Columbia Technology Ventures

Photoactivated, localized drug delivery utilizing visible and infrared light

Light is a powerful pharmacological tool that can be used to selectively activate a photo-reactive drug in a specific location. This method, called photodynamic therapy, has been used successfully as a treatment for a variety of cancers including lung, pancreatic, esophageal, and skin cancers. However, most current photodynamic therapies require ultra-violet light, which has poor tissue penetration depths and can severely damage cells. This technology is a class of ruthenium-based tethers that can bind compounds and release them when exposed to visible or infrared light. It can be used to deliver a variety of biologically active molecules, including neurotransmitters, locally and selectively.

Cost-effective and biocompatible visible light allows for localized delivery with single-cell precision

In addition to being far more biocompatible and having longer penetration depths, visible and infrared light sources are also far more cost effective than high-energy ultraviolet light. This technology relies on the unique photoactivity of ruthenium-bipyridal complexes, whose structures change dramatically upon activation with low-energy visible and, in some cases, infrared light. These ruthenium-tethers can potentially be used in combination with any molecule that contains an amino functionality that is required for its bioactivity.

This technology has been demonstrated on a number of tether-neurotransmitter complexes, and it has been utilized in vivo to map receptors for the neurotransmitter GABA. It has also been used to photoactivate neurons and dendritic spines with single-cell precision.

Lead Inventor:

Rafael Yuste, M.D., Ph.D.

Applications:

  • Selective release of chemotherapeutic agents
  • Selective release of neurotransmitters
  • Selective delivery of a variety of bioactive compounds
  • Basic research tool for imaging and cell labeling

Advantages:

  • Visible and infrared light pose no risk to biological tissues
  • Visible and infrared light sources are inexpensive when compared to ultraviolet light sources
  • Allows for precise control over drug delivery
  • Can be adapted for a wide range of drug-tether complexes

Patent Information:

Patent Issued

Tech Ventures Reference: IR M09-102

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