Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Biocompatibility of Nanomaterials in Medical Applications

View through CrossRef
Biocompatibility is a critical factor in the application of nanomaterials in medical fields, as these materials must interact safely and effectively with biological systems to be viable for therapeutic and diagnostic use. This article investigates the biocompatibility of nanomaterials, focusing on their interactions with biological cells, tissues, and the immune system. Key properties such as surface chemistry, size, shape, and material composition are examined, as they significantly influence the biological response. The article explores the role of nanomaterials in medical applications, including drug delivery, diagnostic imaging, and tissue engineering, while discussing the challenges involved in enhancing their biocompatibility. A case study on the CaO-CaP binary system is presented, showcasing the use of calcium oxide (CaO) and calcium phosphate (CaP) nanoparticles in bone tissue engineering. This system is widely investigated for its ability to mimic the mineral content of bone and promote osteogenesis, highlighting both its therapeutic potential and challenges in ensuring safe biocompatibility in clinical settings. The article concludes by reviewing strategies to optimize the biocompatibility of nanomaterials and discussing future directions for research in advancing their applications in medical treatments.
American Chemical Society (ACS)
Title: Biocompatibility of Nanomaterials in Medical Applications
Description:
Biocompatibility is a critical factor in the application of nanomaterials in medical fields, as these materials must interact safely and effectively with biological systems to be viable for therapeutic and diagnostic use.
This article investigates the biocompatibility of nanomaterials, focusing on their interactions with biological cells, tissues, and the immune system.
Key properties such as surface chemistry, size, shape, and material composition are examined, as they significantly influence the biological response.
The article explores the role of nanomaterials in medical applications, including drug delivery, diagnostic imaging, and tissue engineering, while discussing the challenges involved in enhancing their biocompatibility.
A case study on the CaO-CaP binary system is presented, showcasing the use of calcium oxide (CaO) and calcium phosphate (CaP) nanoparticles in bone tissue engineering.
This system is widely investigated for its ability to mimic the mineral content of bone and promote osteogenesis, highlighting both its therapeutic potential and challenges in ensuring safe biocompatibility in clinical settings.
The article concludes by reviewing strategies to optimize the biocompatibility of nanomaterials and discussing future directions for research in advancing their applications in medical treatments.

Related Results

Biocompatibility and Nanotoxicity of Layered Two‐Dimensional Nanomaterials
Biocompatibility and Nanotoxicity of Layered Two‐Dimensional Nanomaterials
AbstractLayered two‐dimensional (2D) nanomaterials, such as graphene, transition metal dichalcogenides (TMDs), layered metal oxides (LMOs), black phosphorus (BP), and hexagonal bor...
Genotoxicity Induced By Nanomaterials
Genotoxicity Induced By Nanomaterials
Abstract Nanomaterials are useful for their characteristic properties and are commonly used in various fields. The assessment of genotoxicity and safety of nanoma...
Biocompatibility of Nanomaterials in Medical Applications
Biocompatibility of Nanomaterials in Medical Applications
Biocompatibility is a critical factor in the application of nanomaterials in medical fields, as these materials must interact safely and effectively with biological systems to be v...
Biocompatibility of Nanomaterials in Medical Applications
Biocompatibility of Nanomaterials in Medical Applications
Biocompatibility is a critical factor in the application of nanomaterials in medical fields, as these materials must interact safely and effectively with biological systems to be v...
Nanomaterials: Synthesis and Applications in Theranostics
Nanomaterials: Synthesis and Applications in Theranostics
Nanomaterials are endowed with unique features and essential properties suitable for employing in the field of nanomedicine. The nanomaterials can be classified as 0D, 1D, 2D, and ...
Advances of hafnium based nanomaterials for cancer theranostics
Advances of hafnium based nanomaterials for cancer theranostics
Hafnium-based nanomaterials (Hf-NMs) have attracted the interest of numerous biomedical researchers by their unique properties. Recent years have witnessed significant advancements...
Biocompatibility and Functionalization of Sustainable Nanomaterials
Biocompatibility and Functionalization of Sustainable Nanomaterials
Nanomaterials are considered to be a promising type of compounds with tuneable properties and high efficiency. Nanomaterials are used in different areas, such as cosmetics, biomedi...
Biocompatibility Study of Silica-Based Magnesium Composites: A Review
Biocompatibility Study of Silica-Based Magnesium Composites: A Review
Because of their exceptional biodegradability, mechanical strength, and biocompatibility, magnesium-based composites have attracted a lot of interest in the biomedical field. This ...

Back to Top