The present work reports the first demonstration of straightforward fabrication of monolithic unibody lab-on-a-chip (ULOCs) integrating bioactive micrometric 3D scaffolds by means of multimaterial stereolithography (SL). To this end, a novel biotin-conjugated photopolymer is successfully synthesized and optimally formulated to achieve high-performance SL-printing resolution, as demonstrated by the SL-fabrication of biotinylated structures smaller than 100 µm. By optimizing a multimaterial single-run SL-based 3D-printing process, such biotinylated microstructures are incorporated within perfusion microchambers whose excellent optical transparency enables real-time optical microscopy analyses. Standard biotin-binding assays confirm the exist...
Abstract A rapid and accurate detection of molecular binding of antigen-antibody signaling in high t...
The recent explosion of 3D printing applications in scientific literature has expanded the speed and...
Organ-on-chip and Lab-on-chip are microfluidic devices widely applied in the biomedical field. They ...
The present work reports the first demonstration of straightforward fabrication of monolithic unibod...
Current microfabrication methods are often restricted to two-dimensional (2D) or two and a half dime...
Stereolithography is one of the most promising technologies for the production of tailored implants....
We demonstrate a novel method for three-dimensional patterning of proteins and other biological mole...
Bioprinting has recently emerged as a promising fabrication technique for developing 3D biologically...
Stereolithography (SL) has several advantages over traditional biomanufacturing techniques such as f...
3D printing has revolutionized engineering design and manufacturing in recent years by enabling the ...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
Since the advent of additive manufacturing, known commonly as 3D printing, this technology has revol...
Soft-lithography methods are routinely applied in biomedical research, for instance for the fabricat...
Abstract A rapid and accurate detection of molecular binding of antigen-antibody signaling in high t...
The recent explosion of 3D printing applications in scientific literature has expanded the speed and...
Organ-on-chip and Lab-on-chip are microfluidic devices widely applied in the biomedical field. They ...
The present work reports the first demonstration of straightforward fabrication of monolithic unibod...
Current microfabrication methods are often restricted to two-dimensional (2D) or two and a half dime...
Stereolithography is one of the most promising technologies for the production of tailored implants....
We demonstrate a novel method for three-dimensional patterning of proteins and other biological mole...
Bioprinting has recently emerged as a promising fabrication technique for developing 3D biologically...
Stereolithography (SL) has several advantages over traditional biomanufacturing techniques such as f...
3D printing has revolutionized engineering design and manufacturing in recent years by enabling the ...
Lithography-based three-dimensional (3D) printing technologies allow high spatial resolution that ex...
Since the advent of additive manufacturing, known commonly as 3D printing, this technology has revol...
Soft-lithography methods are routinely applied in biomedical research, for instance for the fabricat...
Abstract A rapid and accurate detection of molecular binding of antigen-antibody signaling in high t...
The recent explosion of 3D printing applications in scientific literature has expanded the speed and...
Organ-on-chip and Lab-on-chip are microfluidic devices widely applied in the biomedical field. They ...