The success of labs- and organs-on-chips as transformative technologies in the biomedical arena relies on our capacity of solving some current challenges related to their design, modeling, manufacturability, and usability. Among present needs for the industrial scalability and impact promotion of these bio-devices, their sustainable mass production constitutes a breakthrough for reaching the desired level of repeatability in systematic testing procedures based on labs- and organs-on-chips. The use of adequate biomaterials for cell-culture processes and the achievement of the multi-scale features required, for in vitro modeling the physiological interactions among cells, tissues, and organoids, which prove to be demanding requirements in ter...
Current microfabrication methods are often restricted to two-dimensional (2D) or two and a half dime...
Tissue and organ on chip (TOC) have been developed to permit the study of human physiology in a tiss...
Modeling the human physiology in vitro is a challenging task, yet one of importance for the developm...
The success of labs- and organs-on-chips as transformative technologies in the biomedical arena reli...
The success of labs- and organs-on-chips as transformative technologies in the biomedical arena reli...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
In recent years, the use of microfabrication techniques has allowed biomaterials studies which were ...
Organ-on-a-chip engineering aims to create artificial living organs that mimic the complex and physi...
We guide the use of organ-on-chip technology in tissue engineering applications. Organ-on-chip techn...
The development of organ-on-chip and biological scaffolds is currently requiring simpler methods for...
Lab-on-chip systems are microfluidic devices that can be used as powerful tools for research in fiel...
Micro Physiological Systems (MPS), also known as Multi-Organ-Chip, Organ-on-a-Chip, or Body-on-a-Chi...
Micro-Electro-Mechanical Systems (MEMS) technologies illustrate the potential for many applications ...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
Current microfabrication methods are often restricted to two-dimensional (2D) or two and a half dime...
Tissue and organ on chip (TOC) have been developed to permit the study of human physiology in a tiss...
Modeling the human physiology in vitro is a challenging task, yet one of importance for the developm...
The success of labs- and organs-on-chips as transformative technologies in the biomedical arena reli...
The success of labs- and organs-on-chips as transformative technologies in the biomedical arena reli...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
The advent of the miniaturization approach has influenced the research trends in almost all discipli...
In recent years, the use of microfabrication techniques has allowed biomaterials studies which were ...
Organ-on-a-chip engineering aims to create artificial living organs that mimic the complex and physi...
We guide the use of organ-on-chip technology in tissue engineering applications. Organ-on-chip techn...
The development of organ-on-chip and biological scaffolds is currently requiring simpler methods for...
Lab-on-chip systems are microfluidic devices that can be used as powerful tools for research in fiel...
Micro Physiological Systems (MPS), also known as Multi-Organ-Chip, Organ-on-a-Chip, or Body-on-a-Chi...
Micro-Electro-Mechanical Systems (MEMS) technologies illustrate the potential for many applications ...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
Current microfabrication methods are often restricted to two-dimensional (2D) or two and a half dime...
Tissue and organ on chip (TOC) have been developed to permit the study of human physiology in a tiss...
Modeling the human physiology in vitro is a challenging task, yet one of importance for the developm...