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Biomedical subjects

Tadaichi Kitamura

Publications and source records attributed to Tadaichi Kitamura.

At least 73 records · Page 4Linked to original sources

Characteristics of patients with prostate cancer who have initially been treated by hormone therapy in Japan: J-CaP surveillance.

OBJECTIVE: Hormone therapy for prostate cancer has empirically prevailed in Japan. We planned to evaluate the trends and outcome of hormone therapy for establishing an adequate guideline. METHODS: Patients with prostate cancer who were initially treated by hormone therapy were registered through the J-CaP registration system. This report summarizes the background factors. RESULTS: From January 2001 to October 2003, 17,872 patients were registered from 395 institutes throughout Japan. The background factors of 17,312 patients were analyzed. The 17,872 patients were estimated as composing more than half of newly diagnosed prostate cancer patients in Japan. Of these, 22.9, 35.1, 32.9 and 8.6% belonged to T1, T2, T3 and T4, respectively. For the purposes of hormone therapy, 77.5% was primary hormone therapy. Neoadjuvant setting and adjuvant setting were 18.1 and 4.3%, respectively. About 60% of the hormone therapy was combined hormone therapy with LH-RHa plus anti-androgens. CONCLUSION: Irrespective of patients' age, TNM, stage of illness, or histological background, the majority of prostate cancer patients in Japan are receiving hormone therapy. It is necessary to evaluate whether this trend is merely a continuation of past experience of Japanese urologists or if there is a difference in the profile of effect and side-effect in the case of Japanese patients compared to therapy given in Westerners.

Aged↗

Prolonged renal parenchymal retention of 99mTc mercaptoacetyltriglycine after nephron-sparing surgery.

OBJECTIVE: Nephron-sparing surgery is a treatment in which a part of a diseased kidney is resected and some parenchyma of the kidney is spared. Impairment of spared renal parenchyma after the surgery may cause prolonged prarenchymal retention in renal scintigraphy with Tc mercaptoacetyltriglycine (Tc-MAG3). The aim of this study was to determine whether or not parenchymal retention of Tc-MAG3 is prolonged after nephron-sparing surgery. METHODS: Twenty-two patients underwent a total of 29 Tc-MAG3 studies within 1 year after nephron-sparing surgery. In 17 patients (23 examinations) who had bilateral kidneys, the presence of diffuse prolongation of parenchymal retention was determined for the operated kidney. In all patients, the presence of regional prolongation around the surgical margin was assessed. RESULTS: Diffuse prolongation was observed in four of 10 examinations performed within 1 month after surgery and in none of 13 examinations performed later than 1 month after surgery. Regional prolongation was shown in 10 of 14 examinations performed within 1 month after surgery and in three of 15 examinations performed later than 1 month after surgery. In five patients who were studied both prior to and later than 1 month after surgery, regional prolongation was noted on the first study. On the second study, regional prolongation was improved and initial renal uptake around the surgical margin was intensified. CONCLUSIONS: Renal parenchymal retention of Tc-MAG3 is frequently prolonged in the early period after nephron-sparing surgery. Renal scintigraphy with Tc-MAG3 may aid in characterizing acute renal damage after nephron-sparing surgery.

Adolescent↗

Subtypes of BK virus prevalent in Japan and variation in their transcriptional control region.

BK polyomavirus (BKV) is ubiquitous in the human population, infecting children without obvious symptoms, and persisting in the kidney in a latent state. In immunosuppressed patients, BKV is reactivated and excreted in urine. BKV isolates have been classified into four subtypes (I-IV) using either serological or genotyping methods. To elucidate the subtypes of BKV prevalent in Japan, the 287 bp typing region in the viral genome was PCR-amplified from urine samples of 45 renal transplant (RT) and 31 bone-marrow transplant (BMT) recipients. The amplified fragments were subjected to a phylogenetic or RFLP analysis to determine the subtypes of BKV isolates in urine samples. Subtypes I, II, III and IV were detected, respectively, in 70-80, 0, 2-3 and 10-20 % of the BKV-positive patients in both patient groups. This pattern of distribution was virtually identical to patterns previously demonstrated in England, Tanzania and the United States, suggesting that BKV subtypes are distributed similarly in various human populations. Furthermore, transcriptional control regions (TCRs) were PCR-amplified from the urine samples of 25 RT and 20 BMT recipients, and their nucleotide sequences were determined. The basic TCR structure (the so-called archetype configuration) was observed in most isolates belonging to subtypes I, III and IV (subtype II isolates were not available), albeit with several nucleotide substitutions and a few single-nucleotide deletions (or insertions). Only three TCRs carried extensive sequence rearrangements. Thus, it was concluded that the archetypal configuration of the BKV TCR has been conserved during the evolution of BKV.

