The subacute myelo-optico-neuropathy (SMON) was hazard caused by clioquinol, an antiseptic, prescribed for the treatment of diarrhea and other bowel symptoms. Its overdosing and long-term taking led to the occurrence of SMON, for which physicians should be responsible. Clioquinol, originally a disinfectant powder for external use, was diverted later to a drug for internal use to sterilize the bowel where no intestinal absorption or action after absorption was expected. An annotation on the 6th Revision of the Japan Pharmacopoeia (1954) allowed irregular increase in its dosage depending on the severity of illness. An annotation on the 7th Revision (1961) ignoring the 6 papers published in the 1930's, 1940's or 1950's claimed that its metabolism was poorly known, yet neglected significant side effect and substantial absorption from the intestine. Its characterization as a superficial disinfectant helped the annotators be less interested in its absorption and its internal actions and side effects. Attention paid by clinicians to a polyneuropathy-like syndrome that complicated an uncontrollable hemorrhagic diarrhea (1958) and an encephalomyelitis or a paralysis of the lower half of the body associated with diarrhea or other bowel symptoms (1960, 1961) started the recognition of a new disease. During the dispute induced by the mass occurrence of the disease in several instances postmortem examination with neuropathologic expertise, especially of T. Tsubaki, Y. Toyokura and H. Tsukagoshi (1964), characterized SMON as a non-inflammatory new disease of the spinal cord, optic nerve and peripheral nerve with a pseudo-systemic degeneration of posterior and lateral columns and, therefore played a decisive role in establishing the truth of SMON. The discovery of the green hairy tongue (the tongue coated with green hairs) of SMON by T. Takasu, A. Igata and Y. Toyokura (January 1970) aroused researchers' interest in the green color of SMON and thereby began solving the cause of SMON. The discovery of the green urine in SMON patients by A. Igata, M. Hasebe and T. Tsuji (May 1970) especially facilitated the identification of the green substance in SMON that was achieved by M. Yoshioka and Z. Tamura (June 1970). The green color was derived from a chelate compound of clioquinol with ferric iron. The early epidemiological analysis related clioquinol taking to the occurrence of SMON well enough for the Japanese Government to take an administrative measure for the temporary suspension of selling clioquinol containing drugs and the postponing of their use (September 1970). Extensive and intensive multidisciplinary investigations conducted for the subsequent 20 months led to the conclusion by the SMON Investigation and Research Committee (Head: R. Kono) that the neurological disorders of patients who were diagnosed as SMON for the most part were caused by taking clioquinol (March 1972). Close clinical observation of patients opened a way to recognize a new disease and elucidate its cause. Expert specialized technical knowledge and skills established the firm knowledge of the new disease. The study of SMON began as a personal research and after its achievement was exposed to the public a great many investigators in different fields concerted efforts to solve problems. Both steps were indispensable for completing the study.
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Brain Sci
January 2025
Department of Biostructure, Wroclaw University of Health and Sport Sciences, 51-612 Wroclaw, Poland.
Objectives: This study analyzed the effects of parachute jump stress on the executive functions and attention of cadets. Executive functions, which includes processes such as attentional control and cognitive flexibility, are crucial for soldiers, especially in situations requiring rapid decision-making. Parachute jumping, as an intense stressor, mobilizes cognitive resources, which can lead to short-term improvements in executive functions.
View Article and Find Full Text PDFFoods
December 2024
Department of Agronomy, Food, Natural Resources, Animal and Environment (DAFNAE), University of Padova, 35020 Legnaro, Padova, Italy.
This study assessed the impact of growth-related myopathies-white striping (WS), wooden breast (WB), and spaghetti meat (SM)-on the technological properties, lipid and protein oxidation, chemical composition, and profiles of fatty acids (FAs), amino acids, minerals, and sensory attributes of muscles in broiler chickens. Breasts with myopathies had similar pH and lightness but exhibited lower redness and yellowness in the case of WB defect compared to normal meat ( < 0.05).
View Article and Find Full Text PDFMol Genet Genomic Med
June 2024
Department of Pediatrics, Gifu University Graduate School of Medicine, Gifu University, Gifu, Japan.
Background: Subacute myelo-optico-neuropathy (SMON) is a neurological disorder associated with the administration of clioquinol, particularly at very high doses. Although clioquinol has been used worldwide, there was an outbreak of SMON in the 1950s-1970s in which the majority of cases were in Japan, prompting speculation that the unique genetic background of the Japanese population may have contributed to the development of SMON. Recently, a possible association between loss-of-function polymorphisms in NQO1 and the development of SMON has been reported.
View Article and Find Full Text PDFNihon Yakurigaku Zasshi
March 2024
Radioisotope Center, Kyoto Prefectural University of Medicine.
Clioquinol was extensively used as an amebicide to treat indigestion and diarrhea in the mid-1900s. However, it was withdrawn from the market in Japan because its use was epidemiologically linked to an increase in the incidence of subacute myelo-optic neuropathy (SMON). SMON is characterized by the subacute onset of sensory and motor disturbances in the lower extremities with occasional visual impairments, which are preceded by abdominal symptoms.
View Article and Find Full Text PDFJ Sleep Res
August 2023
Centre for Functional Genomics and Bio-Chips, Institute of Biochemistry and Molecular Genetics, Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.
Obstructive sleep apnea is the most common sleep-related breathing disorder worldwide and remains underdiagnosed. Its multiple associated comorbidities contribute to a decreased quality of life and work performance as well as an increased risk of death. Standard treatment seems to have limited effects on cardiovascular and metabolic aspects of the disease, emphasising the need for early diagnosis and additional therapeutic approaches.
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