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1.

Hypoxia-induced migration in pulmonary arterial smooth muscle cells requires calcium-dependent upregulation of aquaporin 1.

Leggett K, Maylor J, Undem C, Lai N, Lu W, Schweitzer K, King LS, Myers AC, Sylvester JT, Sidhaye V, Shimoda LA.

Am J Physiol Lung Cell Mol Physiol. 2012 Aug 15;303(4):L343-53. doi: 10.1152/ajplung.00130.2012. Epub 2012 Jun 8.

2.

The aquaporin 1 C-terminal tail is required for migration and growth of pulmonary arterial myocytes.

Lai N, Lade J, Leggett K, Yun X, Baksh S, Chau E, Crow MT, Sidhaye V, Wang J, Shimoda LA.

Am J Respir Cell Mol Biol. 2014 Jun;50(6):1010-20. doi: 10.1165/rcmb.2013-0374OC.

PMID:
24328827
3.
4.

Regulation and function of Cav3.1 T-type calcium channels in IGF-I-stimulated pulmonary artery smooth muscle cells.

Pluteanu F, Cribbs LL.

Am J Physiol Cell Physiol. 2011 Mar;300(3):C517-25. doi: 10.1152/ajpcell.00107.2010. Epub 2010 Dec 9.

5.

Sildenafil inhibits hypoxia-induced transient receptor potential canonical protein expression in pulmonary arterial smooth muscle via cGMP-PKG-PPARγ axis.

Wang J, Yang K, Xu L, Zhang Y, Lai N, Jiang H, Zhang Y, Zhong N, Ran P, Lu W.

Am J Respir Cell Mol Biol. 2013 Aug;49(2):231-40. doi: 10.1165/rcmb.2012-0185OC.

6.

Hypoxia inducible factor 1 mediates hypoxia-induced TRPC expression and elevated intracellular Ca2+ in pulmonary arterial smooth muscle cells.

Wang J, Weigand L, Lu W, Sylvester JT, Semenza GL, Shimoda LA.

Circ Res. 2006 Jun 23;98(12):1528-37. Epub 2006 May 18.

7.

Effect of Yifei Huoxue Granule on the proliferation of rat pulmonary artery smooth muscle cells upon exposure to chronic hypoxic conditions in vitro.

Zhang LY, Ou M, Huang YZ, Qiao YY, Zhang DJ.

Chin J Integr Med. 2012 Jul;18(7):507-13. doi: 10.1007/s11655-012-1150-7. Epub 2012 Jul 7.

PMID:
22772913
8.

Silencing of sodium-hydrogen exchanger 1 attenuates the proliferation, hypertrophy, and migration of pulmonary artery smooth muscle cells via E2F1.

Yu L, Hales CA.

Am J Respir Cell Mol Biol. 2011 Nov;45(5):923-30. doi: 10.1165/rcmb.2011-0032OC. Epub 2011 Mar 31.

9.

Bone morphogenetic protein 2 decreases TRPC expression, store-operated Ca(2+) entry, and basal [Ca(2+)]i in rat distal pulmonary arterial smooth muscle cells.

Zhang Y, Lu W, Yang K, Xu L, Lai N, Tian L, Jiang Q, Duan X, Chen M, Wang J.

Am J Physiol Cell Physiol. 2013 May 1;304(9):C833-43. doi: 10.1152/ajpcell.00036.2012. Epub 2013 Feb 27.

10.

Important role of PLC-γ1 in hypoxic increase in intracellular calcium in pulmonary arterial smooth muscle cells.

Yadav VR, Song T, Joseph L, Mei L, Zheng YM, Wang YX.

Am J Physiol Lung Cell Mol Physiol. 2013 Feb 1;304(3):L143-51. doi: 10.1152/ajplung.00310.2012. Epub 2012 Nov 30.

11.

Upregulation of osmo-mechanosensitive TRPV4 channel facilitates chronic hypoxia-induced myogenic tone and pulmonary hypertension.

Yang XR, Lin AH, Hughes JM, Flavahan NA, Cao YN, Liedtke W, Sham JS.

