Emerging diagnostic and therapeutic technologies based on ultrasound-triggered biomaterials DOI Creative Commons
Danqing Huang, Jinglin Wang, Baojie Wen

et al.

Materials Futures, Journal Year: 2023, Volume and Issue: 2(3), P. 032001 - 032001

Published: June 16, 2023

Abstract Ultrasound (US) is a kind of acoustic wave with frequency higher than 20 kHz. Learning from the echo detection ability bats and dolphins, scientists applied US for clinical imaging by sending out waves detecting echoes shifted intensities frequencies human tissue. has long played critical role in noninvasive, real-time, low-cost portable diagnostic imaging. With in-depth study multidisciplinary fields, US-responsive materials have shown practical value not only disease diagnosis, but also treatment. In this review, we introduce recently proposed representative biomedical applications, including therapeutic applications. We focused on US-mediated physicochemical therapies, such as sonodynamic therapy, high-intensity ablation, sonothermal thrombolysis, etc, US-controlled delivery chemotherapeutics, gases, genes, proteins bacteria. conclude current challenges facing translation smart prospects future development medicine.

Language: Английский

Emerging Microfluidic Building Blocks for Cultured Meat Construction DOI
Yue Zhang, Xi Ding, Zijiang Yang

et al.

ACS Applied Materials & Interfaces, Journal Year: 2025, Volume and Issue: 17(6), P. 8771 - 8793

Published: Jan. 30, 2025

Cultured meat aims to produce mass by culturing cells and tissues based on the muscle regeneration mechanism, is considered an alternative raising slaughtering livestock. Hydrogel building blocks are commonly used as substrates for cell culture in tissue engineering cultured because of their high water content, biocompatibility, similar three-dimensional (3D) environment cellular niche vivo. With characteristics precise manipulation fluids, microfluidics exhibits advantages fabrication with different structures components, which have been widely applied regeneration. Microfluidic show promising prospects field meat; however, few reviews application microfluidic published. This review outlines recent status use meat. Starting introduction materials construction, we then describe diverse fabricated blocks, including microspheres, microfibers, microsphere-microfiber hybrid systems. Next, stacking strategies construction highlighted detail. Finally, challenges future developing discussed.

Language: Английский

Citations

0

Programmable control of soft magnetic helical microrobot from microfluidics DOI Creative Commons
Yikai Wu, Can Wang, Wenhui Zhang

et al.

Materials & Design, Journal Year: 2025, Volume and Issue: unknown, P. 113707 - 113707

Published: Feb. 1, 2025

Language: Английский

Citations

0

Microfluidic cell carriers for cultured meat DOI
Yue Zhang,

Guanglin Wu,

Xiaoying Hu

et al.

Food Chemistry, Journal Year: 2025, Volume and Issue: unknown, P. 144149 - 144149

Published: April 1, 2025

Language: Английский

Citations

0

Tissue Engineering in Oral and Maxillofacial Rehabilitation—Current Status and Future Prospects DOI Creative Commons
Smitha Sammith Shetty, Shibani Shetty,

Swapna Bettanapalya Venkatesh

et al.

Current Oral Health Reports, Journal Year: 2024, Volume and Issue: unknown

Published: April 15, 2024

Abstract Purpose of Review The objective this review is to provide a comprehensive overview the existing literature pertaining principles and techniques utilized in tissue engineering for purpose rehabilitating oral defects that may involve tissues such as bone, cartilage, mucosa, periodontal ligament, nerve, muscle. Recent Findings Tissue represents cutting-edge area research within field regeneration. Its potential application restoration maxillofacial has emerged viable alternative traditional use autologous bone grafts reconstructing defects. In recent times, made significant progress regeneration through utilization technologies. facilitated replication stem cells, cytokines, growth factors. Summary definitely future reconstructive surgery facilitates have been compromised by various dental pathologies. To date, regeneration, particularly simple However, complex structures their corresponding functionality remains formidable challenge continues be actively researched.

Language: Английский

Citations

3

Emerging diagnostic and therapeutic technologies based on ultrasound-triggered biomaterials DOI Creative Commons
Danqing Huang, Jinglin Wang, Baojie Wen

et al.

Materials Futures, Journal Year: 2023, Volume and Issue: 2(3), P. 032001 - 032001

Published: June 16, 2023

Abstract Ultrasound (US) is a kind of acoustic wave with frequency higher than 20 kHz. Learning from the echo detection ability bats and dolphins, scientists applied US for clinical imaging by sending out waves detecting echoes shifted intensities frequencies human tissue. has long played critical role in noninvasive, real-time, low-cost portable diagnostic imaging. With in-depth study multidisciplinary fields, US-responsive materials have shown practical value not only disease diagnosis, but also treatment. In this review, we introduce recently proposed representative biomedical applications, including therapeutic applications. We focused on US-mediated physicochemical therapies, such as sonodynamic therapy, high-intensity ablation, sonothermal thrombolysis, etc, US-controlled delivery chemotherapeutics, gases, genes, proteins bacteria. conclude current challenges facing translation smart prospects future development medicine.

Language: Английский

Citations

6