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Erschienen in: Lung 3/2015

01.06.2015

An Experimental Model-Based Exploration of Cytokines in Ablative Radiation-Induced Lung Injury In Vivo and In Vitro

verfasst von: Zhen-Yu Hong, Kwang Hyun Song, Joo-Heon Yoon, Jaeho Cho, Michael D. Story

Erschienen in: Lung | Ausgabe 3/2015

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Abstract

Introduction

Stereotactic ablative radiotherapy is a newly emerging radiotherapy treatment method that, compared with conventionally fractionated radiation therapy (CFRT), allows an ablative dose of radiation to be delivered to a confined area around a tumor. The aim of the present study was to investigate the changes of various cytokines that may be involved in ablative radiation-induced lung injury in vitro and in vivo.

Methods

In the in vivo study, ablative-dose radiation was delivered to a small volume of the left lung of C3H/HeJCr mice using a small-animal irradiator. The levels of 24 cytokines in the peripheral blood were tested at several time points after irradiation. For the in vitro study, three mouse cell types (type II pneumocytes, alveolar macrophages, and fibroblasts) known to play important roles in radiation-induced pneumonitis and lung fibrosis were analyzed using a co-culture system.

Results

In the in vivo study, we found obvious patterns of serum cytokine changes depending on the volume of tissue irradiated (2-mm vs. 3.5-mm collimator). Only the levels of 3 cytokines increased with the 2-mm collimator at the acute phase (1–2 weeks after irradiation), while the majority of cytokines were elevated with the 3.5-mm collimator. In the in vitro co-culture system, after the cells were given an ablative dose of irradiation, the levels of five cytokines (GM-CSF, G-CSF, IL-6, MCP-1, and KC) increased significantly in a dose-dependent manner.

