Suppr超能文献

脉冲电场处理用非致死场强改变细菌孢子的特性。

Pulsed Electric Field Treatments with Nonlethal Field Strength Alter the Properties of Bacterial Spores.

机构信息

Department of Electronic Engineering, The Chinese University of Hong Kong, Hong Kong 999077, People's Republic of China.

Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Kong 999077, People's Republic of China.

出版信息

J Food Prot. 2022 Jul 1;85(7):1053-1060. doi: 10.4315/JFP-21-447.

Abstract

ABSTRACT

Pulsed electric field (PEF) treatment, an alternative to thermal processing in the food industry, is insufficient to inactivate bacterial spores. Although spores that have been treated in this manner remain alive, specific understanding of their physiological properties is limited. The purpose of this study is to describe the morphology, viability, and germination behavior of Bacillus atrophaeus spores treated with PEF. Our findings indicate that nonlethal PEF treatment results in spore deformation, dipicolinic acid (DPA) leakage, and a shorter and more uniform germination lag time ((\def\upalpha{\unicode[Times]{x3B1}})(\def\upbeta{\unicode[Times]{x3B2}})(\def\upgamma{\unicode[Times]{x3B3}})(\def\updelta{\unicode[Times]{x3B4}})(\def\upvarepsilon{\unicode[Times]{x3B5}})(\def\upzeta{\unicode[Times]{x3B6}})(\def\upeta{\unicode[Times]{x3B7}})(\def\uptheta{\unicode[Times]{x3B8}})(\def\upiota{\unicode[Times]{x3B9}})(\def\upkappa{\unicode[Times]{x3BA}})(\def\uplambda{\unicode[Times]{x3BB}})(\def\upmu{\unicode[Times]{x3BC}})(\def\upnu{\unicode[Times]{x3BD}})(\def\upxi{\unicode[Times]{x3BE}})(\def\upomicron{\unicode[Times]{x3BF}})(\def\uppi{\unicode[Times]{x3C0}})(\def\uprho{\unicode[Times]{x3C1}})(\def\upsigma{\unicode[Times]{x3C3}})(\def\uptau{\unicode[Times]{x3C4}})(\def\upupsilon{\unicode[Times]{x3C5}})(\def\upphi{\unicode[Times]{x3C6}})(\def\upchi{\unicode[Times]{x3C7}})(\def\uppsy{\unicode[Times]{x3C8}})(\def\upomega{\unicode[Times]{x3C9}})(\def\bialpha{\boldsymbol{\alpha}})(\def\bibeta{\boldsymbol{\beta}})(\def\bigamma{\boldsymbol{\gamma}})(\def\bidelta{\boldsymbol{\delta}})(\def\bivarepsilon{\boldsymbol{\varepsilon}})(\def\bizeta{\boldsymbol{\zeta}})(\def\bieta{\boldsymbol{\eta}})(\def\bitheta{\boldsymbol{\theta}})(\def\biiota{\boldsymbol{\iota}})(\def\bikappa{\boldsymbol{\kappa}})(\def\bilambda{\boldsymbol{\lambda}})(\def\bimu{\boldsymbol{\mu}})(\def\binu{\boldsymbol{\nu}})(\def\bixi{\boldsymbol{\xi}})(\def\biomicron{\boldsymbol{\micron}})(\def\bipi{\boldsymbol{\pi}})(\def\birho{\boldsymbol{\rho}})(\def\bisigma{\boldsymbol{\sigma}})(\def\bitau{\boldsymbol{\tau}})(\def\biupsilon{\boldsymbol{\upsilon}})(\def\biphi{\boldsymbol{\phi}})(\def\bichi{\boldsymbol{\chi}})(\def\bipsy{\boldsymbol{\psy}})(\def\biomega{\boldsymbol{\omega}})(\def\bupalpha{\bf{\alpha}})(\def\bupbeta{\bf{\beta}})(\def\bupgamma{\bf{\gamma}})(\def\bupdelta{\bf{\delta}})(\def\bupvarepsilon{\bf{\varepsilon}})(\def\bupzeta{\bf{\zeta}})(\def\bupeta{\bf{\eta}})(\def\buptheta{\bf{\theta}})(\def\bupiota{\bf{\iota}})(\def\bupkappa{\bf{\kappa}})(\def\buplambda{\bf{\lambda}})(\def\bupmu{\bf{\mu}})(\def\bupnu{\bf{\nu}})(\def\bupxi{\bf{\xi}})(\def\bupomicron{\bf{\micron}})(\def\buppi{\bf{\pi}})(\def\buprho{\bf{\rho}})(\def\bupsigma{\bf{\sigma}})(\def\buptau{\bf{\tau}})(\def\bupupsilon{\bf{\upsilon}})(\def\bupphi{\bf{\phi}})(\def\bupchi{\bf{\chi}})(\def\buppsy{\bf{\psy}})(\def\bupomega{\bf{\omega}})(\def\bGamma{\bf{\Gamma}})(\def\bDelta{\bf{\Delta}})(\def\bTheta{\bf{\Theta}})(\def\bLambda{\bf{\Lambda}})(\def\bXi{\bf{\Xi}})(\def\bPi{\bf{\Pi}})(\def\bSigma{\bf{\Sigma}})(\def\bPhi{\bf{\Phi}})(\def\bPsi{\bf{\Psi}})(\def\bOmega{\bf{\Omega}})({T_{{\rm{lag}}}})), but that there is no change in release duration ((\Delta {T_{{\rm{release}}}})), germination ratio, or viability. Based on our findings, we conclude that an intact morphologic state and DPA content are not prerequisites for germination and full viability and that, in contrast to nutrient-induced germination in which initially slowly released DPA triggers subsequent germination events, leaked DPA during PEF treatment does not. Spores that have been subjected to this procedure remain dormant and preserve their full germinability. We found that PEF-treated spores respond to germinants more quickly and with less heterogeneity, possibly because the tiny cracks formed on the spore surface facilitate the germinants' access to the germination receptors situated on the spore's inner membrane. The consensus view that nonlethal PEF has less impact on spores that are still capable of forming CFUs under proper conditions is one-sided. This research advances our understanding of how spores behave following nonlethal PEF treatment and gives information on the topics of nosocomial sterilization, food safety, and public health.

