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[Animal experiments concerning the neurotoxicity of aminoglycosid antibiotics. Electron microscopic findings regarding dose--depending mitochondrial damage in the cochlear nucleus of the guinea pig (author's transl)].

In 34 guinea pigs (plus 8 healthy animals for control) Gentamicin, Tobramycin and Amikacin show a characteristic pattern of mitochondrial damage in the cochlear nucleus of the guinea pig after a 10-day-administration of 4/40 mg/kg body weight Gentamicin, 4/50 mg/kg Tobramycin, respectively 15/75/150 mg/kg Amikacin. Amikacin causes the most pronounced physiological damage observed by the early loss of Preyer reflex and general toxic signs--these observations correspond with the morphological findings. By the evaluation of morphological findings we are convinced that there is indication for a direct neurotoxic effect on mitochondria in the cochlea nucleus regarding the dose and time of administration.

Amikacin

Early mitochondrial damage in the induction of haemorrhagic necrosis in the Crocker sarcoma (S 180) by endotoxin.

Disturbances in the functional properties of tumor mitochondria have been studied during the course of induction of haemorrhage brought about by endotoxin in the murine Crocker sarcoma (S 180). Extensive impairment of function was already present in mitochondria isolated from control tumors, as shown by low respiratory control ratios. The existing mitochondrial damage intensified promptly in response to injection of endotoxin long before the onset of haemorrhage at 4 h. The nature of the additional damage took two forms, depending on the duration of exposure to endotoxin; first, at 30 min, a true uncoupling of oxidative phosphorylation was seen, largely reversible in vitro by pre-treatment of the isolated organelles with bovine serum albumin (BSA). Second, at 1 h and later, oxygen utilisation in the presence of succinate, ADP and inorganic phosphate (Pi) was depressed. The pre-addition of BSA consistently lowered respiration rates with succinate and Pi in all preparations. The extent of endogenous inhibition of the adenine nucleotide translocase appeared unaltered by endotoxin in vivo.

Animals

Gentamicin-induced mitochondrial damage in inner ear sensory cells of the lizard Calotes versicolor.

Earlier morphological and histochemical studies on the effects on inner ear sensory cells caused by aminoglycoside antibiotics have failed to give sufficient information of the genesis of these effects. The present study was focused on the phases of progessive mitochondrial changes in sensory cells of the the lizard basilar papilla induced by consecutive large doses of gentamicin. The mitochondria react by swelling, changes in the configuration and number of the cristae and formation of matrical inclusions. Myelin figures are a consistent finding in degenerating cells after gentamicin exposure. These are shown to be derived from changed mitochondria. The final product is an "onion-like" structure which is built of primitive membranes. There is a marked difference in reaction to the damage between individual mitochondria in the same cell. This difference is also evident between individual sensory cells in the same specimen. By studying the phases of the mitochondrial breakdown process in the sensory cell, some additional information on the changes in cell metabolism caused by ototoxic drugs, may be extracted.

Animals

Spread of gold injected into the joints of healthy rabbits.

This study shows that after intra-articular injection, aurothiomalate and colloidal gold of small (200 A) particle size were rapidly absorbed from joints while the larger, 300 A, particle size colloidal radioactive gold could not be found outside them. Larger particle size suspensions seem therefore more likely to remain localised in the joint and its lining synovium after intra-articular injection, the systemic absorption from the joint cavity diminishing with increasing particle size. It was also found that the intra-articular injection of small amounts of aurothiomalate, of colloidal gold and of colloidal radioactive gold produces identical degenerative lesions in the lining cells of the proximal convoluted tubules of the kidneys. These lesions were always found, although gold particles were demonstrated only in sampled kidney tissues of the animals injected with the soluble gold preparation whereas no gold could be detected in the tissues of animals injected with colloidal non-radioactive or radioactive gold. Electron microscopic evidence is presented to suggest the possibility that the mitochondria are the "target" organelles of the gold-induced cellular damage. Mitochondrial damage was demonstrated in liver and spleen in addition to the already described kidney damage. The correlation between structure and function of the mitochondrial changes is not clear, and ionic shifts may be both a cause and a result of damage.

Animals

Peri-mitochondrial actin filaments inhibit Parkin assembly by disrupting ER-mitochondria contacts.

