AGE FACTOR IN COMPENSATORY HYPERTROPHY OF THE KIDNEY EVALUATED BY TC-99M-DTPA RENOGRAPHY

被引:7
作者
CHOU, YH
HSU, CP
机构
[1] Department of Urology, Kaohsiung Medical College
关键词
COMPENSATORY HYPERTROPHY; TC-99M-DTPA RENOGRAPHY; GLOMERULAR FILTRATION RATE; EFFECTIVE RENAL PLASMA FLOW;
D O I
10.1159/000282116
中图分类号
R5 [内科学]; R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
1002 ; 100201 ;
摘要
Unilateral nephrectomy initiates a growth response in the contralateral kidney to compensate for the loss of a renal mass. The events which regulate this process are not very clear. We used a newly developed method, 99mTc-DTPA gamma-camera renography, to evaluate the individual kidney function for detection of the change of it. This method is simple, reliable and requires neither blood nor urine samples. Two groups of rabbits were used in the study. Those of 1.5-2 months of age were taken as the young aged group and those of 2 years of age as the old aged group. Kidney weight, glomerular filtration rate (GFR), and effective renal plasma flow (ERPF) were detected both before and 3 weeks after unilateral nephrectomy. After unilateral nephrectomy in both young and old age groups, the kidney weight increased by 119 and 38%, the GFR by 71 and 44%, and the ERPF by 116 and 35%. We conclude that nephrectomy at a young age where there is fast growth would cause the remaining kidney a compensatory hypertrophy which is much better than that in nephrectomy at an old age. The difference of glomerular filtration rate was less apparent than that of the kidney weight and renal plasma flow in both groups of rabbits.
引用
收藏
页码:126 / 128
页数:3
相关论文
共 11 条
[1]  
Tapson J.S., Prognosis afier donor nephrectomy: An update, Int J Artif Organs, 10, pp. 341-345, (1987)
[2]  
Rehling M., Jensen J.J., Scherling B., Evaluation of renal function and morphology in children by <sup>99m</sup>Tc-DTPA gamma camera renography, Acta Paediatr Scand, 78, pp. 601-607, (1989)
[3]  
Rehling M., Moller M.L., Lund J.O., Jensen K.B., Thamdrup B., Trap-Jensen J., <sup>99m</sup>Tc-DTPA gamma-camera renography: Normal values and rapid determination of single-kidney glomerular filtration rate, Eur J Nucl Med, 11, pp. 1-6, (1985)
[4]  
Rehling M., Moller M.L., Thamdrup B., Lund J.O., Trap-Jensen J., Reliability of a <sup>99m</sup>Tc-DTPA gamma camera technique for determination of single kidney glomerular filtration rate, Scand J Urol Nephrol, 20, pp. 57-62, (1986)
[5]  
Kaufman J.M., DiMeola H.J., Siegel N.J., Lytton B., Kashgarian M., Hayslett J.P., Compensatory adaptation of structure and function following progressive renal ablation, Kidney Int, 6, pp. 10-17, (1974)
[6]  
Beer D.G., Zweifel K.A., Simpson D.P., Pitot H.C., Specific gene expression during compensatory renal hypertrophy in the rat, J Cell Physiol, 131, pp. 29-35, (1987)
[7]  
Jobin J.R., Bonjour J.P., Compensatory renal growth: Modulation by calcium PTH and 1, 25-(OH)<sub>2</sub>D<sub>3</sub>, Kidney Int, 29, pp. 1124-1130, (1986)
[8]  
Zalups R.K., Veltman J.C., Renal glutathione homeostasis in compensatory renal growth, Life Sci, 42, pp. 2171-2176, (1988)
[9]  
Lin S.Y., Chaves C., Wiedemann E., Humphreys M.H., A r-melanocyte stimulating hormone-like peptide causes reflex natriuresis after acute unilateral nephrectomy, Hypertension, 10, pp. 619-627, (1987)
[10]  
Phillips T.L., Leong G.F., Kidney cell proliferation after unilateral nephrectomy as related to age, Cancer Res, 27, (1967)