Gene transfer into human leukemia cell lines by electroporation: experience with exponentially decaying and square wave pulse.

Abstract:

:The efficiency of gene transfer into human leukemia cell lines by electroporation was investigated. For both transient expression (beta-galactosidase gene) and stable transformation (neomycin resistance gene), the transfer efficiency into leukemia cell lines using a square wave pulse was superior to that using an exponentially decaying wave. The transfer rate of pMoZtk (containing beta-galactosidase gene) into K562 by electroporation using a square wave was approximately 5%, compared with 1% by an exponentially decaying pulse. Whereas the transfer rate of pMAM-neo into K562 by electroporation using an exponentially decaying pulse was less than 10(-5), a square wave generated much more efficient introduction rate of nearly 10(-3). In the other leukemia cell lines also, some square wave yields were better than exponential yields and all square wave yields were at least as good as the exponential yields.

journal_name

Leuk Res

journal_title

Leukemia research

authors

Takahashi M,Furukawa T,Saitoh H,Aoki A,Koike T,Moriyama Y,Shibata A

doi

10.1016/0145-2126(91)90062-x

subject

Has Abstract

pub_date

1991-01-01 00:00:00

pages

507-13

issue

6

eissn

0145-2126

issn

1873-5835

journal_volume

15

pub_type

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