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Biomedical subjects

M S Tan

Publications and source records attributed to M S Tan.

8 recordsLinked to original sources

Increased renal atrial natriuretic peptide synthesis in rats with deoxycorticosterone acetate-salt treatment.

To investigate the role of renal synthesis of atrial natriuretic peptide (ANP) as a contributor to the water-sodium homeostasis, we studied the effects of electrolyte-water imbalance on renal ANP mRNA levels, plasma ANP concentrations, and urinary ANP excretion rates by using reverse transcription-polymerase chain reaction (PCR) and radioimmunoassay. Male Wistar rates divided into the following three groups: 1) the control group, 2) deoxycorticosterone acetate (DOCA)-salt-treated group, and 3) low-salt-treated group. The urinary sodium excretion rate and urine volume in the DOCA-salt rats were significantly elevated at 2 days and for the 10-day study. The urinary ANP excretion rate in DOCA-salt rats was significantly increased at 2 days after treatment and was well correlated to the urinary sodium excretion rate (r = 0.76, P < 0.01). Plasma ANP levels in the DOCA-salt rats were elevated on the day of death. In contrast, plasma renin activities were markedly suppressed in DOCA-salt rats and increased in low-salt rats. By immunohistochemical study, immunoreactive ANP materials were mainly localized in the proximal and distal cortical tubules of the kidney. With the PCR cloning and sequencing technique, ANP cDNA was cloned from the rat kidney, and the sequences were identical to that of ANP identified in the atria. By semiquantitative PCR technique, the expression of ANP mRNA in the ventricle and renal cortex tissues was significantly enhanced in the DOCA-salt rats. Our results confirm that the rat kidney is a site of ANP synthesis and indicate that renal ANP synthesis is enhanced in a volume-expansion state. We propose that renal synthesized natriuretic peptide participates in the intrarenal regulation of water-electrolyte homeostasis and may contribute to renal adaptation during the mineralocorticoid escape phenomenon.

Animals

Increased expression of heparin binding epidermal growth-factor-like growth factor mRNA in the kidney of streptozotocin-induced diabetic rats.

Heparin binding epidermal growth factor (HB-EGF), a new member of the EGF family, is a potent mitogen for smooth muscle cells, fibroblasts, and mesangial cells. To study whether the HB-EGF is involved in the development of diabetic nephropathy, we measured the expression of the HB-EGF gene in the kidney tissues of streptozotocin-induced diabetic rats by Northern blot analysis. The mean kidney weight of diabetic rats without strict blood sugar control was significantly increased as compared to that of the control group. Renal HB-EGF mRNA expression was also increased in diabetic rats without strict blood sugar control at 7 days after induction of diabetes and remained elevated for the entire 3-month study period. Strict insulin treatment abolished the elevation of HB-EGF mRNA expression and kidney growth. As HB-EGF is a mitogen for mesangial cells, our results suggest that HB-EGF may be involved in the development of diabetic nephropathy.

Animals

Decrease of renal endothelin 1 content and gene expression in diabetic rats with moderate hyperglycemia.

To investigate the intrarenal endothelin 1 (ET-1) synthesis in streptozocin (STZ) diabetic rats with moderate hyperglycemia, we measured plasma ET-1, renal ET-1 mRNA, and renal tissue ET-1 levels. The renal ET-1 mRNA expression progressively decreased from the 2nd to the 6th week after induction of diabetes by STZ. The renal ET-1 mRNA expression and the renal tissue ET-1 content were significantly reduced in 8 diabetic rats with a mean blood glucose level of 21.0 +/- 0.4 mM as compared with 7 normal rats sacrificed at the 6th week after STZ or citric buffer injection. The reduction of renal ET-1 and mRNA levels was ameliorated in 9 diabetic rats with a mean blood glucose level of 6.9 +/- 0.7 mM after strict glycemic control by insulin treatment. Kidney weight and glomerular filtration rate in moderately hyperglycemic rats were significantly increased as compared with normal rats at the 6th week after STZ injection. The mean plasma ET-1 levels in moderately hyperglycemic diabetic rats were not different from those of the other two groups. This study demonstrates that moderate hyperglycemia in diabetic rats is associated with a reduction in renal ET-1 synthesis. Whether decreased renal ET-1 synthesis is an adaptive phenomenon of a renal hemodynamic change during the early stage of diabetes is worthy of further investigation.

Animals

Regulation of heparin binding-epidermal growth factor like growth factor gene expression by LDL and oxidized-LDL in rat mesangial cells.