BK Virus↗

Tiny nodule in the testicle: case report of a sertoli cell tumor.

Sex cord-stromal tumors of the testis are rare. We report on a small Sertoli cell tumor in the testicle. According to published reports, a nodular lesion on the testicle has a variety of differential diagnoses. Preoperatively, it is very difficult to differentiate between a tumorous lesion and an inflammatory change. When a tiny nodule in the testicle is encountered, we propose limited, testicular-sparing surgery according to the frozen section diagnosis.

Adult↗

Interleukin-2 blocks the antitumour activity caused by depletion of CD25 cells in a murine renal adenocarcinoma model.

OBJECTIVE: To test the effectiveness of antimouse CD25 monoclonal antibody (mAb) against murine renal adenocarcinoma (RENCA) cells, as immunoregulatory/suppressor cells are known to be involved in tumour development in vivo, but the functions of these cells are not yet clear, and eliminating naive CD25 (interleukin-2 receptor alpha)-positive T cells elicits potent immune responses to syngeneic tumours in vivo. MATERIALS AND METHODS: Aliquots of 1 x 10(4) or 1 x 10(5) RENCA cells were implanted into the subcapsule of the left kidney of syngeneic male Balb/c mice. Mice were injected with 125 micro g of antimouse CD25 mAb to deplete CD25(+) cells before RENCA implantation. Then 10(4) units of recombinant human interleukin-2 (rhIL-2) were subcutaneously injected twice daily for 7 days. Fourteen or 25 days later the tumour size was determined by laparotomy, and cells sorted using two-colour flow cytometry. RESULTS: Depletion of naive CD25(+) cells with anti-CD25 mAb and rhIL-2 administration effectively induced anti-RENCA tumour activity in Balb/c hosts. However, co-administration of anti-CD25 mAb and rhIL-2 abrogated this significant suppression of RENCA tumour growth. RENCA implantation reduced the proportion of CD4(+) cells among splenocytes, whereas anti-CD25 mAb treatment increased it. The proportion of CD25(+)CD8(+) cells among splenocytes and that of CD25(+) cells among CD8(+) cells were markedly reduced by co-administration of anti-CD25 mAb and rhIL-2 with RENCA implantation. Both CD4(+) and CD8(+) cells were stained around the remnant microscopic RENCA tumour after anti-CD25 mAb treatment. CONCLUSION: Either depletion of naive CD25(+) cells or rhIL-2 administration suppressed RENCA tumour growth in murine hosts. However, co-administration of anti-CD25 mAb and rhIL-2 abrogated this significant suppression of RENCA tumour growth.

Animals↗

Stability of JC virus coding sequences in a case of progressive multifocal leukoencephalopathy in which the viral control region was rearranged markedly.

CONTEXT: It is generally accepted that JC virus variants in the brains of patients with progressive multifocal leukoencephalopathy are generated from archetypal strains through sequence rearrangement (deletion and duplication, or deletion alone) in the control region. This change is thought to occur during persistence of JC virus in patients. OBJECTIVE: The present study was performed to ascertain whether amino acid substitution in the viral proteins is involved in the generation and propagation of JCV variants with rearranged control regions. DESIGN: Many complete JC DNA clones were established from brain tissues (cerebellum, occipital lobe, and brainstem) autopsied in a case of progressive multifocal leukoencephalopathy in which multiple distinct control sequences were detected. Control and coding sequences were determined and compared among the JC DNA clones. RESULTS: Twenty-eight control-region and 20 coding sequences of JC virus were compared. Five rearranged control sequences were detected, but they could be classified into 3 groups that shared common structural features. Viral coding sequences were identical among clones with different control regions and among clones derived from different brain regions. CONCLUSION: In the present case, nucleotide substitution in the viral coding regions (and resultant amino acid change in the viral proteins) was involved neither in the genesis of rearranged JC virus variants nor in the proliferation of demyelinated lesions in the brain.

Adolescent↗

Association of a lung tumor suppressor TSLC1 with MPP3, a human homologue of Drosophila tumor suppressor Dlg.