摘要

摘要

脉冲电场(PEF)处理是食品工业中替代热处理的一种方法,但不足以使细菌孢子失活。虽然经过这种方式处理的孢子仍然存活,但对其生理特性的具体了解有限。本研究旨在描述经过 PEF 处理的萎缩芽孢杆菌孢子的形态、活力和发芽行为。我们的研究结果表明,非致死性 PEF 处理会导致孢子变形、二吡啶羧酸(DPA)泄漏以及更短且更均匀的发芽延迟时间((\def\upalpha{\unicode[Times]{x3B1}})(\def\upbeta{\unicode[Times]{x3B2}})(\def\upgamma{\unicode[Times]{x3B3}})(\def\updelta{\unicode[Times]{x3B4}})(\def\upvarepsilon{\unicode[Times]{x3B5}})(\def\upzeta{\unicode[Times]{x3B6}})(\def\upeta{\unicode[Times]{x3B7}})(\def\uptheta{\unicode[Times]{x3B8}})(\def\upiota{\unicode[Times]{x3B9}})(\def\upkappa{\unicode[Times]{x3BA}})(\def\uplambda{\unicode[Times]{x3BB}})(\def\upmu{\unicode[Times]{x3BC}})(\def\upnu{\unicode[Times]{x3BD}})(\def\upxi{\unicode[Times]{x3BE}})(\def\upomicron{\unicode[Times]{x3BF}})(\def\uppi{\unicode[Times]{x3C0}})(\def\uprho{\unicode[Times]{x3C1}})(\def\upsigma{\unicode[Times]{x3C3}})(\def\uptau{\unicode[Times]{x3C4}})(\def\upupsilon{\unicode[Times]{x3C5}})(\def\upphi{\unicode[Times]{x3C6}})(\def\upchi{\unicode[Times]{x3C7}})(\def\uppsy{\unicode[Times]{x3C8}})(\def\upomega{\unicode[Times]{x3C9}})(\def\bialpha{\boldsymbol{\alpha}})(\def\bibeta{\boldsymbol{\beta}})(\def\bigamma{\boldsymbol{\gamma}})(\def\bidelta{\boldsymbol{\delta}})(\def\bivarepsilon{\boldsymbol{\varepsilon}})(\def\bizeta{\boldsymbol{\zeta}})(\def\bieta{\boldsymbol{\eta}})(\def\bitheta{\boldsymbol{\theta}})(\def\biiota{\boldsymbol{\iota}})(\def\bikappa{\boldsymbol{\kappa}})(\def\bilambda{\boldsymbol{\lambda}})(\def\bimu{\boldsymbol{\mu}})(\def\binu{\boldsymbol{\nu}})(\def\bixi{\boldsymbol{\xi}})(\def\biomicron{\boldsymbol{\micron}})(\def\bipi{\boldsymbol{\pi}})(\def\birho{\boldsymbol{\rho}})(\def\bisigma{\boldsymbol{\sigma}})(\def\bitau{\boldsymbol{\tau}})(\def\biupsilon{\boldsymbol{\upsilon}})(\def\biphi{\boldsymbol{\phi}})(\def\bichi{\boldsymbol{\chi}})(\def\bipsy{\boldsymbol{\psy}})(\def\biomega{\boldsymbol{\omega}})(\def\bupalpha{\bf{\alpha}})(\def\bupbeta{\bf{\beta}})(\def\bupgamma{\bf{\gamma}})(\def\bupdelta{\bf{\delta}})(\def\bupvarepsilon{\bf{\varepsilon}})(\def\bupzeta{\bf{\zeta}})(\def\bupeta{\bf{\eta}})(\def\buptheta{\bf{\theta}})(\def\bupiota{\bf{\iota}})(\def\bupkappa{\bf{\kappa}})(\def\buplambda{\bf{\lambda}})(\def\bupmu{\bf{\mu}})(\def\bupnu{\bf{\nu}})(\def\bupxi{\bf{\xi}})(\def\bupomicron{\bf{\micron}})(\def\buppi{\bf{\pi}})(\def\buprho{\bf{\rho}})(\def\bupsigma{\bf{\sigma}})(\def\buptau{\bf{\tau}})(\def\bupupsilon{\bf{\upsilon}})(\def\bupphi{\bf{\phi}})(\def\bupchi{\bf{\chi}})(\def\buppsy{\bf{\psy}})(\def\bupomega{\bf{\omega}})(\def\bGamma{\bf{\Gamma}})(\def\bDelta{\bf{\Delta}})(\def\bTheta{\bf{\Theta}})(\def\bLambda{\bf{\Lambda}})(\def\bXi{\bf{\Xi}})(\def\bPi{\bf{\Pi}})(\def\bSigma{\bf{\Sigma}})(\def\bPhi{\bf{\Phi}})(\def\bPsi{\bf{\Psi}})(\def\bOmega{\bf{\Omega}})({T_{{\rm{lag}}}})), but that there is no change in release duration ((\Delta {T_{{\rm{release}}}})), germination ratio, or viability. Based on our findings, we conclude that an intact morphologic state and DPA content are not prerequisites for germination and full viability and that, in contrast to nutrient-induced germination in which initially slowly released DPA triggers subsequent germination events, leaked DPA during PEF treatment does not. Spores that have been subjected to this procedure remain dormant and preserve their full germinability. We found that PEF-treated spores respond to germinants more quickly and with less heterogeneity, possibly because the tiny cracks formed on the spore surface facilitate the germinants' access to the germination receptors situated on the spore's inner membrane. The consensus view that nonlethal PEF has less impact on spores that are still capable of forming CFUs under proper conditions is one-sided. This research advances our understanding of how spores behave following nonlethal PEF treatment and gives information on the topics of nosocomial sterilization, food safety, and public health.

