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1.
Pakistan Journal of Pharmaceutical Sciences. 2015; 28 (4): 1417-1423
in English | IMEMR | ID: emr-165786

ABSTRACT

People relate the neural disorders with either inheritance or psychological violence but there might be some other reasons responsible for the ailment of people that do not have such a background. The present study explains the chronic effect of heavy toxic metals on nervous system. During experimentation, rabbits used as laboratory animals, were given test metals in their diet. Concentration of metals given to them in the diet was less than their tolerable dietary intake. Behavioral changes were observed during experimentation. Periodic increase in the metal concentration was seen in the blood sample of rabbits. They were slaughtered after a period of eight months of slow poisoning. Histological examination of brain tissues was performed. The brain samples were analyzed by Atomic absorption spectroscopy and Inductively Coupled Plasma Mass Spectrometry to find the retention of heavy metals in mammalian brain. Concentration of lead, mercury and cadmium in the blood samples of occupationally exposed people and patients with neurological disorders at the time of neurosurgery was determined by using the same techniques. During circulation, toxic metals passes through the nerve capillaries to settle down in the brain. Heavy metals cross the blood brain barrier and 'may retain themselves in it. Brain tumors and biopsy samples of patients with neurological disorder were also analyzed to relate neurotoxicity and heavy metal poisoning. Results obtained shows that lead, mercury and cadmium retain themselves in the brain for longer period of time and are one of the causes of neurotoxicity

2.
Pakistan Journal of Pharmaceutical Sciences. 2013; 26 (5): 893-896
in English | IMEMR | ID: emr-138406

ABSTRACT

In our present research we studied physiochemical properties and antimicrobial activity of T. ammi [Trachyuspermum ammi] seeds. The seeds yielded 2.86% essential oil. Refractive index, specific gravity, acid value, and easter values were 1.496, 0.9212, 1.12 and 2.80 respectively. GLC was used to determine the composition of oil. The major component of oil was Thymol [55.308%]. Antimicrobial activity of the oil was carried out against four species of bacteria and fungs. The oil was used to formulate a cream and the pH, physiochemical stability, phase separation and dermal irritation of cream were investigated. The cream was examined for healing wound in rabbits in comparison with Iodine tincture


Subject(s)
Animals , Chemistry, Pharmaceutical , Drug Stability , Models, Animal , Oils, Volatile/pharmacology , Plant Oils/pharmacology , Thymol/pharmacology , Wound Healing/drug effects , Rabbits , Seeds , Skin Cream , Phytotherapy , Anti-Infective Agents
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