Background: Acute appendicitis is a common surgical
problem that is associated with an acute-phase reaction.
Previous studies have shown that cytokines and acutephase proteins are activated and may serve as indicators for
appendicitis.
Objective: The aim of this study was to evaluate of serum
levels of interleukin-6 (IL-6) in correlation to the severity
to acute appendicitis.
Methods: This is a prospective study from December 2008
to March 2009 of patients who had appendectomy in
Department of Surgery, Al-Kindy Teaching Hospital -
Baghdad/Iraq. Serum for estimating levels of interleukin-6
(IL-6) was taken pre-operatively. Depending on the
macroscopic evidence during the operation and the
histopathological examination of the specimens, the
patients were separated into 3 groups, group one with
negative appendectomy (normal appendix), group two with
non-complicated acute appendicitis (catarrhal,
suppurative), and group three with complicated acute
appendicitis (perforated, gangrenous). The
histopathological results were correlated with IL-6 values
statistically.
Results: A total number of 50 patients were included in
this study, 28 male (56%) and 22 female (44%). The mean
age was 23 year (ranged from 7 to 50). On histological
examination, there were 7 patients (14%) in group one, 29
patients (58%) in group two, and 14 patients (28%) in
group three. Serum IL-6 values gave true negative results
in 6%, true positive results in 82%, false negative results in
4%, and false positive results in 8%. We determined,
therefore, in the present study the sensitivity, specificity,
and accuracy of serum IL-6 were calculated as 95.34%,
42.85%, and 88% respectively.
Conclusion: Laboratory results should be considered to be
integrated within the clinical assessment. If used critically,
IL-6 can provide surgeons with complementary
information in discerning the necessity for urgent
operation
This study shows that it is possible to fabricate and characterize green bimetallic nanoparticles using eco-friendly reduction and a capping agent, which is then used for removing the orange G dye (OG) from an aqueous solution. Characterization techniques such as scanning electron microscopy (SEM), Energy Dispersive Spectroscopy (EDAX), X-Ray diffraction (XRD), and Brunauer-Emmett-Teller (BET) were applied on the resultant bimetallic nanoparticles to ensure the size, and surface area of particles nanoparticles. The results found that the removal efficiency of OG depends on the G‑Fe/Cu‑NPs concentration (0.5-2.0 g.L-1), initial pH (2‑9), OG concentration (10-50 mg.L-1), and temperature (30-50 °C). The batch experiments showed
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