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1.
Iran J Allergy Asthma Immunol ; 22(2): 138-149, 2023 Apr 30.
Article in English | MEDLINE | ID: mdl-37496407

ABSTRACT

Asthma is an inflammatory disease of the airways. We assessed the anti-inflammatory and antioxidative impacts of quercetin, a plant derivative, on inflammatory and oxidative indices in lung tissue and serum of rats with asthma.Asth ma was induced by ovalbumin. Rats were divided into 4 groups: control, asthma+vehicle (Receieved normal saline), asthma+dexamethasone, and asthma+quercetin. After asthma induction, quercetin (50 mg/kg) and dexamethasone (2.5 mg/kg) were injected intraperitoneally once daily for 1 week. On day 50, lung histopathology indices; inflammatory factors; tissue gene expression, including GATA Binding Protein 3 (Gata-3), Tbx21 (T-bet), Transforming growth factor-ß (TGF-ß), Il10 (IL-10), Il1b (IL-1ß), Il6 (IL-6), Acta2 (α-SMA), and Tnf (TNF-α); and oxidative stress indices (malondialdehyde [MDA], catalase [CAT], glutathione peroxidase [GPX], superoxide dismutase [SOD], and total antioxidant capacity [TAC]) in tissue and serum, were evaluated. The results showed that quercetin reduced Gata3, Tnf, Tgfb1, Il1b, and Acta2 gene expression and increased Tbx21 gene expression following asthma. Quercetin also improved oxidative stress by decreasing MDA levels and increasing TAC, CAT, SOD, and GPX levels in serum and lung tissue. Furthermore, quercetin decreased IL6 and TNFα levels and increased IL10 levels in lung tissue after asthma was treated with quercetin. Quercetin ameliorates oxidative stress and inflammation caused by asthma, especially at the tissue level. Therefore, quercetin can be considered a potent antiasthmatic agent.


Subject(s)
Antioxidants , Asthma , Rats , Animals , Antioxidants/pharmacology , Antioxidants/therapeutic use , Quercetin/pharmacology , Quercetin/therapeutic use , Interleukin-10/genetics , Interleukin-10/metabolism , Oxidants , Interleukin-6/metabolism , Asthma/drug therapy , Asthma/metabolism , Inflammation/drug therapy , Oxidative Stress , Tumor Necrosis Factor-alpha/metabolism , Superoxide Dismutase/metabolism , Dexamethasone
2.
J Trace Elem Med Biol ; 79: 127229, 2023 Sep.
Article in English | MEDLINE | ID: mdl-37315393

ABSTRACT

BACKGROUND: Cisplatin is a prevalent chemotherapeutic agent, and it has been used extensively to treat lung cancer. However, its clinical efficacy is hampered by its safety profile and dose-limiting toxicity. Saffron is a natural product that has shown significant anticancer effects. The combination treatment of saffron with chemotherapeutic agents has been considered a new strategy. METHODS: Herein, saffron extract as a natural anticancer substance was combined with cisplatin to assess their combined efficacy against tumor development in vitro. In A549 and QU-DB cell lines, the combined effect of the saffron extract with cisplatin led to a significant reduction in cell viability as compared to cisplatin alone. RESULTS: After 48 h incubation a considerable reduction in ROS levels in the QU-DB cell line upon treatment with cisplatin in the presence of saffron extract in comparison with cells treated with cisplatin alone. Furthermore, apoptosis increased significantly when in cells treated with cisplatin in combination with saffron extract compared to cisplatin alone. CONCLUSION: Our data establish that the combination of saffron extract as a natural anticancer substance with cisplatin leads to improved cell toxicity of cisplatin as an anticancer agent. Therefore, the saffron extract could be potentially used as an additive to enable a reduction in cisplatin dosages and its side effects.


Subject(s)
Antineoplastic Agents , Crocus , Lung Neoplasms , Humans , Cisplatin/pharmacology , Cisplatin/therapeutic use , Cell Line, Tumor , Plant Extracts/pharmacology , Apoptosis , Antineoplastic Agents/pharmacology , Antineoplastic Agents/therapeutic use , Lung Neoplasms/drug therapy , Lung Neoplasms/pathology
3.
HERD ; 16(3): 210-237, 2023 07.
Article in English | MEDLINE | ID: mdl-37122127

ABSTRACT

BACKGROUND: Nursing stations are important features of medical centers that are constantly in use. As nursing is an inherently stressful occupation, nursing stations should be designed to minimize stress on those who must spend time there. AIM: This study evaluated the effect of environmental design factors on mitigating the stress levels on nurses in nursing stations by determining the environmental factors that most influence the perceptual senses that affect physical and psychological comfort. METHODS: A quantitative approach was used to evaluate the parameters that affect the sensory perceptions of nurses in nursing stations at four hospitals in Tehran. A survey was conducted to identify environmental design parameters that affect the visual, auditory, tactile, kinesthetic, and olfactory senses. RESULTS: The results revealed that the olfactory category scored highest, followed by the auditory, visual and tactile categories, which had similar scores, and kinesthetic was ranked last. CONCLUSION: A connection was revealed between the educational level of the nurses and environmental factors affecting their sensory perception in terms of materials, aesthetics and the appropriate number of windows as a visual sense, and ergonomics as a kinesthetic sense. Significantly, the gender variable differed in the Furniture variable based on comfort of seating with respect structure. Based on the results of this study, a combination of olfactory, visual, and auditory factors should be required at the nursing stations to decrease the stress level of nurses.


Subject(s)
Nurses , Nursing Staff, Hospital , Nursing Stations , Humans , Iran , Delivery of Health Care , Hospitals , Nursing Staff, Hospital/psychology , Built Environment
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