Go to:
Logótipo
You are here: Start > Publications > View > Magnetic Bone Tissue Engineering: Reviewing the Effects of Magnetic Stimulation on Bone Regeneration and Angiogenesis
Concurso de Escrita Criativa da FEUP
Publication

Magnetic Bone Tissue Engineering: Reviewing the Effects of Magnetic Stimulation on Bone Regeneration and Angiogenesis

Title
Magnetic Bone Tissue Engineering: Reviewing the Effects of Magnetic Stimulation on Bone Regeneration and Angiogenesis
Type
Another Publication in an International Scientific Journal
Year
2023
Authors
Ribeiro, TP
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Flores, M
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Madureira, S
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Zanotto, F
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Fernando Mendes Monteiro
(Author)
FEUP
View Personal Page You do not have permissions to view the institutional email. Search for Participant Publications View Authenticus page Without ORCID
Laranjeira, MS
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Journal
Title: PharmaceuticsImported from Authenticus Search for Journal Publications
Vol. 15
ISSN: 1999-4923
Publisher: MDPI
Indexing
Other information
Authenticus ID: P-00Y-BK9
Abstract (EN): Bone tissue engineering emerged as a solution to treat critical bone defects, aiding in tissue regeneration and implant integration. Mainly, this field is based on the development of scaffolds and coatings that stimulate cells to proliferate and differentiate in order to create a biologically active bone substitute. In terms of materials, several polymeric and ceramic scaffolds have been developed and their properties tailored with the objective to promote bone regeneration. These scaffolds usually provide physical support for cells to adhere, while giving chemical and physical stimuli for cell proliferation and differentiation. Among the different cells that compose the bone tissue, osteoblasts, osteoclasts, stem cells, and endothelial cells are the most relevant in bone remodeling and regeneration, being the most studied in terms of scaffold-cell interactions. Besides the intrinsic properties of bone substitutes, magnetic stimulation has been recently described as an aid in bone regeneration. External magnetic stimulation induced additional physical stimulation in cells, which in combination with different scaffolds, can lead to a faster regeneration. This can be achieved by external magnetic fields alone, or by their combination with magnetic materials such as nanoparticles, biocomposites, and coatings. Thus, this review is designed to summarize the studies on magnetic stimulation for bone regeneration. While providing information regarding the effects of magnetic fields on cells involved in bone tissue, this review discusses the advances made regarding the combination of magnetic fields with magnetic nanoparticles, magnetic scaffolds, and coatings and their subsequent influence on cells to reach optimal bone regeneration. In conclusion, several research works suggest that magnetic fields may play a role in regulating the growth of blood vessels, which are critical for tissue healing and regeneration. While more research is needed to fully understand the relationship between magnetism, bone cells, and angiogenesis, these findings promise to develop new therapies and treatments for various conditions, from bone fractures to osteoporosis.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 20
Documents
We could not find any documents associated to the publication.
Related Publications

Of the same journal

Second-Generation Antimitotics in Cancer Clinical Trials (2021)
Another Publication in an International Scientific Journal
Novais, P; Silva, PMA; Maria Isabel Amorim; Bousbaa, H
Recent Developments in Microfluidic Technologies for Central Nervous System Targeted Studies (2020)
Another Publication in an International Scientific Journal
Teixeira, MI; Maria Helena Amaral; Paulo Costa; Lopes, CM; Lamprou, DA
Patient Centric Pharmaceutical Drug Product Design-The Impact on Medication Adherence (2020)
Another Publication in an International Scientific Journal
Menditto, E; Orlando, V; De Rosa, G; Minghetti, P; Musazzi, UM; Cahir, C; Kurczewska Michalak, M; Kardas, P; Costa, E; Sousa Lobo JM; Almeida, IF
Nanopharmaceutics: Part I-Clinical Trials Legislation and Good Manufacturing Practices (GMP) of Nanotherapeutics in the EU (2020)
Another Publication in an International Scientific Journal
Souto, EB; Silva, GF; Dias Ferreira, J; Zielinska, A; Ventura, F; Durazzo, A; Lucarini, M; Novellino, E; Santini, A
Lipid-Polymeric Films: Composition, Production and Applications in Wound Healing and Skin Repair (2021)
Another Publication in an International Scientific Journal
Souto, EB; Yoshida, CMP; Leonardi, GR; Cano, A; Sanchez Lopez, E; Zielinska, A; Viseras, C; Severino, P; da Silva, CF; Barbosa, RD

See all (92)

Recommend this page Top
Copyright 1996-2024 © Faculdade de Engenharia da Universidade do Porto  I Terms and Conditions  I Accessibility  I Index A-Z  I Guest Book
Page generated on: 2024-07-20 at 23:27:08 | Acceptable Use Policy | Data Protection Policy | Complaint Portal