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Irritable bowel syndrome (IBS) is a prolonged and disabling functional gastrointestinal disorder with the incidence rate of 18% in the world. IBS could seriously affect lifetime of patients and cause high economic burden on the community. The pathophysiology of the IBS is hardly understood, whereas several possible mechanisms, such as visceral hypersensitivity, irregular gut motility, abnormal brain–gut relations, and the role of infectious agents, are implicated in initiation and development of this syndrome. Different studies demonstrated an alteration in B-lymphocytes, mast cells (MC), T-lymphocytes, and cytokine concentrations in intestinal mucosa or systemic circulation that are likely to contribute to the formation of the IBS. Therefore, IBS could be developed in those with genetic predisposition. Infections’ role in initiation and exacerbation of IBS has been investigated by quite several clinical studies; moreover, the possible role of some pathogens in development and exacerbation of this disease has been described. It appears that the main obligatory pathogens correspond with the IBS disease, Clostridium difficile, Escherichia coli, Mycobacterium avium subspecies paratuberculosis, Campylobacter concisus, Campylobacter jejuni, Chlamydia trachomatis, Helicobacter pylori, Pseudomonas aeruginosa, Salmonella spp, Shigella spp, and viruses, particularly noroviruses. A number of pathogenic parasites (Blastocystis, Dientamoeba fragilis, and Giardia lamblia) may also be involved in the progression and exacerbation of the disease. Based on the current knowledge, the current study concludes that the most common bacterial, viral, and parasitic pathogens may be involved in the development and progression of IBS.  相似文献   
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Molecular Biology Reports - Asthma, an inflammatory illness of the lungs, remains the most common long-term disease amongst children. This study tried to elaborate the status of apoptosis in...  相似文献   
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An efficient micropropagation protocol was developed for E. cotinifolia by utilizing mature nodal segments for axillary shoot proliferation. The nodal explants from a 2-year-old plant were cultured on Murashige and Skoog (MS) medium supplemented with different concentrations (0.5, 2.5, 5.0, 7.5 and 10.0 μM) of 6-benzyladenine (BA), Kinetin and 2-isopentenyl adenine singly as well as in combination with α-naphthalene acetic acid (NAA) or Indole-3-butyric acid (IBA) (0.1, 0.5 and 1.0 μM). The highest regeneration frequency (92 %) with multiple shoots (13.0 ± 1.15) and shoot length (4.23 ± 0.14 cm) was achieved on MS medium supplemented with 5.0 μM BA and 0.1 μM NAA after 8 weeks of culture. Further experiments were performed to test the effects of medium type, medium strength, pH and subculture passages on shoot induction and proliferation. An enhancement in average number of shoots (16.6 ± 0.45) per explant was obtained after four subculture passages. Micro shoots exhibited in vitro rooting on half strength MS medium containing 2.5 μM Indole-3-butyric acid (IBA) after 4 weeks of culture. The in vitro raised healthy plantlets with well-developed roots and shoots were successfully acclimatized in plastic cups containing sterile soilrite for 8 weeks under culture room conditions (150 PPFD) prior to field transfer. Through the acclimatization period (0–56 days), photosynthetic pigments (Chlorophyll a, b and Carotenoid content) decreased during the initial 2 weeks followed by significant increase during the successive period (21–56 days) of acclimatization. At the same time, all the tested antioxidant enzymes (SOD, CAT, APX and GR) exhibited an increasing trend throughout the acclimatization period. The culture room acclimatized plantlets were successfully established in earthen pots containing garden soil in greenhouse with 70 % survival rate.  相似文献   
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Abstract

Early detection of tuberculosis (TB) reduces the interval between infection and the beginning of treatment. However, commercially available tests cannot discriminate between BCG-vaccinated healthy persons and patients. Also, they are not suitable to be used for immunocompromised persons. In recent years, biosensors have attracted great attention due to their simple utility, accessibility, and real-time outputs. These sensors are increasingly being considered as pioneering tools for point-of-care diagnostics in communities with a high burden of TB and limited accessibility to reference laboratories. Among other types of biosensors, the electrochemical sensors have the advantages of low-cost operation, fast processing, simultaneous multi-analyte analyzing, operating with turbid samples, comparable sensitivity and readily available miniaturization. Electrochemical biosensors are sub-divided into several categories including: amperometric, impedimetric, potentiometric, and conductometric biosensors. The biorecognition element in electrochemical biosensors is usually based on antibodies (immunosensors), DNAs or PNAs (genosensors), and aptamers (aptasensors). In either case, whether an interaction of the antigen–antibody/aptamer or the hybridization of probe with target mycobacterial DNA is detected, a change in the electrical current occurs that is recorded and displayed as a plot. Therefore, impedimetric-based methods evaluate resistance to electron transfer toward an electrode by a Nyquist plot and amperometric/voltammetric-based methods weigh the electrical current by means of cyclic voltammetry, square wave voltammetry, and differential pulse voltammetry. Electrochemical biosensors provide a promising scope for the new era of diagnostics. As a consequence, they can improve detection of Mycobacterium tuberculosis traces even in attomolar scales.  相似文献   
46.
