Abstract
A case-controlled study has compared urinary, blood plasma, and serum fluoride (F) levels of people living in endemic areas of the Thar Desert, Sindh, Pakistan, consuming groundwater with F concentrations as high as 4.00–10.00 mg/L with those consuming groundwater with low F levels of 0.30 mg/L. A total of 121 individuals from Samme Jo Tar Village of the Chachro Sub-District, Tharparker, and 121 controls from Gadap Town, Karachi, Pakistan, were selected for this study. Results indicated highly significant differences were present between the mean urinary F (12.90 versus 2.30 mg/L, p<0.001), plasma F (0.61 versus 0.25 mg/L, p<0.001) and serum F levels (0.75 versus 0. 29 mg/L, p<0.001) of cases and controls. There was a strong positive correlation between plasma and serum F levels (r = 0.884), while moderate correlations were found between urine plus plasma and between urine plus serum (r = 0.576 an d 0.621) F levels of cases, respectively.
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… The accompanying fluorosis problem can be observed at various intensity levels in the study area ranging from dental fluorosis to debilitating skeletal fluorosis, along with nonskeletal manifestations and premature aging…
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Periarticular calcifications containing giant pseudo-crystals of francolite in skeletal fluorosis from 1,1-difluoroethane 'huffing".
Highlights Diagnosing inhalant use disorder can be lifesaving. Chronic inhalation of F--containing vapors can cause skeletal fluorosis (SF). SF can elevate bone density and cause periostitis and ectopic calcification. Francolite is a carbonate-rich fluorapatite. Periarticular calcification in SF can comprise giant pseudo-crystals of francolite. Inhalant use disorder is a psychiatric
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An Outbreak of Industrial Fluorosis in Cattle.
IT may be recalled that in the "Discussion on Fluorosis in Man and Animals" by this Section in February 19411 the occurrence of severe fluorosis in cattle was described on farms in the vicinity of brickworks in Bedfordshire. The purpose of the present communication is to report a similar occurrence
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Impact of Community Defluoridation on a Village Endemic for Hydric Fluorosis in Rural Karnataka, India.
Introduction: Excessive intake of fluorides can lead to the development of fluorosis, a serious public health issue in India. The objective of this study was to assess the impact of community defluoridation in preventing fluorosis in Kaiwara village. Methodology: This community interventional trial was conducted in Kaiwara
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[Epidemiology and clinical study of endemic fluorosis in a village that has improved water for 40 years].
Objective: To investigate the control effect of water improvement for endemic fluorosis over a long period of time, the health status of the residents in the disease area and the restoration to health of endemic fluorosis patients. Methods: It was investigated that the water improvement lasting for 40 years and the rate
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Exposure to fluoride in smelter workers in a primary aluminum industry in India
BACKGROUND: Fluoride is used increasingly in a variety of industries in India. Emission of fluoride dust and fumes from the smelters of primary aluminum producing industries is dissipated in the work environment and poses occupational health hazards. OBJECTIVE: To study the prevalence of health complaints and its association with fluoride level
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Fluoride & Osteoarthritis
While the osteoarthritic effects that occurred from fluoride exposure were once considered to be limited to those with skeletal fluorosis, recent research shows that fluoride can cause osteoarthritis in the absence of traditionally defined fluorosis. Conventional methods used for detecting skeletal fluorosis, therefore, will fail to detect the full range of people suffering from fluoride-induced osteoarthritis.
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Skeletal Fluorosis: The Misdiagnosis Problem
It is a virtual certainty that there are individuals in the general population unknowingly suffering from some form of skeletal fluorosis as a result of a doctor's failure to consider fluoride as a cause of their symptoms. Proof that this is the case can be found in the following case reports of skeletal fluorosis written by doctors in the U.S. and other western countries. As can be seen, a consistent feature of these reports is that fluorosis patients--even those with crippling skeletal fluorosis--are misdiagnosed for years by multiple teams of doctors who routinely fail to consider fluoride as a possible cause of their disease.
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"Pre-Skeletal" Fluorosis
As demonstrated by the studies below, skeletal fluorosis may produce adverse symptoms, including arthritic pains, clinical osteoarthritis, gastrointestinal disturbances, and bone fragility, before the classic bone change of fluorosis (i.e., osteosclerosis in the spine and pelvis) is detectable by x-ray. Relying on x-rays, therefore, to diagnosis skeletal fluorosis will invariably fail to protect those individuals who are suffering from the pre-skeletal phase of the disease. Moreover, some individuals with clinical skeletal fluorosis will not develop an increase in bone density, let alone osteosclerosis, of the spine. Thus, relying on unusual increases in spinal bone density will under-detect the rate of skeletal fluoride poisoning in a population.
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Skeletal Fluorosis in India & China
In India and China, scientists have repeatedly found that skeletal fluorosis occurs in populations drinking water with just 0.7 to 1.5 ppm fluoride. Although nutritional deficiencies and hot climates make populations in India and China more susceptible to fluoride toxicity than is generally the case in western countries, this fact does not remove the relevance of the Indian and Chinese experience to the situation in fluoridating countries. This is because (a) nutritional deficiencies also exist in the western world, particularly in low-income communities, and (b) some individuals, including those with kidney disease, can be just as -- if not more -- susceptible to fluoride toxicity.
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Mayo Clinic: Fluoridation & Bone Disease in Renal Patients
The available evidence suggests that some patients wtih long-term renal failure are being affected by drinking water with as little as 2 ppm fluoride. The finding of adverse effects in patients drinking water with 2 ppm of fluoride suggests that a few similar cases may be found in patients imbibing 1 ppm, especially if large volumes are consumed, or in heavy tea drinkers. The finding of adverse effects in patients drinking water with 2 ppm of fluoride suggests that a few similar cases may be found in patients imbibing 1 ppm, especially if large volumes are consumed, or in heavy tea drinkers and if fluoride is indeed the cause. It would seem prudent, therefore, to monitor the fluoride intake of patients with renal failure living in high fluoride areas.
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