We have previously identified the tumor suppressor in lung cancer 1 (TSLC1) gene as a novel tumor suppressor in human non-small cell lung cancer (NSCLC) by functional complementation. TSLC1 encodes a membrane glycoprotein belonging to an immunoglobulin superfamily and participates in cell adhesion. A truncating mutation of the TSLC1 corresponding to its cytoplasmic domain in a primary NSCLC tumor suggests that this domain is important for tumor suppressor activity. Here, we report that TSLC1 directly associates with MPP3, one of the human homologues of a Drosophila tumor suppressor gene, Discs large (Dlg). This interaction was dependent on the presence of a PDZ-binding motif at the carboxyl terminus of TSLC1. Furthermore, TSLC1 and MPP3 were colocalized at the cell-cell attachment sites in both a low and a high cell density. The MPP3 gene was expressed in normal lung as well as in many tissues examined except for peripheral blood lymphocytes but lost its expression in one of the nine NSCLC cell lines. These results suggest that TSLC1 and MPP3 are involved in the same cascade of cell-cell interaction, and that the disruption of this cascade might lead cells to malignant growth and tumor formation in lung cancer.

Amino Acid Sequence↗

EBAG9/RCAS1 expression and its prognostic significance in prostatic cancer.

Estrogen receptor-binding fragment-associated gene 9 (EBAG9) has been identified as a primary estrogen-responsive gene from MCF-7 human breast cancer cells (Watanabe T, et al., Mol Cell Biol 1998;18:442-9). EBAG9 is identical with RCAS1 (receptor-binding cancer antigen expressed on SiSo cells), which has been reported as a cancer cell surface antigen implicated in immune escape (Nakashima M, et al., Nat Med 1999;5:938-42). In our present study, we examined EBAG9 expression in human prostatic tissues and investigated its prognostic significance in patients with prostatic cancer. EBAG9 expression in normal prostatic epithelial cells and PC-3, DU145 and LNCaP cancer cells was determined by Western blot analysis. Immunohistochemic analysis was performed in 21 benign and 81 malignant prostatic specimens, and patients' charts were reviewed for clinical, pathologic and survival data. EBAG9 was abundantly expressed in the prostate cancer cells compared to the normal epithelial cells. Strong and diffuse immunostaining in the cytoplasm of EBAG9 was found in 44 of 81 (54%) cancerous tissue samples. EBAG9 expression significantly correlated with advanced pathologic stages and high Gleason score (p = 0.0305 and < 0.0001, respectively). EBAG9 was more frequently expressed at sites of capsular penetration (79%) and lymph node metastasis (100%) compared to intracapsular primary tumors (54%) (p = 0.0264 and 0.0048, respectively). Positive EBAG9 immunoreactivity significantly correlated with poor PSA failure-free survival (p = 0.0059). EBAG9/RCAS1 may play a significant role in cancer progression via an immune escape system. Immunodetection of EBAG9/RCAS1 expression can be a negative prognostic indicator for patients with prostatic cancer.

Aged↗

Human CD4+ CD25+ regulatory T cells suppress NKT cell functions.

CD4+CD25+ regulatory T cells play an important role in peripheral tolerance. These cells have been reported to be capable of suppressing the response of CD4+CD25- T cells in vitro. The depletion of these cells evokes effective immune responses to tumor cells in vivo. In this study, we demonstrate that CD4+CD25+ T cells also suppress all subsets of Valpha24+NKT cells (Valpha24+CD4-CD8- double negative, Valpha24+CD4+, and Valpha24+CD8+) in both proliferation and cytokine production [IFN-gamma, interleukin-4 (IL-4), IL-13, and IL-10]. This suppression is mediated by cell-to-cell contact but not by a humoral factor or the inhibition of antigen-presenting cells. Moreover, the cytotoxic activity of Valpha24+NKT cells against some tumor cell lines is suppressed by CD4+CD25+ T cells. This finding is important in developing an effective immunotherapy for cancer.

CD4-Positive T-Lymphocytes↗

Phylogenetic relationships among JC virus strains in Japanese/Koreans and Native Americans speaking Amerind or Na-Dene.

