[HTML][HTML] Biofabrication of natural hydrogels for cardiac, neural, and bone Tissue engineering Applications

K Elkhoury, M Morsink, L Sanchez-Gonzalez, C Kahn… - Bioactive materials, 2021 - Elsevier
Natural hydrogels are one of the most promising biomaterials for tissue engineering
applications, due to their biocompatibility, biodegradability, and extracellular matrix …

[HTML][HTML] Tendon tissue engineering: Cells, growth factors, scaffolds and production techniques

S Ruiz-Alonso, M Lafuente-Merchan, J Ciriza… - Journal of Controlled …, 2021 - Elsevier
Tendon injuries are a global health problem that affects millions of people annually. The
properties of tendons make their natural rehabilitation a very complex and long-lasting …

Filamented Light (FLight) Biofabrication of Highly Aligned Tissue‐engineered Constructs

H Liu, P Chansoria, P Delrot, E Angelidakis… - Advanced …, 2022 - Wiley Online Library
Cell‐laden hydrogels used in tissue engineering generally lack sufficient 3D topographical
guidance for cells to mature into aligned tissues. A new strategy called filamented light …

[HTML][HTML] Chameleon-inspired multifunctional plasmonic nanoplatforms for biosensing applications

Y Ziai, F Petronella, C Rinoldi, P Nakielski… - NPG Asia …, 2022 - nature.com
One of the most fascinating areas in the field of smart biopolymers is biomolecule sensing.
Accordingly, multifunctional biomimetic, biocompatible, and stimuli-responsive materials …

Magnetically‐assisted 3D bioprinting of anisotropic tissue‐mimetic constructs

A Pardo, SM Bakht, M Gomez‐Florit… - Advanced Functional …, 2022 - Wiley Online Library
Recreating the extracellular matrix organization and cellular patterns of anisotropic tissues
in bioengineered constructs remains a significant biofabrication challenge. Magnetically …

[HTML][HTML] Natural, synthetic and commercially-available biopolymers used to regenerate tendons and ligaments

BS Heidari, R Ruan, E Vahabli, P Chen… - Bioactive Materials, 2023 - Elsevier
Tendon and ligament (TL) injuries affect millions of people annually. Biopolymers play a
significant role in TL tissue repair, whether the treatment relies on tissue engineering …

[HTML][HTML] Mesenchymal stem cells empowering tendon regenerative therapies

R Costa-Almeida, I Calejo, ME Gomes - International journal of molecular …, 2019 - mdpi.com
Tendon tissues have limited healing capacity. The incidence of tendon injuries and the
unsatisfactory functional outcomes of tendon repair are driving the search for alternative …

Three-dimensional printable conductive semi-interpenetrating polymer network hydrogel for neural tissue applications

C Rinoldi, M Lanzi, R Fiorelli, P Nakielski… - …, 2021 - ACS Publications
Intrinsically conducting polymers (ICPs) are widely used to fabricate biomaterials; their
application in neural tissue engineering, however, is severely limited because of their …

Progress in biomechanical stimuli on the cell-encapsulated hydrogels for cartilage tissue regeneration

S Taheri, HS Ghazali, ZS Ghazali… - Biomaterials …, 2023 - spj.science.org
Background Worldwide, many people suffer from knee injuries and articular cartilage
damage every year, which causes pain and reduces productivity, life quality, and daily …

Biomaterials strategies to balance inflammation and tenogenesis for tendon repair

J Hou, R Yang, I Vuong, F Li, J Kong, HQ Mao - Acta biomaterialia, 2021 - Elsevier
Adult tendon tissue demonstrates a limited regenerative capacity, and the natural repair
process leaves fibrotic scar tissue with inferior mechanical properties. Surgical treatment is …