Proteases, protease inhibitors and radiation carcinogenesis

Ann R Kennedy1

  • 1Department of Radiation Oncology, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.

Abstract

Insights

Anticarcinogenic protease inhibitors (APIs), particularly the Bowman-Birk inhibitor (BBI) from soybeans, show potent, non-toxic suppression of radiation-induced cancer. Human trials with BBI Concentrate (BBIC) revealed beneficial health effects, suggesting a role in maintaining homeostasis.

Area of Science:

  • Oncology
  • Biochemistry
  • Radiation Biology

Background:

  • Identifying non-toxic compounds for cancer prevention is crucial.
  • Radiation exposure can induce malignant cell transformation.
  • Protease inhibitors are explored for their anticarcinogenic potential.

Approach:

  • Evaluated various anticarcinogenic substances in vitro for radiation-induced malignant transformation.
  • Focused on anticarcinogenic protease inhibitors (APIs) due to their potent effects.
  • Investigated the mechanism of action of APIs in radiation carcinogenesis.

Key Points:

  • Anticarcinogenic protease inhibitors (APIs) are potent suppressors of radiation-induced malignant transformation.
  • Bowman-Birk inhibitor (BBI), a soybean-derived chymotrypsin inhibitor, is highly effective at nanomolar concentrations and non-toxic in vivo.
  • APIs demonstrate irreversible effects on carcinogenesis, unlike many reversible agents.

Conclusions:

  • BBI was selected for development as a human cancer preventive agent due to its unique properties.
  • BBI Concentrate (BBIC) was developed for human trials, achieving Investigational New Drug status.
  • Human trials with BBIC indicated potential health benefits and suggested a role in maintaining homeostasis by interacting with alpha-1-antichymotrypsin.

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