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result(s) for
"Staab, Adrian"
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Small interfering RNA targeting HIF-1α reduces hypoxia-dependent transcription and radiosensitizes hypoxic HT 1080 human fibrosarcoma cells in vitro
by
Fleischer, Markus
,
Said, Harun M.
,
Katzer, Astrid
in
Cell Hypoxia - genetics
,
Cell Line, Tumor
,
Cell Survival - genetics
2011
Background:
Hypoxia inducible factor-1 has been identified as a potential target to overcome hypoxia-induced radioresistance The aim of the present study was to investigate whether selective HIF-1 inhibition via small interfering RNA (siRNA) targeting hypoxia-inducible factor 1α (HIF-1α) affects hypoxia-induced radioresistance in HT 1080 human fibrosarcoma cells.
Material and Methods:
HIF-1α expression in HT 1080 human fibrosarcoma cells in vitro was silenced using HIF-1α siRNA sequence primers. Quantitative real-time polymerase chain reaction assay was performed to quantify the mRNA expression of HIF-1α. HIF-1α protein levels were studied by Western blotting at 20% (air) or after 12 hours at 0.1% O2 (hypoxia). Cells were assayed for clonogenic survival after irradiation with 2, 5, or 10 Gy, under normoxic or hypoxic conditions in the presence of HIF-1α-targeted or control siRNA sequences. A modified oxygen enhancement ratio (OER´) was calculated as the ratio of the doses to achieve the same survival at 0.1% O
2
as at ambient oxygen tensions. OER´ was obtained at cell survival levels of 50%, 37%, and 10%.
Results:
HIF-1α-targeted siRNA enhanced radiation treatment efficacy under severely hypoxic conditions compared to tumor cells treated with scrambled control siRNA. OER was reduced on all survival levels after treatment with HIF-1α-targeted siRNA, suggesting that inhibition of HIF-1 activation by using HIF-1α-targeted siRNA increases radiosensitivity of hypoxic tumor cells in vitro.
Conclusion:
Inhibition of HIF-1 activation by using HIF-1α-targeted siRNA clearly acts synergistically with radiotherapy and increase radiosensitivity of hypoxic cells in vitro.
Journal Article
Distinct patterns of hypoxic expression of carbonic anhydrase IX (CA IX) in human malignant glioma cell lines
by
Hagemann, Carsten
,
Said, Harun M.
,
Katzer, Astrid
in
Antigens, Neoplasm - genetics
,
Antigens, Neoplasm - metabolism
,
Biomarkers, Tumor
2007
The hypoxia-inducible enzyme carbonic anhydrase IX (CA IX) has recently been discussed as a surrogate marker of tumor hypoxia, an indicator of prognosis and a potential therapeutic target in malignant glioma. To characterize patterns of expression of CA IX in human malignant glioma cells, we studied CA IX protein, CA9 mRNA and hypoxia-inducible factor-1alpha (HIF-1alpha) protein levels in U87-MG, U251, U373 and GaMG cells exposed to in vitro hypoxia (1, 6 or 24 h at 5%, 1% or 0.1% O(2)). All cell lines displayed a strong hypoxic induction of CA9 mRNA in response to prolonged severe hypoxia with cell-line specific patterns at moderate to mild hypoxia and shorter treatment times. Only U87-MG exhibited a strong constitutive, normoxic expression of CA IX protein without a detectable change under hypoxia. In U251 and GaMG cell lines, a marked induction of CA IX protein in response to severe hypoxia was seen. CA IX changes under severe hypoxia and the inhibitory effect of the glycolysis inhibitor iodoacetate (IAA, 50 microM) on hypoxic CA IX overexpression were paralleled by the results for HIF-1alpha protein. Therefore, immunohistochemical CA IX staining in human malignant glioma specimens can result from low oxygen concentrations or constitutive, oncogene-related, overexpression both of which may be prognostically relevant.
