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Interleukine-17-induced inhibitory effect on late stage murine erythroid bone marrow progenitors

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Authors
Bugarski, Diana
Krstić, A
Vlaški, Marija
Petakov, Marijana
Jovčić, Gordana
Stojanović, N.
Milenković, P.
Article (Published version)
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Abstract
Recent studies have shown that the T cell-derived cytokine, interleukin-17 (IL-17), stimulates hematopoiesis, specifically granulopoiesis inducing expansion of committed and immature progenitors in bone marrow. Our previous results pointed to its role in erythropoiesis too, demonstrating significant stimulation of BFU-E and suppression of CFU-E growth in the bone marrow from normal mice. As different sensitivities of erythroid and myeloid progenitor cells to nitric oxide (NO) were found, we considered the possibility that the observed effects of IL-17 were mediated by NO. The effects of recombinant mouse IL-17, NO donor (sodium nitroprusside - SNP) and two NO synthases inhibitors (L-NAME and aminoguanidine) on erythroid progenitor cells growth, as well as the ability of IL-17 to induce nitric oxide production in murine bone marrow cells, were examined. In addition, we tested whether the inhibition of CFU-E colony formation by IL-17 could be corrected by erythropoietin (Epo), the princi...pal regulator of erythropoiesis. We demonstrated that IL-17 can stimulate low level production of NO in murine bone marrow cells. Exogenously added NO inhibited CFU-E colony formation, whereas both L-NAME and aminoguanidine reversed the CFU-E suppression by IL-17 in a dose-dependent manner. The inhibition of CFU-E by IL-17 was also corrected by exposure to higher levels of Epo. The data obtained demonstrated that at least some of the IL-17 effects in bone marrow related to the inhibition of CFU-E, were mediated by NO generation. The fact that Epo also overcomes the inhibitory effect of IL-17 on CFU-E suggests the need for further research on their mutual relationship and co-signalling.

Keywords:
interleukin-17 / CFU-E / nitric oxide / erythropoietin / bone marrow
Source:
European Cytokine Network, 2004, 15, 3, 247-254
Publisher:
  • John Libbey Eurotext Ltd, Montrouge

