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Biomedical subjects

M Inaba

Publications and source records attributed to M Inaba.

At least 361 records · Page 20Linked to original sources

DNA binding property of vitamin D3 receptors associated with 26,26,26,27,27,27-hexafluoro-1,25-dihydroxyvitamin D3.

Using [3H]-26,26,26,27,27,27-hexafluoro-1,25-dihydroxyvitamin D3 (F6-1,25-(OH)2D3), we have examined its ability to bind to the 1,25-(OH)2D3 receptor, and the ability of the resulting complex to bind DNA. The binding sites for [3H]F6-1,25-(OH)2D3 in the chick intestinal receptor represented a limited number of saturable sites for which 1,25-(OH)2D3 competes. 1,25-Dihydroxyvitamin D3 is three times more active than F6-1,25-(OH)2D3 in displacing [3H]F6-1,25-(OH)2D3. By affinity chromatography using DNA-Sephadex, the [3H]F6-1,25-(OH)2D3 receptor complex eluted from the column in a single peak at 0.14 M KCl, while [3H]-1,25-(OH)2D3 receptor complex eluted at 0.13 M KCl. These results indicate that F6-1,25-(OH)2D3 and 1,25-(OH)2D3 recognize the same binding site of the receptor and that the F6-1,25-(OH)2D3 receptor complex binds DNA more tightly than the 1,25-(OH)2D3 receptor complex. We suggest that the higher binding affinity for DNA may contribute to the greater biological activity of F6-1,25-(OH)2D3.

Animals↗

Effect of captopril or enalapril on renal prostaglandin E2.

Since one of the hypotensive mechanisms of angiotensin-converting enzyme inhibitor (ACEI) has been suggested to be mediated through the renal kinin-prostaglandin (PG) axis, the present study was designed to investigate the effect of captopril (C) or enalapril (E) on renal PGE2 excretion or synthesis. Wistar male rats (BW 200-250 g) were given orally captopril at 30 mg/kg/day or enalapril at 10 or 30 mg/kg for one week. Before and after ACEI, blood pressure (tail cuff method) as well as PRA and urinary PGE2 excretion was determined. Renopapillary slices were obtained from some of the rats including controls and incubated to determine PGE2 synthesis. C or E administration resulted in a blood pressure decrease of 21 to 36 mm Hg with an increase in PRA. Urine volume and sodium excretion increased after daily treatment with C or E at 30 mg/kg. Urinary PGE2 excretion increased 1.4-fold in response to C, but not to E. Papillary PGE2 synthesis demonstrated a marked decrease 2 h after in vivo administration of either ACEI compared to controls. However, when C or enalaprilat was added in vitro to renal slices obtained from controls, only C at 10(-5) M showed a significant 2-fold increase in renal PGE2 synthesis. These results suggest that (1) renal PGE2 synthesis may be dependent on circulating angiotensin II. (2) C, but not enalaprilat, has a direct stimulatory effect on renal PGE2 synthesis and (3) renal PGE2 may not be involved very much in the hypotensive effect of ACEI.

Animals↗

Inherited persistence of immature type pyruvate kinase and hexokinase isozymes in dog erythrocytes.

1. Red cell pyruvate kinase (EC 2.7.1.40) and hexokinase (EC 2.7.1.1) in high and low potassium (K) dogs were shown to exist as multiple forms which were separable by electrophoresis and ion-exchange chromatography. The R2-type pyruvate kinase, which was determined to be a young type enzyme in canine red cells, was shown to be the predominant form of pyruvate kinase in high K cells. 2. The M2-type pyruvate kinase, a prototype isozyme in erythroid cells, existed in high K dog erythrocytes as well as in high K and low K dog reticulocytes. 3. Isozyme analysis of high K red cell hexokinase also showed a profile similar to that obtained for low K reticulocytes. 4. These results seem to reflect the immaturity of high K erythrocytes, which suggest that an abnormal cell differentiation or maturation may occur at an early stage of erythroid cell proliferation in high K dogs.

Animals↗

Saturable process involved in active efflux of vincristine as a mechanism of multidrug resistance in P388 leukemia cells.

