Background: Insulin resistance is associated with metabolic syndrome , type 2 diabetes and representing a risk factor for cardiovascular disease . This relationship may be modulated to some extent by age related changes in sex hormone status.. In particular, reduced total testosterone (TT) levels have been associated with insulin resistance and subsequent risk for developing type 2 diabetes. Aim of study: we examined whether low total testosterone level were associated with insulin resistance in young adult men. Methods: a total of 83 men (young adult men) divided into 2 group : (group1 ) 49 men with a risk factor for insulin resistance(with a family history of type2 diabetes and hypertension) and (group2) 34 men without any risk factor aged (20-40) years. Age, body mass index (BMI) and waist circumference were measured. Early morning, they were assayed for total testosterone, and insulin levels. Insulin resistance was assessed using a homeostatic model (HOMA-IR). Results: Total testosterone, declined progressively across increasing quintiles of HOMA-IR as a mean of(4.49±1.87) ng/ml in group1 compared mean (7.82±2.21) ng/ml in group 2 and correlated inversely with HOMA-IR( r = -0.424 , p = 002) also with insulin (r= -0.541) (p< 0.0001) in group1 . Total testosterone correlated inversely with BMI (r=-0.471 , p=0.001) in group1. There is a significant positive correlation between HOMA- IR of group1 and BMI (r= 0.472) (p<0.001), insulin levels (r=0.698) (p<0.0001) . Conclusions: In young adult men, lower total testosterone is associated with insulin resistance.
a simple accurate and sensitive spectrophotometric method for the determination of promethazine HCI has been developed the method is based on the oxidative coupling reaction of promethazine
A simple, rapid and sensitive spectrophotometirc method for the determination of trace amounts of promethazine hydrochloride in the aqueous solution is described. The method is based on the complexation of promethazine hydrochloride with In (III) in the presence of sodium hydroxide to form an soluble product with maximum absorption at 304nm. Beer’s law is obeyed over the concentration range of (2- 20μg/ml) with molar absorptivity of (1.92× 103 L.mol-1 .cm -1 ). The optimum conditions for all development are described and the proposed method has been successfully applied for the determination of promethazine hydrochloride in bulk drug.
Spectrophotometric methods were developed for the determination of rantidine-HCl in pharmaceutical tablets. These methods were based on the reaction of DDQ and p-chloranil with rantidine-HCl, resulting in the formation of an orange-red and purple colored products which are quantified spectrophotometrically at 460 and 540nm in DDQ and p-chloranil, respectively. A graph of absorbance versus concentration show that Beer’s law is obeyed in a concentration ranges of 20-160 and (30-120)g/ml with molar absorptivities of 2.631 x 103 and 1.052 x 103 The optimum conditions for color development are described and the proposed methods were applied satisfactory to pharmaceutical preparations
Around fifty isolates of Salmonella enterica serovar Typhi were isolated from blood specimens of patients referring to several hospitals in Kirkuk province, Iraq. The results revealed that all isolates developed resistance to trimethoprim-sulfamethoxazole and chloramphenicol. However, neither sul2 nor tem genes were detected. Moreover, only ten isolates were positive for catP. Our data suggested participation of other genes or mechanisms allow these multidrug isolates to resist the antibiotics in question.
A robust and sensitive analytical method is presented for the extraction and determination of six pharmaceuticals in freshwater sediments.
Identifying phenolic compounds in some genera belonging in the Amaranthaceae family by HPLC technique