在英國工作期間(1998-2005),主要採用基因敲除和神經生理學方法研究P2X、TRPV1等受體在內臟感覺機制和內臟痛中的作用,在Journal Of Neuroscience(21:5670-5677,2001),Gastroenterology(125:1398-1405,2003),Neuropharmacology(47:1093-1101,2004)和Journal Of Physiology(541:591-600, 2002)等國際知名學術刊物上發表了一系列論文。
2005年獲得上海市浦江人才計畫資助(課題名稱:腸易激綜合徵的細胞與分子機制研究)。
代表性論文
1. Cockayne DA, Dunn PM, Zhong Y, Rong W, Hamilton SG, Knight GE, Ruan HZ, Ma B, Yip P, Nunn P, McMahon SB, Burnstock G, Ford AP. P2X2 knockout mice and P2X2/P2X3 double knockout mice reveal a role for the P2X2 receptor subunit in mediating multiple sensory effects of ATP. J Physiol. 2005 Sep 1;567(Pt 2):621-39.
2. Rong W, Burnstock G. Activation of ureter nociceptors by exogenous and endogenous ATP in guinea pig. Neuropharmacology. 2004 Dec;47(7):1093-101.
3. Rong W, Hillsley K, Davis JB, Hicks G, Winchester WJ, Grundy D. Jejunal afferent nerve sensitivity in wild-type and TRPV1 knockout mice. J Physiol. 2004 Nov 1;560(Pt 3):867-81.
4. Rong W, Gourine AV, Cockayne DA, Xiang Z, Ford AP, Spyer KM, Burnstock G. Pivotal role of nucleotide P2X2 receptor subunit of the ATP-gated ion channel mediating ventilatory responses to hypoxia.J Neurosci. 2003 Dec 10;23(36):11315-21.
5. Wynn G, Rong W, Xiang Z, Burnstock G. Purinergic mechanisms contribute to mechanosensory transduction in the rat colorectum. Gastroenterology. 2003 Nov;125(5):1398-409.
6. Rong W, Spyer KM, Burnstock G. Activation and sensitisation of low and high threshold afferent fibres mediated by P2X receptors in the mouse urinary bladder. J Physiol. 2002 Jun 1;541(Pt 2):591-600. 12: 13:
7. Vlaskovska M, Kasakov L, Rong W*, Bodin P, Bardini M, Cockayne DA, Ford AP, Burnstock G. P2X3 knock-out mice reveal a major sensory role for urothelially released ATP. J Neurosci. 2001 Aug 1;21(15):5670-7.
8. Rong W, Burnstock G, Spyer KM. P2X purinoceptor-mediated excitation of trigeminal lingual nerve terminals in an in vitro intra-arterially perfused rat tongue preparation. J Physiol. 2000 May 1;524 Pt 3:891-902.
9. Rong W, Wang W, Yuan W, Chen Y. Rapid effects of corticosterone on cardiovascular neurons in the rostral ventrolateral medulla of rats. Brain Res. 1999 Jan 2;815(1):51-9.