Conclusions

The cytokine levels in our radiation-induced lung injury model showed specific changes, both in vivo and in vitro. These results imply that biological studies related to ablative-dose small-volume irradiation should be investigated using the corresponding experimental models rather than on those simulating large-volume CFRT.
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Literatur
1.
Zurück zum Zitat Videtic GM, Stephans KL (2010) The role of stereotactic body radiotherapy in the management of non-small cell lung cancer: an emerging standard for the medically inoperable patient? Curr Oncol Rep 12(4):235–241CrossRefPubMed Videtic GM, Stephans KL (2010) The role of stereotactic body radiotherapy in the management of non-small cell lung cancer: an emerging standard for the medically inoperable patient? Curr Oncol Rep 12(4):235–241CrossRefPubMed
2.
Zurück zum Zitat Timmerman R, Bastasch M, Saha D, Abdulrahman R, Hittson W, Story M (2007) Optimizing dose and fractionation for stereotactic body radiation therapy. Normal tissue and tumor control effects with large dose per fraction. Front Radiat Ther Oncol 40:352–365CrossRefPubMed Timmerman R, Bastasch M, Saha D, Abdulrahman R, Hittson W, Story M (2007) Optimizing dose and fractionation for stereotactic body radiation therapy. Normal tissue and tumor control effects with large dose per fraction. Front Radiat Ther Oncol 40:352–365CrossRefPubMed
3.
Zurück zum Zitat Timmerman R, McGarry R, Yiannoutsos C, Papiez L, Tudor K, DeLuca J, Ewing M, Abdulrahman R, DesRosiers C, Williams M, Fletcher J (2006) Excessive toxicity when treating central tumors in a phase II study of stereotactic body radiation therapy for medically inoperable early-stage lung cancer. J Clin Oncol 24(30):4833–4839CrossRefPubMed Timmerman R, McGarry R, Yiannoutsos C, Papiez L, Tudor K, DeLuca J, Ewing M, Abdulrahman R, DesRosiers C, Williams M, Fletcher J (2006) Excessive toxicity when treating central tumors in a phase II study of stereotactic body radiation therapy for medically inoperable early-stage lung cancer. J Clin Oncol 24(30):4833–4839CrossRefPubMed
4.
Zurück zum Zitat Timmerman RD, Story M (2006) Stereotactic body radiation therapy: a treatment in need of basic biological research. Cancer J 12(1):19–20CrossRefPubMed Timmerman RD, Story M (2006) Stereotactic body radiation therapy: a treatment in need of basic biological research. Cancer J 12(1):19–20CrossRefPubMed
5.
Zurück zum Zitat Lo SS, Sahgal A, Kunos AC, Teh SB, Yao M, Machtay M, Mayr AN, Huang Z, Chang LE (2012) Reported Toxicities Associated with Stereotactic Body Radiation Therapy. In: Lo SS, Teh BS, Lu JJ, Schefter TE (eds) Stereotactic Body Radiation Therapy. Springer, Berlin, pp 373–392CrossRef Lo SS, Sahgal A, Kunos AC, Teh SB, Yao M, Machtay M, Mayr AN, Huang Z, Chang LE (2012) Reported Toxicities Associated with Stereotactic Body Radiation Therapy. In: Lo SS, Teh BS, Lu JJ, Schefter TE (eds) Stereotactic Body Radiation Therapy. Springer, Berlin, pp 373–392CrossRef
6.
Zurück zum Zitat Story MD, Nirodi C, Park C (2012) Radiobiology of stereotactic body radiation therapy/stereotactic ablative radiotherapy. In: Lo SS, Teh BS, Lu JJ, Schefter TE (eds) Stereotactic body radiation therapy. Springer, Berlin, pp 123–136CrossRef Story MD, Nirodi C, Park C (2012) Radiobiology of stereotactic body radiation therapy/stereotactic ablative radiotherapy. In: Lo SS, Teh BS, Lu JJ, Schefter TE (eds) Stereotactic body radiation therapy. Springer, Berlin, pp 123–136CrossRef