Many genetic studies using human mtDNA or the Y chromosome have been conducted to elucidate the relationships among the three Native American groups speaking Amerind, Na-Dene, and Eskimo-Aleut. Human polyomavirus JC (JCV) may also help to gain insights into this issue. JCV isolates are classified into more than 10 geographically distinct genotypes (designated subtypes here), which were generated by splits in the three superclusters, Types A, B, and C. A particular subtype of JCV (named MY) belonging to Type B is spread in both Japanese/Koreans and Native Americans speaking Amerind or Na-Dene. In this study, we evaluated the phylogenetic relationships among MY isolates worldwide, using the whole-genome approach, with which a highly reliable phylogeny of JCV isolates can be reconstructed. Thirty-six complete sequences belonging to MY (10 from Japanese/Koreans, 24 from Native Americans, and 2 from others), together with 54 belonging to other subtypes around the world, were aligned and subjected to phylogenetic analysis using the neighbor-joining and maximum-likelihood methods. In the resultant phylogenetic trees, the MY sequences diverged into two Japanese/Korean and five Native American clades with high bootstrap probabilities. Two of the Native American clades contained isolates mainly from Na-Denes and the others contained isolates mainly from Amerinds. The Na-Dene clades were not clustered together, nor were the Amerind clades. In contrast, the two Japanese/Korean clades were clustered at a high bootstrap probability. We concluded that there is no distinction between Amerinds and Na-Denes in terms of indigenous JCVs, although they are linguistically distinguished from each other.

Humans↗

Prominent induction of cyclin B1 in G2/M renal cancer cells with butyrolactone 1.

BACKGROUND: Butyrolactone 1 (BL) is a cyclin dependent kinase (CDK) inhibitor derived from Aspergillus terreus. None of the present drugs are effective for the treatment of renal cell carcinoma. The use of BL is expected to promote a new type therapy of renal cancer. METHODS: We investigated three human renal cancer cell lines: ACHN, OS-RC-2 and RCC10RGB, using 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay and two-color flow cytometry. Simultaneous measurements of DNA content and cyclin expression allowed us to perform cell cycle specific analysis. Western blot analysis was performed using ACHN to represent cell lines. RESULTS: BL inhibited cell proliferation and caused cell accumulation at G2/M phase associated with the emergence of the third peak. Moreover, BL induced cyclin B1 over-expression in G2/M cells. These changes were quite definite, whereas cyclins D1, E and A showed no changes at all. Cyclin B1 accumulation was confirmed by western blot analysis. The chronological observation revealed that the emergence of the third peak preceded the regression of the increased cyclin B1 positive G2/M cells. These results suggested that BL accelerated cyclin B1 accumulation in G2/M cells, which then shifted to G1 phase without cell division. New G1 cells started DNA synthesis most likely as endoreduplication to form the third peak and the mechanism of cyclin B1 accumulation converted into down-regulation. CONCLUSION: BL induced significant cell kinetic interference in the tested human renal carcinoma cell lines. This might indicate the possibility of a new medical treatment modality for renal cancer.

4-Butyrolactone↗

Overactive bladder: magnetic versus electrical stimulation.

PURPOSE OF REVIEW: To review recent literature on the electrical and magnetic stimulation of the sacral nerve roots and pelvic floor for the treatment of overactive bladder. RECENT FINDINGS: Overactive bladder is a common condition affecting millions of women worldwide, with a significant effect on quality of life. Electrical stimulation and neuromodulation of the sacral nerve roots have provided a useful alternative for these patients with satisfactory outcomes. The use of the procedures has been limited, however, mainly due to local discomfort/pain or invasiveness of the surgical procedure. Magnetic stimulation can activate deep neural structures by induced electric currents noninvasively. Recent investigations demonstrated that magnetic stimulation of the sacral roots suppressed detrusor overactivity more effectively compared with electrical stimulation. Clinical trials including randomized placebo-controlled studies demonstrated the excellent short-term effect of magnetic stimulation in the treatment of overactive bladder. SUMMARY: Magnetic stimulation appears to induce inhibitory effects on detrusor overactivity in a similar manner to electrical stimulation, with significant clinical advantages. Although further studies are needed to establish long-term efficacy, magnetic stimulation of the sacral nerve roots may be a promising alternative treatment for overactive bladder.

Clinical Trials as Topic↗

Increased DNA methyltransferase 1 protein expression in human transitional cell carcinoma of the bladder.

