MCW begins laser-activated photodynamic cancer-fighting drug trial

June 5, 2015
A laser-activated photosensitive dye is being tested as a new treatment for aggressive brain and spinal cord tumors.

The Medical College of Wisconsin (MCW; Milwaukee, WI) has begun a Phase II trial of Photofrin and photodynamic therapy in adult patients at Froedtert Hospital, a protocol funded by Concordia Healthcare. A laser-activated photosensitive dye is being tested as a new treatment for aggressive brain and spinal cord tumors. Harry T. Whelan, MD, the Bleser Professor of Neurology and Pediatrics and Hyperbaric Medicine at MCW and an investigator at the Children’s Hospital of Wisconsin Research Institute, is the lead investigator for the study.

RELATED ARTICLE: Depth no barrier for tumor-targeting light therapy

The therapy consists of a two-step treatment process in which Photofrin, a photosensitizing drug, is injected into the blood stream and accumulates in cancer cells. Next, a laser light activates the drug, which then directly attacks cancer cells. Additionally, the laser light itself damages the blood vessels feeding the tumor.

"Patients with high-grade gliomas in particular have a very poor prognosis," said Whelan. "Photodynamic therapy with Photofrin has the potential to add to the multi-modal approach of surgery and chemotherapy by providing another treatment option for patients with rare cancers for which there is no clear standard of care."

The MCW study will evaluate the effect of Photofrin on 30 glioma brain tumor patients. Everyone in the study will receive Photofrin (porfimer sodium) for injection and be treated with red light emitted by a red laser. The light will be sent from the laser to the surface of the brain where the tumor is located using an optical fiber. The fiber will have a tiny knob at the end that spreads the light out evenly in all directions.

Previous studies have shown that patients with malignant brain tumors called gliomas had a good response to PDT. The patients in these studies lived longer than they were expected to live. In one study of adults with brain tumors in Australia, patients given PDT had greatly improved survival rates. Fifty seven percent (57%) of the patients with gliomas called anaplastic astrocytoma survived for 36 months. Thirty seven percent (37%) of the patients with gliomas called glioblastoma multiforme survived for 36 months.

Whelan also is conducting a Phase 1 clinical trial of PDT with Photofrin in children and adolescents, from newborn to 18 years old, who have recurrent or progressive brain tumors. The trial is being conducted by the Children’s Hospital of Wisconsin Research Institute and MCW, one of the few centers in the United States with experience utilizing PDT technology for the treatment of brain tumors.

SOURCE: Medical College of Wisconsin; http://www.mcw.edu/MCW-News-Center/MCW-News/Laser-activated-cancer-fighting-drug-trial-at-MCW.htm

This article was originally published on 6/5/2015

Sponsored Recommendations

Request a quote: Micro 3D Printed Part or microArch micro-precision 3D printers

April 11, 2024
See the results for yourself! We'll print a benchmark part so that you can assess our quality. Just send us your file and we'll get to work.

Request a free Micro 3D Printed sample part

April 11, 2024
The best way to understand the part quality we can achieve is by seeing it first-hand. Request a free 3D printed high-precision sample part.

How to Tune Servo Systems: The Basics

April 10, 2024
Learn how to tune a servo system using frequency-based tools to meet system specifications by watching our webinar!

Precision Motion Control for Sample Manipulation in Ultra-High Resolution Tomography

April 10, 2024
Learn the critical items that designers and engineers must consider when attempting to achieve reliable ultra-high resolution tomography results here!

Voice your opinion!

To join the conversation, and become an exclusive member of Laser Focus World, create an account today!