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Antimicrobial Characteristics of Heated Eggshell Powder

机译:蛋壳粉加热的抗菌特性

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Eggshells have high bioavailability and can be used as a source of calcium. The main component is CaCO_(3), which, when heated, is converted to CaO. Seashells are also mainly composed of CaCO_(3) and were previously found to exhibit antimicrobial activity after being heated. In this study, heated eggshell powder (HESP) was found to have antimicrobial activity against bacterial vegetative cells, fungi and bacterial spores. Parameters, such as the minimum inhibitory concentration, were determined with kinetic analysis using an indirect conductimetric assay. Moreover, HESP was able to kill the Bacillus subtilis spores. There were no significant differences in the activity between HESP, heated scallop-shell powder and pure CaO. The MIC values for HESP against bacteria and fungi were 0.29-0.43 and 1.3-1.5 mg/mL, respectively. Against B. subtilis spores, a reduction of two orders of magnitude of viability was confirmed following 20 min of treatment at 10 mg/mL at 60 ℃. The active oxygen generated from the HESP slurry was examined with chemiluminescence. The intensity of this increased with increasing concentrations of the HESP slurry. This suggests that HESP could be used as a natural antimicrobial agent. Although a high pH is the main contributor to this antimicrobial activity, active oxygen species generated from HESP are likely to be the main antimicrobial agents..
机译:蛋壳具有高生物利用度,可以用作钙的来源。主要成分为CaCO_(3),加热后将其转化为CaO。贝壳也主要由CaCO_(3)组成,先前发现加热后会表现出抗菌活性。在这项研究中,发现加热的蛋壳粉(HESP)对细菌营养细胞,真菌和细菌孢子具有抗菌活性。使用间接电导测定法通过动力学分析确定参数,例如最小抑制浓度。而且,HESP能够杀死枯草芽孢杆菌的孢子。 HESP,加热的扇贝壳粉和纯CaO之间的活性没有显着差异。 HESP对细菌和真菌的MIC值分别为0.29-0.43和1.3-1.5 mg / mL。针对 B。在60℃10 mg / mL处理20分钟后,确认枯草芽孢孢子活力降低了两个数量级。用化学发光法检查从HESP浆液产生的活性氧。其强度随着HESP浆液浓度的增加而增加。这表明HESP可以用作天然抗菌剂。尽管高pH值是导致这种抗菌活性的主要因素,但从HESP产生的活性氧很可能是主要的抗菌剂。

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