Mitochondrial damage represents a dramatic change in cellular homeostasis, necessitating metabolic adaptation and clearance of the damaged organelle. One rapid response to mitochondrial damage is peri-mitochondrial actin polymerization within 2 min, which we term ADA (Acute Damage-induced Actin). ADA is vital for a metabolic shift from oxidative phosphorylation to glycolysis upon mitochondrial dysfunction. In the current study, we investigated the effect of ADA on Pink1/Parkin mediated mitochondrial quality control. We show that inhibition of proteins involved in the ADA pathway significantly accelerates Parkin recruitment onto depolarized mitochondria. Addressing the mechanism by which ADA resists Parkin recruitment onto depolarized mitochondria, we found that ADA disrupts ER-mitochondria contacts in an Arp2/3 complex-dependent manner. Interestingly, overexpression of ER-mitochondria tethers overrides the effect of ADA, allowing rapid recruitment of not only Parkin but also LC3 after mitochondrial depolarization. During chronic mitochondrial dysfunction, Parkin and LC3 recruitment are completely blocked, which is reversed rapidly by inhibiting ADA. Taken together we show that ADA acts as a protective mechanism, delaying mitophagy following acute damage, and blocking mitophagy during chronic mitochondrial damage.

Ubiquitin-Protein Ligases

Exploring the prognostic landscape of oral squamous cell carcinoma through mitochondrial damage-related genes.

Oral squamous cell carcinoma (OSCC), the most prevalent form of oral cancer, poses significant challenges to the medical community due to its high recurrence rate and low survival rate. Mitochondrial Damage-Related Genes (MDGs) have been closely associated with the occurrence, metastasis, and progression of OSCC. Consequently, we constructed a prognostic model for OSCC based on MDGs and identified potential mitochondrial damage-related biomarkers. Gene expression profiles and relevant clinical information were obtained from The Cancer Genome Atlas (TCGA) database. Differential analysis was conducted to identify MDGs associated with OSCC. COX analysis was employed to screen seven prognosis-related MDGs and build a prognostic prediction model for OSCC. Cases were categorized into low-risk or high-risk groups based on the optimal risk score threshold. Kaplan-Meier (KM) analysis revealed significant survival differences (P&#x2009;<&#x2009;0.05). Additionally, the area under the ROC curve (AUC) for patient survival at 1 year, 3 years, and 5 years were 0.687, 0.704, and 0.70, respectively, indicating a high long-term predictive accuracy of the prognostic model. To enhance predictive accuracy, age, gender, risk score, and TN staging were incorporated into a nomogram and verified using calibration curves. Risk scoring based on MDGs was identified as a potential independent prognostic biomarker. Furthermore, BID and SLC25A20 were identified as two potential independent mitochondrial damage-related prognostic biomarkers, offering new therapeutic targets for OSCC.

Humans

The effect of dietary vitamin A on NO2 exposure on the hamster lung.

The effect of dietary vitamin A and NO2 exposure on the hamster lung was evaluated by histopathology, electron microscopy, and thymidine uptake studies. Hamsters were maintained on deficient (0 micrograms), adequate (100 micrograms), and high (200 micrograms) dose levels of vitamin A while being exposed repeatedly to 10 ppm of NO2 for 5 hours once a week over an 8-week period. Hamsters of the deficient group exhibited clinical and morphologic changes characteristic of vitamin A deficiency. Animals maintained on adequate and high dose levels of vitamin A were not affected by vitamin A deficiency. Hypertrophy and hyperplasia of the epithelial cells of the terminal bronchiolar alveolar region of lungs of adequately and highly dosed animals were greater than those observed in the deficient animals, when NO2 exposure was given. However, the extent of the lesions observed in all three groups was less than that seen in normal hamsters given a single, 5-hour NO2 exposure. Ultrastructural changes observed in vitamin A-deficient hamsters exposed to NO2 were hypertrophy and hyperplasia of bronchiolar epithelial cells, diffuse loss of cilia, membrane damage, and mitochondrial damage manifested by calcium deposition. Tritiated thymidine uptake studies of lungs of animals exposed repeatedly revealed a rather erratic cell renewal pattern following NO2 exposure in comparison to the group of animals exposed singly.

