Although adoptive T-cell therapy has been successful in hematological malignancy treatment, its application in solid tumors remains a great challenge. Here, using a pH-sensitive benzoic-imine bond and inverse electron-demand Diels-Alder cycloaddition, we prepared magnetic nanoclusters (NCs) armed with responsive PD-1 antibody (aP), which could then bind onto effector T cells due to their PD-1 expression. After adoptive transfer, the magnetization and superparamagnetism of NCs enabled us to magnetically recruit effector T cells and aP simultaneously to tumor sites with MRI guidance. Owing to the acidic intratumoral microenvironment, the benzoic-imine bond then hydrolyzed, leading to the release of aP. The therapeutic effects of adoptive T ce...
Iron–dextran nanoparticles functionalized with T cell activating proteins have been used to study T ...
Immunotherapy represents an attractive therapeutic option for effective treatment of different forms...
Immunotherapy is a rapidly developing area of cancer treatment due to its higher specificity and pot...
Although adoptive T-cell therapy has been successful in hematological malignancy treatment, its appl...
Although adoptive T-cell therapy has been successful in hematological malignancy treatment, its appl...
As traditional anticancer treatments fail to significantly improve the prognoses, exploration of the...
Adoptive T-cell transfer for cancer therapy relies on both effective ex vivo T-cell expansion and in...
Adoptive cell transfer therapy is a promising anti-tumor immunotherapy in which effector immune cell...
A novel cancer vaccine is developed by using Fe3O4 magnetic nanoclusters (MNCs) as the core and canc...
Current immuno-oncotherapeutic protocols that inhibit tumor immune evasion have demonstrated great c...
[Background] Adoptive T cell-transfer (ATC) therapy is a highly promising cancer-treatment approach....
As traditional anticancer treatments fail to significantly improve the prognoses, exploration of the...
A novel cancer vaccine is developed by using Fe3O4 magnetic nanoclusters (MNCs) as the core and canc...
Abstract Cancer immunotherapy has shown promising therapeutic results in the clinic, albeit only in ...
Adoptive T-cell transfer for cancer therapy relies on both effective <i>ex vivo</i> T-cell expansion...
Iron–dextran nanoparticles functionalized with T cell activating proteins have been used to study T ...
Immunotherapy represents an attractive therapeutic option for effective treatment of different forms...
Immunotherapy is a rapidly developing area of cancer treatment due to its higher specificity and pot...
Although adoptive T-cell therapy has been successful in hematological malignancy treatment, its appl...
Although adoptive T-cell therapy has been successful in hematological malignancy treatment, its appl...
As traditional anticancer treatments fail to significantly improve the prognoses, exploration of the...
Adoptive T-cell transfer for cancer therapy relies on both effective ex vivo T-cell expansion and in...
Adoptive cell transfer therapy is a promising anti-tumor immunotherapy in which effector immune cell...
A novel cancer vaccine is developed by using Fe3O4 magnetic nanoclusters (MNCs) as the core and canc...
Current immuno-oncotherapeutic protocols that inhibit tumor immune evasion have demonstrated great c...
[Background] Adoptive T cell-transfer (ATC) therapy is a highly promising cancer-treatment approach....
As traditional anticancer treatments fail to significantly improve the prognoses, exploration of the...
A novel cancer vaccine is developed by using Fe3O4 magnetic nanoclusters (MNCs) as the core and canc...
Abstract Cancer immunotherapy has shown promising therapeutic results in the clinic, albeit only in ...
Adoptive T-cell transfer for cancer therapy relies on both effective <i>ex vivo</i> T-cell expansion...
Iron–dextran nanoparticles functionalized with T cell activating proteins have been used to study T ...
Immunotherapy represents an attractive therapeutic option for effective treatment of different forms...
Immunotherapy is a rapidly developing area of cancer treatment due to its higher specificity and pot...