somaieh mansouri
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Objective
Neuroprotective and antioxidant effects of Ocimum basilicum (O. basilicum) against pentylenetetrazole (PTZ)-induced seizures were investigated.
Materials and MethodsMice were divided as follows: (Group 1) Control, (Group 2) PTZ, (Groups 3-5) 50,100 and 200 mg/kg hydro-ethanolic (HE) extract, and (Groups 6-8) 200 mg/kg ethyl-acetate (EAF), N-hexane (NHF) and water (WF) fractions. Minimal clonic seizures (MCS) and generalized tonic-clonic seizures (GTCS) latencies were measured. Biochemical and histological studies were done.
ResultsMCS and GTCS latency in HE groups were longer than the PTZ group (p<0.05 to p<0.001). EAF and NHF prolonged the onset of MCS and GTCS (p<0.001). PTZ increased malondialdehyde (MDA) and dark neuron (DN) production while decreased thiol, catalase (CAT) and superoxide dismutase (SOD) (p<0.05 to p<0.001). Pre-treatment by HE and all fractions of the plant attenuated MDA and DN while increased thiol, CAT and SOD (p<0.01 to p<0.001).
ConclusionEAF and NHF had anticonvulsant properties. The extract and fractions protected the brain from PTZ-induced oxidative damages and showed neuroprotective effects.
Keywords: Neuroprotective, Ocimum basilicum, Oxidative stress, Pentylenetetrazole, Seizures -
اهداف
استرس اکسیداتیو نقش مهمی در پاتوژنز تشنج دارد. در این پژوهش اثر فراکسیون اتیل استات گیاه بابونه چشم گاوی بر آسیب اکسیداتیو مغز در مدل تشنج ناشی از پنتیلن تترازول در موش بررسی می شود.
مواد و روش هادر این مطالعه تجربی، موش های سوری در 6 گروه توزیع شدند: 1. گروه کنترل، 2. گروه پنتیلن تترازول، 3-6. گروه های پنتیلن تترازول + فراکسیون که حیوانات چهار گروه اخیر علاوه بر پنتیلن تترازول، 25، 50، 100 و 200 میلی گرم از فراکسیون را دریافت کردند. پنتیلن تترازول (100 میلی گرم بر کیلوگرم) و فراکسیون (30 دقیقه قبل از پنتیلن تترازول) به مدت 3 هفته و داخل صفاقی تزریق شدند. تاخیر در شروع تشنج های کلونیک، تونیک کلونیک ژنرالیزه و سطح شاخص های استرس اکسیداتیو در بافت های قشر مغز و هیپوکامپ اندازه گیری شدند.
یافته هاپیش درمانی با فراکسیون اتیل استات باعث تاخیر در شروع تشنج ها در گروه های فراکسیون+پنتیلن تترازول در مقایسه با گروه پنتیلن تترازول شد (P<0/05 P<0/001, P<0/01). همه دزهای فراکسیون اتیل استات باعث کاهش غلظت مالون دی آلدیید و افزایش سطح گروه های تام تیول و فعالیت آنزیم های سوپراکسید دیسموتاز و کاتالاز در بافت های مغز در گروه های فراکسیون+پنتیلن تترازول در مقایسه با گروه پنتیلن تترازول شد (P<0/05, P<0/01, P<0/001).
نتیجه گیریفراکسیون اتیل استات گیاه بابونه چشم گاوی باعث تضعیف تشنج های تحریک شده به وسیله پنتیلن تترازول از طریق بهبود استرس اکسیداتیو در بافت مغز شد.
کلید واژگان: قشر مغز، هیپوکمپ، بابونه چشم گاوی، استرس اکسیداتیو، پنتیلن تترازولAimsOxidative stress plays an essential role in the pathogenesis of seizures. In this study, we investigated the effect of ethyl acetate fraction of Tanacetum parthenium against oxidative brain damage in a pentylenetetrazole(PTZ)-induced seizure model in mice.
