Subunit vaccines based on recombinant proteins can suffer from poor immunogenicity owing to incorrect folding of the target protein or poor presentation to the immune system. Virus-like particles (VLPs) represent a specific class of subunit vaccine that mimic the structure of authentic virus particles. They are recognized readily by the immune system and present viral antigens in a more authentic conformation than other subunit vaccines. VLPs have therefore shown dramatic effectiveness as candidate vaccines. Here, we review the current status of VLPs as vaccines, and discuss the characteristics and problems associated with producing VLPs for different viruses
Virus-like particles (VLPs) are a type of subunit vaccine which resembles viruses but do not contain...
Although viruses are simple biological systems, they are capable of evolving highly efficient techni...
Recombinant proteins and in particular single domains or peptides are often poorly immunogenic unles...
Vaccines against viral disease have traditionally relied on attenuated virus strains or inactivation...
Virus-like particles (VLPs) are a class of subunit vaccines that differentiate themselves from solub...
This review presents data on commercial and experimental virus-like particle (VLP) vaccines, includi...
The structure, uniformity, stability, and functions of virus-like particles (VLPs) have encouraged s...
Virus-like particles (VLPs) assemble spontaneously during the viral cycle or in heterologous systems...
Virus-like particles (VLPs) are self-assembled viral protein complexes that mimic the native virus s...
Nanotechnology and protein engineering helped revolutionize the invention and upgrading of immunizat...
Vaccination is the most effective method of disease prevention and control. Many viruses and bacteri...
Cancers have killed millions of people in human history and are still posing a serious health proble...
Virus-like particles (VLPs) have made giant strides in the field of vaccinology over the last three ...
This review presents data on commercial and experimental virus-like particle (VLP) vaccines, includi...
The development of virus-like particle (VLP) based vaccines for human papillomavirus, hepatitis B an...
Virus-like particles (VLPs) are a type of subunit vaccine which resembles viruses but do not contain...
Although viruses are simple biological systems, they are capable of evolving highly efficient techni...
Recombinant proteins and in particular single domains or peptides are often poorly immunogenic unles...
Vaccines against viral disease have traditionally relied on attenuated virus strains or inactivation...
Virus-like particles (VLPs) are a class of subunit vaccines that differentiate themselves from solub...
This review presents data on commercial and experimental virus-like particle (VLP) vaccines, includi...
The structure, uniformity, stability, and functions of virus-like particles (VLPs) have encouraged s...
Virus-like particles (VLPs) assemble spontaneously during the viral cycle or in heterologous systems...
Virus-like particles (VLPs) are self-assembled viral protein complexes that mimic the native virus s...
Nanotechnology and protein engineering helped revolutionize the invention and upgrading of immunizat...
Vaccination is the most effective method of disease prevention and control. Many viruses and bacteri...
Cancers have killed millions of people in human history and are still posing a serious health proble...
Virus-like particles (VLPs) have made giant strides in the field of vaccinology over the last three ...
This review presents data on commercial and experimental virus-like particle (VLP) vaccines, includi...
The development of virus-like particle (VLP) based vaccines for human papillomavirus, hepatitis B an...
Virus-like particles (VLPs) are a type of subunit vaccine which resembles viruses but do not contain...
Although viruses are simple biological systems, they are capable of evolving highly efficient techni...
Recombinant proteins and in particular single domains or peptides are often poorly immunogenic unles...