Background: The gene responsible for encoding the protein of cytotoxic T lymphocyte-associated antigen-4 (CTLA-4) has been found to be associated with rheumatoid arthritis (RA) in different ethnic populations. But the association of +49A/G CTLA-4 polymorphism with susceptibility of RA among Iraqi Arab populations has not yet been determined. Methods: One hundred and seventy-eight patients were examined, 67 of them were males (mean age 54.71 ± 10.4 years), while 167 were examined for the control group, of whom 64 were males and the rest were females. CTLA-4 DNA genotyping was carried on to determine the +49 A/G (rs231775) polymorphism using a polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP). Enzyme-linked immunosor- bent assay (ELISA) was also applied here to measure the antibodies level for cyclic citrullinated peptides (anti- CCP) and Rheumatoid factor (RF). Results: The frequency of AG and GG genotypes in CTLA-4 + 49 were significantly higher among RA patients in comparing with controls (55.61% vs 42.51%, OR=2.18, 95% CI=1.62–3.79, P=0.003) and (20.22% vs 10.77%, OR = 2.61, 95% CI = 1.31–6.46, P = 0.002) respectively. G allele frequency was also significantly higher among RA cases (52.24% vs. 31.73%, OR = 3.02; 95% CI = 1.61–7.39, P = 0.001). The frequencies of the AA genotype and A allele, however, were significantly lower in cases than controls (24.15% vs 46.70%, P = 0.001) and (47.75% vs 68.26%, P = 0.001) respectively. Moreover, the levels of Anti-CCP and RF were raised signifi- cantly among RA patients than controls (P = 0.0001), but none of these parameters were correlated with ge- notypes of CTLA-4. Conclusions: Carries of CTLA-4 + 49 AG and GG alleles were at a high risk of developing functional disability of RA, unlike the AA allele carriers.
The charge density distributions (CDD) and the elastic electron scattering form
factors F(q) of the ground state for some odd mass nuclei in the 2s 1d shell, such
as K Mg Al Si 19 25 27 29 , , , and P 31
have been calculated based on the use of
occupation numbers of the states and the single particle wave functions of the
harmonic oscillator potential with size parameters chosen to reproduce the observed
root mean square charge radii for all considered nuclei. It is found that introducing
additional parameters, namely; 1 , and , 2 which reflect the difference of the
occupation numbers of the states from the prediction of the simple shell model leads
to very good agreement between the calculated an