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"The regulatory challenge of 3D bioprinting" by Tajanka Mladenovska, Peter F. Choong et al.

New developments in additive manufacturing and regenerative medicine have the potential to radically disrupt the traditional pipelines of therapy development and medical device manufacture. These technologies present a challenge for regulators because traditional regulatory frameworks are designed for mass manufactured therapies, rather than bespoke solutions. 3D bioprinting technologies present another dimension of complexity through the inclusion of living cells in the fabrication process. Her...
Legal Regulatory Stem Cells Tissue Engineering
Source: uow.edu.au

"Inverse vaccine" shows promise to reverse autoimmune diseases without shutting down rest of the immune system

A new type of vaccine developed by researchers at the University of Chicago's Pritzker School of Molecular Engineering (PME) has shown in the lab setting that it can completely reverse autoimmune diseases like multiple sclerosis, type 1 diabetes, and Crohn's disease -; all without shutting down the rest of the immune system.
Jeffrey Hubbell Megan Craig Alper Family Foundation Pritzker School Molecular Engineering Nature Biomedical Engineering

Capture and release of tumor cells using a bioelectronic device

In the book entitled Microfluidic Systems for Cancer Diagnosis, the UPV/EHU’s Microfluidics Cluster group describes the process for building a bioelectronic device consisting of gold electrodes coated with a smart polymer capable of capturing and releasing cells in a non-invasive, controllable way while monitoring the processes using conventional electrical measurements.
United Kingdom Lily Ramsey University Of Cambridge Microfluidics Cluster Group Microfluidic Systems Cancer Diagnosis

Using smart bioelectronic devices to capture

In the book entitled Microfluidic Systems for Cancer Diagnosis, the UPV/EHU’s Microfluidics Cluster group describes the process for building a bioelectronic device consisting of gold electrodes coated with a smart polymer capable of capturing and releasing cells in a non-invasive, controllable way while monitoring the processes using conventional electrical measurements. These are the first steps towards developing universal platforms for early cancer screening.
United Kingdom University Of Cambridge Microfluidics Cluster Microfluidic Systems Cancer Diagnosis Tissue Engineering

"Evaluation of Marine Collagen for 3D Bioprinting" by Borja Sanz Gutierrez

Collagen is the most abundant protein in both vertebrates and invertebrates, and it´s the primary structural protein of a wide variety of tissues. As such, it is considered a key factor for tissue engineering application. Nowadays, collagen is being used in a wide range of bioartificial tissues such as bone, however, its two main sources are bovine and porcine which have gradually risen concerns due to the fact of inter-species diseases (such as the mad cow disease) and several religious belief...
Red Snapper Tissue Engineering 3d Bioprinting
Source: uow.edu.au

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