7.
Zurück zum Zitat Hadziahmetovic M, Loo BW, Timmerman RD, Mayr NA, Wang JZ, Huang Z, Grecula JC, Lo SS (2010) Stereotactic body radiation therapy (stereotactic ablative radiotherapy) for stage I non-small cell lung cancer–updates of radiobiology, techniques, and clinical outcomes. Discov Med 9(48):411–417PubMed Hadziahmetovic M, Loo BW, Timmerman RD, Mayr NA, Wang JZ, Huang Z, Grecula JC, Lo SS (2010) Stereotactic body radiation therapy (stereotactic ablative radiotherapy) for stage I non-small cell lung cancer–updates of radiobiology, techniques, and clinical outcomes. Discov Med 9(48):411–417PubMed
8.
Zurück zum Zitat Cho J, Kodym R, Seliounine S, Richardson JA, Solberg TD, Story MD (2010) High dose-per-fraction irradiation of limited lung volumes using an image-guided, highly focused irradiator: simulating stereotactic body radiotherapy regimens in a small-animal model. Int J Radiat Oncol Biol Phys 77(3):895–902CrossRefPubMed Cho J, Kodym R, Seliounine S, Richardson JA, Solberg TD, Story MD (2010) High dose-per-fraction irradiation of limited lung volumes using an image-guided, highly focused irradiator: simulating stereotactic body radiotherapy regimens in a small-animal model. Int J Radiat Oncol Biol Phys 77(3):895–902CrossRefPubMed
9.
Zurück zum Zitat Pidikiti R, Stojadinovic S, Speiser M, Song KH, Hager F, Saha D, Solberg TD (2011) Dosimetric characterization of an image-guided stereotactic small animal irradiator. Phys Med Biol 56(8):2585–2599CrossRefPubMed Pidikiti R, Stojadinovic S, Speiser M, Song KH, Hager F, Saha D, Solberg TD (2011) Dosimetric characterization of an image-guided stereotactic small animal irradiator. Phys Med Biol 56(8):2585–2599CrossRefPubMed
10.
Zurück zum Zitat Song KH, Pidikiti R, Stojadinovic S, Speiser M, Seliounine S, Saha D, Solberg TD (2010) An x-ray image guidance system for small animal stereotactic irradiation. Phys Med Biol 55(23):7345–7362CrossRefPubMed Song KH, Pidikiti R, Stojadinovic S, Speiser M, Seliounine S, Saha D, Solberg TD (2010) An x-ray image guidance system for small animal stereotactic irradiation. Phys Med Biol 55(23):7345–7362CrossRefPubMed
11.
Zurück zum Zitat Chen Y, Williams J, Ding I, Hernady E, Liu W, Smudzin T, Finkelstein JN, Rubin P, Okunieff P (2002) Radiation pneumonitis and early circulatory cytokine markers. Semin Radiat Oncol 12(1 Suppl 1):26–33CrossRefPubMed Chen Y, Williams J, Ding I, Hernady E, Liu W, Smudzin T, Finkelstein JN, Rubin P, Okunieff P (2002) Radiation pneumonitis and early circulatory cytokine markers. Semin Radiat Oncol 12(1 Suppl 1):26–33CrossRefPubMed
12.
Zurück zum Zitat Mehta V (2005) Radiation pneumonitis and pulmonary fibrosis in non-small-cell lung cancer: pulmonary function, prediction, and prevention. Int J Radiat Oncol Biol Phys 63(1):5–24CrossRefPubMed Mehta V (2005) Radiation pneumonitis and pulmonary fibrosis in non-small-cell lung cancer: pulmonary function, prediction, and prevention. Int J Radiat Oncol Biol Phys 63(1):5–24CrossRefPubMed
13.
Zurück zum Zitat Fleckenstein K, Gauter-Fleckenstein B, Jackson IL, Rabbani Z, Anscher M, Vujaskovic Z (2007) Using biological markers to predict risk of radiation injury. Semin Radiat Oncol 17(2):89–98CrossRefPubMed Fleckenstein K, Gauter-Fleckenstein B, Jackson IL, Rabbani Z, Anscher M, Vujaskovic Z (2007) Using biological markers to predict risk of radiation injury. Semin Radiat Oncol 17(2):89–98CrossRefPubMed
14.
