In recent years, the practical application of protein-based nanoparticles (PNPs) has expanded rapidly into areas like drug delivery, vaccine development, and biocatalysis. PNPs possess unique features that make them attractive as potential platforms for a variety of nanobiotechnological applications. They self-assemble from multiple protein subunits into hollow monodisperse structures; they are highly stable, biocompatible, and biodegradable; and their external components and encapsulation properties can be readily manipulated by chemical or genetic strategies. Moreover, their complex and perfect symmetry have motivated researchers to mimic their properties in order to create de novo protein assemblies. This review focuses on recent advance...
The use of therapeutic proteins plays a fundamental role in the treatment of numerous diseases. The ...
As the ribosomal synthesis of a nascent polypeptide progresses, the chain immediately undergoes fold...
The fully de novo design of protein building blocks for self-assembling as functional nanoparticles ...
In recent years, the practical application of protein-based nanoparticles (PNPs) has expanded rapidl...
Altres ajuts: FISS/PS09-00165Altres ajuts: FISS/PI12-00327Lack of targeting and improper biodistribu...
Protein nanocages are highly ordered nanometer scale architectures, which are typically formed by ho...
Protein nanomaterials are well-defined, hollow protein nanoparticles comprised of virus capsids, vir...
Peptide– and protein–nanoparticle conjugates have emerged as powerful tools for biomedical applicati...
Altres ajuts: Acord transformatiu CRUE-CSICWe have developed a simple, robust, and fully transversal...
Altres ajuts: acords transformatius de la UABWe have developed a simple, robust, and fully transvers...
Engineered nanoparticles provide a powerful scaffold for interfacing with proteins. The nanoparticle...
Nanoparticles are particles that range in size from about 1–1000 nanometers in diameter, about one t...
Nanoparticles are particles that range in size from about 1–1000 nanometers in diameter, about one t...
As the ribosomal synthesis of a nascent polypeptide progresses, the chain immediately undergoes fold...
As the ribosomal synthesis of a nascent polypeptide progresses, the chain immediately undergoes fold...
The use of therapeutic proteins plays a fundamental role in the treatment of numerous diseases. The ...
As the ribosomal synthesis of a nascent polypeptide progresses, the chain immediately undergoes fold...
The fully de novo design of protein building blocks for self-assembling as functional nanoparticles ...
In recent years, the practical application of protein-based nanoparticles (PNPs) has expanded rapidl...
Altres ajuts: FISS/PS09-00165Altres ajuts: FISS/PI12-00327Lack of targeting and improper biodistribu...
Protein nanocages are highly ordered nanometer scale architectures, which are typically formed by ho...
Protein nanomaterials are well-defined, hollow protein nanoparticles comprised of virus capsids, vir...
Peptide– and protein–nanoparticle conjugates have emerged as powerful tools for biomedical applicati...
Altres ajuts: Acord transformatiu CRUE-CSICWe have developed a simple, robust, and fully transversal...
Altres ajuts: acords transformatius de la UABWe have developed a simple, robust, and fully transvers...
Engineered nanoparticles provide a powerful scaffold for interfacing with proteins. The nanoparticle...
Nanoparticles are particles that range in size from about 1–1000 nanometers in diameter, about one t...
Nanoparticles are particles that range in size from about 1–1000 nanometers in diameter, about one t...
As the ribosomal synthesis of a nascent polypeptide progresses, the chain immediately undergoes fold...
As the ribosomal synthesis of a nascent polypeptide progresses, the chain immediately undergoes fold...
The use of therapeutic proteins plays a fundamental role in the treatment of numerous diseases. The ...
As the ribosomal synthesis of a nascent polypeptide progresses, the chain immediately undergoes fold...
The fully de novo design of protein building blocks for self-assembling as functional nanoparticles ...