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Ecosystem degradation caused by factors such as improper natural resources management and contamination with agricultural, industrial, and domestic wastes often results in the creation of an unhealthy ecosystem, a main cause for the prevailing poverty and poor health in many parts of rural Egypt. In collaboration with members of the community in some villages of El-Fayoum province, an interdisciplinary research team is currently employing an ecosystem approach to arrive at an understanding of community health problems with a view to develop resource management interventions and policies aimed at enhancing community health and well-being. Participatory rural appraisal (PRA) and knowledge, attitudes, and practices (KAP) techniques were used to measure the perceptions of the community’s men and women of their health and environmental priorities, and to test their current state of knowledge and awareness of the health-related issues. The results indicate that these perceptions were gender-sensitive and were different from those of Ministry of Health. Spatial and temporal monitoring and assessment of the ecosystem components revealed considerable land and water resources degradation. Presence of water pools and waterways in the vicinity of the residential areas enhanced the risk of water-associated diseases. Although, the disease-carrying vectors of schistosomiasis and malaria were detected in the waterways, the incidence of the two diseases was relatively low in the main village in contrast to the situation in the nearby hamlets. Prevalence of schistosomiasis was substantially higher in these hamlets (20–30% compared to 2–3% in the main village). Such a highly infected community represents a continuous pool of reinfection of the waterways, an issue that needs to be further examined to determine its relation to the hamlets’ specific ecosystem characteristics. A high incidence of hepatitis C and soil transmitted-intestinal parasites were markedly detected. It is concluded that in addition to natural resources degradation, other potential health risk factors were identified including socioeconomic, cultural, and institutional factors. Further studies are being conducted to explore these potential risk factors and their links to human health and well-being. 相似文献
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Tan Joanne SH Yeo Chia-Rou Popovich David G 《Applied microbiology and biotechnology》2017,101(13):5427-5437
Applied Microbiology and Biotechnology - Ginsenosides are believed to be the principal components behind the pharmacological actions of ginseng, and their bioactive properties are closely related... 相似文献
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While the potential for intermittent hydrostatic pressure to promote cartilaginous matrix synthesis is well established, its potential to influence chondroinduction remains poorly understood. This study examined the effects of relatively short- and long-duration cyclic hydrostatic compression on the chondroinduction of C3H/10T1/2 murine embryonic fibroblasts by recombinant human bone morphogenetic protein-2 (rhBMP-2). Cells were seeded at high density into round bottom wells of a 96-well plate and supplemented with 25 ng/ml rhBMP-2. Experimental cultures were subjected to either 1,800 cycles/day or 7,200 cycles/day of 1 Hz sinusoidal hydrostatic compression to 5 MPa (applied 10 min on/10 min off) for 3 days. Non-pressurized control and experimental cultures were maintained in static culture for an additional 5 days. Cultures were then analyzed for alcian blue staining intensity, DNA and sulfated glycosaminoglycan (sGAG) content, and for the rate of collagen synthesis. Whereas cultures subjected to 1,800 pressure cycles exhibited no significant differences (statistical or qualitative) compared to controls, those subjected to 7,200 cycles stained more intensely with alcian blue, contained nearly twice as much sGAG, and displayed twice the rate of collagen synthesis as non-pressurized controls. This study demonstrates the potential for cyclic hydrostatic compression to stimulate chondrogenic differentiation of the C3H/10T1/2 cell line in a duration-dependent manner. 相似文献
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Khalid M. El-Say Fathy I. Abd-Allah Ahmed E. Lila Abd El-Saboor A. Hassan Alaa Eldin A. Kassem 《Journal of liposome research》2016,26(1):57-68
The purpose of this study was to load diacerein (DCR) in niosomes by applying response surface methodology and incorporate these niosomes in gel base for topical delivery. Box–Behnken design was used to investigate the effect of charge-inducing agent (X1), surfactant HLB (X2) and sonication time (X3) on the vesicle size (Y1), entrapment efficiency (Y2) and cumulative drug released (Y3). DCR niosomal formulations were prepared by thin film hydration method. The optimized formula was incorporated in different gel bases. DCR niosomal gels were evaluated for homogeneity, rheological behavior; in vitro release and pharmacodynamic activity by carrageenan-induced hind paw edema method in the rat compared with DCR commercial gel. The results revealed that the mean vesicle sizes of the prepared niosomes ranged from 7.33 to 23.72?µm and the entrapment efficiency ranged from 9.52% to 58.43% with controlled release pattern over 8?h. DCR niosomal gels exhibited pseudoplastic flow with thixotropic behavior. The pharmacodynamic activity of DCR niosomal gel in 3% HPMC showed significant, 37.66%, maximum inhibition of edema size in comparison with 20.83% for the commercial gel (p?0.05). These results recommended the incorporation of DCR niosomes in 3% HPMC for topical application as a potent anti-inflammatory drug for the treatment of osteoarthritis. 相似文献
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SCA8 RAN polySer protein preferentially accumulates in white matter regions and is regulated by eIF3F
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Hannah K Shorrock Tao Zu Monica Banez‐Coronel Tammy Reid Hirokazu Furuya H Brent Clark Juan C Troncoso Christopher A Ross SH Subramony Tetsuo Ashizawa Eric T Wang Anthony T Yachnis Laura PW Ranum 《The EMBO journal》2018,37(19)
Spinocerebellar ataxia type 8 (SCA8) is caused by a bidirectionally transcribed CTG·CAG expansion that results in the in vivo accumulation of CUG RNA foci, an ATG‐initiated polyGln and a polyAla protein expressed by repeat‐associated non‐ATG (RAN) translation. Although RAN proteins have been reported in a growing number of diseases, the mechanisms and role of RAN translation in disease are poorly understood. We report a novel toxic SCA8 polySer protein which accumulates in white matter (WM) regions as aggregates that increase with age and disease severity. WM regions with polySer aggregates show demyelination and axonal degeneration in SCA8 human and mouse brains. Additionally, knockdown of the eukaryotic translation initiation factor eIF3F in cells reduces steady‐state levels of SCA8 polySer and other RAN proteins. Taken together, these data show polySer and WM abnormalities contribute to SCA8 and identify eIF3F as a novel modulator of RAN protein accumulation. 相似文献