Zurück zum Zitat Ao X, Zhao L, Davis MA, Lubman DM, Lawrence TS, Kong FM (2009) Radiation produces differential changes in cytokine profiles in radiation lung fibrosis sensitive and resistant mice. J Hematol Oncol 2:6CrossRefPubMedCentralPubMed Ao X, Zhao L, Davis MA, Lubman DM, Lawrence TS, Kong FM (2009) Radiation produces differential changes in cytokine profiles in radiation lung fibrosis sensitive and resistant mice. J Hematol Oncol 2:6CrossRefPubMedCentralPubMed
15.
Zurück zum Zitat Xie CH, Zhang MS, Zhou YF, Han G, Cao Z, Zhou FX, Zhang G, Luo ZG, Wu JP, Liu H, Chen J, Zhang WJ (2006) Chinese medicine Angelica sinensis suppresses radiation-induced expression of TNF-alpha and TGF-beta1 in mice. Oncol Rep 15(6):1429–1436PubMed Xie CH, Zhang MS, Zhou YF, Han G, Cao Z, Zhou FX, Zhang G, Luo ZG, Wu JP, Liu H, Chen J, Zhang WJ (2006) Chinese medicine Angelica sinensis suppresses radiation-induced expression of TNF-alpha and TGF-beta1 in mice. Oncol Rep 15(6):1429–1436PubMed
16.
Zurück zum Zitat Gorshkova I, Zhou T, Mathew B, Jacobson JR, Takekoshi D, Bhattacharya P, Smith B, Aydogan B, Weichselbaum RR, Natarajan V, Garcia JG, Berdyshev EV (2012) Inhibition of serine palmitoyltransferase delays the onset of radiation-induced pulmonary fibrosis through the negative regulation of sphingosine kinase-1 expression. J Lipid Res 53(8):1553–1568CrossRefPubMedCentralPubMed Gorshkova I, Zhou T, Mathew B, Jacobson JR, Takekoshi D, Bhattacharya P, Smith B, Aydogan B, Weichselbaum RR, Natarajan V, Garcia JG, Berdyshev EV (2012) Inhibition of serine palmitoyltransferase delays the onset of radiation-induced pulmonary fibrosis through the negative regulation of sphingosine kinase-1 expression. J Lipid Res 53(8):1553–1568CrossRefPubMedCentralPubMed
17.
Zurück zum Zitat Rube CE, Wilfert F, Palm J, Konig J, Burdak-Rothkamm S, Liu L, Schuck A, Willich N, Rube C (2004) Irradiation induces a biphasic expression of pro-inflammatory cytokines in the lung. Strahlenther Onkol 180(7):442–448CrossRefPubMed Rube CE, Wilfert F, Palm J, Konig J, Burdak-Rothkamm S, Liu L, Schuck A, Willich N, Rube C (2004) Irradiation induces a biphasic expression of pro-inflammatory cytokines in the lung. Strahlenther Onkol 180(7):442–448CrossRefPubMed
18.
Zurück zum Zitat Matej R, Housa D, Pouckova P, Zadinova M, Olejar T (2007) Radiation-induced production of PAR-1 and TGF-beta 1 mRNA in lung of C57Bl6 and C3H murine strains and influence of pharmacoprophylaxis by ACE inhibitors. Pathol Res Pract 203(2):107–114CrossRefPubMed Matej R, Housa D, Pouckova P, Zadinova M, Olejar T (2007) Radiation-induced production of PAR-1 and TGF-beta 1 mRNA in lung of C57Bl6 and C3H murine strains and influence of pharmacoprophylaxis by ACE inhibitors. Pathol Res Pract 203(2):107–114CrossRefPubMed
19.
Zurück zum Zitat Rubin P, Johnston CJ, Williams JP, McDonald S, Finkelstein JN (1995) A perpetual cascade of cytokines postirradiation leads to pulmonary fibrosis. Int J Radiat Oncol Biol Phys 33(1):99–109CrossRefPubMed Rubin P, Johnston CJ, Williams JP, McDonald S, Finkelstein JN (1995) A perpetual cascade of cytokines postirradiation leads to pulmonary fibrosis. Int J Radiat Oncol Biol Phys 33(1):99–109CrossRefPubMed
20.
Zurück zum Zitat Johnston CJ, Hernady E, Reed C, Thurston SW, Finkelstein JN, Williams JP (2010) Early alterations in cytokine expression in adult compared to developing lung in mice after radiation exposure. Radiat Res 173(4):522–535CrossRefPubMedCentralPubMed Johnston CJ, Hernady E, Reed C, Thurston SW, Finkelstein JN, Williams JP (2010) Early alterations in cytokine expression in adult compared to developing lung in mice after radiation exposure. Radiat Res 173(4):522–535CrossRefPubMedCentralPubMed