中文译文

摘要

脉冲电场(PEF)处理是食品工业中替代热处理的一种方法,但不足以使细菌孢子失活。虽然经过这种方式处理的孢子仍然存活,但对其生理特性的具体了解有限。本研究旨在描述经过 PEF 处理的萎缩芽孢杆菌孢子的形态、活力和发芽行为。我们的研究结果表明,非致死性 PEF 处理会导致孢子变形、二吡啶羧酸(DPA)泄漏以及更短且更均匀的发芽延迟时间((\def\upalpha{\unicode[Times]{x3B1}})(\def\upbeta{\unicode[Times]{x3B2}})(\def\upgamma{\unicode[Times]{x3B3}})(\def\updelta{\unicode[Times]{x3B4}})(\def\upvarepsilon{\unicode[Times]{x3B5}})(\def\upzeta{\unicode[Times]{x3B6}})(\def\upeta{\unicode[Times]{x3B7}})(\def\uptheta{\unicode[Times]{x3B8}})(\def\upiota{\unicode[Times]{x3B9}})(\def\upkappa{\unicode[Times]{x3BA}})(\def\uplambda{\unicode[Times]{x3BB}})(\def\upmu{\unicode[Times]{x3BC}})(\def\upnu{\unicode[Times]{x3BD}})(\def\upxi{\unicode[Times]{x3BE}})(\def\upomicron{\unicode[Times]{x3BF}})(\def\uppi{\unicode[Times]{x3C0}})(\def\uprho{\unicode[Times]{x3C1}})(\def\upsigma{\unicode[Times]{x3C3}})(\def\uptau{\unicode[Times]{x3C4}})(\def\upupsilon{\unicode[Times]{x3C5}})(\def\upphi{\unicode[Times]{x3C6}})(\def\upchi{\unicode[Times]{x3C7}})(\def\uppsy{\unicode[Times]{x3C8}})(\def\upomega{\unicode[Times]{x3C9}})(\def\bialpha{\boldsymbol{\alpha}})(\def\bibeta{\boldsymbol{\beta}})(\def\bigamma{\boldsymbol{\gamma}})(\def\bidelta{\boldsymbol{\delta}})(\def\bivarepsilon{\boldsymbol{\varepsilon}})(\def\bizeta{\boldsymbol{\zeta}})(\def\bieta{\boldsymbol{\eta}})(\def\bitheta{\boldsymbol{\theta}})(\def\biiota{\boldsymbol{\iota}})(\def\bikappa{\boldsymbol{\kappa}})(\def\bilambda{\boldsymbol{\lambda}})(\def\bimu{\boldsymbol{\mu}})(\def\binu{\boldsymbol{\nu}})(\def\bixi{\boldsymbol{\xi}})(\def\biomicron{\boldsymbol{\micron}})(\def\bipi{\boldsymbol{\pi}})(\def\birho{\boldsymbol{\rho}})(\def\bisigma{\boldsymbol{\sigma}})(\def\bitau{\boldsymbol{\tau}})(\def\biupsilon{\boldsymbol{\upsilon}})(\def\biphi{\boldsymbol{\phi}})(\def\bichi{\boldsymbol{\chi}})(\def\bipsy{\boldsymbol{\psy}})(\def\biomega{\boldsymbol{\omega}})(\def\bupalpha{\bf{\alpha}})(\def\bupbeta{\bf{\beta}})(\def\bupgamma{\bf{\gamma}})(\def\bupdelta{\bf{\delta}})(\def\bupvarepsilon{\bf{\varepsilon}})(\def\bupzeta{\bf{\zeta}})(\def\bupeta{\bf{\eta}})(\def\buptheta{\bf{\theta}})(\def\bupiota{\bf{\iota}})(\def\bupkappa{\bf{\kappa}})(\def\buplambda{\bf{\lambda}})(\def\bupmu{\bf{\mu}})(\def\bupnu{\bf{\nu}})(\def\bupxi{\bf{\xi}})(\def\bupomicron{\bf{\micron}})(\def\buppi{\bf{\pi}})(\def\buprho{\bf{\rho}})(\def\bupsigma{\bf{\sigma}})(\def\buptau{\bf{\tau}})(\def\bupupsilon{\bf{\upsilon}})(\def\bupphi{\bf{\phi}})(\def\bupchi{\bf{\chi}})(\def\buppsy{\bf{\psy}})(\def\bupomega{\bf{\omega}})(\def\bGamma{\bf{\Gamma}})(\def\bDelta{\bf{\Delta}})(\def\bTheta{\bf{\Theta}})(\def\bLambda{\bf{\Lambda}})(\def\bXi{\bf{\Xi}})(\def\bPi{\bf{\Pi}})(\def\bSigma{\bf{\Sigma}})(\def\bPhi{\bf{\Phi}})(\def\bPsi{\bf{\Psi}})(\def\bOmega{\bf{\Omega}})({T_{{\rm{lag}}}})), but that there is no change in release duration ((\Delta {T_{{\rm{release}}}})), germination ratio, or viability. Based on our findings, we conclude that an intact morphologic state and D

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验