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210篇 您的检索式:作者名="Benali"
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1Antibacterial activity of the essential oils from the leaves of Eucalyptus globulus against Escherichia coli and Staphylococcus aureus显示文摘Objective:To examine the in vitro antimicrobial activities of essential oil of the leaves of Eucalyptus globulus(E.globulus).Methods:The essential oils of this plant were obtained by the hydrodistillation method.The inhibitory effects of this essential oil were tested against Escherichia coli(E.coli)and Staphylococcus aureus(S.aureus)by using agar disc diffusion and dilution broth methods.Results:The results obtained showed that essential oil of the leaves of E.globulus has antimicrobial activity against gram negative bacteria(E.coli)as well as gram positive bacteria(S.aureus).Conclusion:The encouraging results indicate the essential oil of E.globulus leaves might be exploited as natural antibiotic for the treatment of several infectious diseases caused by these two germs,and could be useful in understanding the relations between traditional cures and current medicines.Bachir Raho G Benali M 2012Asian Pacific Journal of Tropical Biomedicine2012,2,9:7
2Could non-invasive brain-stimulation prevent neuronal degeneration upon ion channel re-distribution and ion accumulation after demyelination?显示文摘Fast and efficient transmission of electrical signals in the nervous system is mediated through myelinated nerve fibers.In neuronal diseases such as multiple sclerosis,the conduction properties of axons are disturbed by the removal of the myelin sheath,leaving nerve cells at a higher risk of degenerating.In some cases,the protective myelin sheath of axons can be rebuilt by remyelination through oligodendroglial cells.In any case,however,changes in the ion channel organization occur and may help to restore impulse conduction after demyelination.On the other hand,changes in ion channel distribution may increase the energy demand of axons,thereby increasing the probability of axonal degeneration.Many attempts have been made or discussed in recent years to increase remyelination of affected axons in demyelinating diseases such as multiple sclerosis.These approaches range from pharmacological treatments that reduce inflammatory processes or block ion channels to the modulation of neuronal activity through electrical cortical stimulation.However,these treatments either affect the entire organism(pharmacological)or exert a very local effect(electrodes).Current results show that neuronal activity is a strong regulator of oligodendroglial development.To bridge the gap between global and very local treatments,non-invasive transcranial magnetic stimulation could be considered.Transcranial magnetic stimulation is externally applied to brain areas and experiments with repetitive transcranial magnetic stimulation show that the neuronal activity can be modulated depending on the stimulation parameters in both humans and animals.In this review,we discuss the possibilities of influencing ion channel distribution and increasing neuronal activity by transcranial magnetic stimulation as well as the effect of this modulation on oligodendroglial cells and their capacity to remyelinate previously demyelinated axons.Although the physiological mechanisms underlying the effects of transcranial magnetic stimulation clearly need further investigations,repetitive transcranial magnetic stimulation may be a promising approach for non-invasive neuronal modulation aiming at enhancing remyelination and thus reducing neurodegeneration.Friederike Pfeiffer Alia Benali 2020Neural Regeneration Research2020,15,11:3
3Antitumor effect of in vivo somatostatin receptor subtype 2 gene transfer in primary and metastatic pancreatic cancer models显示文摘Vernejoul F Faure P Benali N 2002Cancer Res2002,62,21:1
4SAPHO syn- drome: a long - term follow - up study of 120 cases 显示文摘Hayem G Bouchaud - Chabot A Benali K 1999Semin Ar- thritis Rheum1999,29,3:1
5SAPHO syn-drome: a long-term follow up study of 120 cases 显示文摘Hayem G Bouchaud-Chabot A Benali K 1999SeminArthritis Rheum1999,293,3:1
6SAPHO syndrome: a long-term follow-up study of 120 cases 显示文摘Hayem G Bouchaud-Chabot A Benali K 1999Semin Arthritis Rheum1999,29,:1
7Circulating tumour cells (CTC) detection: clinical impact and future directions 显示文摘PATERLINI-BRECHOT P BENALI N L 2007Cancer Lett2007,253,2:1
8ICA of fMRI Group Study Data显示文摘Svensen M Kruggel F Benali H 2002Neuro Image2002,16,3:1
9Antitumor effect of in vivo somatastatin receptor subtype 2 gene transfer in primary and metastatic pancreatic cancer models显示文摘Vemejoul F Faure P Benali N 2002Cancer Res2002,62,21:1
10Diffusion Regularization for Iterative Reconstruction in Emission Tomography 显示文摘Riddel C Benali H Buvat I 2004IEEE Trans Med Imag2004,51,3:1
11Experimental studies on the cellular ac- tions of transcranial magnetic stimulation 显示文摘Funke K Benali A 2010Restor Neurol Neurosci2010,28,:1
12Structural,electrical and ethanol sensing properties of double-doping La Fe O3 perovskite oxides显示文摘BENALI A AZIZI S BEJAR M 2014Ceram Int2014,40,14:1
13SAPHO syn- drome: a long-term follow-up study of 120 cases 显示文摘Hayem G Bouchaud-Chabot A Benali K 1999Semin Arthritis Rheum1999,29,3:1
14Entrapment efficiency and initial release of phenylbutazone from nanocapsulesprepared from different polyestera显示文摘Marchais H Benali S Irache J M 1998Drug Dev Ind Pharm1998,24,:1
15Circulating tumor cells (CTC) detec- tion: clinical impact and future directions 显示文摘Paterlini-Brechot P Benali NL 2007Cancer lett2007,253,2:1
16Circulating tumor cells(CTC)detection:clinical impact and future directions显示文摘Paterlini-Brechot P Benali NL 2007Cancer Lett2007,253,2:1
17A computerized image analysis system for quantitative analysis of cells in histological brain sections显示文摘Benali A Leefken I Eysel U 2003J Neurosci Method2003,125,1:1
18Somatostatin receptors显示文摘Benali N Ferjoux G Puente E 2000Digestion2000,621,1:1
19ICA of fMRI group study data 显示文摘Svensen M Kruggel F Benali H 2002Neuroimage2002,16,31:1
20Circulating tumor cells (CTC) detection: clinical impact and future directions 显示文摘Paterlini-Brechot P Benali NL 2007Cancer Lett2007,253,:1
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