21.
Zurück zum Zitat Johnston CJ, Manning C, Hernady E, Reed C, Thurston SW, Finkelstein JN, Williams JP (2011) Effect of total body irradiation on late lung effects: hidden dangers. Int J Radiat Biol 87(8):902–913CrossRefPubMedCentralPubMed Johnston CJ, Manning C, Hernady E, Reed C, Thurston SW, Finkelstein JN, Williams JP (2011) Effect of total body irradiation on late lung effects: hidden dangers. Int J Radiat Biol 87(8):902–913CrossRefPubMedCentralPubMed
22.
Zurück zum Zitat Hong ZY, Lee HJ, Choi WH, Lee YJ, Eun SH, Lee JI, Park K, Lee JM, Cho J (2014) A preclinical rodent model of acute radiation-induced lung injury after ablative focal irradiation reflecting clinical stereotactic body radiotherapy. Radiat Res 182(1):83–91CrossRefPubMed Hong ZY, Lee HJ, Choi WH, Lee YJ, Eun SH, Lee JI, Park K, Lee JM, Cho J (2014) A preclinical rodent model of acute radiation-induced lung injury after ablative focal irradiation reflecting clinical stereotactic body radiotherapy. Radiat Res 182(1):83–91CrossRefPubMed
23.
Zurück zum Zitat Hong ZY, Eun SH, Park K, Choi WH, Lee JI, Lee EJ, Lee JM, Story MD, Cho J (2014) Development of a small animal model to simulate clinical stereotactic body radiotherapy-induced central and peripheral lung injuries. J Radiat Res 55(4):648–657CrossRefPubMedCentralPubMed Hong ZY, Eun SH, Park K, Choi WH, Lee JI, Lee EJ, Lee JM, Story MD, Cho J (2014) Development of a small animal model to simulate clinical stereotactic body radiotherapy-induced central and peripheral lung injuries. J Radiat Res 55(4):648–657CrossRefPubMedCentralPubMed
24.
Zurück zum Zitat Anscher MS, Kong FM, Andrews K, Clough R, Marks LB, Bentel G, Jirtle RL (1998) Plasma transforming growth factor beta1 as a predictor of radiation pneumonitis. Int J Radiat Oncol Biol Phys 41(5):1029–1035CrossRefPubMed Anscher MS, Kong FM, Andrews K, Clough R, Marks LB, Bentel G, Jirtle RL (1998) Plasma transforming growth factor beta1 as a predictor of radiation pneumonitis. Int J Radiat Oncol Biol Phys 41(5):1029–1035CrossRefPubMed
25.
Zurück zum Zitat Anscher MS, Peters WP, Reisenbichler H, Petros WP, Jirtle RL (1993) Transforming growth factor beta as a predictor of liver and lung fibrosis after autologous bone marrow transplantation for advanced breast cancer. N Engl J Med 328(22):1592–1598CrossRefPubMed Anscher MS, Peters WP, Reisenbichler H, Petros WP, Jirtle RL (1993) Transforming growth factor beta as a predictor of liver and lung fibrosis after autologous bone marrow transplantation for advanced breast cancer. N Engl J Med 328(22):1592–1598CrossRefPubMed
26.
Zurück zum Zitat Johnston CJ, Piedboeuf B, Baggs R, Rubin P, Finkelstein JN (1995) Differences in correlation of mRNA gene expression in mice sensitive and resistant to radiation-induced pulmonary fibrosis. Radiat Res 142(2):197–203CrossRefPubMed Johnston CJ, Piedboeuf B, Baggs R, Rubin P, Finkelstein JN (1995) Differences in correlation of mRNA gene expression in mice sensitive and resistant to radiation-induced pulmonary fibrosis. Radiat Res 142(2):197–203CrossRefPubMed
27.
Zurück zum Zitat Lukacs NW, Hogaboam C, Chensue SW, Blease K, Kunkel SL (2001) Type 1/type 2 cytokine paradigm and the progression of pulmonary fibrosis. Chest 120(1 Suppl):5S–8SCrossRefPubMed Lukacs NW, Hogaboam C, Chensue SW, Blease K, Kunkel SL (2001) Type 1/type 2 cytokine paradigm and the progression of pulmonary fibrosis. Chest 120(1 Suppl):5S–8SCrossRefPubMed
