Modulation of macrophage plasticity is emerging as a successful strategy in tissue engineering (TE) to control the immune response elicited by the implanted material. Indeed, one major determinant of success in regenerating tissues and organs is to achieve the correct balance between immune pro-inflammatory and pro-resolution players. In recent years, nanoparticle-mediated macrophage polarization towards the pro- or anti-inflammatory subtypes is gaining increasing interest in the biomedical field. In TE, despite significant progress in the use of nanomaterials, the full potential of nanoparticles as effective immunomodulators has not yet been completely realized. This work discusses the contribution that nanotechnology gives to TE applicati...
Macrophages have long been known for their phagocytic capabilities and immune defence; however, thei...
Approximately 6 million bone fractures are reported annually within the US, 10% of which may experie...
The skeletal muscle has a very remarkable ability to regenerate upon injury under physiological cond...
Modulation of macrophage plasticity is emerging as a successful strategy in tissue engineering (TE) ...
Since the worldwide incidence of bone disorders and cartilage damage has been increasing and traditi...
The host immune response to bone biomaterials is vital in determining the fate of scaffolds and also...
Musculoskeletal disorders are common in clinical practice. Repairing critical-sized defects in muscu...
Additive manufacturing (AM) techniques have provided many opportunities for the rational design of p...
Biomaterials with suitable surface modification strategies are contributing significantly to the rap...
Treatment of large bone fractures remains a challenge for orthopedists. Bone regeneration is a compl...
Tissue is vital to the organization of multicellular organisms, because it creates the different org...
Engineered nanomaterials with various physicochemical properties have been increasingly used in medi...
Advances in nanoparticle (NP) production and demand for control over nanoscale systems have had sign...
Muscular dystrophies are a group of rare genetic disorders characterized by progressive muscle weakn...
The persistence of inflammatory mediators in tissue niches significantly impacts regenerative outcom...
Macrophages have long been known for their phagocytic capabilities and immune defence; however, thei...
Approximately 6 million bone fractures are reported annually within the US, 10% of which may experie...
The skeletal muscle has a very remarkable ability to regenerate upon injury under physiological cond...
Modulation of macrophage plasticity is emerging as a successful strategy in tissue engineering (TE) ...
Since the worldwide incidence of bone disorders and cartilage damage has been increasing and traditi...
The host immune response to bone biomaterials is vital in determining the fate of scaffolds and also...
Musculoskeletal disorders are common in clinical practice. Repairing critical-sized defects in muscu...
Additive manufacturing (AM) techniques have provided many opportunities for the rational design of p...
Biomaterials with suitable surface modification strategies are contributing significantly to the rap...
Treatment of large bone fractures remains a challenge for orthopedists. Bone regeneration is a compl...
Tissue is vital to the organization of multicellular organisms, because it creates the different org...
Engineered nanomaterials with various physicochemical properties have been increasingly used in medi...
Advances in nanoparticle (NP) production and demand for control over nanoscale systems have had sign...
Muscular dystrophies are a group of rare genetic disorders characterized by progressive muscle weakn...
The persistence of inflammatory mediators in tissue niches significantly impacts regenerative outcom...
Macrophages have long been known for their phagocytic capabilities and immune defence; however, thei...
Approximately 6 million bone fractures are reported annually within the US, 10% of which may experie...
The skeletal muscle has a very remarkable ability to regenerate upon injury under physiological cond...