[HTML][HTML] Engineered three-dimensional scaffolds for enhanced bone regeneration in osteonecrosis

T Zhu, Y Cui, M Zhang, D Zhao, G Liu, J Ding - Bioactive materials, 2020 - Elsevier
Osteonecrosis, which is typically induced by trauma, glucocorticoid abuse, or alcoholism, is
one of the most severe diseases in clinical orthopedics. Osteonecrosis often leads to joint …

Mesenchymal stromal cell-based bone regeneration therapies: from cell transplantation and tissue engineering to therapeutic secretomes and extracellular vesicles

D Marolt Presen, A Traweger, M Gimona… - … in bioengineering and …, 2019 - frontiersin.org
Effective regeneration of bone defects often presents significant challenges, particularly in
patients with decreased tissue regeneration capacity due to extensive trauma, disease …

Umbilical mesenchymal stem cell-derived exosome-encapsulated hydrogels accelerate bone repair by enhancing angiogenesis

Y Zhang, Y Xie, Z Hao, P Zhou, P Wang… - … Applied Materials & …, 2021 - ACS Publications
Repair of large bone defects represents a major challenge for orthopedic surgeons. The
newly formed microvessels inside grafts play a crucial role in successful bone tissue …

Developmentally engineered callus organoid bioassemblies exhibit predictive in vivo long bone healing

G Nilsson Hall, LF Mendes, C Gklava, L Geris… - Advanced …, 2020 - Wiley Online Library
Clinical translation of cell‐based products is hampered by their limited predictive in vivo
performance. To overcome this hurdle, engineering strategies advocate to fabricate tissue …

The current regenerative medicine approaches of craniofacial diseases: A narrative review

E Tahmasebi, M Mohammadi, M Alam… - Frontiers in Cell and …, 2023 - frontiersin.org
Craniofacial deformities (CFDs) develop following oncological resection, trauma, or
congenital disorders. Trauma is one of the top five causes of death globally, with rates …

3D-printing for critical sized bone defects: current concepts and future directions

CK Mayfield, M Ayad, E Lechtholz-Zey, Y Chen… - Bioengineering, 2022 - mdpi.com
The management and definitive treatment of segmental bone defects in the setting of acute
trauma, fracture non-union, revision joint arthroplasty, and tumor surgery are challenging …

Bone defect reconstruction via endochondral ossification: A developmental engineering strategy

R Fu, C Liu, Y Yan, Q Li… - Journal of tissue …, 2021 - journals.sagepub.com
Traditional bone tissue engineering (BTE) strategies induce direct bone-like matrix formation
by mimicking the embryological process of intramembranous ossification. However, the …

Tissue engineering and regenerative medicine in craniofacial reconstruction and facial aesthetics

MR Borrelli, MS Hu, MT Longaker… - Journal of Craniofacial …, 2020 - journals.lww.com
The craniofacial region is anatomically complex and is of critical functional and cosmetic
importance, making reconstruction challenging. The limitations of current surgical options …

Close-to-native bone repair via tissue-engineered endochondral ossification approaches

S Nadine, IJ Fernandes, CR Correia, JF Mano - Iscience, 2022 - cell.com
In order to solve the clinical challenges related to bone grafting, several tissue engineering
(TE) strategies have been proposed to repair critical-sized defects. Generally, the classical …

[HTML][HTML] Pathophysiological mechanism of acute bone loss after fracture

XQ Zheng, J Huang, J Lin, CL Song - Journal of Advanced Research, 2023 - Elsevier
Background Acute bone loss after fracture is associated with various effects on the complete
recovery process and a risk of secondary fractures among patients. Studies have reported …