PURPOSE: DNA methylation is a key regulator of gene transcription and genomic stability, and alteration of DNA methylation is one of the most consistent epigenetic changes in human cancers. We elucidated the significance of aberrant protein expression of DNA methyltransferase (DNMT) 1, a major enzyme involved in the determination of genomic methylation patterns, during human urothelial carcinogenesis. MATERIALS AND METHODS: A total of 61 samples of normal urothelium, 89 noncancerous urothelium samples showing no remarkable histological changes from patients with bladder cancer (NBCs), 78 dysplastic urothelium samples and 174 transitional cell carcinoma samples (TCCs) were subjected to immunohistochemical analysis for DNMT1. RESULTS: The incidence of nuclear DNMT1 immunoreactivity in NBCs (65%) was significantly higher than in normal urothelium (20%, p <0.0001) and the incidence was even higher in dysplastic urothelium samples (84%, p = 0.0017). The incidence of nuclear DNMT1 immunoreactivity was 87% in TCCs and the intensity of nuclear immunoreactivity was markedly increased in TCCs compared with that in dysplastic urothelium samples. DNMT1 expression levels had already increased in NBCs in which the proliferating cell nuclear antigen labeling index had not yet increased. Increased DNMT1 protein expression correlated significantly with histological grade (p <0.0001). DNMT1 protein expression was higher in nonpapillary tumors (p = 0.0001), especially flat carcinoma in situ, than in papillary tumors. CONCLUSIONS: Progressively increasing expression of DNMT1 protein is not entirely a secondary result of increased cell proliferative activity, but rather it is associated with urothelial carcinogenesis even during the precancerous stages. In particular, it is associated with the development of flat carcinoma in situ, which is considered to be a precursor of nodular invasive carcinoma of the bladder.

Adult↗

Endothelial responses of the aorta from adrenomedullin transgenic mice and knockout mice.

Adrenomedullin (AM) is a potent vascular wall-derived vasorelaxing peptide which induces the release of nitric oxide (NO). To explore the role of endogenous AM in vascular function, we examined the effects of acetylcholine (ACh), AM, and AM receptor antagonists [AM (22-52), and calcitonin gene-related peptide (CGRP) (8-37)] on the isometric tension of aortic rings isolated from AM transgenic (TG) and knockout (KO) mice and wild type littermates (WT). ACh and AM caused a dose-dependent reduction of the isometric tension of aortic rings, but the degree of vasodilatation was smaller in TG than in KO or WT (% delta tension [10(-6) mol/l ACh]: KO -69 +/- 10%, WT -39 +/- 8%, TG -29 +/- 1%, p < 0.01). On the other hand, N(G)-nitro-L-arginine methyl ester, an NO synthase inhibitor, induced greater vasoconstriction in TG (% delta tension 10(-5)mol/l: KO +78 +/- 16%, WT +99 +/- 27%, TG +184 +/- 20%, p < 0.01), whereas E-4021, a cyclic guanosine monophosphate (cGMP)-specific phosphodiesterase inhibitor, caused greater vasodilation in TG mice. Both AM antagonists increased tension in TG to a greater extent than in KO or WT mice (% delta tension [10(-6) mol/l CGRP (8-37)]: KO +24 +/- 5%, WT +51 +/- 6%, TG +75 +/- 7%, p < 0.01). Endothelial denudation of the aorta diminished the vasoconstriction caused by the AM antagonists. In conclusion, the amounts of AM expressed in the aortic endothelium influenced baseline NO release. AM antagonists increased vascular tone in WT as well as in TG, suggesting that endogenous AM plays a physiological role in the regulation of aortic tone.

Acetylcholine↗

Compound disruption of smad2 accelerates malignant progression of intestinal tumors in apc knockout mice.

Smad2 is a receptor-regulated Smad that is activated specifically by transforming growth factor beta and activin signaling. We disrupted the mouse Smad2 gene by gene targeting. Homozygous Smad2 mutant mice died around E8.5 with impaired visceral endoderm function and deficiency of mesoderm formation. Heterozygotes were fertile and had no apparent abnormality up to at least 1 1/2 year of age. To examine the role of Smad2 inactivation in the process of carcinogenesis, we prepared compound heterozygous mice, which carry both Apc and Smad2 mutations on the same chromosome in the cis-configuration. Compound inactivation of Smad2 in heterozygous Apc mutant mice did not change the total number of intestinal tumors but increased sudden death from intestinal obstruction caused by extremely large tumors. Furthermore, histological examination revealed that Apc/Smad2 cis-compound heterozygotes developed multiple invasive cancers that had never been observed in Apc single heterozygotes. These results indicate that loss of Smad2 does not initiate tumorigenesis by itself but accelerates malignant progression of tumors to invasive cancer in the late stages of carcinogenesis.

