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1.
International Journal of Environmental Research. 2011; 5 (4): 909-916
in English | IMEMR | ID: emr-122643

ABSTRACT

Single and joint toxicity of chloramphenicol and Hg acting on wheat [Triticum aestivum L.] Chinese cabbage [Brassica campestris L.] and corn [Zea mays L.] were investigated. The results showed positive correlations between root elongation inhibition of three plants and concentrations of pollutants added to soil [P<0.01] in test concentration range. In terms of root elongation, wheat was the most sensitive to toxicity of chloramphenicol with an IC[50] [concentration when 50% plants show inhibition] value as high as 26.8 mg/kg and also was the most sensitive one to the toxicity of Hg with the IC[50] value as high as 300.8 mg/ kg. The toxicity of chloramphenicol to the plants is stronger than that of Hg. Chloramphenicol and Hg had an antagonistic effect on the inhibition of root elongation of the three plants when the concentration of added Hg reached 30 mg/kg. Chloramphenicol and Hg had significantly synergistic effects on the inhibition of root elongation when Hg concentration was up to 200 mg/kg [P<0.05]


Subject(s)
Chloramphenicol/toxicity , Mercury/toxicity , Triticum/drug effects , Plant Roots/drug effects
2.
Oman Medical Journal. 2002; 19 (1): 50-52
in English | IMEMR | ID: emr-60383

ABSTRACT

A patient of septicaemia due to flavobacterium meningosepticum developed agranulocytosis after 9.75 grams of intravenous chloramphenicol over 72 hours. His neutrophil counts recovered from the fifth day of stopping the drug and starting treatment with granulocyte colony stimulating factor. The value of this hormone for non-chemotherapy drug induced bone marrow suppression is discussed


Subject(s)
Humans , Male , Chloramphenicol/toxicity , Agranulocytosis/therapy , Granulocyte Colony-Stimulating Factor , Chloramphenicol/adverse effects
3.
Indian J Pediatr ; 1959 Jul; 26(): 265-6
Article in English | IMSEAR | ID: sea-82345
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