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Microfluidic-Based Droplets for Advanced Regenerative Medicine: Current Challenges and Future Trends

Microfluidics is a promising approach for the facile and large-scale fabrication of monodispersed droplets for various applications in biomedicine. This technology has demonstrated great potential to address the limitations of regenerative medicine. Microfluidics provides safe, accurate, reliable, a...

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Autores principales: Nazari, Hojjatollah, Heirani-Tabasi, Asieh, Ghorbani, Sadegh, Eyni, Hossein, Razavi Bazaz, Sajad, Khayati, Maryam, Gheidari, Fatemeh, Moradpour, Keyvan, Kehtari, Mousa, Ahmadi Tafti, Seyed Mohsen, Ahmadi Tafti, Seyed Hossein, Ebrahimi Warkiani, Majid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8773546/
https://www.ncbi.nlm.nih.gov/pubmed/35049648
http://dx.doi.org/10.3390/bios12010020
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author Nazari, Hojjatollah
Heirani-Tabasi, Asieh
Ghorbani, Sadegh
Eyni, Hossein
Razavi Bazaz, Sajad
Khayati, Maryam
Gheidari, Fatemeh
Moradpour, Keyvan
Kehtari, Mousa
Ahmadi Tafti, Seyed Mohsen
Ahmadi Tafti, Seyed Hossein
Ebrahimi Warkiani, Majid
author_facet Nazari, Hojjatollah
Heirani-Tabasi, Asieh
Ghorbani, Sadegh
Eyni, Hossein
Razavi Bazaz, Sajad
Khayati, Maryam
Gheidari, Fatemeh
Moradpour, Keyvan
Kehtari, Mousa
Ahmadi Tafti, Seyed Mohsen
Ahmadi Tafti, Seyed Hossein
Ebrahimi Warkiani, Majid
author_sort Nazari, Hojjatollah
collection PubMed
description Microfluidics is a promising approach for the facile and large-scale fabrication of monodispersed droplets for various applications in biomedicine. This technology has demonstrated great potential to address the limitations of regenerative medicine. Microfluidics provides safe, accurate, reliable, and cost-effective methods for encapsulating different stem cells, gametes, biomaterials, biomolecules, reagents, genes, and nanoparticles inside picoliter-sized droplets or droplet-derived microgels for different applications. Moreover, microenvironments made using such droplets can mimic niches of stem cells for cell therapy purposes, simulate native extracellular matrix (ECM) for tissue engineering applications, and remove challenges in cell encapsulation and three-dimensional (3D) culture methods. The fabrication of droplets using microfluidics also provides controllable microenvironments for manipulating gametes, fertilization, and embryo cultures for reproductive medicine. This review focuses on the relevant studies, and the latest progress in applying droplets in stem cell therapy, tissue engineering, reproductive biology, and gene therapy are separately evaluated. In the end, we discuss the challenges ahead in the field of microfluidics-based droplets for advanced regenerative medicine.
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spelling pubmed-87735462022-01-21 Microfluidic-Based Droplets for Advanced Regenerative Medicine: Current Challenges and Future Trends Nazari, Hojjatollah Heirani-Tabasi, Asieh Ghorbani, Sadegh Eyni, Hossein Razavi Bazaz, Sajad Khayati, Maryam Gheidari, Fatemeh Moradpour, Keyvan Kehtari, Mousa Ahmadi Tafti, Seyed Mohsen Ahmadi Tafti, Seyed Hossein Ebrahimi Warkiani, Majid Biosensors (Basel) Review Microfluidics is a promising approach for the facile and large-scale fabrication of monodispersed droplets for various applications in biomedicine. This technology has demonstrated great potential to address the limitations of regenerative medicine. Microfluidics provides safe, accurate, reliable, and cost-effective methods for encapsulating different stem cells, gametes, biomaterials, biomolecules, reagents, genes, and nanoparticles inside picoliter-sized droplets or droplet-derived microgels for different applications. Moreover, microenvironments made using such droplets can mimic niches of stem cells for cell therapy purposes, simulate native extracellular matrix (ECM) for tissue engineering applications, and remove challenges in cell encapsulation and three-dimensional (3D) culture methods. The fabrication of droplets using microfluidics also provides controllable microenvironments for manipulating gametes, fertilization, and embryo cultures for reproductive medicine. This review focuses on the relevant studies, and the latest progress in applying droplets in stem cell therapy, tissue engineering, reproductive biology, and gene therapy are separately evaluated. In the end, we discuss the challenges ahead in the field of microfluidics-based droplets for advanced regenerative medicine. MDPI 2021-12-31 /pmc/articles/PMC8773546/ /pubmed/35049648 http://dx.doi.org/10.3390/bios12010020 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Nazari, Hojjatollah
Heirani-Tabasi, Asieh
Ghorbani, Sadegh
Eyni, Hossein
Razavi Bazaz, Sajad
Khayati, Maryam
Gheidari, Fatemeh
Moradpour, Keyvan
Kehtari, Mousa
Ahmadi Tafti, Seyed Mohsen
Ahmadi Tafti, Seyed Hossein
Ebrahimi Warkiani, Majid
Microfluidic-Based Droplets for Advanced Regenerative Medicine: Current Challenges and Future Trends
title Microfluidic-Based Droplets for Advanced Regenerative Medicine: Current Challenges and Future Trends
title_full Microfluidic-Based Droplets for Advanced Regenerative Medicine: Current Challenges and Future Trends
title_fullStr Microfluidic-Based Droplets for Advanced Regenerative Medicine: Current Challenges and Future Trends
title_full_unstemmed Microfluidic-Based Droplets for Advanced Regenerative Medicine: Current Challenges and Future Trends
title_short Microfluidic-Based Droplets for Advanced Regenerative Medicine: Current Challenges and Future Trends
title_sort microfluidic-based droplets for advanced regenerative medicine: current challenges and future trends
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8773546/
https://www.ncbi.nlm.nih.gov/pubmed/35049648
http://dx.doi.org/10.3390/bios12010020
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