Animals

Relationship between adenine nucleotide metabolism and irreversible ischemic tissue damage in isolated perfused rat heart.

The relationship between energy metabolism and the extent of irreversible ischemic damage was examined in an isolated perfused working rat heart. The amount of cardiac work recovered after reperfusion of hearts exposed to severe global ischemia was dependent upon both the duration of ischemia and the type of substrate provided (either 5 mM glucose or 5 mM glucose + acetate). There appear to be two distinct phases in the ability to recover mechanical function in the reperfused ischemic heart. The second phase corresponds to the onset of severe irreversible tissue damage. Irreversible mitochondrial damage was not found to correspond with the onset of heart failure since the ATP/ADP ratio remained constant in the reperfused myocardium. Furthermore, there does not appear to be a direct correlation between the total ATP content and the extent of irreversible damage, either during ischemia or following reperfusion. However, the total adenine nucleotide content during ischemia showed dramatic changes which correspond temporally with the initiation of the second phase of damage. The observation that the adenine nucleotide pool becomes further depleted during reperfusion suggests that alterations in the salvage pathway for adenine nucleotide synthesis have occurred. Loss of adenine nucleotides appears to be an excellent marker for irreversible heart failure. Acetate provides some protection the the ischemic myocardium. The mechanism by which acetate mediates this protective effect is discussed.

Adenine Nucleotides

Effect of cutaneous human or mouse burn toxin on the metabolic function of isolated liver cells.

Studies on isolated perfused rat livers 5 days after either a sublethal burn or an i.p. injection of human/mouse burn toxin showed a significant inhibition of the glucose/urea synthesis and the ATP production concomitantly with ultrastructural mitochondrial damages. A direct specific effect of these burn toxins on enzymatically isolated liver parenchyma cells was found either after direct incubation of the isolated cells with the compound or 5 days after injection of the toxin to the animals followed by the isolation of the cells. Control experiments were performed with the "native" non-toxic precursor from normal skin. Liver cells of rats pretreated with the toxin showed an 100% increase of the amino-acid release while this increase was 70% after direct toxin incubation. Glycogen synthesis from lactate, alanin and fructose was significantly decreased in both toxin groups while the glucose synthesis was not altered. The degree of the inhibition of the glycogen synthesis was directly correlated to the number of ATP-dependent metabolic steps. A disturbance of the oxygen transfer system by structural damages of the mitochondria seems to be the basic mechanism for these specific metabolic alterations due to ultrastructural mitochondrial damages.

Adenosine Triphosphate

Mitochondrial pathology in the liver in a patient with the Dubin-Johnson syndrome.

Electron microscopy study of a liver biopsy from a patient with the Dubin-Johnson syndrome revealed evidence of severe mitochondrial damage. The changes included membranous whorls, isolated intramitochondrial membranes, myelin figures and large cytoplasmic vacuoles, presumably representing degenerated micochondria. Mitochondrial damage should be looked for in future electron microscopy studies in patients with the Dubin-Johnson syndrome.

Female

[Stabilizing effect of the antioxidants alpha-tocopherol and sodium selenite following phospholipase damage to mitochondrial membranes in a model of anoxia].

The kinetics of the free fatty acids accumulation in membranes of isolated mitochondria of the brain, heart and liver of rats, with their incubation in a medium containing no substrates and ATP, was studied. The intensity of the phospholipase damage, measured by the rate of free fatty acids accumulation, augments in the sequence of: the liver-heart-brain. The amassment of fatty acids in the mitochondrial membranes is shown to give place to their penetration into the inner space of the mitochondria. A relationship between the content of the intramitochondrial calcium and the concentration of free fatty acids in in the membranes, on the one hand, and the degree of passive swelling of the cardiac mitochondria, on the other, was revealed. It is suggested that the free fatty acids or their derivatives act as carriers of calcium to the mitochondrial membrane. A preliminary administration to rats of the vitamin E and sodium selenite protects the mitochondria of the heart against the phospholipase damage. These agents display a synergic action and are effective with administration of physiological doses. It is presumed that the protective action of these substances is due to the stabilization of biological membranes.

Animals

Damage to mitochondrial electron transport and energy coupling by visible light.