Kinetic analysis of vincristine (VCR) efflux in multidrug-resistant and parental P388 leukemia cells was performed to investigate the difference in activity between the two cell lines. Efflux velocities of VCR were directly determined from the slope of the initial release of drug induced by resuspending the preloaded cells in VCR-free medium, representing unidirectional efflux from intracellular free or loosely bound drug pools. Further, the equilibrium binding of VCR to whole-cell homogenates was analyzed by ultrafiltration to estimate intracellular unbound drug concentrations. A two-site binding model was found to fit the data best for both cell lines, and depletion of ATP by the addition of apyrase decreased binding. The binding parameters were similar between the two cell lines. A Hofstee plot of efflux demonstrated the existence of both linear and saturable transport of VCR in both cell lines. The greater maximum velocity observed with VCR efflux in the resistant cells suggests that an increased number of transporters causes greater activity of this process in the resistant cells.

Animals↗

Long-term observations of autoimmune-prone mice treated for autoimmune disease by allogeneic bone marrow transplantation.

Long-term effects of allogeneic bone marrow transplantation (ABMT) across major histocompatibility complex barriers were studied in (NZB x NZW)F1 (B/W), BXSB, and MRL/Mr-lpr-lpr (MRL/lpr) mice with established autoimmune disease at the time of ABMT. In the BXSB or B/W mice, ABMT cured all aspects of autoimmune disease. Glomerular damage, revealed by histological study was dramatically improved. Serological abnormalities and immunologic functions also were normalized. Correction of autoimmune disease and advanced renal disease in BXSB and B/W mice regularly lasted greater than 5-6 mo and even 1 yr after ABMT. In the MRL/lpr mice, however, autoimmune and renal disease at first improved but then recurred after ABMT, apparently because of intolerance of mice for high doses of irradiation and a high degree of resistance of recipient stem cells to irradiation. In this model, H-2 typing revealed that by the time of relapse, immunocompetent cells of the chimeric mice had been replaced by host (MRL/lpr; H-2k) cells. B220+ Ly-1+ cells, present in increased numbers in untreated MRL/lpr mice, initially returned to normal levels after ABMT but then reappeared in the MRL/lpr mice that had received marrow from donors having few such lymphocytes. Thus, our results show that MRL/lpr mice possess abnormal radioresistant stem cells and provide impressive evidence that the origin of autoimmune diseases in this strain, as in the several other strains studied, residues in abnormalities present in stem cells.

Animals↗

Intracellular glutathione levels in human colon cancer cells naturally resistant to cross-linking agents.

Correlation between sensitivity to two cross-linking agents, 1-(4-amino-2-methylpyridine-5-yl)-methyl-3-(2-chloroethyl)-3-nitrosourea (ACNU) and cisplatin (DDP), and intracellular glutathione (GSH) level was investigated for two naturally drug-resistant human colon cancer cell lines in comparison with two drug-sensitive human leukemia cell lines. As a result, no appreciable correlation was observed between them. We also studied the possibility that DL-buthionine-S,R-sulfoximine (BSO), an inhibitor of GSH biosynthesis, can sensitize the cancer cells to these anticancer agents via depletion of intracellular GSH. It was found that BSO potentiated ACNU cytotoxicity against human leukemia K562 cells and DDP cytotoxicity against K562 and human colon cancer WiDr cells. It indicates that cancer cells with higher GSH level are more effectively sensitized by BSO regardless of degree of their intrinsic sensitivity to these anticancer agents. These results suggest that intracellular GSH level is not a common mechanism for natural resistance to cross-linking agents in human colon cancer cells but one of the determinants of sensitivity to these anticancer agents of GSH-rich cells.

Antimetabolites↗

Effects of opioid peptides administered in conscious rats on the changes in blood adrenaline levels caused by immobilization stress.

Effects of several opioid peptides administered in the lateral cerebroventricle on the changes in blood adrenaline (AD) levels were examined at 10, 20 and 30 min after the start of immobilization in conscious rats. beta-Endorphin, (D-Ala2)-Met-enkephalinamide, morphiceptin and (D-Ala2, D-Leu5)-enkephalinamide produced significantly lower elevations of AD than the control, and the effect was enhanced by naloxone. The effect of dynorphin, however, was almost the same as that of the control.

Animals↗

Reversible hyporeninemic hypoaldosteronism in a patient with tetraplegia.

