The Copper-67 (Cu-67) Advantage

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Cu-67 is a Versatile and Effective Therapeutic Radioisotope, Enabling an Ideal Theranostic Pair

Optimal Characteristics

Cu-67 has near-ideal characteristics as a therapeutic radioisotope (see table below)

Highly Effective and Versatile

Cu-67’s beta emission energy, half-life, imageable gamma energies, and centralized production make it highly effective and versatile

Ideal Theranostic Pair

Cu-67 labeled therapeutic radiopharmaceuticals may be paired with chemically identical Cu-64 or Cu-61 labeled imaging radiopharmaceuticals to produce a “perfect theranostic pair”

Versatile Chemistry

New chelator technologies provide chemical versatility, with the potential for Cu-67 to bind to a broad range of ligands

SPECT Imaging Capability

In addition to its therapeutic beta emissions, Cu-67 emits gamma radiation which can be imaged using Single Photon Emission Computed Tomography (SPECT) scanners, enabling assessment of cancer target binding, and informing decisions regarding subsequent patient treatment

How Do Cu-67 Radionuclide Features Benefit Patient Treatment?

93 KeV & 185 KeV Gamma Radiation Energy

Cu-67 is imageable by Single Photon Computed Tomography (SPECT), and post-treatment SPECT images may predict therapeutic efficiency.

141 KeV Mean Beta Radiation Energy

0.6 mm beta particle emission range in tissue focuses energy primarily on cancer cells, minimizing “collateral damage” to non-target tissue.

61.8 Hour Half-Life

Optimal treatment duration, with minimal hazards to patients, HCP’s and caregivers.

Centralized Accelerator Production - No Reactors Or Generators Needed

Scalable supply, low risk manufacturing process, direct shipping to sites in North America and Europe.

Medical professionals reviewing diagnostic images Diagnostic scan comparison

How do Cu-67 Characteristics Compare to Other Therapeutic Radioisotopes?

Cu-67 has ideal therapeutic radionuclide characteristics, particularly when paired with chemically identical Cu-64 or Cu-61 for diagnositc imaging.

Cu-67 works as a therapeutic by emitting energized electrons (“beta radiation”) which collide with cancer cells, disrupting the cellular DNA and preventing those cells from replicating.

Cu-67 is chemically bonded to a “ligand” molecule, which binds to cancer cells due to its affinity for specific receptors on the cancer cell surface.

The ligand molecule bound to a therapeutic radioisotope (such as Cu-67) is known as a “therapeutic radiopharmaceutical”, and the treatment procedure is called “radioligand therapy”, or RLT.