The present study was to determine whether low-density lipoprotein (LDL) and oxidized LDL (Ox-LDL) modulate the heparin binding-epidermal growth factor like growth factor (HB-EGF) gene expression in rat mesangial cells (RMC). Using Northern blot analysis, LDL and Ox-LDL stimulated the expression of RMC HB-EGF mRNA in a time- and concentration-dependent manner, and the stimulatory effect of Ox-LDL lasted longer than LDL. In addition, a protein kinase C (PKC) inhibitor-staurosporine and a PKC-depletion condition abolished both of the stimulatory activities of LDL and Ox-LDL, while H-8 (a protein kinase A inhibitor) and cAMP-antagonist (cyclic adenosine-3':5'-monophosphothioate) had little effect. Our data indicate that LDL and Ox-LDL enhance HB-EGF gene expression and both via the PKC pathway in RMC. As HB-EGF is a mitogen for RMC, our results suggest that lipoproteins may regulate RMC function by inducing HB-EGF gene expression and thus contribute to glomerular injury.

Alkaloids

Induction of heparin-binding epidermal growth factor-like growth factor mRNA by protein kinase C activators.

Heparin-binding epidermal growth factor-like growth factor (HB-EGF) is a potent smooth muscle cell mitogen of macrophage origin. To determine whether the HB-EGF gene is transcribed and regulated in mesangial cells, we measured HB-EGF mRNA levels in cultured rat mesangial cells by RNA blot analysis. A 2.5-kb HB-EGF mRNA was detected in unstimulated mesangial cells. The protein kinase C activator 12-O-tetradecanoylphorbol 13-acetate (TPA) increased HB-EGF mRNA levels by 15-fold in mesangial cells, and this induction of HB-EGF mRNA by TPA was both time- and dose-dependent. HB-EGF mRNA could also be stimulated by 10% fetal calf serum, ionomycin, thrombin, and endothelin-1. Staurosporine, a protein kinase C inhibitor, abolished the induction of HB-EGF mRNA by TPA and serum. To determine whether HB-EGF is mitogenic for mesangial cells, we transfected COS cells with HB-EGF expression plasmids. Culture medium from COS cells transfected with these plasmids increased 3H-thymidine incorporation in mesangial cells in a dose-dependent manner. To our knowledge, this is the first report that HB-EGF is expressed in renal cells. This inducible transcription of HB-EGF suggests that it may have an autocrine role in mesangial cell proliferation in kidney disease.

Alkaloids

Characterization and cloning of enterotoxin genes of Salmonella typhimurium.

Five of fifty five strains of Salmonella typhimurium of human origin was hybridized with both the LT-A and LT-B gene of Escherichia coli. The remarkably erythromatous and indurated response on rabbit skin and significant elongation of Chinese Hamster Ovary (CHO) cells indicated the production of enterotoxin of these isolates. The Salmonella enterotoxin is heat-labile and is not a secretory product. The LT gene of E. coli was used to analyze the chromosome and plasmid DNA from Salmonella typhimurium strains for toxin gene sequences. Southern blot analysis demonstrated that the toxin gene was located on the plasmid but not on the chromosome. Restriction enzymes BamHI, EcoRI, HindIII and PstI were used to analyze the DNA isolated from salmonella strains Nos.22, 52, 55 and 59. Three DNA fragments with size of 5.2 Kb of strain 22, 5.0 Kb of strain 52 and 8.6 Kb of strain 59 were identified as containing the enterotoxin gene. Plasmid pUC19 was used as the vector to clone these DNA fragments in E. coli. The rabbit skin permeability test indicated that Salmonella enterotoxin could be synthesized at readily detectable levels in these transformed E. coli.

Animals

Randomized sequential hormonal therapy vs adrenalectomy for metastatic breast carcinoma.

One hundred sixty-one postmenopausal and 65 premenopausal women, a total of 226 patients with metastatic breast carcinoma, were included in this randomized study to evaluate the merits of adrenalectomy as the primary mode of therapy as compared to the customary sequential hormonal manipulation. The 145 evaluable postmenopausal patients were randomized as follows: (1) primary additive hormone therapy first followed by adrenalectomy and (2) primary adrenalectomy followed by chemotherapy and/or additive hormone therapy. When 76 patients in group 1 were compared with 70 patients in group 2 regarding their survival time, there was no essential difference, but the response rate was 20% vs 38.6%, a significant difference. The 55 evaluable premenopausal women were randomized into two groups: (1) oophorectomy followed by adrenalectomy; (2) adrenalectomy-oophorectomy as primary mode of therapy. The response rate in group 1 was 17.4% as compared with 41.9% in group 2, but again there was no difference in the survival time among these two groups. When sequential hormonal manipulation was utilized, only one-third of these patients were subjected to adrenalectomy because of their rapidly deteriorating condition. Adrenalectomy performed as a secondary procedure showed a lower response rate but the total survival time was comparable with primary adrenalectomy patients.

Adrenalectomy