scholarly article | Q13442814 |
P2093 | author name string | Rong Wu | |
Shuo Cao | |||
P2860 | cites work | Involvement of PYK2 in angiotensin II signaling of vascular smooth muscle cells | Q77945574 |
Outcome and prognostic factors for patients with non-small-cell lung cancer and severe radiation pneumonitis | Q78365388 | ||
All-trans-retinoic acid prevents radiation- or bleomycin-induced pulmonary fibrosis | Q79195216 | ||
Analysis of clinical and dosimetric factors associated with treatment-related pneumonitis (TRP) in patients with non-small-cell lung cancer (NSCLC) treated with concurrent chemotherapy and three-dimensional conformal radiotherapy (3D-CRT) | Q80334723 | ||
Matrix-Metallo-Proteinases and their tissue inhibitors in radiation-induced lung injury | Q80867648 | ||
Cytokine profiling for prediction of symptomatic radiation-induced lung injury | Q81098350 | ||
Interleukin (IL)-1A and IL-6: applications to the predictive diagnostic testing of radiation pneumonitis | Q81684135 | ||
A prospective study on radiation pneumonitis following conformal radiation therapy in non-small-cell lung cancer: clinical and dosimetric factors analysis | Q81722958 | ||
Antitransforming growth factor-beta antibody 1D11 ameliorates normal tissue damage caused by high-dose radiation | Q83917127 | ||
Regulation, substrates and functions of src | Q30014830 | ||
Renin-Angiotensin system suppression mitigates experimental radiation pneumonitis | Q33567144 | ||
Angiotensin II-induced hypertrophy of cultured murine proximal tubular cells is mediated by endogenous transforming growth factor-beta | Q33902166 | ||
The physical parameters and molecular events associated with radiation-induced lung toxicity | Q34065237 | ||
Risk of long-term complications after TFG-beta1-guided very-high-dose thoracic radiotherapy | Q34209231 | ||
Proinflammatory actions of angiotensins. | Q34244757 | ||
Tissue renin-angiotensin systems: new insights from experimental animal models in hypertension research | Q34253956 | ||
Reduction of bleomycin induced lung fibrosis by candesartan cilexetil, an angiotensin II type 1 receptor antagonist | Q35564174 | ||
Aldosterone-induced inflammation in the rat heart : role of oxidative stress | Q35747797 | ||
TGF-beta1 and angiotensin networking in cardiac remodeling | Q35846911 | ||
Inhibition of integrin alpha(v)beta6, an activator of latent transforming growth factor-beta, prevents radiation-induced lung fibrosis | Q36330655 | ||
Stimulation of the chemotactic migration of human fibroblasts by transforming growth factor beta | Q36352371 | ||
Functional image-based radiotherapy planning for non-small cell lung cancer: A simulation study | Q37369904 | ||
Role of transforming growth factor-beta in repair and fibrosis | Q37647567 | ||
Can serum markers be used to predict acute and late toxicity in patients with lung cancer? Analysis of RTOG 91-03. | Q40178641 | ||
Prevention of radiation-induced pneumonitis by recombinant adenovirus-mediated transferring of soluble TGF-beta type II receptor gene | Q40277998 | ||
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Myocardial fibrosis: role of angiotensin II and aldosterone | Q40857007 | ||
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Increased expression of pro-inflammatory cytokines as a cause of lung toxicity after combined treatment with gemcitabine and thoracic irradiation. | Q42465816 | ||
Selective aldosterone blockade prevents angiotensin II/salt-induced vascular inflammation in the rat heart | Q44226037 | ||
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Does angiotensin II-aldosterone have a role in radiation-induced heart disease? | Q46190990 | ||
Aldosterone and angiotensin II synergistically induce mitogenic response in vascular smooth muscle cells | Q46636017 | ||
ANG II-induced cardiac molecular and cellular events: role of aldosterone | Q46952839 | ||
Pulmonary radiation injury: identification of risk factors associated with regional hypersensitivity | Q47803909 | ||
Increased IL-6 and TGF-beta1 concentrations in bronchoalveolar lavage fluid associated with thoracic radiotherapy | Q51033701 | ||
Radiation pneumonitis and early circulatory cytokine markers. | Q51722633 | ||
Changes in expression of injury after irradiation of increasing volumes in rat lung. | Q53562649 | ||
Vascular aldosterone. Biosynthesis and a link to angiotensin II-induced hypertrophy of vascular smooth muscle cells. | Q54194862 | ||
Angiotensin II type-1 receptor antagonist attenuates LPS-induced acute lung injury. | Q54465571 | ||
The bronchiolar epithelium as a prominent source of pro-inflammatory cytokines after lung irradiation. | Q54671821 | ||
Early Variations of Circulating Interleukin-6 and Interleukin-10 Levels During Thoracic Radiotherapy Are Predictive for Radiation Pneumonitis | Q57571518 | ||
A perpetual cascade of cytokines postirradiation leads to pulmonary fibrosis | Q71977062 | ||
Persistent elevation of inflammatory cytokines predicts a poor outcome in ARDS. Plasma IL-1 beta and IL-6 levels are consistent and efficient predictors of outcome over time | Q72129768 | ||
Aldosterone: a mediator of myocardial necrosis and renal arteriopathy | Q73027730 | ||
Angiotensin II inhibitor DuP753 attenuates burn- and endotoxin-induced gut ischemia, lipid peroxidation, mucosal permeability, and bacterial translocation | Q73630426 | ||
Angiotensin II-induced growth of vascular smooth muscle cells requires an Src-dependent activation of the epidermal growth factor receptor | Q74072775 | ||
P433 | issue | 4 | |
P304 | page(s) | 254-260 | |
P577 | publication date | 2012-12-01 | |
P1433 | published in | Cancer Biology & Medicine | Q26841841 |
P1476 | title | Expression of Angiotensin II and Aldosterone in Radiation-induced Lung Injury | |
P478 | volume | 9 |
Q33591373 | Effect of captopril on radiation-induced TGF-β1 secretion in EA.Hy926 human umbilical vein endothelial cells |
Q33767975 | Effects of ionizing radiation on biological molecules--mechanisms of damage and emerging methods of detection |
Q58093826 | Pathological effects of ionizing radiation: endothelial activation and dysfunction |
Q88248824 | Renin-Angiotensin System Inhibitors to Mitigate Cancer Treatment-Related Adverse Events |
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