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Micromachines Webinar | Biofabrication Horizons — September

5th Edition

18 September 2026
12:00 (EDT)
Online

Welcome from
the chair

10th Micromachines Webinar

Biofabrication Horizons — September

It is my pleasure to launch the new webinar series of the “Biofabrication and Tissue Engineering” section of Micromachines (MDPI). This monthly series is dedicated to fostering global dialogue and collaboration at the forefront of our rapidly evolving discipline.

Each webinar will spotlight groundbreaking advances in 3D and 4D bioprinting, next-generation bioinks, organs-on-chips and microphysiological systems, scaffold-free tissue assembly, advanced biomaterials (including stimuli-responsive hydrogels and decellularized matrices), microfluidics, hybrid micro/nano-fabrication techniques, and translational strategies that bridge the gap between bench and bedside.

By convening leading researchers, clinicians, and industry innovators, we highlight the latest discoveries in disease modeling, drug discovery, regenerative medicine, and the commercialization of biofabricated constructs, ultimately accelerating the delivery of transformative solutions to patients and society.

Micromachines is proud to provide this platform to stimulate interdisciplinary exchange, amplify emerging voices, and drive the field toward clinically impactful innovations in personalized healthcare.

I warmly invite you to join us, share your work, and be part of this exciting journey.

Date: 18 September 2026
Time: 09:00 am PDT | 12:00 pm EDT | 06:00 pm CEST
Webinar ID: 848 4225 6687
Webinar Secretariat: journal.webinar@mdpi.com



Meet the Event Chair

Dr. Mohsen Akbari
Laboratory for Innovations in Microengineering (LiME), Department of Mechanical Engineering, University of Victoria, Victoria, BC V9P 0C8, Canada

Meet Our Speakers

Explore more speakers
Dr. Christos Boutopoulos

Department of Ophthalmology and Department of Biomedical Engineering, University of Montreal;
Christos Boutopoulos is an associate professor in the Departments of Ophthalmology and Biomedical Engineering at the Université de Montréal (UdeM), Canada. Prior to joining UdeM, he held postdoctoral positions at Polytechnique Montréal (Canada) and the University of St Andrews (UK). He holds a PhD in Applied Physics, an MSc in Microsystems, and a BEng from the National Technical University of Athens, Greece. Dr. Boutopoulos founded his laboratory in 2016 and leads an interdisciplinary team dedicated to developing innovative vision technologies. He has developed image-guided systems for improving the safety and efficacy of eye surgery and has extensively advanced laser-assisted bioprinting toward in vivo ophthalmic applications through both fundamental and translational research. His ongoing research focuses on both robotic-integrated and handheld bioprinting systems for corneal regeneration, with the goal of translating these technologies into clinical solutions for vision restoration.

Registration Instructions

This is a FREE webinar. After registering, you will receive a confirmation email containing information on how to join the webinar. Registrations with academic institutional email addresses will be prioritized.

Certificates of attendance will be delivered to those who attend the live webinar.

Can’t attend? Register anyway and we’ll let you know when the recording is available to watch.

Register for free here!

Relevant Special Issue

Advances in Bioprototyping Techniques

Guest Editor: Dr. Luciano Paulino Silva
Deadline for manuscript submissions: 28 February 2027

Relevant Topical Collection

Biofabrication Frontiers

Collection Editor: Dr. Mohsen Akbari

Relevant Section

B2: Biofabrication and Tissue Engineering

A section of Micromachines (ISSN 2072-666X).

Section Information

The ‘Biofabrication and Tissue Engineering’ section of Micromachines focuses on cutting-edge research and innovation in the design, fabrication, and application of biologically functional constructs for regenerative medicine, disease modeling, and drug discovery, with a strong emphasis on bioprinting technologies, including the development of advanced bioinks, 3D/4D printing techniques, and scaffold-free approaches to the creation of complex, multicellular tissues. It also explores organs on chips, leveraging microfabrication to create physiologically relevant models for studying organ-level functions, disease mechanisms, and drug responses, bridging the gap between traditional models and clinical applications. This section highlights the role of biomaterials, such as smart hydrogels, nanocomposites, and decellularized matrices, in directing cellular behavior, promoting tissue regeneration, and enabling the integration of engineered constructs with host tissues. Additionally, it addresses the critical aspects of commercialization and translation, focusing on scaling up technologies, navigating regulatory pathways, and fostering market adoption to accelerate the transition of biofabrication innovations from the lab to clinical and industrial applications, ultimately advancing human health.

Sponsors and Partners

Organizers


MDPIMicromachines
Micromachines-10

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