Evaluation of miR-9 and miR-143 expression in urine specimens of sulfur mustard exposed patients
References
- Adelipour M, Fooladi AAI, Yazdani S, Vahedi E, Ghanei M, Nourani MR. (2011). Smad molecules expression pattern in human bronchial airway induced by sulfur mustard.(3): 147–154.
- Balali-Mood M, Hefazi M. (2006). Comparison of early and late toxic effects of sulfur mustard in iranian veterans.(4): 273–282.
- Bartel DP. (2004). MicroRNAs: genomics, biogenesis, mechanism, and function.(2): 281–297.
- Bazzoni F, Rossato M, Fabbri M, Gaudiosi D, Mirolo M, Mori L, Tamassia N, Mantovani A, Cassatella MA, Locati M. (2009). Induction and regulatory function of miR-9 in human monocytes and neutrophils exposed to proinflammatory signals.: 5282–5287.
- Bergsmedh A, Szeles A, Henriksson M, Bratt A, Folkman MJ, Spetz A-L, Holmgren L. (2001). Horizontal transfer of oncogenes by uptake of apoptotic bodies.(11): 6407–6411.
- Calin GA, Croce CM. (2006). MicroRNA signatures in human cancers.: 857–866.
- Chen X, Gao C, Li H, Huang L, Sun Q, Dong Y,(2010). Identification and characterization of microRNAs in raw milk during different periods of lactation, commercial fluid, and powdered milk products.: 1128–1137.
- Dahl AR, Schlesinger RB, Heck HD, Medinsky MA, Lucier GW. (1991). Comparative dosimetry of inhaled materials: Differences among animal species and extrapolation to man.(1): 1–13.
- Deregibus MC, Cantaluppi V, Calogero R, Lo Iacono M, Tetta C, Biancone L, Bruno S, Bussolati B, Camussi G. (2007). Endothelial progenitor cell derived microvesicles activate an angiogenic program in endothelial cells by a horizontal transfer of mRNA.(7): 2440–2448.
- Gerecke DR, Chen M, Isukapalli SS, Gordon MK, Chang YC, Tong W, Androulakis IP, Georgopoulos PG. (2009). Differential gene expression profiling of mouse skin after sulfur mustard exposure: Extended time response and inhibitor effect.(2): 156–165.
- Hefazi M, Balali-Mood M. (2005). The clinical toxicology of sulfur mustard.(3): 162–179.
- Hefazi M, Attaran D, Mahmoudi M, Balali-Mood M. (2005). Late respiratory complications of mustard gas poisoning in Iranian veterans.(11): 587–592.
- Karami A, Ghanei M, Alaeddini F, Soltanpour MJ. (2011). Vascular endothelial growth factor in bronchoalveolar lavage fluid in sulfur mustard exposed lung patients.(2): 118–121.
- Kehe K, Balszuweit F, Steinritz D, Thiermann H. (2009). Molecular toxicology of sulfur mustard-induced cutaneous inflammation and blistering.(1): 12–19.
- Khaheshi I, Keshavarz S, Fooladi AAI, Ebrahimi M, Yazdani S, Panahi Y, Shohrati M, Nourani MR. (2011). Loss of expression of TGF-βs and their receptors in chronic skin lesions induced by sulfur mustard as compared with chronic contact dermatitis patients.: 2.
- Khvorova A, Reynolds A, Jayasena SD. (2003). Functional siRNAs and miRNAs exhibit strand bias.(2): 209–216.
- Korkmaz A, Tan D-X, Reiter R. (2008). Acute and delayed sulfur mustard toxicity; novel mechanisms and future studies.(1): 22–26.
- Korkmaz A, Yaren H, Kunak ZI, Uysal B, Topal T, Sadir S, Oter S. (2010). Molecular strategies against sulfur mustard toxicity. DTIC Document, available at.
- Krol J, Sobczak K, Wilczynska U, Drath M, Jasinska A, Kaczynska D, Krzyzosiak WJ. (2004). Structural features of microRNA (miRNA) precursors and their relevance to miRNA biogenesis and small interfering RNA/short hairpin RNA design.(40): 42230–42239.