A comparative study on the efficacy of powder and oil extracts from leaves and seed kernels of Azadirachta indica Juss. and Eucalyptus camaldulensis Dehn. against the seed weevil Caryedon serratus Olivier infesting seeds of Acacia seyal Del. was carried out. EO 1, EO 5 and NSKO5% were comparable to BHC 3% in significantly reducing egg laying by C. serratus. With the exception of ELP and NLP, all botanicals significantly reduced egg hatching. Botanicals significantly reduced larval development with the exception of ELP and NLP. EO and NSKO at 3 and 5% were significantly more effective than BHC in reducing larval development by 95–97%. All botanicals had no significant effect on adult emergence which was only affected by BHC. Botanicals caused 4.3–43% mortality of C. serratus adults and the maximum mortality occurred in EO 3% as compared to BHC. It is apparent that oils extracted from E. camaldulensis had a fumigant and knock down effect on adult C. serratus. Extracted oils were more effective than leaf or seed powder. Oils extracted from leaves of E. camaldulensis were volatile and had a knock down effect on adult C. serratus indicating the possibility of using them as alternative fumigants in seed stores.  相似文献   
47.
The present study was carried out at Al Semih (western Sudan) (13° 14′ N: 30° 27′ E: Alt. 550 m). The area is part of the gum arabic belt which is heavily populated with farmers who practice shifting cultivation and/or agroforestry where Acacia senegal L. Willd (the main gum arabic producing tree) is dominant. The tree locust (Anacridium melanorhodon melanorhodon Walker (Orthoptera, Acrididae) is a serious pest of A. senegal. Farmers practice agroforestry within the gum belt where they cultivate their crops e.g. millet, groundnut, sesame and sorghum between A. senegal trees. Gum Arabic is an important source of revenue for farmers. Chemical pesticides have been used to control the tree locust. Although the gum belt (where A. senegal grows) is heavily populated, pesticides are used to control the tree locust in the area. The present study was undertaken with the objective of using alternative environmentally safe pesticides. Several doses of neem seed kernel crude oil (NSKO) were tested against the 4th, 5th, 6th instars and the mature tree locust (A. melanorhodon melanorhodon) in a completely randomized block design. Experiments were carried out in cages placed on part of the gum arabic belt. NSKO at high doses (5 and 10% v/v) significantly reduced feeding, moulting and ovipositing of the tree locust and significantly increased the mortality of all developmental stages tested. However, low doses of NSKO had no significant effect on the tree locust.  相似文献   
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Brain networks exhibit very variable and dynamical functional connectivity and flexible configurations of information exchange despite their overall fixed structure. Brain oscillations are hypothesized to underlie time-dependent functional connectivity by periodically changing the excitability of neural populations. In this paper, we investigate the role of the connection delay and the detuning between the natural frequencies of neural populations in the transmission of signals. Based on numerical simulations and analytical arguments, we show that the amount of information transfer between two oscillating neural populations could be determined by their connection delay and the mismatch in their oscillation frequencies. Our results highlight the role of the collective phase response curve of the oscillating neural populations for the efficacy of signal transmission and the quality of the information transfer in brain networks.  相似文献   
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