| Literature DB >> 30984615 |
Charles A Kunos1, Jacek Capala2, Shanda Finnigan1, Gary L Smith1, Susan Percy Ivy1.
Abstract
Targeted radiopharmaceuticals for therapeutic use deliver radionuclides directly to tumor anywhere in the body, and therefore, have renewed interest for clinical development in women with disseminated chemorefractory ovarian cancers. About two in every five women with advanced stage ovarian cancer outlive their disease after the first treatment phase, with the rest rendered incurable due to the chemorefractory nature of their disease. The National Cancer Institute (NCI) Cancer Therapy Evaluation Program conducted 67 phase I or phase Ib trials among women with relapsed or refractory ovarian cancer between 1989 and 2017 in an effort to uncover tolerable and effective drug combinations intended to increase survival rates. None of these early clinical development phase trials involved radiopharmaceuticals. Here, the NCI provides its perspective on targeted radiopharmaceutical conjugates alone or in combination with its experimental therapeutics portfolio for women with relapsed or refractory ovarian cancer. An infrastructure build for Federal radiopharmaceutical medical monitoring and adverse event reporting has begun.Entities:
Keywords: nuclear medicine; ovarian cancer; radiation; radionuclides; radiopharmaceutical
Year: 2019 PMID: 30984615 PMCID: PMC6448015 DOI: 10.3389/fonc.2019.00180
Source DB: PubMed Journal: Front Oncol ISSN: 2234-943X Impact factor: 6.244
Toxicity definitions relative to radiopharmaceutical exposure.
| Acute toxicity | Arises over a brief timeframe after radiopharmaceutical exposure | Transient, reversible, or persistent | Nausea |
| Subacute toxicity | Arises over an intermediate time period (e.g., 1 to 3 months posttherapy) | Transient, reversible, or persistent | Pneumonitis |
| Chronic toxicity | Arises over a long timeframe after radiopharmaceutical exposure | Persistent/unremitting, | Fibrosis |
| Cumulative toxicity | Arises and intensifies after repeated radiopharmaceutical exposure | Persistent/unremitting, | Watering eyes |
| Late toxicity | Arises over a long timeframe after repeated radiopharmaceutical exposure | Persistent/unremitting, | Marrow hypoplasia |
Common terminology criteria for adverse event (CTCAE) categories for radiopharmaceuticals.
| Laboratory/Biomarker | Requires equipment | Lymphocyte count decreased (A finding based on laboratory test results that indicate a decrease in number of lymphocytes in a blood specimen.) |
| Observable/Measurable | Requires technical skill | Watering eyes (A disorder characterized by excessive tearing in the eyes; it can be caused by overproduction of tears or impaired drainage of the tear duct.) |
| Primarily subjective without observable component | Lacks evident sign of toxicity | Nausea (A disorder characterized by a queasy sensation and/or the urge to vomit.) |
| Primarily subjective with observable component | Has evident sign of toxicity | Diarrhea (A disorder characterized by an increase in frequency and/or loose or watery bowel movements.) |
| Primarily observable with subjective component | Has evident sign of toxicity | Alopecia (A disorder characterized by a decrease in density of hair compared to normal for a given individual at a given age and body location.) |
Figure 1Strategy for radiopharmaceuticals targeting ovarian cancers. A mesothelin-targeted radiopharmaceutical and its anticipated normal organ toxicities are charted in relation to thorium-227 radionuclide delivery and adverse events (toxicities) of special interest. The peritoneum, pleura, cornea/limbus of the eye, and pericardium show molecular expression of mesothelin and are listed together with associated body fluids that might have detectable levels of mesothelin for off-target radiopharmaceutical localization. Marked in boxes are the mechanistic elements of antibody conjugate processing likely to be involved in intended irradiation of tumor cells or in unintended toxicity of normal cells. Challenges for radiopharmaceutical are illustrated and commented upon (blue boxes).
Pharmacokinetic properties of select radiopharmaceuticals.
| Radium-223 | Alpha particle | NA | 3.3 | 3.3 | < 0.25 | 4 | 1 | 11.4 | NA | 11.4 | NA | ( |
| Lutetium-177 dotatate | Beta particle | NA | 7,400 | 7,400 | < 0.50 | 7 | 0 | 6.7 | NA | 6.7 | NA | ( |
| Thorium-227 Anti-Mesothelin MAb | Alpha particle | 3,2-HOPO | 1.5–7.0 | 1.5-7.0 | < 0.05 | NR | 13 | 18.7 | 4.2 | 3.3 | 10–50 | ( |
Mass dose is the total dose of a non-radioactive or “cold” pharmaceutical, such as the non-cleavable linker and anti-mesothelin antibody of the targeted thorium conjugate radiopharmaceutical. Radium and lutetium dotatate are considered neat radionuclides (i.e., contain no linker-ligand conjugate). Calculations are based on 60-kilogram body weight.
The anti-mesothelin MAb-Thorium-227 conjugate is being tested in a phase 1 first-in-human clinical trial (NCT03507452), and, radiation and antibody mass dose are reported for anticipated dose-escalation range.
MBq, megabecquerel; mCi, millicurie; h, hours; d, days; Cmax, maximum serum concentration; Tmax, time after administration when maximum serum concentration is reached; T4H, proportion of administered dose remaining at 4 h after injection; T24H, proportion of administered dose remaining at 24 h after injection; Tp, physical half-life radionuclide; Tb, biological half-life of ligand; Te, effective half calculated as 1/Tp + 1/Tb = 1/Te; mg, milligram; Ref, cited reference; NA, not applicable; NR, not reported; MAb, mesothelin-targeted fully human monoclonal antibody (anetumab, BAY 86-1903); HOPO, octadentate 3, 2-hydroxypyridinone chelator (BAY 1903150).
Figure 2Proposed workflow for monitoring and audit in radiopharmaceutical trials. Proposed workflow steps are charted in relation to the trial site, the regulatory safety and pharmacovigilance group (PV), or the NCI's Cancer Therapy Evaluation Program (CTEP).