Chao J, Zhang J J, Lin K F, Chao L
Department of Biochemistry and Molecular Biology, Medical University of South Carolina, Charleston 29425-2211, USA.
Kidney Int. 1998 Oct;54(4):1250-60. doi: 10.1046/j.1523-1755.1998.00104.x.
The tissue kallikrein-kinin system has been shown to play a role in cardiac and renal functions. In this study, we investigated the ability of kallikrein gene delivery to reverse salt-induced cardiac hypertrophy and renal injury in Dahl salt-sensitive rats.
Adenovirus harboring the human tissue kallikrein gene, Ad.CMV-cHK, was delivered intravenously into Dahl salt-sensitive rats suffering from hypertension, cardiac hypertrophy and renal damage induced by a high salt diet (4% NaCl) for four weeks.
Expression of human kallikrein mRNA was detected in rat kidney, heart, aorta and liver, and immunoreactive human kallikrein levels were measured in the serum and urine of rats receiving gene delivery. A single injection of Ad.CMV-cHK caused a significant reduction of blood pressure for more than two weeks. Kallikrein gene transfer caused left ventricular mass reduction and elevated glomerular filtration rate, renal blood flow, urinary excretion, urinary kinin, nitrite/nitrate content, cGMP and cAMP levels. Morphological investigations showed that kallikrein gene transfer caused a significant reversal in salt-induced tissue and organ damage. In the heart, cardiac hypertrophy and fibrosis were reduced, and in the kidney, both glomerular sclerotic lesions and tubular damage were reversed.
Adenovirus-mediated kallikrein gene delivery is effective in reversing salt-induced cardiac hypertrophy and renal injury in Dahl-salt sensitive rats.
组织激肽释放酶-激肽系统已被证明在心脏和肾脏功能中发挥作用。在本研究中,我们调查了激肽释放酶基因递送对逆转高盐诱导的Dahl盐敏感大鼠心脏肥大和肾损伤的能力。
将携带人组织激肽释放酶基因的腺病毒Ad.CMV-cHK静脉注射到因高盐饮食(4%氯化钠)诱导高血压、心脏肥大和肾损伤达四周的Dahl盐敏感大鼠体内。
在大鼠肾脏、心脏、主动脉和肝脏中检测到人激肽释放酶mRNA的表达,并在接受基因递送的大鼠血清和尿液中测量免疫反应性人激肽释放酶水平。单次注射Ad.CMV-cHK导致血压显著降低超过两周。激肽释放酶基因转移导致左心室质量减轻,肾小球滤过率、肾血流量、尿排泄、尿激肽、亚硝酸盐/硝酸盐含量、cGMP和cAMP水平升高。形态学研究表明,激肽释放酶基因转移导致盐诱导的组织和器官损伤显著逆转。在心脏中,心脏肥大和纤维化减轻,在肾脏中,肾小球硬化病变和肾小管损伤均得到逆转。
腺病毒介导的激肽释放酶基因递送可有效逆转高盐诱导的Dahl盐敏感大鼠心脏肥大和肾损伤。