Tumor development and metastasis are intimately associated with the tumor microenvironment (TME), and it is difficult for vector-restricted drugs to act on the TME for long-term cancer immunotherapy. Virus-like particles (VLPs) are nanocage structures self-assembled from nucleic acid free viral proteins. Most VLPs range from 20-200 nm in diameter and can naturally drain into lymph nodes to induce robust humoral immunity. As natural nucleic acid nanocarriers, their surfaces can also be genetically or chemically modified to achieve functions such as TME targeting. This review focuses on the design ideas of VLP as nanocarriers and the progress of their research in regulating TME
The purpose of this review is to highlight recent scientific developments and provide an overview of...
Protein-based nanoparticles are useful models for the study of self-assembly and attractive candidat...
Virus-like particles (VLPs) are nanostructures assemble from viral proteins. Besides widely used for...
Tumor development and metastasis are intimately associated with the tumor microenvironment (TME), an...
Nanotechnology has the potential to make significant alterations in the treatment of diseases such a...
Cancers have killed millions of people in human history and are still posing a serious health proble...
Virus-like particles (VLPs) are self-assembled viral protein complexes that mimic the native virus s...
Active immunotherapy of cancer aims to treat the disease by inducing effective cellular and humoral ...
Viral nanoparticles (VNPs) encompass a diverse array of naturally occurring nanomaterials derived fr...
Nanotechnology is a fast-evolving field focused on fabricating nanoscale objects for industrial, cos...
New nanocarrier platforms based on natural biological building blocks offer great promises in revolu...
Virus-like particles (VLPs) are known as self-assembled, non-replicative and non-infectious protein ...
International audienceBackground: As a complement to the clinical development of new anticancer mole...
This review presents data on commercial and experimental virus-like particle (VLP) vaccines, includi...
Nanotechnology and protein engineering helped revolutionize the invention and upgrading of immunizat...
The purpose of this review is to highlight recent scientific developments and provide an overview of...
Protein-based nanoparticles are useful models for the study of self-assembly and attractive candidat...
Virus-like particles (VLPs) are nanostructures assemble from viral proteins. Besides widely used for...
Tumor development and metastasis are intimately associated with the tumor microenvironment (TME), an...
Nanotechnology has the potential to make significant alterations in the treatment of diseases such a...
Cancers have killed millions of people in human history and are still posing a serious health proble...
Virus-like particles (VLPs) are self-assembled viral protein complexes that mimic the native virus s...
Active immunotherapy of cancer aims to treat the disease by inducing effective cellular and humoral ...
Viral nanoparticles (VNPs) encompass a diverse array of naturally occurring nanomaterials derived fr...
Nanotechnology is a fast-evolving field focused on fabricating nanoscale objects for industrial, cos...
New nanocarrier platforms based on natural biological building blocks offer great promises in revolu...
Virus-like particles (VLPs) are known as self-assembled, non-replicative and non-infectious protein ...
International audienceBackground: As a complement to the clinical development of new anticancer mole...
This review presents data on commercial and experimental virus-like particle (VLP) vaccines, includi...
Nanotechnology and protein engineering helped revolutionize the invention and upgrading of immunizat...
The purpose of this review is to highlight recent scientific developments and provide an overview of...
Protein-based nanoparticles are useful models for the study of self-assembly and attractive candidat...
Virus-like particles (VLPs) are nanostructures assemble from viral proteins. Besides widely used for...