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Experimental Protocol for Detecting Mitochondrial Function in Hepatocytes Exposed to Organochlorine Pesticides
Published on: September 16, 2020
Antibiotics May Trigger Mitochondrial Dysfunction Inducing Psychiatric Disorders
George B Stefano1, Joshua Samuel1, Richard M Kream1
1Department of Research, MitoGenetics Research Institute, Farmingdale, NY, USA.
Abstract:
Clinical usage of several classes of antibiotics is associated with moderate to severe side effects due to the promotion of mitochondrial dysfunction. We contend that this may be due to perturbation of unique evolutionary relationships that link selective biochemical and molecular aspects of mitochondrial biology to conserved enzymatic processes derived from bacterial progenitors. Operationally, stereo-selective conformational matching between mitochondrial respiratory complexes, cytosolic and nuclear signaling complexes appears to support the conservation of a critically important set of chemical messengers required for existential regulation of homeostatic cellular processes. Accordingly, perturbation of normative mitochondrial function by select classes of antibiotics is certainly reflective of the high degree of evolutionary pressure designed to maintain ongoing bidirectional signaling processes between cellular compartments. These issues are of critical importance in evaluating potentially severe side effects of antibiotics on complex behavioral functions mediated by CNS neuronal groups. The CNS is extremely dependent on delivery of molecular oxygen for maintaining a required level of metabolic activity, as reflected by the high concentration of neuronal mitochondria. Thus, it is not surprising to find several distinct behavioral abnormalities conforming to established psychiatric criteria that are associated with antibiotic usage in humans. The manifestation of acute and/or chronic psychiatric conditions following antibiotic usage may provide unique insights into key etiological factors of major psychiatric syndromes that involve rundown of cellular bioenergetics via mitochondrial dysfunction. Thus, a potential window of opportunity exists for development of novel therapeutic agents targeting diminished mitochondrial function as a factor in severe behavioral disorders.
Insights
Antibiotics can cause severe side effects by disrupting mitochondrial function, potentially impacting the central nervous system (CNS). This dysfunction may explain antibiotic-associated psychiatric conditions and offers targets for new therapies.
Area of Science:
- Biochemistry
- Neuroscience
- Evolutionary Biology
Background:
- Antibiotic use is linked to mitochondrial dysfunction, causing moderate to severe side effects.
- This dysfunction may arise from evolutionary links between mitochondrial and bacterial processes.
- The central nervous system (CNS), with its high energy demands, is particularly vulnerable.
Purpose of the Study:
- To explore the link between antibiotic-induced mitochondrial dysfunction and CNS side effects.
- To investigate the evolutionary basis of mitochondrial function and its perturbation by antibiotics.
- To identify potential therapeutic targets for antibiotic-associated behavioral disorders.
Main Methods:
- Analysis of evolutionary relationships between mitochondrial and bacterial enzymes.
- Examination of signaling pathways involving mitochondrial respiratory complexes.
- Correlation of antibiotic usage with CNS-related mitochondrial dysfunction and behavioral outcomes.
Main Results:
- Antibiotics perturb conserved evolutionary pathways, leading to mitochondrial dysfunction.
- Disruption of mitochondrial function impacts cellular homeostasis and signaling.
- A correlation exists between antibiotic use, mitochondrial dysfunction, and psychiatric conditions.
Conclusions:
- Antibiotic-induced mitochondrial dysfunction is a significant factor in CNS side effects.
- Understanding these evolutionary links can illuminate psychiatric disorder etiology.
- Targeting mitochondrial dysfunction presents a novel therapeutic strategy for behavioral disorders.
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