1) Scheel PJ, Liu M, Rabb H. Uremic lung: New insights into a forgotten condition. Kidney Int. 2008; 74: 849-51
|
|
|
2) Ronco C, Chionh CY, Haapio M, et al. Cardio-renal syndromes: report from the consensus conference of the acute dialysis quality initiative. Blood Purif. 2009; 27: 114-26
|
|
|
3) Rabb H, Wang Z, Nemoto T, et al. Acute renal failure leads to dysregulation of lung salt and water channels. Kidney Int. 2003; 63: 600-6
|
|
|
4) Kathleen D, Matthay MA. Advances in critical care for the nephrologist: Acute Lung Injury/ARDS. Clin J Am Soc Nephrol. 2008; 3: 578-86
|
|
|
5) Vadász I, Raviv S, Sznajder JI. Alveolar epithelium and Na, K-ATPase in acute lung injury. Intensive Care Med. 2007; 7: 1243-51
|
|
|
6) Murray PT, Palevsky PM. Acute kidney injury and critical carenephrology. NephSAP. 2007; 6: 72-120
|
|
|
7) Faubel S. Pulmonary complications after acute kidney injury. Adv Chronic Kidney Dis. 2008; 15: 284-96
|
|
|
8) Klein CL, Hoke TS, Fang WF, et al. Interleukin-6 mediates lung injury following ischemic acute kidney injury or bilateral nephrectomy. Kidney Int. 2008; 74: 901-9
|
|
|
9) Ishii T, Doi K, Okamoto K, et al. Neutrophil elastase contributes to acute lung injuryinduced by bilateral nephrectomy. Am J Pathol. 2010; 177: 1665-73
|
|
|
10) Grigoryev DN, Liu M, Hassoun HT. The local and systemic inflammatory transcriptome after acute kidney injury. J Am Soc Nephrol. 2008; 19: 547-58
|
|
|
11) Koyner JL, Patrick T. Murray PT. Mechanical ventilation and lung-kidney interactions. Clin J Am Soc Nephrol. 2008; 3: 562-70
|
|
|
12) Ko GJ, Rabb H, Hassoun HT. Kidney-lung crosstalk in the critically ill patient. Blood Purif. 2009; 28: 75-83
|
|
|
13) Acute Respiratory Distress Syndrome Network. Ventilation with lower tidal volumes as compared with traditional tidal volumes for acute lung injury and the acute respiratory distress syndrome. N Engl J Med. 2000; 342: 1301-8
|
|
|
14) Qvist J, Pontoppidan H, Wilson RS, et al. Hemodynamic responses to mechanical ventilation with PEEP: the effect of hypervolemia. Anesthesiology. 1975; 42: 45-55
|
|
|
15) Priebe HJ, Heimann JC, Hedley-Whyte J. Mechanisms of renal dysfunction during positive end-expiratory pressure ventilation. J Appl Physiol. 1981; 50: 643-9
|
|
|
16) Kuiper JW, Groeneveld ABJ, Slutsky AS, et al. Mechanical ventilation and acuterenal failure. Crit Care Med. 2005; 33: 1408-15
|
|
|
17) Imai Y, Parodo J, Kajikawa O, et al. Injurious mechanical ventilation and end-organ epithelial cell apoptosis and organ dysfunction in an experimental model of acute respiratory distress syndrome. JAMA. 2003; 289: 2104-12
|
|
|
18) Ranieri VM, Giunta F, Suter PM, et al. Mechanical ventilation as a mediator of multisystem organ failure in acute respiratory distress syndrome. JAMA. 2000; 284: 43-4
|
|
|
19) 佐々木 成. CKDと高血圧・心血管合併症, エビデンスに基づくCKD診療ガイドライン2009. 日本腎臓学会. 東京: 東京医学社; 2009. p.51-76
|
|
|
20) Navar LG, Nishiyama A. Why are angiotensin concentrations so high in the kidney? Curr Opin Nephrol Hypertens. 2004; 13: 107-15
|
|
|
21) Ichihara A, Kobori H, Nishiyama A, et al. Renal rennin angiotensin system. Contrib Nephrol. 2004; 143: 117-30
|
|
|
22) Ezquerra L, Herradon G, Nguyen T, et al. Midkine, a newly discovered regulator of the renin-angiotensin pathway in mouse aorta: significance of the pleiotrophin/midkine developmental gene family in angiotensin II signaling. Biochem Biophys Res Commun. 2005; 333: 636-43
|
|
|
23) Hobo A, Yuzawa Y, Kosugi T, et al. The growth factor midkine regulates the renin-angiotensin system in mice. J Clin Invest. 2009; 119: 1616-25
|
|
|
24) Kosugi T, Yuzawa Y, Sato W, et al. Growth factor midkine is involved in the pathogenesis of diabetic nephropathy. Am J Pathol. 2006; 168: 9-19
|
|
|