Induction of tumor-specific CD8 + T cell responses is known as a major challenge for cancer vaccine development; here we presented a strategy to improve peptide nanofibers-mounted antitumor immune responses. To this end, peptide nanofibers bearing class I (Kb)‐restricted epitope (Epi-Nano) were formulated with polyethylene imine backbone (Epi-Nano-PEI), and characterized using morphological and physicochemical characterization techniques. Nanofibers were studied in terms of their uptake by antigen-presenting cells (APCs), antigen cross-presentation capacity, and cytotoxic activity. Furthermore, nanofibers were assessed by their potency to induce NLRP3 inflammasome-related cytokines and factors. Finally, the ability of nanofibers to induce t...
Gynecological cancers are a leading cause of mortality in women. CD8(+) T cell immunity largely corr...
The advancement of tissue and cell-specific drug delivery systems is a key to precision cancer thera...
The immune system represents a powerful resource for the eradication of cancer. To harness the full...
A major challenge for the development of anticancer vaccines is the induction of a safe and effectiv...
The old dogma in the field of Biomaterials was to avoid as much as possible recognition by the immun...
The aim of the present study was to improve the immunogenicity of peptide epitope vaccines using nov...
Balancing immunogenicity with inflammation is a central tenet of vaccine design, especially for subu...
A supramolecular peptide vaccine system was designed in which epitope-bearing peptides self-assemble...
Abstract Background Many peptide-based cancer vaccines have been tested in clinical trials with a li...
Self-assembled peptide amphiphiles (PAs) consisting of hydrophobic, hydvrogen-bonding, and charged h...
Induction of antigen-specific immune tolerance has emerged as the next frontier in treating autoimmu...
Background Considering the narrow immune response spectrum of a single epitope, and the nanoparticle...
Synthetic vaccines utilize viral signatures to trigger immune responses. Although the immune respons...
Synthetic vaccines utilize viral signatures to trigger immune responses. Although the immune respons...
Supramolecular peptide nanofibers are attractive for applications in vaccine development due to thei...
Gynecological cancers are a leading cause of mortality in women. CD8(+) T cell immunity largely corr...
The advancement of tissue and cell-specific drug delivery systems is a key to precision cancer thera...
The immune system represents a powerful resource for the eradication of cancer. To harness the full...
A major challenge for the development of anticancer vaccines is the induction of a safe and effectiv...
The old dogma in the field of Biomaterials was to avoid as much as possible recognition by the immun...
The aim of the present study was to improve the immunogenicity of peptide epitope vaccines using nov...
Balancing immunogenicity with inflammation is a central tenet of vaccine design, especially for subu...
A supramolecular peptide vaccine system was designed in which epitope-bearing peptides self-assemble...
Abstract Background Many peptide-based cancer vaccines have been tested in clinical trials with a li...
Self-assembled peptide amphiphiles (PAs) consisting of hydrophobic, hydvrogen-bonding, and charged h...
Induction of antigen-specific immune tolerance has emerged as the next frontier in treating autoimmu...
Background Considering the narrow immune response spectrum of a single epitope, and the nanoparticle...
Synthetic vaccines utilize viral signatures to trigger immune responses. Although the immune respons...
Synthetic vaccines utilize viral signatures to trigger immune responses. Although the immune respons...
Supramolecular peptide nanofibers are attractive for applications in vaccine development due to thei...
Gynecological cancers are a leading cause of mortality in women. CD8(+) T cell immunity largely corr...
The advancement of tissue and cell-specific drug delivery systems is a key to precision cancer thera...
The immune system represents a powerful resource for the eradication of cancer. To harness the full...