|本期目录/Table of Contents|

[1]陈丽,倪敏舒,徐悦,等.伪狂犬病毒在BHK-21悬浮细胞中的增殖特性[J].江苏农业科学,2022,50(10):166-170.
 Chen Li,et al.Proliferation characteristics of pseudorabies virus in suspension-cultured BHK-21 cells[J].Jiangsu Agricultural Sciences,2022,50(10):166-170.
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伪狂犬病毒在BHK-21悬浮细胞中的增殖特性(PDF)
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第50卷
期数:
2022年第10期
页码:
166-170
栏目:
畜牧兽医与水产蚕桑
出版日期:
2022-05-20

文章信息/Info

Title:
Proliferation characteristics of pseudorabies virus in suspension-cultured BHK-21 cells
作者:
陈丽123倪敏舒24徐悦2鲍熹2恽君雯2冯磊245郭美锦1
1.华东理工大学生物反应器工程国家重点实验室,上海 200237; 2.江苏省农业科学院动物免疫工程研究所,江苏南京 210014;3.江苏省动物重要疫病与人兽共患病防控协同创新中心,江苏扬州 225009; 4.江苏大学药学院,江苏镇江 212013;5.江苏省食品质量安全重点实验室省部共建国家重点实验室培育基地,江苏南京 210014
Author(s):
Chen Liet al
关键词:
BHK-21细胞伪狂犬病毒悬浮培养细胞代谢特性
Keywords:
-
分类号:
S852.65+5
DOI:
-
文献标志码:
A
摘要:
为考察BHK-21悬浮细胞增殖伪狂犬病毒(Pseudorabies virus,PRV)工艺参数及病毒增殖过程中代谢动力学,将PRV接种于BHK-21悬浮细胞,考察接毒时细胞密度、病毒感染复数(MOI)及收毒时间对病毒效价的影响,测定培养过程中葡萄糖(Gluc)、乳酸(Lac)和谷氨酰胺(Gln)浓度,计算病毒增殖过程中各参数代谢速率。结果显示,将MOI为0.01 的PRV病毒接种BHK-21悬浮细胞,其病毒滴度在42 h达最高8.5 lgTCID50/mL。代谢参数检测结果表明,BHK-21细胞在接毒36 h后细胞开始出现死亡。PRV在BHK-21悬浮细胞中的增殖特性为伪狂犬病毒的规模化培养及疫苗开发提供了技术基础。
Abstract:
-

参考文献/References:

