Microneedle system for tissue engineering and regenerative medicine

Y Zhang, Y Xu, H Kong, J Zhang, HF Chan… - …, 2023 - Wiley Online Library
Global increasing demand for high life quality and length facilitates the development of
tissue engineering and regenerative medicine, which apply multidisciplinary theories and …

[HTML][HTML] Spiropyran-based advanced photoswitchable materials: A fascinating pathway to the future stimuli-responsive devices

JK Rad, Z Balzade, AR Mahdavian - Journal of Photochemistry and …, 2022 - Elsevier
Recent years have witnessed tremendous progress and developments of the
photoswitchable spiropyran-based polymers, owing to distinctive and particular …

Cell therapy: types, regulation, and clinical benefits

AEH El-Kadiry, M Rafei, R Shammaa - Frontiers in Medicine, 2021 - frontiersin.org
Cell therapy practices date back to the 19th century and continue to expand on
investigational and investment grounds. Cell therapy includes stem cell-and non–stem cell …

[HTML][HTML] Advancing application of mesenchymal stem cell-based bone tissue regeneration

F Shang, Y Yu, S Liu, L Ming, Y Zhang, Z Zhou, J Zhao… - Bioactive materials, 2021 - Elsevier
Reconstruction of bone defects, especially the critical-sized defects, with mechanical
integrity to the skeleton is important for a patient's rehabilitation, however, it still remains …

3D bioprinting: from benches to translational applications

MA Heinrich, W Liu, A Jimenez, J Yang, A Akpek, X Liu… - Small, 2019 - Wiley Online Library
Over the last decades, the fabrication of 3D tissues has become commonplace in tissue
engineering and regenerative medicine. However, conventional 3D biofabrication …

The bioink: A comprehensive review on bioprintable materials

M Hospodiuk, M Dey, D Sosnoski, IT Ozbolat - Biotechnology advances, 2017 - Elsevier
This paper discusses “bioink”, bioprintable materials used in three dimensional (3D)
bioprinting processes, where cells and other biologics are deposited in a spatially controlled …

Regenerative medicine: Current therapies and future directions

AS Mao, DJ Mooney - … of the National Academy of Sciences, 2015 - National Acad Sciences
Organ and tissue loss through disease and injury motivate the development of therapies that
can regenerate tissues and decrease reliance on transplantations. Regenerative medicine …

Vascular tissue engineering: challenges and requirements for an ideal large scale blood vessel

CD Devillard, CA Marquette - Frontiers in Bioengineering and …, 2021 - frontiersin.org
Since the emergence of regenerative medicine and tissue engineering more than half a
century ago, one obstacle has persisted: the in vitro creation of large-scale vascular tissue (> …

Scaffold-free cell-based tissue engineering therapies: advances, shortfalls and forecast

A De Pieri, Y Rochev, DI Zeugolis - NPJ Regenerative Medicine, 2021 - nature.com
Cell-based scaffold-free therapies seek to develop in vitro organotypic three-dimensional
(3D) tissue-like surrogates, capitalising upon the inherent capacity of cells to create tissues …

Transformer hydrogels: a review

O Erol, A Pantula, W Liu… - Advanced Materials …, 2019 - Wiley Online Library
Hydrogels, which are hydrophilic soft porous networks, are an important class of materials of
broad relevance to bioanalytical chemistry, soft‐robotics, drug delivery, and regenerative …