A 66-year-old man with tetraplegia developed hyperkalemia. Hyporeninemic hypoaldosteronism was disclosed on the basis of a lack of response of plasma renin activity to furosemide administration or tilting with marked hypotension and a subnormal response of aldosterone to furosemide stimulation, tilting, angiotensin II infusion and ACTH administration, as well as increased vascular responsiveness to angiotensin II infusion. Of interest was the finding that urinary excretion of epinephrine and norepinephrine was markedly reduced, indicating that hyporeninemia may possibly be due to a chronic lack of sympathetic nervous stimuli. The patient was treated with sodium polystyrene sulfonate resin and/or 9-alpha-fluorohydrocortisone, and wheelchair rehabilitation. However, even after stopping 8-month-mineralcorticoid replacement, normokalemia was maintained. Reexamination of the renin-angiotensin-aldosterone system revealed a normalized response to tilting or ACTH administration along with the normal catecholamine excretion. One more point to be noted is that ACTH administration resulted in a rise in the plasma levels of cortisol, corticosterone and 18-OH-corticosterone, but not aldosterone. This may be attributed to ACTH-stimulated 18-OH-corticosterone derived from the zona fasciculata or alternatively to a partial defect of corticosterone methyl oxidase type II (18-dehydrogenase) in the adrenal glomerulosa cells. These results suggested that hyporeninemic hypoaldosteronism may have been attributable to a decrease in systemic nervous stimuli and that such abnormalities were reversible.

Adrenocorticotropic Hormone↗

Elevated glutathione accelerates oxidative damage to erythrocytes produced by aromatic disulfide.

It has been shown that certain dogs have erythrocytes characterized by an inherited high concentration of reduced glutathione (GSH), five to seven times the normal level (high-GSH RBCs). We examined whether increased GSH in dog erythrocytes leads to increased protection against oxidative damage induced by acetylphenylhydrazine (APH) and/or 4-aminophenyl disulfide (4-AD). When erythrocytes were incubated with 30 mmol/L APH, the Heinz body count was appreciably higher in normal RBCs than in high-GSH RBCs, while there was no difference in the increase of the methemoglobin (metHb) concentration in both RBCs. In contrast, both the Heinz body count and metHb production were much higher in high-GSH RBCs than in normal RBCs when erythrocytes were incubated with 4-AD. Furthermore, the generation of the superoxide in erythrocytes treated with 4-AD, which was measured by spin trapping combined with electron spin resonance (ESR), was obviously higher in high-GSH RBCs than in normal RBCs. These results clearly indicate that erythrocyte GSH is an important defense against oxidative damage induced by certain compounds such as APH, but that, in contrast, elevated GSH appears to accelerate oxidative damage to erythrocytes produced by aromatic disulfides, such as 4-AD, which generated a superoxide in erythrocytes via its redox reaction with GSH.

Aniline Compounds↗

[Experimental and clinical studies on the exclusion and bypassing operation for abdominal aortic and iliac artery aneurysms].

For the purpose of simplifying operative techniques and decreasing operative risks, we evaluated excusion and bypassing operation for infrarenal abdominal aortic and iliac artery aneurysm (AAA) both experimentally and clinically. This method includes dissection and closure of proximal stump of the aneurysm and anatomical bypass technique in principle. In the experiments, the ratio of internal pressure of the excluded aorta (e.Ao) to systemic blood pressure (E.P.I.) was 0.62 +/- 0.03 (n = 7, mean +/- S.D.). The thrombotic occlusion period of the e.Ao was estimated to be about 2 weeks. Clinically, we have carried out exclusion operation in 40 (43.8%) out of 91 cases of AAA since June 1977. In 49% of the cases hypogastric artery aneurysm was present. The excluded aneurysm revealed thrombotic occlusion within 1 month by CT scan and rupture or DIC were seen in none of the cases. There were no operation related mortality and postoperative cumulative survival rate was 94.7% at 1 year, 55.6% at 5 and 9 years. Since this operative technique is highly safe and simple, we consider this exclusion method is valuable not only in high-risk cases of elderly patient as well as in cases with extensive aneurysm of the hypogastric artery but also in many other patients.

Aged↗

Macrophages phagocytose thymic lymphocytes with productively rearranged T cell receptor alpha and beta genes.