The effect of treating mitochondria with visible light above 400 nm on electron transport and coupled reactions was examined. The temporal sequence of changes was: stimulation of respiration coupled to ATP synthesis, a decline in ATP synthesis, inactivation of respiration, increased ATPase activity and, later, loss of the membrane potential. Loss of respiration was principally due to inactivation of dehydrogenases. Of the components of dehydrogenase systems, flavins and quinones were most susceptible to illumination, the iron-sulfur centers were remarkably resistant to being damaged. Succinate dehydrogenase was inactivated before choline and NADH dehydrogenase. Redox reactions of cytochromes and cytochrome c oxidase activity were unaffected. Inactivation was O2-dependent and prevented by anaerobiosis or the presence of substrates for the dehydrogenases. Light in the range 400-500 nm was most effective and the presence of free flavins greatly enhanced inactivation of all of the above mitochondrial activities. This suggests that visible light mediates a flavin-photosensitized reaction that initiates damage involving participation of an activated species of oxygen in the damage propagation.

Animals

Mitochondrial genetic damage induced in yeast by a photoactivated furocoumarin in combination with ethidium bromide or ultraviolet light.

Ethidium bromide (EB) and ultraviolet light (UV) in combination are known to produce a synergistic induction of "petite" mutants in yeast. Two other agents were combined with EB, 3-Carbethoxypsoralene (3 CPs) activated by 365 nm light or gamma rays. EB in combination with 3 CPs also resulted in an enhanced production of "petite" mutants. After the photoaddition of 3 CPs in exponential phase cells, recovery of the "petite" mutation during dark liquid holding was inhibited by the presence of EB producing an enhanced number of "petite" mutants. The behavior of mitochondrial antibiotic resistance markers after individual and combined treatments with EB and 3 CPs indicates a random loss of markers after EB and a preferential loss of a certain region for the 3 CPs photoaddition. The combination of the two agents leads to an additivity of total drug marker losses rather than a synergistic loss. The combination of EB with gamma rays produced no enhancement in "petite" induction. A combination of UV and 3 CPs showed a synergistic interaction for "petite" induction. These results indicate that the three agents, EB, UV and 3 CPs photoaddition may share a common repair step for mitochondrial lesions.

Coumarins

Effect of modeccin on rat liver ribosomes in vivo.

1. Rat liver microsomes isolated at 6 and 12 h of poisoning with 3 x LD50 (0.3 microgram/100 g body wt.) of modeccin, the toxin of Adenia digitata, have a decreased capacity of protein synthesis in vitro. 2. A similar decrease of protein synthesis is observed with polysomes at 6 h of poisoning. Experiments with recombined ribosomal subunits demonstrate that this is due to inactivation of the 60 S ribosomal subunit. 3. At 6 h of poisoning there is a marked vesiculation and degranulation of the hepatocyte rough endoplasmic reticulum, which is completely fragmented at 24 h of poisoning. Hepatocyte mitochondria are swollen at 6 h and shrunk at 24 h of poisoning. 4. It is concluded that modeccin penetrates inside hepatocytes in vivo, and damages ribosomes in the same manner as it does in vitro. However, mitochondrial damage indicates that ribosomes may not be the only target of modeccin in vivo.

Animals

Ultrastructural changes in adrenergic neurons following chemical sympathectomy.

The paper describes the ultrastructural changes of the sympathetic neurons following guanethidine administration in mice. The main characteristics changes, after prolonged administration (1-10 weeks) of guanethidine (Ismelin, Ciba-Geigy, Basel, Switzerland) at doses of 30-50 mg/kg/day i.p. and i.m. were: (1) Mitochondrial damages: swelling and deformation of the mitochondria, with disruption and dispersion of the cristae and condensation or dissolution of the matrix. Membranolysis of the outer and inner mitochondrial membranes. (2) Neural processes: swelling and disorganization of the internal architecture in the postganglionic axonal and dendritic synaptic varicosities. (3) Adrenergic vesicles: disappearance of the granular vesicles in the early stage of the experiment, increase of the coated vesicles in the later stage of treatment. The effect of guanethidine is specific for the postganglionic adrenergic neurons, but the observed destruction is not caused solely by guanethidine; other chemical substances induce the same or similar degeneration in the sympathetic ganglion.

Adrenergic Fibers