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1.
An Acad Bras Cienc ; 96(3): e20230073, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38896737

RESUMO

In this study, the Box-Behnken experimental planning was used to optimize the extraction of polysaccharides from the cell wall of Rhizopus microspore var. oligosporus, with analysis of the quantitative effects of parameters pH, temperature and extraction time for polysaccharide yield. The optimal conditions for extraction were determined by the regression equation and evaluation of the response surface graphs, which indicated: pH 13, temperature of 120ºC and time of 60 min, with maximum yield around 18.5%. Fourier transform infrared spectroscopy analysis indicated typical polysaccharide signals. Nuclear magnetic resonance spectroscopy and monosaccharide analysis indicated a ß(1,3) ß(1,6) glucogalactan. The polysaccharide exhibited an average molecular weight of 120 kDa and a polymerization degree of 741. Antioxidant assays in vitro revealed the potential of polysaccharide in elimination of ABTS+ radical and hydroxyl radicals. EC50 values for free radical elimination were 7.69 and 17.8 mg/mL, for ABTS+ and hydroxyls, respectively. The polysaccharides showed potential for α-amylase inhibition with an EC50 of 1.66 mg/mL. The results suggest that ß(1,3) ß(1,6) glucogalactan from Rhizopus microsporus var. oligosporus can be used in biotechnological applications.


Assuntos
Antioxidantes , Rhizopus , alfa-Amilases , Antioxidantes/farmacologia , Antioxidantes/isolamento & purificação , alfa-Amilases/antagonistas & inibidores , Espectroscopia de Infravermelho com Transformada de Fourier , Galactanos/isolamento & purificação , Galactanos/farmacologia , Galactanos/química , Espectroscopia de Ressonância Magnética , Inibidores Enzimáticos/farmacologia , Inibidores Enzimáticos/isolamento & purificação , Concentração de Íons de Hidrogênio
2.
J Appl Physiol (1985) ; 68(5): 2013-8, 1990 May.
Artigo em Inglês | MEDLINE | ID: mdl-2113904

RESUMO

We evaluated the importance of cardiogenic gas mixing in the acini of 13 dogs during 2 min of apnea. 133Xe (1-2 mCi in 4 ml of saline) was injected into an alveolar region through an occluded pulmonary artery branch, and washout was measured by gamma scintillation scanning during continued occlusion or with blood flow reinstated. The monoexponential rate constant for Xe washout (XeW) was -0.4 +/- 0.08 (SE) min-1 at functional residual capacity (FRC) with no blood flow in the injected region. It decreased by more than half at lung volumes 500 ml above and 392 ml below FRC. With intact pulmonary blood flow, XeW was -1.0 +/- 0.08 (SE) min-1 at FRC, and it increased with decreasing lung volume. However, if calculated Xe uptake by the blood was subtracted from the XeW measured with blood flow intact, resulting values at FRC and at FRC + 500 ml were not different from XeW with no blood flow. Reasonable calculation of Xe blood uptake at 392 ml below FRC was not possible because airway closure, increased shunt, and other factors affect XeW. After death, no significant XeW could be measured, which suggests that XeW caused by molecular diffusion was small. We conclude that 1) the effect of heart motion on the lung parenchyma increases acinar gas mixing during apnea, 2) this effect diminishes above or below FRC, and 3) there is probably no direct effect of pulmonary vascular pulsatility on acinar gas mixing.


Assuntos
Apneia/fisiopatologia , Coração/fisiopatologia , Alvéolos Pulmonares/fisiopatologia , Troca Gasosa Pulmonar/fisiologia , Animais , Dióxido de Carbono/sangue , Cães , Medidas de Volume Pulmonar , Oxigênio/sangue , Radioisótopos de Xenônio
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