Cancer Screening by Systemic Administration of a Gene Delivery Vector Encoding Tumor-Selective Secretable Biomarker Expression

被引:6
|
作者
Browne, Andrew W. [1 ,5 ,6 ]
Leddon, Jennifer L. [1 ,5 ]
Currier, Mark A. [1 ]
Williams, Jon P. [2 ]
Frischer, Jason S. [3 ]
Collins, Margaret H. [4 ]
Ahn, Chong H. [6 ]
Cripe, Timothy P. [1 ,2 ]
机构
[1] Cincinnati Childrens Hosp Med Ctr, Div Oncol, Cincinnati, OH USA
[2] Cincinnati Childrens Hosp Med Ctr, Div Expt Hematol, Cincinnati, OH USA
[3] Cincinnati Childrens Hosp Med Ctr, Div Surg, Cincinnati, OH USA
[4] Cincinnati Childrens Hosp Med Ctr, Div Pathol, Cincinnati, OH USA
[5] Univ Cincinnati, Coll Med, Phys Scientist Training Program, Cincinnati, OH USA
[6] Univ Cincinnati, Dept Elect & Comp Engn, Cincinnati, OH 45221 USA
来源
PLOS ONE | 2011年 / 6卷 / 05期
关键词
VIRUS; EFFICACY; PROTEIN; NANOPARTICLES; PERMEABILITY; PERSISTENCE; LUCIFERASE; PROMOTER; MARKERS; GROWTH;
D O I
10.1371/journal.pone.0019530
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Cancer biomarkers facilitate screening and early detection but are known for only a few cancer types. We demonstrated the principle of inducing tumors to secrete a serum biomarker using a systemically administered gene delivery vector that targets tumors for selective expression of an engineered cassette. We exploited tumor-selective replication of a conditionally replicative Herpes simplex virus (HSV) combined with a replication-dependent late viral promoter to achieve tumor-selective biomarker expression as an example gene delivery vector. Virus replication, cytotoxicity and biomarker production were low in quiescent normal human foreskin keratinocytes and high in cancer cells in vitro. Following intravenous injection of virus >90% of tumor-bearing mice exhibited higher levels of biomarker than non-tumor-bearing mice and upon necropsy, we detected virus exclusively in tumors. Our strategy of forcing tumors to secrete a serum biomarker could be useful for cancer screening in high-risk patients, and possibly for monitoring response to therapy. In addition, because oncolytic vectors for tumor specific gene delivery are cytotoxic, they may supplement our screening strategy as a "theragnostic'' agent. The cancer screening approach presented in this work introduces a paradigm shift in the utility of gene delivery which we foresee being improved by alternative vectors targeting gene delivery and expression to tumors. Refining this approach will usher a new era for clinical cancer screening that may be implemented in the developed and undeveloped world.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Tumor amplified protein expression therapy:: Salmonella as a tumor-selective protein delivery vector
    Zheng, LM
    Luo, X
    Feng, M
    Li, ZJ
    Le, T
    Ittensohn, M
    Trailsmith, M
    Bermudes, D
    Lin, SL
    King, IC
    ONCOLOGY RESEARCH, 2000, 12 (03) : 127 - 135
  • [2] Tumor-selective gene expression in a hepatic metastasis model after locoregional delivery of a replication-competent retrovirus vector
    Hiraoka, Kei
    Kimura, Takahiro
    Logg, Christopher R.
    Kasahara, Noriyuki
    CLINICAL CANCER RESEARCH, 2006, 12 (23) : 7108 - 7116
  • [3] Tumor-selective transcriptional targeting for cancer gene therapy
    Lemoine, N
    CANCER GENE THERAPY, 2001, 8 (09) : 691 - 691
  • [4] Tumor-selective transcriptional targeting for cancer gene therapy
    Lemoine, N
    CANCER GENE THERAPY, 2000, 7 (08) : 1207 - 1208
  • [5] Long-circulating polymeric nanovectors for tumor-selective gene delivery
    Kommareddy, S
    Tiwari, SB
    Amiji, MM
    TECHNOLOGY IN CANCER RESEARCH & TREATMENT, 2005, 4 (06) : 615 - 625
  • [6] In vivo cytotoxicity of ovarian cancer cells through tumor-selective expression of the BAX gene
    Tai, YT
    Strobel, T
    Kufe, D
    Cannistra, SA
    CANCER RESEARCH, 1999, 59 (09) : 2121 - 2126
  • [7] Image-Guided Tumor-Selective Radioiodine Therapy of Liver Cancer After Systemic Nonviral Delivery of the Sodium Iodide Symporter Gene
    Klutz, Kathrin
    Willhauck, Michael J.
    Dohmen, Christian
    Wunderlich, Nathalie
    Knoop, Kerstin
    Zach, Christian
    Senekowitsch-Schmidtke, Reingard
    Gildehaus, Franz-Josef
    Ziegler, Sibylle
    Fuerst, Sebastian
    Goeke, Burkhard
    Wagner, Ernst
    Ogris, Manfred
    Spitzweg, Christine
    HUMAN GENE THERAPY, 2011, 22 (12) : 1563 - 1574
  • [8] Tissue-specific, tumor-selective, replication-competent adenovirus vector for cancer gene therapy
    Doronin, K
    Kuppuswamy, M
    Toth, K
    Tollefson, AE
    Krajcsi, P
    Krougliak, V
    Wold, WSM
    JOURNAL OF VIROLOGY, 2001, 75 (07) : 3314 - 3324
  • [9] Antiangiogenic gene therapy for cancer via systemic administration of adenoviral vectors expressing secretable endostatin
    Chen, CT
    Lin, J
    Li, Q
    Phipps, SS
    Jakubczak, JL
    Stewart, DA
    Skripchenko, Y
    Forry-Schaudies, S
    Wood, J
    Schnell, C
    Hallenbeck, PL
    HUMAN GENE THERAPY, 2000, 11 (14) : 1983 - 1996
  • [10] Tumor-Selective Gene Circuits Enable Highly Specific Localized Cancer Immunotherapy
    Wu, Ming-Ru
    Nissim, Lior
    Pery, Erez
    Tabach, Yuval
    Sharp, Philip A.
    Stupp, Doron
    Binder-Nissim, Adina
    Weisinger, Karen
    Enghuus, Casper
    Palacios, Sebastian R.
    Humphrey, Melissa
    Zhang, Zhizhuo
    Novoa, Eva Maria
    Kellis, Manolis
    Weiss, Ron
    Rabkin, Samuel D.
    Wong, Remus S.
    Gordley, Russell M.
    Lu, Timothy K.
    MOLECULAR THERAPY, 2020, 28 (04) : 9 - 9