Am J Physiol Lung Cell Mol Physiol. 2012 Mar 15;302(6):L555-68. doi: 10.1152/ajplung.00005.2011. Epub 2011 Dec 29.

12.

Silencing of STIM1 attenuates hypoxia-induced PASMCs proliferation via inhibition of the SOC/Ca2+/NFAT pathway.

Hou X, Chen J, Luo Y, Liu F, Xu G, Gao Y.

Respir Res. 2013 Jan 5;14:2. doi: 10.1186/1465-9921-14-2.

13.

Sodium tanshinone IIA sulfonate inhibits canonical transient receptor potential expression in pulmonary arterial smooth muscle from pulmonary hypertensive rats.

Wang J, Jiang Q, Wan L, Yang K, Zhang Y, Chen Y, Wang E, Lai N, Zhao L, Jiang H, Sun Y, Zhong N, Ran P, Lu W.

Am J Respir Cell Mol Biol. 2013 Jan;48(1):125-34. doi: 10.1165/rcmb.2012-0071OC. Epub 2012 Oct 11.

14.

Sildenafil inhibits chronically hypoxic upregulation of canonical transient receptor potential expression in rat pulmonary arterial smooth muscle.

Lu W, Ran P, Zhang D, Peng G, Li B, Zhong N, Wang J.

Am J Physiol Cell Physiol. 2010 Jan;298(1):C114-23. doi: 10.1152/ajpcell.00629.2008. Epub 2009 Nov 4.

15.

Pulmonary artery smooth muscle cell endothelin-1 expression modulates the pulmonary vascular response to chronic hypoxia.

Kim FY, Barnes EA, Ying L, Chen C, Lee L, Alvira CM, Cornfield DN.

Am J Physiol Lung Cell Mol Physiol. 2015 Feb 15;308(4):L368-77. doi: 10.1152/ajplung.00253.2014. Epub 2014 Nov 14.

PMID:
25399435
16.

Cell culture alters Ca2+ entry pathways activated by store-depletion or hypoxia in canine pulmonary arterial smooth muscle cells.

Ng LC, Kyle BD, Lennox AR, Shen XM, Hatton WJ, Hume JR.

Am J Physiol Cell Physiol. 2008 Jan;294(1):C313-23. Epub 2007 Oct 31.

17.

Involvement of Gax gene in hypoxia-induced pulmonary hypertension, proliferation, and apoptosis of arterial smooth muscle cells.

Xia S, Tai X, Wang Y, An X, Qian G, Dong J, Wang X, Sha B, Wang D, Murthi P, Kalionis B, Wang X, Bai C.

Am J Respir Cell Mol Biol. 2011 Jan;44(1):66-73. doi: 10.1165/rcmb.2008-0442OC. Epub 2010 Feb 16.

PMID:
20160044
18.

Preferential expression and function of voltage-gated, O2-sensitive K+ channels in resistance pulmonary arteries explains regional heterogeneity in hypoxic pulmonary vasoconstriction: ionic diversity in smooth muscle cells.

Archer SL, Wu XC, Thébaud B, Nsair A, Bonnet S, Tyrrell B, McMurtry MS, Hashimoto K, Harry G, Michelakis ED.

Circ Res. 2004 Aug 6;95(3):308-18. Epub 2004 Jun 24.

19.

Biliverdin reductase/bilirubin mediates the anti-apoptotic effect of hypoxia in pulmonary arterial smooth muscle cells through ERK1/2 pathway.

Song S, Wang S, Ma J, Yao L, Xing H, Zhang L, Liao L, Zhu D.

Exp Cell Res. 2013 Aug 1;319(13):1973-87. doi: 10.1016/j.yexcr.2013.05.015. Epub 2013 May 28.

PMID:
23722043
20.

Differences in STIM1 and TRPC expression in proximal and distal pulmonary arterial smooth muscle are associated with differences in Ca2+ responses to hypoxia.

Lu W, Wang J, Shimoda LA, Sylvester JT.

Am J Physiol Lung Cell Mol Physiol. 2008 Jul;295(1):L104-13. doi: 10.1152/ajplung.00058.2008. Epub 2008 Apr 18.

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