Journal Article
Small interfering RNA targeting HIF-1alpha reduces hypoxia-dependent transcription and radiosensitizes hypoxic HT 1080 human fibrosarcoma cells in vitro
2011
Hypoxia inducible factor-1 has been identified as a potential target to overcome hypoxia-induced radioresistance The aim of the present study was to investigate whether selective HIF-1 inhibition via small interfering RNA (siRNA) targeting hypoxia-inducible factor 1α (HIF-1α) affects hypoxia-induced radioresistance in HT 1080 human fibrosarcoma cells. HIF-1α expression in HT 1080 human fibrosarcoma cells in vitro was silenced using HIF-1α siRNA sequence primers. Quantitative real-time polymerase chain reaction assay was performed to quantify the mRNA expression of HIF-1α. HIF-1α protein levels were studied by Western blotting at 20% (air) or after 12 hours at 0.1% O2 (hypoxia). Cells were assayed for clonogenic survival after irradiation with 2, 5, or 10 Gy, under normoxic or hypoxic conditions in the presence of HIF-1α-targeted or control siRNA sequences. A modified oxygen enhancement ratio (OER´) was calculated as the ratio of the doses to achieve the same survival at 0.1% O2 as at ambient oxygen tensions. OER´ was obtained at cell survival levels of 50%, 37%, and 10%. HIF-1α-targeted siRNA enhanced radiation treatment efficacy under severely hypoxic conditions compared to tumor cells treated with scrambled control siRNA. OER was reduced on all survival levels after treatment with HIF-1α-targeted siRNA, suggesting that inhibition of HIF-1 activation by using HIF-1α-targeted siRNA increases radiosensitivity of hypoxic tumor cells in vitro. Inhibition of HIF-1 activation by using HIF-1α-targeted siRNA clearly acts synergistically with radiotherapy and increase radiosensitivity of hypoxic cells in vitro.[PUBLICATION ABSTRACT]
Journal Article
Modulation of Glucose Metabolism Inhibits Hypoxic Accumulation of Hypoxia-Inducible Factor-1alpha (HIF-1alpha)
2007
The hypoxic accumulation of the transcription factor subunit hypoxia-inducible factor-1α (HIF-1α), a potential endogenous hypoxia marker and therapeutic target, has recently been shown to strongly depend on glucose availability. The aim of this study was to investigate the underlying mechanism of this effect. HIF-1α protein levels were studied by Western blotting in HT 1080 human fibrosarcoma cells and in a hypoxia-responsive element green fluorescent protein (HRE-GFP) reporter assay in stably transfected HT 1080 cells treated with hypoxia (0.1% O^sub 2^, 12 h) and glycolysis inhibitors 2-deoxyglucose (2-DG) or iodoacetate (IAA). HIF-1α mRNA expression was quantified via real-time polymerase chain reaction (RT-PCR). Both inhibitors drastically reduced hypoxic HIF-1α accumulation (2-DG + hypoxia 2% mean HIF-1α protein level vs. 59% hypoxia alone; IAA + hypoxia 13% mean HIF-1α protein level vs. 96% hypoxia alone), an effect not rescued by the addition of pyruvate and confirmed in an HRE-GFP reporter assay in stably transfected HT 1080 cells. RT-PCR under identical conditions showed no effect of glycolysis inhibition on HIF-1α mRNA levels, suggesting a translational or posttranslational mechanism. The effect of glycolysis modulation on the HIF-1α levels in tumor cells may provide a novel approach to therapeutically target HIF-1α.[PUBLICATION ABSTRACT]
Journal Article
Modulation of glucose metabolism inhibits hypoxic accumulation of hypoxia-inducible factor-1alpha (HIF-1alpha)
by
Beyer, Melanie
,
Said, Harun M
,
Löffler, Jürgen
in
Cell Hypoxia - drug effects
,
Cell Line, Tumor
,
Deoxyglucose - pharmacology
2007
The hypoxic accumulation of the transcription factor subunit hypoxia-inducible factor-1alpha (HIF-1alpha), a potential endogenous hypoxia marker and therapeutic target, has recently been shown to strongly depend on glucose availability. The aim of this study was to investigate the underlying mechanism of this effect.
