Departamento de Tecnologia (DTEC), Curso de Engenharia de Alimentos, Universidade Estadual de Feira de Santana (UEFS), Feira de Santana, BA, Brazil.
J Phys Chem B. 2012 Dec 27;116(51):14817-28. doi: 10.1021/jp310219k. Epub 2012 Dec 14.
Virus dissociation and inactivation by high pressure have been extensively studied in recent decades. Pressure-induced dissociation of viral particles involves a reduction in the Gibbs free energy of dissociation and a negative change in volume. In this work, we investigated the combined effect of high pressure and temperature on the dissociation of tobacco mosaic virus (TMV). We assumed the presence of two states of TMV with different tendencies to dissociate. Thus one form presents a low tendency (L) and the other a high tendency (H) to dissociate. Based on the model described here, the L-H transition was favored by an increase in pressure and a decrease in temperature. The volume change of dissociation was pressure- and temperature-dependent, with a highly negative value of -80 mL/mol being recorded at 0 °C and atmospheric pressure. The entropy and enthalpy of dissociation were very temperature- and pressure-dependent, with values of entropy of 450 to -1300 kJ/mol and values of enthalpy of 5.5 × 10(4) to 2.4 × 10(4) kJ/mol. The dissociation of TMV was enthalpy-driven at all temperatures and pressures investigated. Based on these findings, we conclude that the model presented allows accurate predictions of viral dissociation behavior in different experimental conditions.
近几十年来,人们广泛研究了高压对病毒的解离和失活作用。压力诱导病毒颗粒的解离涉及解离吉布斯自由能的降低和体积的负变化。在这项工作中,我们研究了高压和温度对烟草花叶病毒(TMV)解离的综合影响。我们假设 TMV 存在两种具有不同解离趋势的状态。因此,一种形式表现出低解离倾向(L),另一种形式表现出高解离倾向(H)。基于这里描述的模型,L-H 转变受到压力增加和温度降低的促进。解离的体积变化取决于压力和温度,在 0°C 和常压下记录到非常负的值-80 mL/mol。解离的熵和焓非常依赖于温度和压力,熵值为 450 至-1300 kJ/mol,焓值为 5.5×10(4)至 2.4×10(4) kJ/mol。在所有研究的温度和压力下,TMV 的解离都是由焓驱动的。基于这些发现,我们得出结论,所提出的模型可以准确预测不同实验条件下病毒的解离行为。