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991.
This study was designed for investigating the effect of Asparagus racemosus (AR) extract and chitosan (CTN) in facilitating the permeation of carvedilol (CDL) across rat epidermis. Transdermal flux
of carvedilol through heat-separated rat epidermis was investigated in vitro using vertical Keshary–Chien diffusion cells. Biophysical and microscopic manifestations of epidermis treated with AR extract,
CTN, and AR extract–CTN mixture were investigated by using differential scanning calorimetry, transepidermal water loss, scanning
electron microscopy (SEM), and transmission electron microscopy (TEM). Biochemical estimations of cholesterol, sphingosine,
and triglycerides were carried out for treated excised as well as viable rat epidermis. The antihypertensive activity of the
patches in comparison with that of oral carvedilol was studied in deoxycorticosterone acetate-induced hypertensive rats. The
permeation of carvedilol across excised rat epidermis was significantly higher (p < 0.05) when AR extract, CTN, or AR extract–CTN mixture was used as donor vehicle as compared to propylene glycol/ethanol
(7:3) mixture. Epidermis obtained after 12 h treatment of viable rat skin with AR extract–CTN mixture showed significantly
higher (p < 0.05) permeability to CDL as compared to that after treatment with AR extract or CTN alone. Further, the application of
patches containing AR extract–CTN mixture resulted in sustained release of CDL which was able to control the hypertension
in deoxycorticosterone acetate-induced hypertensive rats through 36 h. Estimation of micro constituents in rat epidermis revealed
maximum extraction of cholesterol, sphingosine, and triglycerides after treatment with AR extract–CTN mixture. This was manifested
in altered lipid and protein-specific thermotropic transitions. Further, increase in intercellular space, disordered lipid
structure, and corneocyte detachment as observed in SEM and TEM suggested great potential of AR extract for use as percutaneous
permeation enhancer. The developed transdermal patches of CDL containing AR extract–CTN mixture exhibited better performance
as compared to oral administration in controlling hypertension in rats. 相似文献
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G W Nowell 《American journal of physical anthropology》1978,49(2):271-276
The Miles system of ageing, based upon analysis of the rate of molar wear, was evaluated using the available dental sample from Tepe Hissar, Iran. The independently estimated ages for the mandibles and maxillae of the same individuals were found to be highly correlated (r = 0.87, p less than 0.001). Ages of a subsample of the dentitions were compared with skeletal ages for the same individuals estimated from pubic symphyseal faces and found to be significantly correlated (r = 0.82, p less than 0.005) with no significant differences in the mean ages. Although a complete evaluation of the Miles method would require its testing on a controlled population, the available dental sample from Tepe Hissar provided evidence of the reliability and validity of the Miles method of ageing archeological populations on the basis of dental wear. Due to selective retention of burial remains, the available skeletal sample from Tepe Hissar I-III is not representative of the human populations of the site and can not be used to generate meaningful demographic statistics. 相似文献
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Jun-Mo Nam 《Biometrical journal. Biometrische Zeitschrift》1995,37(3):375-379
The interval estimation of the ratio of two binomial proportions based on the score statistic is superior over other methods. Iterative algorithms for calculating the approximate confidence interval have been provided by, e.g., KOOPMAN (1984, Biometrics 40:513–517) and GART and NAM (1988a, Biometrics 44:323–338). This note presents the analytical solutions for upper and lower confidence limits in a closed form and gives examples for numerical illustration. The non-iterative method is generally more desirable than the iterative method. 相似文献
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The analysis of diallel crosses by including the components due to maternal effect and maternal interaction effects have been presented for Griffing method—1 (random effect model) and Griffing method—3 (fixed and random effect model). Wherever exact test of significance is not possible, testing procedure using Satterthwaite (1946) approximation has been presented. 相似文献