A three-step pretargeted radioimmunotherapy that uses nuclear medicine to target and eliminates colorectal cancer has been developed by a research team.
- A three-step pretargeted radioimmunotherapy (PRIT) strategy was used to treat colorectal cancer.
- Treatment was well tolerated with no treatment-related toxicities.
- A 100 percent histologic cure was achieved.
Targeting an antigen most common in colorectal cancer
In this study, the glycoprotein A33 (GPA33), an antigen found on over 95 percent of primary and metastatic human colorectal cancers, was targeted with a bispecific antibody for A33 tumor antigen and a second antibody for a small-molecule radioactive hapten, a complex of lutetium-177 (177Lu) and S-2-(4-aminobenzyl)1,4,7,10-tetraazacyclododecane tetra-acetic acid (177Lu-DOTA-Bn).
In this study with a mouse model, researchers achieved a 100-percent cure rate--without any treatment-related toxic effects.
DOTA-pretargeted radioimmunotherapy (PRIT)
The DOTA-pretargeted radioimmunotherapy (PRIT) strategy was tested on a mouse model. In randomly selected mice undergoing treatment, serial SPECT/CT imaging was used to monitor treatment response and calculate radiation-absorbed doses to tumors. All the DOTA-PRIT-treated animals tolerated the treatment well, and all 9 assessed mice had no trace of cancer remaining upon microscopic examination. There was also no detectable radiation damage to critical organs, including bone marrow and kidneys.
The 100-percent cure rate in the mouse model is a promising preliminary finding that suggests that anti-GPA33-DOTA-PRIT will be a potent radioimmunotherapy regimen for GPA33-positive colorectal cancer tumors in humans.
Hope for more nuclear medicine for cancer treatment
The applications of this nuclear medicine treatment protocol could extend to other cancers as well. Larson and Cheal state, "If clinically successful, our approach will expand the repertoire of effective treatments for oncologic patients. The system is designed as a ’plug and play’ system, which allows for the use of many fine antibodies targeting human tumor antigens and is applicable, in principle, to virtually all solid and liquid tumors in man." They add, "There is a huge unmet need in oncology, especially for the solid tumors, for curative treatments for advanced disease. This includes, colon, breast, pancreas, melanoma, lung, and esophageal, to name a few." References:
- Sarah M. Cheal, Edward K. Fung et al. Curative Multicycle Radioimmunotherapy Monitored by Quantitative SPECT/CT-Based Theranostics, Using Bispecific Antibody Pretargeting Strategy in Colorectal Cancer, Journal of Nuclear Medicine http://dx.doi.org/10.2967/jnumed.117.193250