28.
Zurück zum Zitat Shao DD, Suresh R, Vakil V, Gomer RH, Pilling D (2008) Pivotal Advance: Th-1 cytokines inhibit, and Th-2 cytokines promote fibrocyte differentiation. J Leukoc Biol 83(6):1323–1333CrossRefPubMedCentralPubMed Shao DD, Suresh R, Vakil V, Gomer RH, Pilling D (2008) Pivotal Advance: Th-1 cytokines inhibit, and Th-2 cytokines promote fibrocyte differentiation. J Leukoc Biol 83(6):1323–1333CrossRefPubMedCentralPubMed
30.
Zurück zum Zitat Sakamoto H, Zhao LH, Jain F, Kradin R (2002) IL-12p40(−/−) mice treated with intratracheal bleomycin exhibit decreased pulmonary inflammation and increased fibrosis. Exp Mol Pathol 72(1):1–9CrossRefPubMed Sakamoto H, Zhao LH, Jain F, Kradin R (2002) IL-12p40(−/−) mice treated with intratracheal bleomycin exhibit decreased pulmonary inflammation and increased fibrosis. Exp Mol Pathol 72(1):1–9CrossRefPubMed
31.
Zurück zum Zitat Keane MP, Belperio JA, Burdick MD, Strieter RM (2001) IL-12 attenuates bleomycin-induced pulmonary fibrosis. Am J Physiol Lung Cell Mol Physiol 281(1):L92–L97PubMed Keane MP, Belperio JA, Burdick MD, Strieter RM (2001) IL-12 attenuates bleomycin-induced pulmonary fibrosis. Am J Physiol Lung Cell Mol Physiol 281(1):L92–L97PubMed
32.
Zurück zum Zitat Sun L, Louie MC, Vannella KM, Wilke CA, LeVine AM, Moore BB, Shanley TP (2011) New concepts of IL-10-induced lung fibrosis: fibrocyte recruitment and M2 activation in a CCL2/CCR2 axis. Am J Physiol Lung Cell Mol Physiol 300(3):L341–L353CrossRefPubMedCentralPubMed Sun L, Louie MC, Vannella KM, Wilke CA, LeVine AM, Moore BB, Shanley TP (2011) New concepts of IL-10-induced lung fibrosis: fibrocyte recruitment and M2 activation in a CCL2/CCR2 axis. Am J Physiol Lung Cell Mol Physiol 300(3):L341–L353CrossRefPubMedCentralPubMed
33.
Zurück zum Zitat Westermann W, Schobl R, Rieber EP, Frank KH (1999) Th2 cells as effectors in postirradiation pulmonary damage preceding fibrosis in the rat. Int J Radiat Biol 75(5):629–638CrossRefPubMed Westermann W, Schobl R, Rieber EP, Frank KH (1999) Th2 cells as effectors in postirradiation pulmonary damage preceding fibrosis in the rat. Int J Radiat Biol 75(5):629–638CrossRefPubMed
34.
Zurück zum Zitat Gharaee-Kermani M, Nozaki Y, Hatano K, Phan SH (2001) Lung interleukin-4 gene expression in a murine model of bleomycin-induced pulmonary fibrosis. Cytokine 15(3):138–147CrossRefPubMed Gharaee-Kermani M, Nozaki Y, Hatano K, Phan SH (2001) Lung interleukin-4 gene expression in a murine model of bleomycin-induced pulmonary fibrosis. Cytokine 15(3):138–147CrossRefPubMed
35.
Zurück zum Zitat Fajardo LF, Berthrong M (1978) Radiation injury in surgical pathology: part I. Am J Surg Pathol 2(2):159–199CrossRefPubMed Fajardo LF, Berthrong M (1978) Radiation injury in surgical pathology: part I. Am J Surg Pathol 2(2):159–199CrossRefPubMed
36.
Zurück zum Zitat Moore BB, Kolodsick JE, Thannickal VJ, Cooke K, Moore TA, Hogaboam C, Wilke CA, Toews GB (2005) CCR2-mediated recruitment of fibrocytes to the alveolar space after fibrotic injury. Am J Pathol 166(3):675–684CrossRefPubMedCentralPubMed Moore BB, Kolodsick JE, Thannickal VJ, Cooke K, Moore TA, Hogaboam C, Wilke CA, Toews GB (2005) CCR2-mediated recruitment of fibrocytes to the alveolar space after fibrotic injury. Am J Pathol 166(3):675–684CrossRefPubMedCentralPubMed
37.
