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Published on: July 27, 2022
Proteases, protease inhibitors and radiation carcinogenesis
1Department of Radiation Oncology, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA, USA.
Purpose:
The purpose of the studies described in this mini review article was to identify nontoxic compounds that could prevent or suppress the radiation induced malignant transformation of cells and be useful as human cancer preventive agents.
Conclusions:
(1) Many different types of potential anticarcinogenic substances were evaluated initially for their abilities to prevent or suppress radiation induced malignant transformation in vitro, and certain anticarcinogenic protease inhibitors (APIs) were observed to be the most powerful anticarcinogenic agents at suppressing this surrogate endpoint biomarker of radiation carcinogenesis. (2) Within the category of APIs, those that inhibited the activity of chymotrypsin were effective at far lower molar concentrations than other APIs. The soybean-derived protease inhibitor known as the Bowman-Birk inhibitor (BBI) is a particularly powerful chymotrypsin inhibitor that is able to prevent radiation induced transformation in vitro (at concentrations down to nanomolar levels) as well as radiation induced carcinogenesis in vivo without toxicity. (3) There were many other unusual characteristics of APIs that led to the selection of one of these APIs, BBI, as the most appropriate compound for us to develop as a human cancer preventive agent. As one example, the APIs have an irreversible effect on carcinogenesis, while the effects are reversible for most anticarcinogenic agents when they are removed from carcinogenesis assay systems. (4) Numerous studies were performed in attempts to determine the potential mechanisms by which the APIs could prevent or suppress radiation induced carcinogenesis in in vitro and in vivo systems, and the results of these studies are described in this review article. The APIs and the proteases which interact with them appear to play important roles in radiation carcinogenesis. (5) Preparations for human trials using BBI began decades ago. The cost of preparing purified BBI was far too high to consider performing human trials with this agent, so BBI Concentrate (BBIC), a soybean extract enriched in BBI, was developed for the specific purpose of performing human trials with BBI. BBIC achieved Investigational New Drug (IND) Status with the Food and Drug Administration in April,1992, and human BBIC trials began at that time. (6) Several human trials were performed using BBIC and they indicated many potentially beneficial health effects produced by BBIC administration to people in various forms (e.g. tablets). 7) It is hypothesized that BBI takes the place of α-1-antichymotrypsin, an important regulatory compound in the human body, and helps to maintain homeostasis.
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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