Orally administered DNA vaccine delivery by attenuated Salmonella typhimurium targeting fetal liver kinase 1 inhibits murine Lewis lung carcinoma growth and metastasis. 2010

Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
Tumor Institute of Yunnan Province, the Third Affiliated Hospital of Kunming Medical University (Tumor Hospital of Yunnan Province), No. 519 Kunzhou Road, Kunming, Yunnan 650118, P. R. China.

The vascular endothelial growth factor (VEGF) receptor 2 (VEGFR-2), also called fetal liver kinase 1 (FLK1) in mice and kinase insert domain receptor (KDR) in humans, is an endothelial cell specific receptor tyrosine kinase that mediates lung cancer angiogenesis. We hypothesized that an active immunotherapy approach targeting FLK1 may inhibit lung cancer growth and metastasis. To test this hypothesis, we evaluated whether immune responses to FLK1 could be elicited in mice by immunization with an orally administered DNA vaccine encoding the extracellular domain (ECD) of FLK1 (pcDNA3.1-FLK1(ECD)) carried by attenuated Salmonella typhimurium. We found that the vaccine was effective at protective antitumor immunity in Lewis lung carcinoma models in mice by breaking immune tolerance to FLK1 self-antigen. Both FLK1-specific humoral and cellular immune responses against endothelial cells can be induced in mice by immunization with pcDNA3.1-FLK1(ECD). Immunization with pcDNA3.1-FLK1(ECD) resulted in tumor suppression and prolonged survival in mice challenged with Lewis lung carcinomas cells. Experimental pulmonary metastases were strongly inhibited in pcDNA3.1-FLK1(ECD) immunized mice challenged with Lewis lung carcinoma cells. Thus, we conclude that the plasmid DNA vaccine encoding the extracellular domain of FLK1 could be an important component of FLK1 DNA vaccine to prevent lung carcinoma recurrence and metastasis after surgery.

UI MeSH Term Description Entries
D008810 Mice, Inbred C57BL One of the first INBRED MOUSE STRAINS to be sequenced. This strain is commonly used as genetic background for transgenic mouse models. Refractory to many tumors, this strain is also preferred model for studying role of genetic variations in development of diseases. Mice, C57BL,Mouse, C57BL,Mouse, Inbred C57BL,C57BL Mice,C57BL Mice, Inbred,C57BL Mouse,C57BL Mouse, Inbred,Inbred C57BL Mice,Inbred C57BL Mouse
D005260 Female Females
D000284 Administration, Oral The giving of drugs, chemicals, or other substances by mouth. Drug Administration, Oral,Administration, Oral Drug,Oral Administration,Oral Drug Administration,Administrations, Oral,Administrations, Oral Drug,Drug Administrations, Oral,Oral Administrations,Oral Drug Administrations
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001428 Bacterial Vaccines Suspensions of attenuated or killed bacteria administered for the prevention or treatment of infectious bacterial disease. Bacterial Vaccine,Bacterin,Vaccine, Bacterial,Vaccines, Bacterial
D012486 Salmonella typhimurium A serotype of Salmonella enterica that is a frequent agent of Salmonella gastroenteritis in humans. It also causes PARATYPHOID FEVER. Salmonella typhimurium LT2
D014613 Vaccines, Attenuated Live vaccines prepared from microorganisms which have undergone physical adaptation (e.g., by radiation or temperature conditioning) or serial passage in laboratory animal hosts or infected tissue/cell cultures, in order to produce avirulent mutant strains capable of inducing protective immunity. Attenuated Vaccine,Vaccines, Live, Attenuated,Attenuated Vaccines,Vaccine, Attenuated
D016503 Drug Delivery Systems Systems for the delivery of drugs to target sites of pharmacological actions. Technologies employed include those concerning drug preparation, route of administration, site targeting, metabolism, and toxicity. Drug Targeting,Delivery System, Drug,Delivery Systems, Drug,Drug Delivery System,Drug Targetings,System, Drug Delivery,Systems, Drug Delivery,Targeting, Drug,Targetings, Drug
D045744 Cell Line, Tumor A cell line derived from cultured tumor cells. Tumor Cell Line,Cell Lines, Tumor,Line, Tumor Cell,Lines, Tumor Cell,Tumor Cell Lines
D051379 Mice The common name for the genus Mus. Mice, House,Mus,Mus musculus,Mice, Laboratory,Mouse,Mouse, House,Mouse, Laboratory,Mouse, Swiss,Mus domesticus,Mus musculus domesticus,Swiss Mice,House Mice,House Mouse,Laboratory Mice,Laboratory Mouse,Mice, Swiss,Swiss Mouse,domesticus, Mus musculus

Related Publications

Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
February 2016, Tumour biology : the journal of the International Society for Oncodevelopmental Biology and Medicine,
Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
December 2011, Research in veterinary science,
Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
January 2024, AMB Express,
Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
March 2024, AMB Express,
Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
May 2017, Immunobiology,
Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
June 1991, Chemical & pharmaceutical bulletin,
Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
March 2012, Vaccine,
Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
August 2013, Vaccine,
Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
September 2004, Zhonghua shi yan he lin chuang bing du xue za zhi = Zhonghua shiyan he linchuang bingduxue zazhi = Chinese journal of experimental and clinical virology,
Shu Guang Zuo, and Yan Chen, and Zhi Ping Wu, and Xin Liu, and Chun Liu, and Yong Chun Zhou, and Cui Ling Wu, and Cong Guo Jin, and Yu Lan Gu, and Jia Li, and Xiao Qun Chen, and Yong Li, and Hui Ping Wei, and Li Hua Li, and Xi Cai Wang
March 2017, Veterinary microbiology,
Copied contents to your clipboard!