The thymus gland is important for the formation of competent T lymphocytes. However, there is long-standing evidence that greater than 95% of newly formed thymocytes do not emigrate to peripheral lymphoid tissues but instead die locally. We have identified a rapid and selective pathway for thymocyte turnover in vitro. The mechanism entails binding, uptake, and digestion by macrophages. The susceptible cells are a subpopulation of double-positive thymocytes. These thymocytes can be enriched by virtue of their high buoyant density in Percoll and prove to have low levels of surface CD3 and little or no surface TCR. However TCR-alpha and -beta genes have undergone rearrangement, and full length alpha and beta transcripts are abundant. Therefore many double-positive cells rearrange and express TCR genes but do not have normal levels of TCR on the cell surface. We propose that thymocytes that undergo high turnover in situ are unable to form receptors that can be selected by MHC molecules in the thymus, and that these cells are recognized and cleared by the macrophage.

Gene Rearrangement, T-Lymphocyte↗

A new major transmembrane glycoprotein, gp155, in goat erythrocytes. Isolation and characterization of its association to cytoskeleton through binding with band 3-ankyrin complex.

Erythrocyte membranes from goat contain a considerable amount, more than 10% of the total amount, of a glycoprotein with Mr = 155,000 (gp155) on sodium dodecyl sulfate-polyacrylamide electrophoresis gel. This report describes the first isolation and characterization of gp155. This gp155 has major trypsin-sensitive sites at each side of the plasma membrane to generate membrane-bound fragments, indicating that the gp155 spans the lipid bilayer several times. This protein consists of a single polypeptide containing about 1,200 amino acid residues corresponding to Mr = 134,000 and some complex type N-linked oligosaccharide chains. A fraction (15-20%) of the gp155 is recovered in nonionic detergent-extracted ghosts along with 25-30% of band 3 and other cytoskeletal proteins and is completely released into solution by extraction with 1 M KCl. Immunoprecipitation with anti-gp155 and anti-ankyrin antibodies of detergent-solubilized membranes separated on a gel permeation chromatography column showed that a part of the gp155 is tightly linked to band 3 with a molar ratio of 1:2 to 1:3. This gp155-band 3 complex in turn is associated to ankyrin through the binding of band 3 to ankyrin. These data indicate that, in native erythrocyte membranes, as well as in detergent solution, gp155 could play a physiological role in controlling cellular integrity and elasticity by forming the gp155-band 3-ankyrin complex. Partial amino acid sequences of the tryptic peptides are also determined.

Amino Acid Sequence↗

Intervention of T-cells in transportation of mouse mammary tumor virus (milk factor) to mammary gland cells in vivo.

Using BALB/c nu/nu, BALB/c nu/nufC3H (BALB/c nu/nu mice raised by C3H/HeN foster mother), BALB/c thymus-engrafted BALB/c nu/nufC3H, BALB/c nu/+, and BALB/c nu/+fC3H mice, we examined what kinds of cells are carriers of blood-borne mouse mammary tumor virus (B-MMTV). A radioimmunoassay and an immunoperoxidase assay revealed the presence of MMTV-gp52 antigen in the mammary glands of all BALB/c nu/+fC3H and BALB/c thymus-engrafted BALB/c nu/nufC3H mice (more than 60 days old) but only of some BALB/c nu/nufC3H mice (more than 120 days old): those that possessed a significant number of functional T-cells. BALB/c nu/+ mice did not show the antigen expression at any age. Transfer experiments of cells or plasma from young (less than 12 weeks) BALB/c nu/nufC3H to BALB/c +/+ virgins revealed that cells besides T-cells can also become carriers of B-MMTV. This was confirmed by Southern blotting analyses; exogenous provirus DNA sequences were found in B-cells as well as T-cells of BALB/c nu/+fC3H mice. However, when young BALB/c nu/nu mice were inoculated with BALB/c nu/nufC3H blood, they did not show the MMTV-gp52 antigen expression. Transfer experiments of purified T-cells, B-cells, natural killer cells, and macrophages from BALB/c fC3H mice to BALB/c nu/nu mice revealed that only T-cells have the ability to transfer viral activity to the mammary glands. These results suggest that B-MMTV is carried from the gastrointestinal tract to the mammary glands by lymphoid cells such as T-cells and B-cells, then transferred to the mammary gland cells by the T-cells.

Age Factors↗

Correlation between protein 4.1a/4.1b ratio and erythrocyte life span.

