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61.
It has been demonstrated that the cell lines used for production of biopharmaceuticals are highly susceptible to apoptosis,
and that over-expression of the bcl-2 oncogene can protect cells from death. Stress associated with the deprivation of nutrients
has been shown to be the main cause of apoptosis in culture. We have extended these studies by investigating the mechanism
of cell death under conditions of sub-optimal pH, shear stress and hyperosmolarity, and the protective action of bcl-2 over-expression.
At pH 6, there was no clear evidence of protection from cell death. However, at pH 8, the viability of the bcl-2 transfected
cells was about 20% higher relative to the control cells. Cultivation of control cells in a flat bottomed bioreactor with
a magnetic stirrer bar without a pivot ring resulted in exposure of the cells to a high attrition effect. As a result, cell
growth was retarded and a high level of cell death by apoptosis was observed. Under the same conditions, the bcl-2 transfected
cell line exhibited a nearly five fold increase in viable cell number. This finding indicates that under apoptosis-suppressed
conditions, shear stress can stimulate cell growth. Batch cultivation of both control and bcl-2 transfected cells in 350 and
400 mOsm media resulted in suppression of cell growth, athough the effect was most marked in the control cell line. Adaptation
of control cells to 400 mOsm proved to be impossible to achieve. However, the bcl-2 transfected cells exhibited resistance
to the osmotic stress resulting in long term adaptation to a high salt environment. Specific productivity of bcl-2 transfected
cells grown in high osmolarity medium was 100% higher than that produced by non- adapted bcl-2 transfected cells grown in
normal osmolarity medium. These results demonstrate that bcl-2 has a beneficial effect on hybridoma cultivation under a wide
range of culture stresses.
This revised version was published online in August 2006 with corrections to the Cover Date. 相似文献
62.
The vascular wilt fungus Verticillium dahliae infects the roots of cotton plants and can seriously diminish the yield and quality of this and other dicotyledons. However, the key genes involved in V. dahliae infection and pathogenesis in cotton remain unclear. Msb encodes a transmembrane mucin that is highly conserved in the MAPK signal pathway. Msb has been implicated previously in pathogenicity in various aerial plant fungi. In this study, V. dahliae Msb (VdMsb) was found to be required for fungal virulence and microsclerotia production. Strains lacking VdMsb exhibited reduced conidiation and microsclerotia formation. Compared with wild-type and gene-complemented strains, the invasive growth and adhesive capacity of VdMsb deletion mutants were significantly decreased. These results suggest that VdMsb plays a role in development and virulence in V. dahliae. 相似文献
63.
Unlike the sperm of most teleosts, that of the spotted wolffish Anarhichas minor is motile on stripping, remains motile for at least 2 days and loses motility when exposed to sea water. Computer assisted sperm analysis (CASA) was used to quantitatively examine the motility characteristics of spotted wolffish sperm. Straight line velocity (VSL), beat cross frequency (BCF) and percentage motility were the most sensitive indicators of movement. Sperm trajectories were very different to those of other teleosts examined, showing large side-to-side movements of the sperm head and a more 'wiggly' behaviour which may be an adaptation to swimming in the viscous gelatinous egg mass. VSL was not altered by pH from 5·0 to 9·0, but was lower at pH 4·5. It was highest at 200 to 500 mOsm and decreased rapidly at <200 mOsm and more slowly at >500 mOsm. It is suggested that the unusual characteristics of spotted wolffish sperm in its trajectory and duration of motility, its release in a fully activated state and its greatly decreased motility in both fresh and sea water are related to a spawning strategy involving mixing of sperm with eggs contained in a gelatinous mass rather than release directly into water in proximity to the ova. 相似文献
64.
Kurt J. Sollanek Robert W. Kenefick Neil P. Walsh Matthew B. Fortes Marieh Esmaeelpour Samuel N. Cheuvront 《Journal of thermal biology》2012
Human hydration assessment is a key component for the prevention and proper treatment of heat-related fluid and electrolyte imbalances within military, sports and clinical medicine communities. Despite the availability of many different methods for assessing hydration status, the need for a valid method or technology that is simple, rapid, non-invasive, universal (detects both hypertonic and isotonic hypovolaemia) and is applicable for static (single point in time) and dynamic (change across time) hydration assessment is widely acknowledged. The eye is one candidate body region that might afford such a measure given the intricate balance between ocular dynamics (tear and aqueous humor formation) and blood (plasma osmolality and volume), which is considered the criterion measure for hydration assessment. The aim of this review is to introduce and discuss the potential for using ocular measurements for non-invasive hydration assessment, including tear fluid osmolarity (Tosm), non-invasive tear break-up time (NITBUT) and intraocular pressure (IOP). There is a relevant physiological basis for testing the merit of ocular measures for human hydration assessment and recent data indicate that Tosm and IOP may have utility. Further investigations are warranted to determine the degree to which ocular measures can act as accurate and reliable non-invasive hydration status markers. 相似文献