Methods & MaterialsIn this experimental study, mice were divided into 6 groups: control, PTZ, and 4 other groups that, besides PTZ, received 25, 50, 100, and 200 mg/kg of the fraction. PTZ (100 mg/kg) and a fraction (30 min before PTZ) were administered intraperitoneally for 3 weeks. Delay in the onset of the minimal clonic seizure (MCS), generalized tonic-clonic seizure (GTCS), and the level of oxidative stress indexes in cortical and hippocampal tissues were measured.
FindingsPretreatment with fraction resulted in postponing the onset seizures in the Fraction+PTZ groups compared to the PTZ group (P<0.05, P<0.01, and P<0.001). In addition, all doses of ethyl acetate fraction decreased the concentration of malondialdehyde (MDA) and increased the level of tom thiol groups and the activity of superoxide dismutase and catalase enzymes in the brain tissues compared to the PTZ group.
ConclusionEthyl acetate fraction of Tanacetum parthenium attenuated PTZ-stimulated seizures through improving brain tissue oxidative stress.
Keywords: Cortex, Hippocampus, Tanacetum parthenium, Oxidative stress, Pentylenetetrazole -
Medicinal plants are used for different purposes in traditional medicine. Boswellia serrata (B. serrata) from Burseracea family has been widely used for human medical purposes. This plant known as frankincense or olibanum has a resin with therapeutic properties. The main constituent of this resin is boswellic acid that plays an important role in various fields. From past to present, many studies had been shown that olibanum and its main constituent, boswellic acid, have antiinflammatory, antioxidant, antitumor, anti-arthritic, antimicrobial and anti-carcinogenic effects. In addition, many findings about effects of B. serrata and its ingredients on central nervous system (CNS) are available. Therefore, the aim of this study is to review in vivo and in vitro evidence attributed to this plant and its constituents on CNS. Databases including Web of Sciences, Scopus, PubMed and Google Scholar were explored for entries from the beginning of January 2000 until the end of November 2020. Findings reveal that B. serrata and its constituents have neuroprtotective effects and ameliorate learning and memory malfunction. These effects mainly are attributed to the antioxidant and anti-inflammatory properties of this plant.
Keywords: Boswellia serrata, Frankincense, Olibanum, Central nervous system -
Objective
Oxidative stress has pernicious effects on the brain. Pinus eldarica has antioxidant properties. We explored neuroprotective effect of P. eldarica against pentylenetetrazole (PTZ)-induced seizures.
Materials and MethodsMale mice (BALB/c) were grouped as control, PTZ, Soxhlet (Sox) 100, Sox 200, Macerated (Mac) 100 and Mac 200 groups. Sox and Mac extracts (100 and 200 mg/kg) were injected during 7 days. Delay in onset of minimal clonic seizure (MCS) and generalized tonic- clonic seizure (GTCS) was measured. Number of dark neurons (DN) and levels of oxidative stress indicators in the hippocampus were evaluated.
ResultsOnset of MCS and GTCS was later in groups treated with the extracts than the PTZ group (p<0.01 and p<0.001). Number of DN in the hippocampus in the PTZ group was higher than the control group (p<0.001) while in the extract groups, was lower than the PTZ group (p<0.05, p<0.01 and p<0.001). MDA level was higher whereas total thiol level and activity of SOD and CAT were lower (p<0.001) in the PTZ group than the control group. MDA level in the Sox 100 (p<0.01), Sox 200 (p<0.001) and Mac 200 (p<0.01) groups was less than the PTZ group. Total thiol level in the Sox 200 (p<0.001), SOD in the Sox 100 (p<0.05), Sox 200, and Mac 200 and CAT in the Sox 200 (p<0.001) groups were higher than the PTZ group.
ConclusionP. eldarica prevented neuronal death and reduced seizures caused by PTZ via improving brain oxidative stress.
Keywords: Pinus eldarica, Pentylenetetrazole, Oxidative stress, Dark neurons
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