Lack of functional integration and high manufacturing costs have been identified as major challenges in commercialization of point-of-care devices. In this study, roll-to-roll (R2R) fabrication process was developed for large-scale manufacturing of disposable microfluidic devices. The integrated, user-friendly device included a plasma separation membrane for simple blood filtration, immobilized antibodies for specific immunodetection, microfluidics for plasma transport and reagent mixing, and a blister for actuation and waste storage. These functionalities were designed to be compatible with R2R processing, which was demonstrated using pilot-scale printing lines producing 60 devices in an hour. The produced sensors enabled rapid (10 min) an...
Additive manufacturing, such as fused deposition modeling (FDM), has been increasingly employed to p...
Microfluidic-based integrated molecular diagnostic systems, which are automated, sensitive, specific...
During this research, we developed a printed point-of-care device that was integrated with a biosens...
Lack of functional integration and high manufacturing costs have been identified as major challenges...
Traditionally, the primary function of printing has been the delivery of data and information for vi...
Roll-to-roll (R2R) technologies with roller-based nanoimprinting methods enable manufacturing of hig...
Point of Care (PoC) diagnostics have been the subject of considerable research over the last few dec...
This paper describes a method for the patterned immobilization of capture antibodies into a microflu...
VK: T10402This paper describes a method for the patterned immobilization of capture antibodies into ...
This paper describes a method for the patterned immobilization of capture antibodies into a microflu...
This paper describes a method for the patterned immobilization of capture antibodies into a microflu...
Point-of-Care (POC) diagnostics often fail to meet the market requirements of low cost and advanced ...
Microfluidic-based integrated molecular diagnostic systems, which are automated, sensitive, specific...
This paper describes a method for the patterned immobilization of capture antibodies into a microflu...
Additive manufacturing, such as fused deposition modeling (FDM), has been increasingly employed to p...
Additive manufacturing, such as fused deposition modeling (FDM), has been increasingly employed to p...
Microfluidic-based integrated molecular diagnostic systems, which are automated, sensitive, specific...
During this research, we developed a printed point-of-care device that was integrated with a biosens...
Lack of functional integration and high manufacturing costs have been identified as major challenges...
Traditionally, the primary function of printing has been the delivery of data and information for vi...
Roll-to-roll (R2R) technologies with roller-based nanoimprinting methods enable manufacturing of hig...
Point of Care (PoC) diagnostics have been the subject of considerable research over the last few dec...
This paper describes a method for the patterned immobilization of capture antibodies into a microflu...
VK: T10402This paper describes a method for the patterned immobilization of capture antibodies into ...
This paper describes a method for the patterned immobilization of capture antibodies into a microflu...
This paper describes a method for the patterned immobilization of capture antibodies into a microflu...
Point-of-Care (POC) diagnostics often fail to meet the market requirements of low cost and advanced ...
Microfluidic-based integrated molecular diagnostic systems, which are automated, sensitive, specific...
This paper describes a method for the patterned immobilization of capture antibodies into a microflu...
Additive manufacturing, such as fused deposition modeling (FDM), has been increasingly employed to p...
Additive manufacturing, such as fused deposition modeling (FDM), has been increasingly employed to p...
Microfluidic-based integrated molecular diagnostic systems, which are automated, sensitive, specific...
During this research, we developed a printed point-of-care device that was integrated with a biosens...