Zurück zum Zitat Phillips RJ, Burdick MD, Hong K, Lutz MA, Murray LA, Xue YY, Belperio JA, Keane MP, Strieter RM (2004) Circulating fibrocytes traffic to the lungs in response to CXCL12 and mediate fibrosis. J Clin Invest 114(3):438–446CrossRefPubMedCentralPubMed Phillips RJ, Burdick MD, Hong K, Lutz MA, Murray LA, Xue YY, Belperio JA, Keane MP, Strieter RM (2004) Circulating fibrocytes traffic to the lungs in response to CXCL12 and mediate fibrosis. J Clin Invest 114(3):438–446CrossRefPubMedCentralPubMed
38.
Zurück zum Zitat Brach MA, Gruss HJ, Kaisho T, Asano Y, Hirano T, Herrmann F (1993) Ionizing radiation induces expression of interleukin 6 by human fibroblasts involving activation of nuclear factor-kappa B. J Biol Chem 268(12):8466–8472PubMed Brach MA, Gruss HJ, Kaisho T, Asano Y, Hirano T, Herrmann F (1993) Ionizing radiation induces expression of interleukin 6 by human fibroblasts involving activation of nuclear factor-kappa B. J Biol Chem 268(12):8466–8472PubMed
39.
Zurück zum Zitat Suga M, Iyonaga K, Ichiyasu H, Saita N, Yamasaki H, Ando M (1999) Clinical significance of MCP-1 levels in BALF and serum in patients with interstitial lung diseases. Eur Respir J 14(2):376–382CrossRefPubMed Suga M, Iyonaga K, Ichiyasu H, Saita N, Yamasaki H, Ando M (1999) Clinical significance of MCP-1 levels in BALF and serum in patients with interstitial lung diseases. Eur Respir J 14(2):376–382CrossRefPubMed
40.
Zurück zum Zitat Molls RR, Savransky V, Liu M, Bevans S, Mehta T, Tuder RM, King LS, Rabb H (2006) Keratinocyte-derived chemokine is an early biomarker of ischemic acute kidney injury. Am J Physiol Renal Physiol 290(5):1187–1193CrossRef Molls RR, Savransky V, Liu M, Bevans S, Mehta T, Tuder RM, King LS, Rabb H (2006) Keratinocyte-derived chemokine is an early biomarker of ischemic acute kidney injury. Am J Physiol Renal Physiol 290(5):1187–1193CrossRef
41.
Zurück zum Zitat Li WQ, Li YM, Guo J, Liu YM, Yang XQ, Ge HJ, Xu Y, Liu HM, He J, Yu HY (2010) Hepatocytic precursor (stem-like) WB-F344 cells reduce tumorigenicity of hepatoma CBRH-7919 cells via TGF-beta/Smad pathway. Oncol Rep 23(6):1601–1607PubMed Li WQ, Li YM, Guo J, Liu YM, Yang XQ, Ge HJ, Xu Y, Liu HM, He J, Yu HY (2010) Hepatocytic precursor (stem-like) WB-F344 cells reduce tumorigenicity of hepatoma CBRH-7919 cells via TGF-beta/Smad pathway. Oncol Rep 23(6):1601–1607PubMed
42.
Zurück zum Zitat Milliat F, Francois A, Isoir M, Deutsch E, Tamarat R, Tarlet G, Atfi A, Validire P, Bourhis J, Sabourin JC, Benderitter M (2006) Influence of endothelial cells on vascular smooth muscle cells phenotype after irradiation: implication in radiation-induced vascular damages. Am J Pathol 169(4):1484–1495CrossRefPubMedCentralPubMed Milliat F, Francois A, Isoir M, Deutsch E, Tamarat R, Tarlet G, Atfi A, Validire P, Bourhis J, Sabourin JC, Benderitter M (2006) Influence of endothelial cells on vascular smooth muscle cells phenotype after irradiation: implication in radiation-induced vascular damages. Am J Pathol 169(4):1484–1495CrossRefPubMedCentralPubMed
Metadaten
Titel
An Experimental Model-Based Exploration of Cytokines in Ablative Radiation-Induced Lung Injury In Vivo and In Vitro
verfasst von
Zhen-Yu Hong
Kwang Hyun Song
Joo-Heon Yoon
Jaeho Cho
Michael D. Story
Publikationsdatum
01.06.2015
Verlag
Springer US
Erschienen in
Lung / Ausgabe 3/2015
Print ISSN: 0341-2040
Elektronische ISSN: 1432-1750
DOI
https://doi.org/10.1007/s00408-015-9705-y

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