- Kulkarni AB, Huh CG, Becker D, Geiser A, Lyght M, Flanders KC, Roberts AB, Sporn MB, Ward JM, Karlsson S. (1993). Transforming growth factor beta 1 null mutation in mice causes excessive inflammatory response and early death.(2): 770–774.
- Lin SL, Chang D, Ying SY. (2005). Asymmetry of intronic pre-miRNA structures in functional RISC assembly.: 32–38.
- Long X, Miano JM. (2011). Transforming growth factor-beta1 (TGF-beta1) utilizes distinct pathways for the transcriptional activation of microRNA 143/145 in human coronary artery smooth muscle cells.(34): 30119–30129.
- Ludlum DB, Tong WP, Mehta JR, Kirk MC, Papirmeister B. (1984). Formation of O6-ethylthioethyldeoxyguanosine from the reaction of chloroethyl ethyl sulfide with deoxyguanosine.(12 Pt 1): 5698–5701.
- Nourani MR, Yazdani S. (2011). Genomic analysis of C-fos in airway wall of COPD patients at mRNA level via increase of reactive oxygen species after countering to sulfur mustard.3(2): 46–52.
- Papirmeister B, Gross CL, Meier HL, Petrali JP, Johnson JB. (1985). Molecular basis for mustard-induced vesication.(6 Pt 2): S134–S149.
- Roebuck KA. (1999). Oxidant stress regulation of IL-8 and ICAM-1 gene expression: differential activation and binding of the transcription factors AP-1 and NF-kappaB (Review).(3): 223–253.
- Ruff AL, Dillman JF. (2007). Signaling molecules in sulfur mustard-induced cutaneous injury.: e2
- Ruff AL, Dillman JF. (2010). Sulfur mustard induced cytokine production and cell death: Investigating the potential roles of the p38, p53, and NF-κB signaling pathways with RNA interference.(3): 155–164.
- Saber H, Saburi A, Ghanei M. (2012). Clinical and paraclinical guidelines for management of sulfur mustard induced bronchiolitis obliterans; from bench to bedside.(13): 900–906.
- Shiomi T, Hashimoto G, Inoki I, Fujii Y, Ikeda E, Okada Y. (2005). Regulation of VEGF-Induced Angiogenesis by MMPs.(1): A11–A11.
- Shohrati M, Haji Hosseini R, Esfandiari MA, Najafian N, Najafian B, Golbedagh A. (2014). Serum matrix metalloproteinase levels in patients exposed to sulfur mustard.(3): e15129.
- Smith KJ, Hurst CG, Moeller RB, Skelton HG, Sidell FR. (1995). Sulfur mustard: Its continuing threat as a chemical warfare agent, the cutaneous lesions induced, progress in understanding its mechanism of action, its long-term health effects, and new developments for protection and therapy.(5 Pt 1): 765–776.
- Tornatore L, Thotakura AK, Bennett J, Moretti M, Franzoso G. (2012). The nuclear factor kappa B signaling pathway: integrating metabolism with inflammation.(11): 557–566.
- Vijayaraghavan R. (1997). Modifications of breathing pattern induced by inhaled sulphur mustard in mice.(3): 157–164.
- Yang CM, Hsieh HL, Lee CW. (2005). Intracellular signaling mechanisms underlying the expression of pro-inflammatory mediators in airway diseases.(12): 813–823.
- Zhang X, Liu S, Hu T, Liu S, He Y, Sun S. (2009). Up-regulated microRNA-143 transcribed by nuclear factor kappa B enhances hepatocarcinoma metastasis by repressing fibronectin expression.(2): 490–499.
Language: English
Page range: 169 - 174
Submitted on: Jun 30, 2015
Accepted on: Dec 10, 2015
Published on: Mar 7, 2016
Published by: Slovak Academy of Sciences, Institute of Experimental Pharmacology & Toxicology, Centre of Experimental Medicine
In partnership with: Paradigm Publishing Services
Keywords:
Related subjects:
© 2016 Mostafa Khafaei, Shahram Samie, Seyed Javad Mowla, Akbar Ghorbani Alvanegh, Behnaz Mirzaei, Somaye Chavoshei, Ghamar Soltan Dorraj, Mostafa Esmailnejad, Mahmood Tavallaie, Mohammadreza Nourani, published by Slovak Academy of Sciences, Institute of Experimental Pharmacology & Toxicology, Centre of Experimental Medicine
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.