MXene and Xene: promising frontier beyond graphene in tissue engineering and regenerative medicine

MS Kang, HJ Jang, HJ Jo, IS Raja, DW Han - Nanoscale Horizons, 2023 - pubs.rsc.org
The emergence of 2D nanomaterials (2D NMs), which was initiated by the isolation of
graphene (G) in 2004, revolutionized various biomedical applications, including bioimaging …

Immunomodulatory Nanomedicine for Osteoporosis: Current Practices and Emerging Prospects

Y Luo, H Liu, M Chen, Y Zhang, W Zheng, L Wu, Y Liu… - Acta Biomaterialia, 2024 - Elsevier
Osteoporosis results from the disruption of the balance between bone resorption and bone
formation. However, classical anti-osteoporosis drugs exhibit several limitations in clinical …

Biomimetically ordered ultralong hydroxyapatite nanowires-based hierarchical hydrogel scaffold with osteoimmunomodulatory and osteogenesis abilities for …

X Geng, Y Tang, B Yuan, Y Dai, HP Yu… - Chemical Engineering …, 2024 - Elsevier
Artificial construction of tissue engineering implants with bone-mimicking structure and
osteogenic function is of great significance for bone regeneration, but it remains a …

[HTML][HTML] Smart gradient coating suitable for bone growth prepared on plasma-electrolytically oxidised Mg and its sequential degradation behaviour

J Han, K Fu, Z Jiang, H Zhang, H San, H Chen… - Journal of Magnesium …, 2024 - Elsevier
A gradient coating containing collagen and inorganic strontium/calcium phosphate (Sr/CaP)
was fabricated on plasma-electrolytically oxidised magnesium via one-step cathodic …

[HTML][HTML] Magnesium malate-modified calcium phosphate bone cement promotes the repair of vertebral bone defects in minipigs via regulating CGRP

H Xu, F Tian, Y Liu, R Liu, H Li, X Gao, C Ju… - Journal of …, 2024 - Springer
Active artificial bone substitutes are crucial in bone repair and reconstruction. Calcium
phosphate bone cement (CPC) is known for its biocompatibility, degradability, and ability to …

[HTML][HTML] In Situ injectable photo-crosslinking hydrogel with heterojunction nanoparticles for dual-channel synergistic disinfection and cutaneous regeneration in …

X Ma, X Huang, A Wang, T Sun, R Tai, J Li, Z Qiao… - Nano Today, 2024 - Elsevier
Recurrent inflammation, intense bacterial infections, and inadequate blood vessel growth
make diabetic wounds non-healing. Under pathological environment, cellular functions are …

[PDF][PDF] Bioinspired soft-hard combined system with mild photothermal therapeutic activity promotes diabetic bone defect healing via synergetic effects of immune …

M Wu, H Liu, Y Zhu, P Wu, Y Chen, Z Deng, X Zhu… - researchgate.net
Background: The comprehensive management of diabetic bone defects remains a
substantial clinical challenge due to the hostile regenerative microenvironment …