Animals↗

Pioglitazone improves the phenotype and molecular defects of a targeted Pkd1 mutant.

Mutations of either PKD1 or PKD2 are associated with autosomal dominant polycystic kidney disease (ADPKD). The molecular function of the gene product of PKD1, polycystin-1, in vitro has been elucidated recently, but the molecular pathological consequences of the loss of polycystin-1 in vivo have remained unclear. We have generated a mouse with a targeted deletion of exons 2-6 of Pkd1 to study the molecular defects in Pkd1 mutants. Homozygote embryos (Pkd1(-/-)) developed hydrops, cardiac conotruncal defects and renal cystogenesis. Total protein levels of beta-catenin in heart and kidney and c-MYC in heart were decreased in Pkd1(-/-) embryos. In the kidneys of Pkd1(-/-), the expression of E-cadherin and PECAM in basolateral membranes of renal tubules was attenuated, and tyrosine phosphorylation of epidermal growth factor receptor and Gab1 were constitutively enhanced when cystogenesis started on embryonic day (E) 15.5-16.5. Maternally administered pioglitazone, a thiazolidinedione compound, resolved these molecular defects of Pkd1(-/-). Treatment with pioglitazone improved survival of Pkd1(-/-) embryos and ameliorated the cardiac defects and the degree of renal cystogenesis. Long-term treatment with pioglitazone improved the endothelial function of adult Pkd1(+/-). These data indicated that molecular defects observed in Pkd1(-/-) embryos contributed to the pathogenesis of ADPKD and that thiazolidinediones had a compensatory effect on the pathway affected by the loss of polycystin-1. Pathways activated by thiazolidinediones may provide new therapeutic targets in ADPKD.

Animals↗

Role of endogenous adrenomedullin in the regulation of vascular tone and ischemic renal injury: studies on transgenic/knockout mice of adrenomedullin gene.

Adrenomedullin (AM) is a potent depressor peptide whose vascular action is suggested to involve nitric oxide (NO) release. To explore the role of endogenous AM in vascular and renal function, we examined the effects of acetylcholine (ACh), AM, and AM receptor antagonists AM(22-52) and CGRP(8-37) on the renal perfusion pressure (RPP) of kidneys isolated from AM transgenic (TG)/heterozygote knockout (KO) mice and wild-type littermates (WT). Furthermore, we evaluated the renal function and histology 24 hours after bilateral renal artery clamp for 45 minutes in TG, KO, and WT mice. Baseline RPP was significantly lower in TG than in KO and WT mice (KO 93.4+/-4.6, WT 85.8+/-4.2, TG 72.4+/-2.4 mm Hg [mean+/-SE], P<0.01). ACh and AM caused a dose-related reduction in RPP, but the degree of vasodilatation was smaller in TG than that in KO and WT (%DeltaRPP 10(-7) mol/L ACh: KO -48.1+/-3.9%, WT -57.5+/-5.6%, TG -22.8+/-4.8%, P<0.01), whereas N(G)-nitro-L-arginine methyl ester (L-NAME) caused greater vasoconstriction in TG (%DeltaRPP 10(-4) mol/L: KO 33.1+/-3.3%, WT 55.5+/-7.2%, TG 152.6+/-21.2%, P<0.01). Both AM antagonists increased RPP in TG to a greater extent compared with KO and WT mice (%DeltaRPP 10(-6) mol/L CGRP(8-37): KO 12.8+/-2.6%, WT 19.4+/-3.6%, TG 41.8+/-8.7%, P<0.01). In mice with ischemic kidneys, serum levels of urea nitrogen and renal damage scores showed smaller values in TG and greater values in KO mice (urea nitrogen: KO 104+/-5>WT 98+/-15>TG 38+/-7 mg/dL, P<0.05 each). Renal NO synthase activity was also greater in TG mice. However, the differences in serum urea nitrogen and renal damage scores among the 3 groups of mice were not observed in mice pretreated with L-NAME. In conclusion, AM antagonists increased renal vascular tone in WT as well as in TG, suggesting that endogenous AM plays a role in the physiological regulation of the vascular tone. AM is likely to protect renal tissues from ischemia/reperfusion injury through its NO releasing activity.

Acetylcholine↗