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昆虫细胞分类技术的应用与发展

The application and development of insect cell classification techniques
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摘要 昆虫细胞杆状病毒表达系统作为四大表达系统之一,已经被广泛应用于生物制药领域,作为该表达系统的支撑基础,昆虫细胞开始成为继哺乳动物细胞之后的另一种新型细胞基质,在疫苗及生物技术产品领域得到开发应用。然而,昆虫细胞与哺乳动物细胞在细胞特性等方面存在显著差异,建立适合昆虫细胞特性的质量控制方法已经成为生物制药领域必须要解决的问题。此文仅就昆虫细胞鉴定方法研究进展做一综述,为开发及建立昆虫细胞个性化鉴别方法提供参考。 Baculovirus-insect cell expression system as one of the four major expression systems has been widely used in biopharmaceutical industry. As the basis support of this expression system, insect cells begin to become another new cell matrix after mammalian cells, and are developed and applied in the field of vaccines and biotechnology products. However, there are significant differences between insect cells and mammalian cells in terms of cell characteristics, so establishment of a quality control method suiting characteristics of insect cells has become a problem which must be solved in biopharmaceutics. This article mainly reviews the research progress of insect cell identification methods, and provides reference for the development and establishment of individual identification methods of insect cells.
出处 《国际生物制品学杂志》 CAS 2016年第2期82-86,共5页 International Journal of Biologicals
关键词 昆虫 细胞 基质 分类法 Insects Cells Matrix Classification
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  • 1Deschuyteneer M, Elouahabi A, Plainchamp D, et al. Mole- cular and structural characterization of the L1 virus-like parti- cles that are used as vaccine antigens in CervarixTM, the AS04- adjuvanted HPV-16 and-18 cervical cancer vaccine [J]. Hum Vaccin, 2010, 6(5): 407-419.
  • 2FDA. CervarixTMApproval [EB/OL]. [2015-12-20]. http:// www. fda. gov/downloads/biologicsbloodvaccines/vaccines/ approvedproducts/UCM198333, pdf.
  • 3Kantoff PW, Higano CS, Shore ND, et al. Sipuleucel-T immunotherapy for castration-resistant prostate cancer [J]. NEnglJ Med, 2010, 363(5): 411-422. IX)I: 10. 1056/ NEJMoa1001294.
  • 4Agardh CD, Lynch KF, Palmer M, et al. GAD65 vaccination: 5 years of follow-up in a randomised dose-escalating study in adult-onset autoimmune diabetes[ J ]. Diabetologia, 2009, 52(7).. 1363-1368. IX)I: 10. 1007/s00125-009-1371-2.
  • 5时敏,陆自强,杜予州.中国昆虫细胞分类学研究现状[G]∥李典谟,高增祥.走向21世纪的中国昆虫学--中国昆虫学会2000年学术年会论文集,北京,2000.北京:中国科学技术出版社,2000.
  • 6Palmberger D, Rendi D, Tanber P, et al. Insect cells for anti- body production: evaluation of an efficient alternative [J]. J Biotechnol, 2011, 153(3/4): 160-166. DOI 10. 1016/j. jbio- tec. 2011.02. 009.
  • 7孟子烨,陈晓琴,江世宏,李广京.RAPD技术在昆虫分类学研究中的应用[J].重庆师范大学学报(自然科学版),2009,26(2):33-38. 被引量:5
  • 8胡书能,万贤国.同功酶技术及应用[M].长沙:湖南科技出版社,1985:104-110,166-170.
  • 9包立军,蔡平,陈正凯.生物技术在昆虫分类中的应用[J].淮阴工学院学报,2006,15(3):53-56. 被引量:2
  • 10马春燕,郑哲民.蝽科3亚科9种蝽象酯酶同工酶的比较研究[J].畜牧与饲料科学,2008,29(2):44-46. 被引量:8

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