[1]Müller T,Hahn E C,Tottewitz F,et al. Pseudorabies virus in wild swine:a global perspective[J]. Archives of Virology,2011,156(10):1691-1705.
[2]Tan L,Yao J,Yang Y D,et al. Current status and challenge of pseudorabies virus infection in China[J]. Virologica Sinica,2021,36(4):588-607.
[3]Sozzi E,Moreno A,Lelli D,et al. Genomic characterization of pseudorabies virus strains isolated in Italy[J]. Transboundary and Emerging Diseases,2014,61(4):334-340.
[4]Zhou M M,Wu X J,Jiang D D,et al. Characterization of a moderately pathogenic pseudorabies virus variant isolated in China,2014[J]. Infection,Genetics and Evolution,2019,68:161-171.
[5]Vallbracht M,Fuchs W,Klupp B G,et al. Functional relevance of the transmembrane domain and cytoplasmic tail of the pseudorabies virus glycoprotein H for membrane fusion[J]. Journal of Virology,2018,92(12):e00376-18.
[6]Yan K,Liu J E,Guan X A,et al. The carboxyl Terminus of tegument protein pUL21 contributes to pseudorabies virus neuroinvasion[J]. Journal of Virology,2019,93(7):e02052-18.
[7]An T Q,Peng J M,Tian Z J,et al. Pseudorabies virus variant in Bartha-K61-vaccinated pigs,China,2012[J]. Emerging Infectious Diseases,2013,19(11):1749-1755.
[8]Wang J C,Guo R L,Qiao Y F,et al. An inactivated gE-deleted pseudorabies vaccine provides complete clinical protection and reduces virus shedding against challenge by a Chinese pseudorabies variant[J]. BMC Veterinary Research,2016,12(1):277.
[9]Delva J L,Nauwynck H J,Mettenleiter T C,et al. The attenuated pseudorabies virus vaccine strain bartha K61:a brief review on the knowledge gathered during 60 years of research[J]. Pathogens,2020,9(11):897.
[10]Wang G S,Du Y J,Wu J Q,et al. Vaccine resistant pseudorabies virus causes mink infection in China[J]. BMC Veterinary Research,2018,14(1):20.
[11]Nikolay A,Castilho L R,Reichl U,et al. Propagation of Brazilian Zika virus strains in static and suspension cultures using Vero and BHK cells[J]. Vaccine,2018,36(22):3140-3145.
[12]Lv C J,Liu W K,Wang B,et al. Ivermectin inhibits DNA polymerase UL42 of pseudorabies virus entrance into the nucleus and proliferation of the virus in vitro and vivo[J]. Antiviral Research,2018,159:55-62.
[13]陈丽,冯磊,鲍熹,等. 一株幼地仓鼠肾细胞低免疫力细胞株及其构建方法和应用:CN112048478A[P]. 2020-12-08.
[14]Núez E G F,Leme J,de Almeida Parizotto L,et al. Approach toward an efficient inoculum preparation stage for suspension BHK-21 cell culture[J]. Cytotechnology,2016,68(1):95-104.
[15]冯磊,王伟峰,吴培培,等. 生物反应器中PRRSV工业规模增殖工艺的建立[J]. 江苏农业科学,2016,44(2):247-251.
[16]Chen L,Mohsin A,Chu J,et al. Enhanced protein production by sorbitol co-feeding with methanol in recombinant Pichia pastoris strains[J]. Biotechnology and Bioprocess Engineering,2017,22(6):767-773.
[17]冯磊,吴培培,褚轩,等. MDCK单细胞悬浮生长的驯化筛选及其在AIV增殖上的初步应用[J]. 浙江农业学报,2015,27(6):913-920.
[18]Gou H C,Zhao M Q,Yuan J,et al. Metabolic profiles in cell lines infected with classical swine fever virus[J]. Frontiers in Microbiology,2017,8:691.
[19]Nolan R P,Lee K.Dynamic model of CHO cell metabolism[J]. Metabolic Engineering,2011,13(1):108-124.
[20]Bora M,Yousuf R W,Dhar P,et al. An overview of process intensification and thermo stabilization for upscaling of Peste des petits ruminants vaccines in view of global control and eradication[J]. VirusDisease,2018,29(3):285-296.
[21]Wang J C,Song Z C,Ge A M,et al. Safety and immunogenicity of an attenuated Chinese pseudorabies variant by dual deletion of TK&gE genes[J]. BMC Veterinary Research,2018,14(1):287.
[22]陈丽. 多拷贝毕赤酵母重组菌表达PIP生理特性和动力学研究[D]. 上海:华东理工大学,2011.
[23]Martínez-Monge I,Comas P,Triquell J,et al. A new strategy for fed-batch process control of HEK293 cell cultures based on alkali buffer addition monitoring:comparison with O.U.R.dynamic method[J]. Applied Microbiology and Biotechnology,2018,102(24):10469-10483.
[24]Rodriguez A,Escobar S,Gomez E,et al. Behavior of several Pseudomonas putida strains growth under different agitation and oxygen supply conditions[J]. Biotechnology Progress,2018,34(4):900-909.
[25]Maralingannavar V,Parmar D,Pant T,et al. CHO Cells adapted to inorganic phosphate limitation show higher growth and higher pyruvate carboxylase flux in phosphate replete conditions[J]. Biotechnology Progress,2017,33(3):749-758.
[26]Gou H C,Bian Z B,Li Y,et al. Metabolomics exploration of pseudorabies virus reprogramming metabolic profiles of PK-15 cells to enhance viral replication[J]. Frontiers in Cellular and Infection Microbiology,2021,10:599087.
[27]Crémillieux Y,Dumont U,Mazuel L,et al. Online quantification of lactate concentration in microdialysate during cerebral activation using 1 H-MRS and sensitive NMR microcoil[J]. Frontiers in Cellular Neuroscience,2019,13:89.
[28]Kelly W,Veigne S,Li X H,et al. Optimizing performance of semi-continuous cell culture in an ambr15? microbioreactor using dynamic flux balance modeling[J]. Biotechnology Progress,2018,34(2):420-431.
[29]Villaverde A F,Bongard S,Mauch K,et al. Metabolic engineering with multi-objective optimization of kinetic models[J]. Journal of Biotechnology,2016,222:1-8.

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备注/Memo

备注/Memo:
收稿日期:2020-07-13
基金项目:江苏省重点研发计划(编号:BE2020407)。
作者简介:陈丽(1979—),女,河南南阳人,博士研究生,主要从事兽用生物制品研究。E-mail:chenli1128@126.com。
通信作者:郭美锦,博士,教授,主要从事生物过程控制研究。E-mail:guo_mj@ecust.edu.cn;冯磊,博士,副研究员,主要从事兽用生物制品研究。E-mail:fenglei@jaas.ac.cn。
更新日期/Last Update: 2022-05-20