluorescent signal upon binding to their target. This signal indicates the presence of viral RNA if it's substantial enough, visible through a small window on the device.
This system, devoid of heavy equipment like centrifuges and thermal cyclers, offers a significant advancement in making diagnostic tools more accessible and faster—producing results within about an hour compared to the longer processes associated with traditional PCR, where samples often need to be sent away for analysis. To verify its effectiveness, researchers tested LIAMT against traditional PCR using swab samples for SARS-CoV-2 and blood plasma samples for HIV. The results showed LIAMT to have comparable sensitivity and specificity, aligning closely with PCR results in most cases. Encouraged by these findings, the researchers plan to further refine LIAMT’s performance and usability, particularly to enhance care for HIV patients who require regular testing. This could transform routine testing by eliminating the need for hospital visits and lengthy waits, offering instead rapid, reliable results at the point of care.
“With our device, we used the volume you could get from a finger prick to produce accurate HIV test results quickly. Patients could take these tests at a local point-of-care center or at home and receive the medication they need more quickly,” said Changchun Liu, Ph.D., a professor of biomedical engineering at the University of Connecticut.
Related Links:
University of Connecticut
Latest Point of Care News
Channels
Critical Care
view channel
Ingestible Smart Capsule for Chemical Sensing in the Gut Moves Closer to Market
Intestinal gases are associated with several health conditions, including colon cancer, irritable bowel syndrome, and inflammatory bowel disease, and they have the potential to serve as crucial biomarkers... Read more
Novel Cannula Delivery System Enables Targeted Delivery of Imaging Agents and Drugs
Multiphoton microscopy has become an invaluable tool in neuroscience, allowing researchers to observe brain activity in real time with high-resolution imaging. A crucial aspect of many multiphoton microscopy... Read more
Novel Intrabronchial Method Delivers Cell Therapies in Critically Ill Patients on External Lung Support
Until now, administering cell therapies to patients on extracorporeal membrane oxygenation (ECMO)—a life-support system typically used for severe lung failure—has been nearly impossible.... Read moreSurgical Techniques
view channel
Intravascular Imaging for Guiding Stent Implantation Ensures Safer Stenting Procedures
Patients diagnosed with coronary artery disease, which is caused by plaque accumulation within the arteries leading to chest pain, shortness of breath, and potential heart attacks, frequently undergo percutaneous... Read more
World's First AI Surgical Guidance Platform Allows Surgeons to Measure Success in Real-Time
Surgeons have always faced challenges in measuring their progress toward surgical goals during procedures. Traditionally, obtaining measurements required stepping out of the sterile environment to perform... Read morePatient Care
view channel
Portable Biosensor Platform to Reduce Hospital-Acquired Infections
Approximately 4 million patients in the European Union acquire healthcare-associated infections (HAIs) or nosocomial infections each year, with around 37,000 deaths directly resulting from these infections,... Read more
First-Of-Its-Kind Portable Germicidal Light Technology Disinfects High-Touch Clinical Surfaces in Seconds
Reducing healthcare-acquired infections (HAIs) remains a pressing issue within global healthcare systems. In the United States alone, 1.7 million patients contract HAIs annually, leading to approximately... Read more
Surgical Capacity Optimization Solution Helps Hospitals Boost OR Utilization
An innovative solution has the capability to transform surgical capacity utilization by targeting the root cause of surgical block time inefficiencies. Fujitsu Limited’s (Tokyo, Japan) Surgical Capacity... Read more
Game-Changing Innovation in Surgical Instrument Sterilization Significantly Improves OR Throughput
A groundbreaking innovation enables hospitals to significantly improve instrument processing time and throughput in operating rooms (ORs) and sterile processing departments. Turbett Surgical, Inc.... Read moreHealth IT
view channel
Printable Molecule-Selective Nanoparticles Enable Mass Production of Wearable Biosensors
The future of medicine is likely to focus on the personalization of healthcare—understanding exactly what an individual requires and delivering the appropriate combination of nutrients, metabolites, and... Read more
Smartwatches Could Detect Congestive Heart Failure
Diagnosing congestive heart failure (CHF) typically requires expensive and time-consuming imaging techniques like echocardiography, also known as cardiac ultrasound. Previously, detecting CHF by analyzing... Read moreBusiness
view channel
Expanded Collaboration to Transform OR Technology Through AI and Automation
The expansion of an existing collaboration between three leading companies aims to develop artificial intelligence (AI)-driven solutions for smart operating rooms with sophisticated monitoring and automation.... Read more