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STAT1 signaling is associated with acquired crossresistance to doxorubicin and radiation in myeloma cell lines

Fryknäs, Mårten (author)
Uppsala universitet,Institutionen för genetik och patologi
Dhar, Sumeer (author)
Uppsala universitet,Klinisk farmakologi,Rolf Larsson
Öberg, Fredrik (author)
Uppsala universitet,Institutionen för genetik och patologi
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Rickardson, Linda (author)
Uppsala universitet,Klinisk farmakologi,Rolf Larsson
Rydåker, Maria (author)
Uppsala universitet,Klinisk farmakologi
Göransson, Hanna (author)
Uppsala universitet,Klinisk farmakologi
Gustafsson, Mats (author)
Uppsala universitet,Klinisk farmakologi,Rolf Larsson
Pettersson, Ulf (author)
Uppsala universitet,Institutionen för genetik och patologi
Nygren, Peter (author)
Uppsala universitet,Institutionen för onkologi, radiologi och klinisk immunologi
Larsson, Rolf (author)
Uppsala universitet,Klinisk farmakologi,Rolf Larsson
Isaksson, Anders (author)
Uppsala universitet,Institutionen för medicinska vetenskaper
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 (creator_code:org_t)
2006
2007
English.
In: International Journal of Cancer. - : Wiley. - 0020-7136 .- 1097-0215. ; 120:1, s. 189-195
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The myeloma cell line RPMI 8226/S and its doxorubicin resistant subline 8226/Dox40 were used as models to explore the potential importance of the STAT1 signaling pathway in drug and radiation resistance. The 40-fold doxorubicin resistant subline 8226/Dox40 was found to be crossresistant to single doses of 4 and 8 Gy of radiation. A genome-wide mRNA expression study comparing the 8226/Dox40 cell line to its parental line was performed to identify the underlying molecular mechanisms. Seventeen of the top 50 overexpressed genes have previously been implicated in the STAT1 signaling pathway. STAT1 was over expressed both at the mRNA and protein level. Moreover, analyses of nuclear extracts showed higher abundance of phosphorylated STAT1 (Tyr 701) in the resistant subline. Preexposure of the crossresistant cells to the STAT1 inhibiting drug fludarabine reduced expression of overexpressed genes and enhanced the effects of both doxorubicin and radiation. These results show that resistance to doxorubicin and radiation is associated with increased STAT1 signaling and can be modulated by fludarabine. The data support further development of therapies combining fludarabine and radiation.

Keyword

Drug resistance
Microarray
Radiation resistance
STAT1
MEDICINE
MEDICIN

Publication and Content Type

ref (subject category)
art (subject category)

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