Clinical trials and case reports of cancer therapies combining radiation therapy with immunotherapy have at times demonstrated total reduction or elimination of metastatic disease. While virtually all trials focus on the use of immunotherapy combined with conventional photon irradiation, the dose-distributive benefits of particles, in particular the distinct biological effects of heavy ions, have unknown potential vis-a-vis systemic disease response. Here, we review recent developments and evidence with a focus on the potential for heavy-ion combination therapy
Protons are the most common charged particles used in oncology. Acceleration of heavier ions require...
Heavy ions, such as carbon and oxygen ions, are classified as high-LET radiations, and produce a cha...
Charged particle therapy is the most advanced radiotherapy method in oncology. The favorable depth-d...
Clinical trials and case reports of cancer therapies combining radiation therapy with immunotherapy ...
Clinical trials and case reports of cancer therapies combining radiation therapy with immunotherapy ...
The combination of radiotherapy and immunotherapy is one of the most promising strategies for cancer...
Cancer treatment, today, consists of surgery, chemotherapy, radiation, and most recently immunothera...
Tremendous progress is currently achieved in treating cancer, including the fields of radiother- apy...
Simple SummaryImmunotherapy provides the unprecedented opportunity to prolong the survival of cancer...
Simple Summary Immunotherapy provides the unprecedented opportunity to prolong the survival of cance...
Heavy ions/DNA double-strand break repair/Intratumor quiescent cell population/p53/Bcl-2/Metastasis ...
BackgroundCombination radiotherapy and immunotherapy shows highly promising clinical results and is ...
Superb biological effectiveness and dose conformity represent a rationale for heavy-ion therapy, whi...
Heavy ion radiation therapy has been increasingly used due to several advantages over low linear ene...
Conventional radiotherapy techniques for the treatment of malignant tumours are known to carry some ...
Protons are the most common charged particles used in oncology. Acceleration of heavier ions require...
Heavy ions, such as carbon and oxygen ions, are classified as high-LET radiations, and produce a cha...
Charged particle therapy is the most advanced radiotherapy method in oncology. The favorable depth-d...
Clinical trials and case reports of cancer therapies combining radiation therapy with immunotherapy ...
Clinical trials and case reports of cancer therapies combining radiation therapy with immunotherapy ...
The combination of radiotherapy and immunotherapy is one of the most promising strategies for cancer...
Cancer treatment, today, consists of surgery, chemotherapy, radiation, and most recently immunothera...
Tremendous progress is currently achieved in treating cancer, including the fields of radiother- apy...
Simple SummaryImmunotherapy provides the unprecedented opportunity to prolong the survival of cancer...
Simple Summary Immunotherapy provides the unprecedented opportunity to prolong the survival of cance...
Heavy ions/DNA double-strand break repair/Intratumor quiescent cell population/p53/Bcl-2/Metastasis ...
BackgroundCombination radiotherapy and immunotherapy shows highly promising clinical results and is ...
Superb biological effectiveness and dose conformity represent a rationale for heavy-ion therapy, whi...
Heavy ion radiation therapy has been increasingly used due to several advantages over low linear ene...
Conventional radiotherapy techniques for the treatment of malignant tumours are known to carry some ...
Protons are the most common charged particles used in oncology. Acceleration of heavier ions require...
Heavy ions, such as carbon and oxygen ions, are classified as high-LET radiations, and produce a cha...
Charged particle therapy is the most advanced radiotherapy method in oncology. The favorable depth-d...