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Background: Analysis of the bones and bone fragments of the cranium may be a useful tool for sex diagnosis in the identification of human remains which have been exposed to adverse conditions. The object of the present study was to evaluate sex prediction through metric and non-metric analysis of the hard palate (HP) and the pyriform aperture (PA), using macerated skulls of adult individuals. Materials and methods: We analysed 312 dry skulls of adult individuals of both sexes, studying the metric and non-metric characteristics of the HP and PA. The accuracy, sensitivity, specificity and positive and negative predictive values were evaluated. A binary logistic regression and a linear regression were performed. The receiver operating characteristic curve was constructed to analyse the performance of sex diagnosis. Measurements of the HP and the PA were analysed by ANOVA and Tukey’s test. The SPSS v. 20.0 software was used, with a significance threshold of 5%. Results: The shape of the PA presented 61.9% accuracy, 54.4% sensitivity and 65.7% specificity. The shape of the HP presented 51.5% accuracy, 65.6% sensitivity and 44.7% specificity. Only the height of the PA functioned as a good predictor of sex. Conclusions: The height of the PA produced good diagnostic performance (area under curve = 0.764). The height of the PA was the most reliable indicator for sex prediction, and could be used by forensic scientists to identify sex. (Folia Morphol 2019; 78, 1: 137–144)
Gas Chromatography coupled with mass spectrometry was applied to study the fragmentation of selected flavonoids from the ethanolic extract of Smilax domingensis Willd., Smilacaceae, known as zarzaparrilla, after Soxhlet extraction during 20 hours. Compounds belonging to one of the major subgroups found in common plants, i.e. flavanols were studied. Following solvent extraction and derivatization using BSTFA, possibly two different metabolites from the same chemical group were characterized in one analytical run: (+)-catechin and (-)-epicatechin. For the very first time, qualitative data on these analytes in the drug were determined after detailed validation of a sensitive, cheap and reliable GC-MS method.
Talipariti elatum (Sw.) Malvaceae, also known as Blue Mahoe or Mountain Mahoe, commonly named as Majagua azul or Majagua, with red or crimson flowers, is a medicinal tree traditionally used against cough, asthma, catarrh, and expectorant. Its flowers contain a lot different chemical compounds, mainly flavonoids. From red petals of the flowers a flavonol glucoside was isolated and characterized by TLC, UV, IR, HPLC-MS/MS and NMR spectroscopy. Structure analyses of that chemical component revealed that It have the identical glucoside moiety attached to a flavonol skeleton like gossypitrin (gossypetin-7-O--glucoside) but in different position for which the structure of gossypetin 3’-Oglucoside was deduced from HSQC, HMBC, COSY and NOESY correlations.
Hohenbergia penduliflora (A. Rich.) Mez. inhabits the protected ecological area of Cunagua Highland, Ciego de Ávila, Cuba. The availability of this plant for experimental purposes is exceedingly limited. Tissue cultured plants of this specie, would be useful for propagation purposes. Experiments were carried out to optimize the micropropagation process from the disinfection of fruits to ex vitro hardening of regenerated plantlets. The best results were obtained when seeds were disinfected with 2 % (v:v) sodium hypochlorite for 20 min and placed in vitro for 45 days for seed germination. Tissue cultured shoots (1 cm) with vertical wounds in the basal region (5 mm long) were placed in a medium containing Murashige and Skoog (MS) salts, 100 mg l-1 myo-inositol, 0.1 mg l-1 thiamine-HCl, 30 g l-1 sucrose, 8.8 lM 6-benzyladenine (BA) and 1.6 μM naphthalene acetic acid (NAA). Shoots were proliferated for 45 days to obtain 8.21 new shoots per explant; they were subsequently divided and rooted on a medium containing 1.6 μM NAA for 30 days. For ex vitro hardening, plastic trays containing 82 cm3 of filter-cake-sugarcane ashes were used; 100 % survival rate was recorded. After 6 months of hardening, plants were established ex vitro and ready for protease extraction. Comparisons between protein contents, proteolytic activities and specific proteolytic activities of extracts from stems of macro- and micropropagated plants were acquired. Tissue cultured stems showed statistically lower figures which is why Ethrel was tested here to increase proteolytic activity in micropropagated plant stems. After Ethrel applications, protein contents, proteolytic activities and specific proteolytic activities of extracts from stems were the three main indicators recorded. However, other biochemical effects of Ethrel were also evaluated, such as, levels of chlorophyll pigments, malondialdehyde and other aldehydes; and superoxide dismutase, and guaiacol peroxidase activities. Rising concentrations of Ethrel (0, 1.5, 3.0, 4.5 and 6.0 mg l-1) decreased protein contents at 72 h but increased proteolytic and specific proteolytic activities of stem extracts. Ethrel was effective in increasing proteolytic activity in in vitro culture-derived plant stems, at a level higher than in fieldgrown plant stems. Moreover, Ethrel increased superoxide dismutase and guaiacol peroxidase-specific activities in leaves; and decreased chlorophyll pigments. Ethrel did not affect levels of malondialdehyde and other aldehydes.
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