TY - JOUR
T1 - Integrated Method for Purification and Single-Particle Characterization of Lentiviral Vector Systems by Size Exclusion Chromatography and Tunable Resistive Pulse Sensing
AU - Heider, Susanne
AU - Muzard, Julien
AU - Zaruba, Marianne
AU - Metzner, Christoph
N1 - Publisher Copyright:
© 2017, The Author(s).
PY - 2017/7/1
Y1 - 2017/7/1
N2 - Elements derived from lentiviral particles such as viral vectors or virus-like particles are commonly used for biotechnological and biomedical applications, for example in mammalian protein expression, gene delivery or therapy, and vaccine development. Preparations of high purity are necessary in most cases, especially for clinical applications. For purification, a wide range of methods are available, from density gradient centrifugation to affinity chromatography. In this study we have employed size exclusion columns specifically designed for the easy purification of extracellular vesicles including exosomes. In addition to viral marker protein and total protein analysis, a well-established single-particle characterization technology, termed tunable resistive pulse sensing, was employed to analyze fractions of highest particle load and purity and characterize the preparations by size and surface charge/electrophoretic mobility. With this study, we propose an integrated platform combining size exclusion chromatography and tunable resistive pulse sensing for monitoring production and purification of viral particles.
AB - Elements derived from lentiviral particles such as viral vectors or virus-like particles are commonly used for biotechnological and biomedical applications, for example in mammalian protein expression, gene delivery or therapy, and vaccine development. Preparations of high purity are necessary in most cases, especially for clinical applications. For purification, a wide range of methods are available, from density gradient centrifugation to affinity chromatography. In this study we have employed size exclusion columns specifically designed for the easy purification of extracellular vesicles including exosomes. In addition to viral marker protein and total protein analysis, a well-established single-particle characterization technology, termed tunable resistive pulse sensing, was employed to analyze fractions of highest particle load and purity and characterize the preparations by size and surface charge/electrophoretic mobility. With this study, we propose an integrated platform combining size exclusion chromatography and tunable resistive pulse sensing for monitoring production and purification of viral particles.
KW - Extracellular vesicles
KW - Gene therapy
KW - Lentivirus
KW - Single particle analysis
KW - Size exclusion chromatography
KW - Tunable resistive pulse sensing
KW - Vaccine development
KW - Viral vectors
KW - Virus-like particles
UR - http://www.scopus.com/inward/record.url?scp=85020135783&partnerID=8YFLogxK
U2 - 10.1007/s12033-017-0009-8
DO - 10.1007/s12033-017-0009-8
M3 - Article
C2 - 28567687
AN - SCOPUS:85020135783
SN - 1073-6085
VL - 59
SP - 251
EP - 259
JO - Molecular Biotechnology
JF - Molecular Biotechnology
IS - 7
ER -