Liang Xiao
Last active: 4/25/2016


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The following timeline graph is generated from all co-authored publications.

Featured publications are shown below:

  1. CD70 Exacerbates Blood Pressure Elevation and Renal Damage in Response to Repeated Hypertensive Stimuli. Itani HA, Xiao L, Saleh MA, Wu J, Pilkinton MA, Dale BL, Barbaro NR, Foss JD, Kirabo A, Montaniel KR, Norlander AE, Chen W, Sato R, Navar LG, Mallal SA, Madhur MS, Bernstein KE, Harrison DG (2016) Circ Res 118(8): 1233-43
    › Primary publication · 26988069 (PubMed) · PMC4833561 (PubMed Central)
  2. Origin of Matrix-Producing Cells That Contribute to Aortic Fibrosis in Hypertension. Wu J, Montaniel KR, Saleh MA, Xiao L, Chen W, Owens GK, Humphrey JD, Majesky MW, Paik DT, Hatzopoulos AK, Madhur MS, Harrison DG (2016) Hypertension 67(2): 461-8
    › Primary publication · 26693821 (PubMed) · PMC4713264 (PubMed Central)
  3. Immune activation caused by vascular oxidation promotes fibrosis and hypertension. Wu J, Saleh MA, Kirabo A, Itani HA, Montaniel KR, Xiao L, Chen W, Mernaugh RL, Cai H, Bernstein KE, Goronzy JJ, Weyand CM, Curci JA, Barbaro NR, Moreno H, Davies SS, Roberts LJ, Madhur MS, Harrison DG (2016) J Clin Invest 126(1): 50-67
    › Primary publication · 26595812 (PubMed) · PMC4701546 (PubMed Central)
  4. Renal Denervation Prevents Immune Cell Activation and Renal Inflammation in Angiotensin II-Induced Hypertension. Xiao L, Kirabo A, Wu J, Saleh MA, Zhu L, Wang F, Takahashi T, Loperena R, Foss JD, Mernaugh RL, Chen W, Roberts J, Osborn JW, Itani HA, Harrison DG (2015) Circ Res 117(6): 547-57
    › Primary publication · 26156232 (PubMed) · PMC4629828 (PubMed Central)
  5. Lymphocyte adaptor protein LNK deficiency exacerbates hypertension and end-organ inflammation. Saleh MA, McMaster WG, Wu J, Norlander AE, Funt SA, Thabet SR, Kirabo A, Xiao L, Chen W, Itani HA, Michell D, Huan T, Zhang Y, Takaki S, Titze J, Levy D, Harrison DG, Madhur MS (2015) J Clin Invest 125(3): 1189-202
    › Primary publication · 25664851 (PubMed) · PMC4362266 (PubMed Central)
  6. Renal transporter activation during angiotensin-II hypertension is blunted in interferon-γ-/- and interleukin-17A-/- mice. Kamat NV, Thabet SR, Xiao L, Saleh MA, Kirabo A, Madhur MS, Delpire E, Harrison DG, McDonough AA (2015) Hypertension 65(3): 569-76
    › Primary publication · 25601932 (PubMed) · PMC4326622 (PubMed Central)
  7. DC isoketal-modified proteins activate T cells and promote hypertension. Kirabo A, Fontana V, de Faria AP, Loperena R, Galindo CL, Wu J, Bikineyeva AT, Dikalov S, Xiao L, Chen W, Saleh MA, Trott DW, Itani HA, Vinh A, Amarnath V, Amarnath K, Guzik TJ, Bernstein KE, Shen XZ, Shyr Y, Chen SC, Mernaugh RL, Laffer CL, Elijovich F, Davies SS, Moreno H, Madhur MS, Roberts J, Harrison DG (2014) J Clin Invest 124(10): 4642-56
    › Primary publication · 25244096 (PubMed) · PMC4220659 (PubMed Central)
  8. The central renin-angiotensin system and sympathetic nerve activity in chronic heart failure. Zucker IH, Xiao L, Haack KK (2014) Clin Sci (Lond) 126(10): 695-706
    › Primary publication · 24490814 (PubMed) · PMC4053944 (PubMed Central)
  9. Inflammation and mechanical stretch promote aortic stiffening in hypertension through activation of p38 mitogen-activated protein kinase. Wu J, Thabet SR, Kirabo A, Trott DW, Saleh MA, Xiao L, Madhur MS, Chen W, Harrison DG (2014) Circ Res 114(4): 616-25
    › Primary publication · 24347665 (PubMed) · PMC4186716 (PubMed Central)
  10. Angiotensin II regulates ACE and ACE2 in neurons through p38 mitogen-activated protein kinase and extracellular signal-regulated kinase 1/2 signaling. Xiao L, Haack KK, Zucker IH (2013) Am J Physiol Cell Physiol 304(11): C1073-9
    › Primary publication · 23535237 (PubMed) · PMC3677174 (PubMed Central)
  11. Ontogeny of angiotensin type 2 and type 1 receptor expression in mice. Gao J, Chao J, Parbhu KJ, Yu L, Xiao L, Gao F, Gao L (2012) J Renin Angiotensin Aldosterone Syst 13(3): 341-52
    › Primary publication · 22526820 (PubMed) · PMC3463952 (PubMed Central)
  12. Brain-selective overexpression of angiotensin-converting enzyme 2 attenuates sympathetic nerve activity and enhances baroreflex function in chronic heart failure. Xiao L, Gao L, Lazartigues E, Zucker IH (2011) Hypertension 58(6): 1057-65
    › Primary publication · 22025374 (PubMed) · PMC3224814 (PubMed Central)