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1.
BMC Nurs ; 23(1): 313, 2024 May 09.
Article in English | MEDLINE | ID: mdl-38724986

ABSTRACT

BACKGROUND: Considering the severe and sudden changes in the job conditions of nurses during the covid-19 pandemic, the increase in job tensions during this critical period and its consequences on the quantity and quality of nursing care, this study aims to investigate the job stress of nurses during the covid-19 pandemic and its predictors in Iran. METHODS: This cross-sectional study was conducted on 400 nurses in 'Kashan', Iran, who were randomly selected using stratified sampling. Data were collected using two questionnaires on occupational stress and potential related factors. The data were analyzed in SPSS version 16. RESULTS: The results showed that the occupational stress of nurses in Iran was at a medium to high level with a mean and standard deviation of 103.773 ± 15.742 (scale of 34-136). Factors such as satisfaction with physical health, quality of work life, satisfaction with the availability of facilities, sense of coherence, education level, work experience, job burnout, male gender, being native, and workplace were predictors of occupational stress and explained 23.3% of the variance in occupational stress score. The highest contribution was related to satisfaction with physical health. CONCLUSION: Considering the consequences of occupational stress for nurses, it is crucial for health and nursing authorities to take these factors into consideration in policy-making and planning.

2.
J Avian Med Surg ; 33(4): 335-339, 2019 Dec 09.
Article in English | MEDLINE | ID: mdl-31833301

ABSTRACT

Cryptococcus neoformans is an opportunistic human pathogen that causes cryptococcosis, a life-threatening infection that usually manifests as meningoencephalitis in immunocompromised patients. Pigeon (Columba livia) droppings can spread pathogenic yeasts and mold fungi, such as C neoformans, in the environment. The objective of this study was to isolate C neoformans and other opportunistic fungi from feral pigeon droppings. One hundred twenty samples of feral pigeon droppings were suspended 1:10 in saline solution and then cultured. The fungi were identified by standard mycological techniques. Fungal contamination was detected in all examined samples. Yeast and mold fungi were isolated from 114 samples (95%) and 103 samples (85.8%), respectively, out of 120 samples. The highest frequency of yeast and mold fungi isolated from collected samples was C neoformans 77.5% and Rhizopus species 38.3%, respectively. Several types of fungi exist in pigeon droppings that can be spread in the environment and transmitted to children and elderly, as well as immunocompromised patients who are at increased risk of contracting opportunistic diseases.


Subject(s)
Bird Diseases/epidemiology , Bird Diseases/microbiology , Columbidae/microbiology , Cryptococcosis/veterinary , Cryptococcus neoformans/isolation & purification , Feces/microbiology , Animals , Cryptococcosis/epidemiology , Cryptococcosis/microbiology , Fungi/isolation & purification , Iran/epidemiology , Opportunistic Infections/epidemiology , Opportunistic Infections/microbiology , Opportunistic Infections/veterinary , Prevalence , Yeasts/isolation & purification
3.
J Biomol Struct Dyn ; 37(8): 1923-1934, 2019 05.
Article in English | MEDLINE | ID: mdl-29757083

ABSTRACT

In the present work, the influence of Cu+ binding to N3- and N7-positions of hypoxanthine on energetic, geometrical and topological properties of hypoxanthine-guanine, hypoxanthine-adenine, hypoxanthine-cytosine, hypoxanthine-thymine and hypoxanthine-hypoxanthine mismatches is theoretically investigated. The calculations, in gas phase, are performed at B3LYP/6-311++G(3df,3pd) level of theory. Unlike the other mispairs, Cu+ binding to N3-position of hypoxanthine causes the proton transfer process from enol form of hypoxanthine to imino forms of adenine and cytosine. This process also occurs in all mismatches having enol form of hypoxanthine when Cu+ binds to N7-position of hypoxanthine. The mismatches are stabilized by hydrogen bonds. The influence of Cu+ on hydrogen bonds is also examined by atoms in molecules (AIM) and natural bond orbital (NBO) analyses. Communicated by Ramaswamy H. Sarma.


Subject(s)
Base Pair Mismatch , Copper/metabolism , DNA/metabolism , Density Functional Theory , Hypoxanthine/metabolism , Copper/chemistry , DNA/chemistry , Hydrogen Bonding , Hypoxanthine/chemistry , Ions , Models, Molecular , Molecular Conformation , Protons , Thermodynamics
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