Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0012833 (dizziness)
9,689 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Major findings from our work on exposures and effects from organophosphate-containing pesticides in selected occupational and community patients and groups in Israel are reviewed as a basis for recommending control measures. The worker groups were pilots, ground-crews, and field workers; exposed nonworkers were adults and children living in kibbutzim with drift exposures, and household residents in houses treated by pest exterminators. In all groups, evidence of exposure-illness associations was found even though persons with acute poisoning were not seen. Complaints (headache, dizziness, fatigue, nausea, breathing problems, abdominal cramps, and tingling in extremities) were associated with within-normal depressions in cholinesterase activity. Whole blood and plasma cholinesterase activity were slightly more sensitive indicators of mixed exposure than red blood cell cholinesterase activity. High alkyl phosphate levels and symptoms were seen in individuals with within-normal limit depressions in cholinesterase activity. Complaints of weakness and tingling in hands and feet, together with low-grade changes in nerve conduction, suggest the possible influence of agents with a neurotoxic esterase-type activity independent of cholinesterase activity. Transient in-season neuropsychological changes in tests of mood status and performance were associated with exposure. Recommendations for exposure reduction include: accelerating the already declining use of pesticides in general, and organophosphates in particular; promoting the shift from more to less toxic organophosphates and other pesticides; and introducing rigid performance specifications for closed systems in loading and mixing at end-user sites. Dermal protection remains a problem. Cholinesterase activity levels and symptom interviews are useful for monitoring workers at risk, but alkyl phosphate levels are the definitive measure of exposure, surveys, investigations and surveillance.
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PMID:Health effects from exposure to organophosphate pesticides in workers and residents in Israel. 133 Sep 77

Cholinesterase inhibitors are currently the most established treatment strategy in Alzheimer's disease. The treatment effect appears mainly to be symptomatic. Effects on progression of the disease following long term treatment, and possible neuroprotective effects, have been investigated. Delay until nursing home placement has been reported. Three cholinesterase inhibitors, tacrine, donepezil and rivastigmine, are in clinical use. Other cholinesterase inhibitors, such as galantamine (galanthamine), metrifonate, physostigmine, eptastigmine, are currently under clinical evaluation. So far the efficacy appears to be comparable between the various cholinesterase inhibitors; treatment for up to 6 months has produced an improvement in Alzheimer's Disease Assessment Scale -- Cognitive Subscale score (ADAS-cog) of between 1.8 and 4.9 in patients with Alzheimer's disease. Tacrine, donepezil, galantamine and physostigmine are reversible inhibitors of acetylcholinesterase and butyrylcholinesterase, while metrifonate is considered to be an irreversible inhibitor and rivastigmine a pseudoirreversible inhibitor. Tacrine and physostigmine have lower bioavailability, 17 to 37% and 3 to 8%, respectively, than the other cholinesterase inhibitors such as rivastigmine, galantamine and donepezil (40 to 100%). The elimination half-life is considerably longer for donepezil (70 to 80h) in comparison to most of the other cholinesterase inhibitors (0.3 to 12h). Donepezil is therefore administered once daily in comparison to rivastigmine which is administered twice daily and tacrine which is administered 4 times daily. Simultaneous food intake lowers the plasma concentration of tacrine and reduces the adverse effects of rivastigmine. Drugs like theophylline and cimetidine have been reported to change the pharmacokinetics of tacrine and donepezil. In contrast, concomitant medication with various drugs with rivastigmine does not seem to cause any drug interactions in patients with Alzheimer's disease. Tacrine, donepezil and galantamine are metabolised via the cytochrome P450 (CYP) liver enzymes. Active metabolites are known for tacrine and galantamine. Rivastigmine is not metabolised via CYP enzymes, but via esterases and is excreted in the urine. Tacrine is associated with hepatotoxicity while other cholinesterase inhibitors seem devoid this adverse effect. Increased liver enzyme values have been observed in 49% of patients with Alzheimer's disease treated with tacrine. Rechallenge with tacrine reduces the incidence of elevated liver enzyme levels. Peripheral cholinergic adverse effects are common for the cholinesterase inhibitors, with an incidence ranging between 7 to 30%. For some cholinesterase inhibitors, such as rivastigmine, the cholinergic adverse effects such as nausea, vomiting, dizziness, diarrhoea and abdominal pain can be reduced by slowing the rate of dose titration.
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PMID:Cholinesterase inhibitors in the treatment of Alzheimer's disease: a comparison of tolerability and pharmacology. 988 90

Cholinesterase inhibitors can be used as one element of a comprehensive approach to management of mild-to-moderate AD. Benefits include modest cognitive improvement, increased activation, and improved mood and behavior. Patients with other disorders, such as Lewy-body dementia, may also improve. The most common side effects include GI disturbances, insomnia, dizziness, fatigue, and muscle cramps. Adverse effects can be significantly reduced by waiting 4 to 6 weeks before increasing doses. Insomnia may be alleviated by having the patient take the medication early in the day.
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PMID:Cholinesterase inhibitors. Comparing the options for mild-to-moderate dementia. 1158 75

Acetyl Cholinesterase (AChE) inhibitors such as Donepezil, Rivastigmine and Galantamine are approved by US-FDA as first line drugs to treat the cognitive symptoms of Alzheimer's disease (AD). Their beneficial effects are attributed to their ability to elevate endogenous acetylcholine (ACh) at the M1 muscarinic receptor in the brain. However, their side effects such as nausea, vomiting, dizziness, insomnia, loss of appetite and altered heart rate are related to non-specific activation of M2-M5 muscarinic subtypes in various tissues. It is logical, therefore, to develop agonists with M1 receptor selectivity. Unfortunately, this is limited due to a high degree of orthosteric site homology among the receptor subtypes. In contrast, their allosteric sites are unique and, therefore, allow selective targeting using positive allosteric modulators (PAMs). PAMs of M1 receptors are devoid of agonist activity, however, when bound they enhance the binding affinity of orthosteric ligand, ACh. The major limitation of these PAMs is their bioavailability in the brain. In the current hypothesis, we propose surface modified nano-lipid drug conjugates (LDC-NPs) of PAMs of M1 receptors to improve their bioavailability in brain. When co-administered with AChE inhibitors they are expected to increase their efficacy and reduce their therapeutic dose and side effects.
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PMID:Surface modified nano-lipid drug conjugates of positive allosteric modulators of M1 muscarinic acetylcholine receptor for the treatment of Alzheimer's disease. 2835 83