ISSN: 1952-4005

PubMed: 15542450

WoS: 000224649900011

[ Google Scholar ]
13
Handle
https://hdl.handle.net/21.15107/rcub_rimi_96
URI
http://rimi.imi.bg.ac.rs/handle/123456789/96
Collections
  • Radovi istraživača / Researchers' publications
Institution/Community
Institut za medicinska istraživanja
TY  - JOUR
AU  - Bugarski, Diana
AU  - Krstić, A
AU  - Vlaški, Marija
AU  - Petakov, Marijana
AU  - Jovčić, Gordana
AU  - Stojanović, N.
AU  - Milenković, P.
PY  - 2004
UR  - http://rimi.imi.bg.ac.rs/handle/123456789/96
AB  - Recent studies have shown that the T cell-derived cytokine, interleukin-17 (IL-17), stimulates hematopoiesis, specifically granulopoiesis inducing expansion of committed and immature progenitors in bone marrow. Our previous results pointed to its role in erythropoiesis too, demonstrating significant stimulation of BFU-E and suppression of CFU-E growth in the bone marrow from normal mice. As different sensitivities of erythroid and myeloid progenitor cells to nitric oxide (NO) were found, we considered the possibility that the observed effects of IL-17 were mediated by NO. The effects of recombinant mouse IL-17, NO donor (sodium nitroprusside - SNP) and two NO synthases inhibitors (L-NAME and aminoguanidine) on erythroid progenitor cells growth, as well as the ability of IL-17 to induce nitric oxide production in murine bone marrow cells, were examined. In addition, we tested whether the inhibition of CFU-E colony formation by IL-17 could be corrected by erythropoietin (Epo), the principal regulator of erythropoiesis. We demonstrated that IL-17 can stimulate low level production of NO in murine bone marrow cells. Exogenously added NO inhibited CFU-E colony formation, whereas both L-NAME and aminoguanidine reversed the CFU-E suppression by IL-17 in a dose-dependent manner. The inhibition of CFU-E by IL-17 was also corrected by exposure to higher levels of Epo. The data obtained demonstrated that at least some of the IL-17 effects in bone marrow related to the inhibition of CFU-E, were mediated by NO generation. The fact that Epo also overcomes the inhibitory effect of IL-17 on CFU-E suggests the need for further research on their mutual relationship and co-signalling.
PB  - John Libbey Eurotext Ltd, Montrouge
T2  - European Cytokine Network
T1  - Interleukine-17-induced inhibitory effect on late stage murine erythroid bone marrow progenitors
EP  - 254
IS  - 3
SP  - 247
VL  - 15
UR  - conv_1592
ER  - 
@article{
author = "Bugarski, Diana and Krstić, A and Vlaški, Marija and Petakov, Marijana and Jovčić, Gordana and Stojanović, N. and Milenković, P.",
year = "2004",
abstract = "Recent studies have shown that the T cell-derived cytokine, interleukin-17 (IL-17), stimulates hematopoiesis, specifically granulopoiesis inducing expansion of committed and immature progenitors in bone marrow. Our previous results pointed to its role in erythropoiesis too, demonstrating significant stimulation of BFU-E and suppression of CFU-E growth in the bone marrow from normal mice. As different sensitivities of erythroid and myeloid progenitor cells to nitric oxide (NO) were found, we considered the possibility that the observed effects of IL-17 were mediated by NO. The effects of recombinant mouse IL-17, NO donor (sodium nitroprusside - SNP) and two NO synthases inhibitors (L-NAME and aminoguanidine) on erythroid progenitor cells growth, as well as the ability of IL-17 to induce nitric oxide production in murine bone marrow cells, were examined. In addition, we tested whether the inhibition of CFU-E colony formation by IL-17 could be corrected by erythropoietin (Epo), the principal regulator of erythropoiesis. We demonstrated that IL-17 can stimulate low level production of NO in murine bone marrow cells. Exogenously added NO inhibited CFU-E colony formation, whereas both L-NAME and aminoguanidine reversed the CFU-E suppression by IL-17 in a dose-dependent manner. The inhibition of CFU-E by IL-17 was also corrected by exposure to higher levels of Epo. The data obtained demonstrated that at least some of the IL-17 effects in bone marrow related to the inhibition of CFU-E, were mediated by NO generation. The fact that Epo also overcomes the inhibitory effect of IL-17 on CFU-E suggests the need for further research on their mutual relationship and co-signalling.",
publisher = "John Libbey Eurotext Ltd, Montrouge",
journal = "European Cytokine Network",
title = "Interleukine-17-induced inhibitory effect on late stage murine erythroid bone marrow progenitors",
pages = "254-247",
number = "3",
volume = "15",
url = "conv_1592"
}
Bugarski, D., Krstić, A., Vlaški, M., Petakov, M., Jovčić, G., Stojanović, N.,& Milenković, P.. (2004). Interleukine-17-induced inhibitory effect on late stage murine erythroid bone marrow progenitors. in European Cytokine Network
John Libbey Eurotext Ltd, Montrouge., 15(3), 247-254.
conv_1592
Bugarski D, Krstić A, Vlaški M, Petakov M, Jovčić G, Stojanović N, Milenković P. Interleukine-17-induced inhibitory effect on late stage murine erythroid bone marrow progenitors. in European Cytokine Network. 2004;15(3):247-254.
conv_1592 .
Bugarski, Diana, Krstić, A, Vlaški, Marija, Petakov, Marijana, Jovčić, Gordana, Stojanović, N., Milenković, P., "Interleukine-17-induced inhibitory effect on late stage murine erythroid bone marrow progenitors" in European Cytokine Network, 15, no. 3 (2004):247-254,
conv_1592 .

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