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Published on: August 30, 2018
Calcium antagonists: a ready prescription for treating infectious diseases?
Kevin B Clark1, Edward M Eisenstein, Scott E Krahl
14229 S.E. Harney Street, Portland, OR, 97206-0941, USA. kbclarkphd@yahoo.com.
Abstract:
Emergence of new and medically resistant pathogenic microbes continues to escalate toward worldwide public health, wild habitat, and commercial crop and livestock catastrophes. Attempts at solving this problem with sophisticated modern biotechnologies, such as smart vaccines and microbicidal and microbistatic drugs that precisely target parasitic bacteria, fungi, and protozoa, remain promising without major clinical and industrial successes. However, discovery of a more immediate, broad spectrum prophylaxis beyond conventional epidemiological approaches might take no longer than the time required to fill a prescription at your neighborhood pharmacy. Findings from a growing body of research suggest calcium antagonists, long approved and marketed for various human cardiovascular and neurological indications, may produce safe, efficacious antimicrobial effects. As a general category of drugs, calcium antagonists include compounds that disrupt passage of Ca(2+) molecules across cell membranes and walls, sequestration and mobilization of free intracellular Ca(2+), and downstream binding proteins and sensors of Ca(2+)-dependent regulatory pathways important for proper cell function. Administration of calcium antagonists alone at current therapeutically relevant doses and schedules, or with synergistic compounds and additional antimicrobial medications, figures to enhance host immunoprotection by directly altering pathogen infection sequences, life cycles, homeostasis, antibiotic tolerances, and numerous other infective, survival, and reproductive processes. Short of being miracle drugs, calcium antagonists are welcome old drugs with new tricks capable of controlling some of the most virulent and pervasive global infectious diseases of plants, animals, and humans, including Chagas' disease, malaria, and tuberculosis.
Insights
Calcium antagonists, commonly used for heart conditions, show potential as broad-spectrum antimicrobial agents. These repurposed drugs may offer a new strategy against drug-resistant microbes in humans, animals, and plants.
Area of Science:
- Microbiology
- Pharmacology
- Infectious Diseases
Background:
- Rising antimicrobial resistance poses a global threat to public health, agriculture, and ecosystems.
- Current advanced biotechnologies have yet to yield major successes in combating resistant pathogens.
- There is a need for immediate, broad-spectrum prophylactic and therapeutic strategies beyond conventional methods.
Purpose of the Study:
- To explore the potential of calcium antagonists as antimicrobial agents.
- To investigate the mechanisms by which calcium antagonists exert antimicrobial effects.
- To assess the efficacy of calcium antagonists in treating various infectious diseases.
Main Methods:
- Review of existing research on calcium antagonists and their effects on cellular processes.
- Analysis of how calcium antagonists disrupt calcium (Ca2+) pathways crucial for microbial function.
- Examination of potential therapeutic applications, including synergistic use with other antimicrobial agents.
Main Results:
- Calcium antagonists interfere with calcium ion (Ca2+) transport, sequestration, and signaling pathways in cells.
- These drugs demonstrate potential for safe and effective antimicrobial activity.
- Administration can enhance host immunoprotection and directly impact pathogen life cycles and survival.
Conclusions:
- Calcium antagonists represent a promising class of "old drugs with new tricks" for infectious disease control.
- They offer a potential solution for managing virulent and pervasive global infectious diseases in humans, animals, and plants.
- Further research and clinical application are warranted to fully harness their antimicrobial capabilities.
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