Results 131 to 140 of about 2,419 (179)
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Head Lice and the Use of Spinosad

Clinical Therapeutics, 2012
Head lice infestations are responsible for social and economic distress. Despite a reported increase in resistance, permethrin 1% is still the first-line treatment of head lice. Alternative topical pediculicidal agents include malathion and benzyl alcohol, but resistance is of growing concern.
Susan C, Villegas, Robin L, Breitzka
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Dietary risk assessment of spinosad in China

Regulatory Toxicology and Pharmacology, 2007
Spinosad is an insect control agent that is derived from a naturally occurring soil bacterium, and is effective on several classes of insects, especially Lepidoptera larvae. Spinosad consists mainly of a mixture of spinosyns A and D and is registered for uses on a variety of crops in many countries including China.
Renjun, Gao   +3 more
openaire   +2 more sources

Spinosad

American Journal of Clinical Dermatology, 2011
Spinosad 0.9% suspension is a topical treatment for head-lice infestation (pediculosis capitis) that has been approved in the US as a prescription medicine. Spinosad is a natural mixture of the pediculicidal tetracyclic macrolides spinosyn A and spinosyn D.
openaire   +2 more sources

Human poisoning with spinosad and flonicamid insecticides

Human & Experimental Toxicology, 2011
This report describes the first known case in the literature of acute exposure to a mixture of spinosad and flonicamid that resulted in a substantial clinical toxicities. An 80-year-old depressed female attempted suicide by drinking a mixture of 80-mL Conserve (Dow AgroSciences, Taipei, Taiwan) and 2–3 gram powder of flonicamid (Ishihara Sangyo Kaisha,
Ting-Yi, Su   +4 more
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Spinosad for Treatment of Head Lice Infestation

Annals of Pharmacotherapy, 2011
Objective: To review the pharmacology, pharmacokinetics, clinical trials, and safety profile of spinosad 0.9% topical lotion, a recently approved pediculicide for treatment of head lice infestation. Data Sources: English-language ...
Sabrina W, Cole, Lisa M, Lundquist
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Residues of Spinosad in Meat, Milk, and Eggs

Journal of Agricultural and Food Chemistry, 2000
Spinosad is an insect control agent that is derived from a naturally occurring soil bacterium and has a high level of activity against insects that infest a variety of crops. Dairy and poultry feeding studies were conducted to determine the magnitude of spinosad residues in animal products that would result from the consumption of typical feed ...
B S, Rutherford   +4 more
openaire   +2 more sources

Spinosad 0.9% Topical Suspension

Hospital Pharmacy, 2011
Each month, subscribers to The Formulary Monograph Service receive 5 to 6 well-documented monographs on drugs that are newly released or are in late phase 3 trials. The monographs are targeted to Pharmacy & Therapeutics Committees. Subscribers also receive monthly 1-page summary monographs on agents that are useful for agendas and pharmacy/nursing ...
Dennis J. Cada   +2 more
openaire   +1 more source

Spinosad Toxicity to Pollinators and Associated Risk

2003
Spinosad is a natural insecticide derived from an actinomycete bacterium species, Saccharopolyspora spinosa (Mertz and Yao 1990), that displays the efficacy of a synthetic insecticide. It consists of the two most active metabolites, designated spinosyn A and D.
Monte A, Mayes   +3 more
openaire   +2 more sources

The comparative efficacy of afoxolaner, spinosad, milbemycin, spinosad plus milbemycin, and nitenpyram for the treatment of canine cutaneous myiasis

Veterinary Dermatology, 2018
BackgroundCanine screw‐worm myiasis due to Cochliomyia hominivorax or Chrysomya bezziana has traditionally been treated with extra‐label use of ivermectin. The larvicidal activities of nitenpyram and spinosad/milbemycin also have been described, but there have been no reports to describe the efficacy of isoxazolines such as afoxolaner.ObjectivesTo ...
Hock Siew Han   +3 more
openaire   +2 more sources

Investigating Role of Abiotic Factors on Spinosad Dissipation

Bulletin of Environmental Contamination and Toxicology, 2015
The effect of abiotic factors on dissipation of spinosad (soil moisture regimes, pH, and light) was studied. Spinosad residues were estimated using high performance liquid chromatography fitted with a UV detector. Under laboratory conditions, half-lives of spinosad were 9.0 and 7.7 days for air dried and field capacity soils, respectively.
Totan, Adak, Irani, Mukherjee
openaire   +2 more sources

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