Erythrocyte membranes from various healthy mammals contained a doublet of protein 4.1a and 4.1b, which appeared to differ by 2-3 kDa on sodium dodecyl sulfate polyacrylamide gel electrophoresis. The ratio of protein 4.1a/4.1b showed much variety among animal species, and the 4.1a/4.1b ratio correlated to the mean erythrocyte life span, that is, the mean cell age in circulating blood. We also found that the 4.1b is the predominant form in the immature erythroid cells such as reticulocytes and K562 cells. In addition, the 4.1b but not 4.1a protein was metabolically labeled with [35S]methionine in the erythropoietic cells from anemic mouse. Immunological detection showed that there is a doublet of minor variants of protein 4.1 with apparent molecular masses slightly more than those of 4.1a and 4.1b. The ratio of these minor isoforms designated as 4.1a + and 4.1b + revealed the alteration during erythrocyte senescence as observed in 4.1a/4.1b ratio. These results show that protein 4.1 may be synthesized as 4.1b and 4.1b + and intercalated into membrane skeletons at an early stage of erythroidal differentiation, and that the posttranslational modification into 4.1a and 4.1a + appears to occur by a common mechanism in many mammalian species. Feline erythrocytes, however, appeared to lack such a postsynthetic processing of protein 4.1, and exhibited one major component of 4.1b with the other minor variant of 4.1b +.

Animals↗

Neuraminidase-treated macrophages stimulate allogenic CD8+ T cells in the presence of exogenous interleukin 2.

Prior work has shown that purified, resident, and inflammatory peritoneal macrophages are weak stimulators of the allogeneic MLR. We have identified conditions whereby thioglycollate-elicited macrophages become stimulatory, but primarily for the CD8+ T cell subset. The conditions were to treat the macrophages with neuraminidase and to supplement the MLR with rIL-2. These treatments together led to proliferative and cytotoxic responses by isolated CD8+ but not CD4+ T cells. Likewise when MHC-congenic strains were evaluated, an MLR was observed across isolated class I but not class II MHC barriers. Pretreatment of the macrophages with IFN-gamma further enhanced expression of class I MHC products and stimulatory activity, but did not seem essential. While these treatments did not render macrophages stimulatory for an MLR in purified CD4+ cells, blastogenesis of CD4+ cells was observed when the MLR involved bulk T cells. Small allogeneic B lymphocytes behaved similarly to macrophages, in the pretreatment with neuraminidase and supplementation with rIL-2 rendered B cells stimulatory for allogeneic, enriched, CD8+, but not CD4+, T cells. Spleen adherent cells, which are mixtures of macrophages and dendritic cells, stimulated both CD4+ and CD8+ T cells, and neither neuraminidase nor exogenous IL-2 was required. We think that these data suggest that most macrophages and small B cells lack three important functions of dendritic cells: a T cell-binding function that can be remedied by neuraminidase treatment, a T cell growth factor-inducing function that can be bypassed with exogenous IL-2, and an IL-2 responsiveness function that is required by CD4+ lymphocytes.

Animals↗

Development of donor-derived thymic lymphomas after allogeneic bone marrow transplantation in AKR/J mice.

The transplantation of bone marrow cells from BALB/c (but not C57BL/6 and C3H/HeN) mice was observed to lead to the development of thymic lymphomas (leukemias) in AKR/J mice. Two leukemic cell lines, CAK1.3 and CAK4.4, were established from the primary culture of two thymic lymphoma, and surface phenotypes of these cell lines found to be H-2d and Thy-1.2+, indicating that these lymphoma cells are derived from BALB/c donor bone marrow cells. Further analyses of surface markers revealed that CAK1.3 is L3T4+ Lyt2+ IL2R-, whereas CAK4.4 is L3T4- Lyt2- IL2R+. Both CAK1.3 and CAK4.4 were transplantable into BALB/c but not AKR/J mice, further indicating that these cells are of BALB/c bone marrow donor origin. The cells were found to produce XC+-ecotropic viruses, but xenotropic and mink cell focus-forming viruses were undetectable. Inasmuch as thymic lymphomas are derived from bone marrow cells of leukemia-resistant BALB/c strain of mice under the allogeneic environment of leukemia-prone AKR/J mice, this animal model may serve as a useful tool not only for the analysis of leukemic relapse after bone marrow transplantation but also for elucidation of the mechanism of leukemogenesis.

Animals↗