HIF-1alpha protein levels were studied by Western blotting in HT 1080 human fibrosarcoma cells and in a hypoxia-responsive element green fluorescent protein (HRE-GFP) reporter assay in stably transfected HT 1080 cells treated with hypoxia (0.1% O(2), 12 h) and glycolysis inhibitors 2-deoxyglucose (2-DG) or iodoacetate (IAA). HIF-1alpha mRNA expression was quantified via real-time polymerase chain reaction (RT-PCR).
Both inhibitors drastically reduced hypoxic HIF-1alpha accumulation (2-DG + hypoxia 2% mean HIF-1alpha protein level vs. 59% hypoxia alone; IAA + hypoxia 13% mean HIF-1alpha protein level vs. 96% hypoxia alone), an effect not rescued by the addition of pyruvate and confirmed in an HRE-GFP reporter assay in stably transfected HT 1080 cells. RT-PCR under identical conditions showed no effect of glycolysis inhibition on HIF-1alpha mRNA levels, suggesting a translational or posttranslational mechanism.
The effect of glycolysis modulation on the HIF-1alpha levels in tumor cells may provide a novel approach to therapeutically target HIF-1alpha.
Journal Article
Increased circulating chemerin in patients with advanced carotid stenosis
2018
Background
Chemerin is an adipokine which plays a crucial role in atherosclerosis. Here, we examined whether circulating chemerin is enhanced in patients with advanced carotid stenosis.
Methods
Chemerin was quantified in 178 patients prior to carotid end arterectomy (CEA) and in age- and gender-matched controls (
n
= 163). Chemerin levels were related to anthropometric, clinical and metabolic characteristics of the patients.
Results
Chemerin levels were higher in patients compared to controls (
p
< 0.001). Chemerin correlated to parameters associated with inflammation such as C-reactive protein (CRP, p < 0.001), leukocyte blood count (p < 0.001) and circulating TNF-α (
p
= 0.004) in the patients. Chemerin levels did not differ between asymptomatic (
n
= 93) and symptomatic patients who experienced an ischemic event within 6 months prior to CEA (
n
= 85). However, in the case of high-grade carotid stenosis (≥ 90%), chemerin levels were higher in symptomatic (
n
= 44) compared to asymptomatic patients (
n
= 41,
p
= 0.014). Chemerin was increased in patients with (
n
= 50) compared to patients without (
n
= 128) coronary artery disease (CAD,
p
= 0.002). A high level of chemerin increases the risk for CAD in patients (
p
= 0.0013).
Conclusions
Circulating chemerin is increased and correlates to inflammatory parameters in patients with advanced carotid stenosis.
Journal Article
Early Gastrointestinal Regulatory Peptide Response to Intestinal Resection in the Rat Is Stimulated by Enteral Glutamine Supplementation
by
Arnelo, U.
,
Adrian, T.E.
,
Wirén, M.
in
Animals
,
Epidermal Growth Factor - metabolism
,
Gastrointestinal Hormones - metabolism
1999
Background: Intestinal resection stimulates the synthesis and release of gastrointestinal peptides that regulate the growth and adaptation of the mucosa. Luminal nutrients are necessary for optimal proliferation and glutamine is the preferential nutrient to the small bowel. The interplay between glutamine and regulatory peptides could be important in treating short bowel syndrome. Methods: 63 Sprague-Dawley rats were divided into 3 groups: resection; transection, or controls. After intestinal resection animals were orally fed either a diet without glutamine or a glutamine-supplemented diet for 2 days. Transected animals and controls without prior surgery were fed the same two diets. Epidermal growth factor (EGF), transforming growth factor-α, insulin-like growth factors I and II (IGF-I and IGF-II), peptide YY (PYY), and enteroglucagon were analyzed in mucosa from the proximal jejunum, distal ileum as well as in portal plasma when the animals were euthanized 72 h after surgery. Results: Intestinal resection resulted in an early increase in portal plasma concentrations of PYY, EGF, enteroglucagon, and mucosal IGF-II and EGF content that were significant in glutamine-treated animals. Glutamine significantly increased PYY in portal blood after resection (p < 0.05). Conclusion: Glutamine could be of importance for the functional adaptation of residual small bowel mucosa by increasing PYY release.
Journal Article