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Biomedical subjects

D Mizuno

Publications and source records attributed to D Mizuno.

At least 37 records · Page 2Linked to original sources

Homeostasis as regulated by activated macrophage. V. Suppression of diabetes mellitus in non-obese diabetic mice by LPSw (a lipopolysaccharide from wheat flour).

A lipopolysaccharide from wheat flour (LPSw) which was isolated and characterized is shown to exert definitely a suppressive effect on incidence of type 1 diabetes in mice. Therapeutic effect on type 2 diabetes in patients was also obtained, though only from preliminary results. The percutaneous route of administration is most favorable. The important role that precursor tumor necrosis factor, free or cell bound, may play in this mechanism is discussed.

Animals↗

Homeostasis as regulated by activated macrophage. VI. Protective effect of LPSw (a lipopolysaccharide from wheat flour) against acute infection by Toxoplasma gondii in mice.

An oral administration of partially purified LPSw, a lipopolysaccharide (LPS) from wheat flour, at a concentration of 20 ng/ml in drinking water beginning 1d after infection significantly decreased mouse mortality and prevented animal weight loss in acute infection with Toxoplasma gondii. Whereas 71% (5/7) of mice in a control group that did not receive LPSw died of toxoplasmosis, only 14% (1/7) of mice treated with LPSw died (p less than 0.05). The administration of LPS purified from Bordetella pertussis also significantly decreased the mortality of infected mice. LPS from Escherichia coli and synthetic lipid A (LA-15-PP(506)), however, did not show a significant decrease in mortality.

Acute Disease↗

Homeostasis as regulated by activated macrophage. VII. Suppression of serum cholesterol level by LPSw (a lipopolysaccharide from wheat flour) in WHHL (Watanabe heritable hyperlipidemic) rabbit.

The effect of LPSw (a lipopolysaccharide from wheat flour) on cholesterol catabolism was examined using WHHL (Watanabe heritable hyperlipidemic) rabbit, which is an experimental model of familial hyperlipidemia. The serum cholesterol level of the animal decreased by the addition of LPSw to drinking water. Following cessation of the addition of LPSw to the drinking water, the cholesterol level was decreased for 30 to 40d and then gradually elevated. The serum level of apolipoprotein B, which is a constituent of apolipoprotein of low density lipoprotein (LDL), also decreased in accord with serum cholesterol at a nearly coincident rate. Conversely, the level of apolipoprotein A-I, which is a constituent of apolipoprotein of high density lipoprotein (HDL), did not change, nor did HDL-cholesterol. Furthermore, the atherosclerosis risk factor, expressed as the ratio of apolipoprotein B to apolipoprotein A-I, was decreased by LPSw administration.

Animals↗

Homeostasis as regulated by activated macrophage. VIII. LPSw (a lipopolysaccharide from wheat flour) can regulate bone resorption of chick embryo.

The effect of LPSw (a lipopolysaccharide from wheat flour) on the bone resorption of 18-d chick embryonic calvaria was examined in an organ culture following the method of Raisz. Bone was prelabeled in culture medium containing 45Ca and chased in a cold medium. On addition of test samples, labeled calcium was released indicating the grade of bone resorption. LPSw (10-100 ng/ml) stimulated bone resorption, showing an effect comparable to parathyroid hormone (PTH) (1 U/ml). PTH at 1 U/ml decreased the total amount of calcium and phosphorus, while LPSw did not. LPSw is thus assumed to stimulate bone resorption more actively than PTH.

Animals↗

Homeostasis as regulated by activated macrophage. IX. Enhancement effect of LPSw (a lipopolysaccharide from wheat flour) on hen egg-laying and breaking strength of eggshell.

Oral administration of LPSw (a lipopolysaccharide from wheat flour) given at 60 micrograms/hen/d in drinking water, markedly enhanced eggshell strength. The monthly percentage of eggs laid with a shell strength of more than 4 kg to the total number of eggs was 32% in the group given LPSw in drinking water while it was 12% in the control group given plain water. At the same time, LPSw caused a 30% enhancement of total monthly number of eggs laid over that of control.

Animals↗

Homeostasis as regulated by activated macrophage. I. Lipopolysaccharide (LPS) from wheat flour: isolation, purification and some biological activities.

Based on our new concept of ontogenic inflammation, we have sought a substance which can prime macrophage in terms of the endogenous production of tumor necrosis factor (TNF). A lipopolysaccharide (LPSw) was found in wheat flour, purified and characterized. The molecular size of LPSw was about 5 kDa on sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and it contained 3-deoxy-D-manno-octulosonic acid: 1, hexosamine: 4 and one phosphorus in a single molecule. LPSw can prime macrophage to release TNF when given intradermally, percutaneously or even orally in mice as well as in humans, in exactly the same way as intravenous administration of interferon gamma.

Administration, Oral↗

Homeostasis as regulated by activated macrophage. II. LPS of plant origin other than wheat flour and their concomitant bacteria.

In order to seek a macrophage-activating substance, lipopolysaccharide (LPS) of plant origin other than that of wheat flour was surveyed. A large amount of LPS (10-100 micrograms/g) was detected in Laminaria japonica (kelp), Curcuma longa (turmeric), Undaria pinnatifida and other substances. Since concomitant bacteria possibly existing in root of farm products can be considered to contribute to LPS of plant origin, a count was taken of bacterial cells both dead and alive. This count revealed that some LPS were derived from concomitant bacteria which had probably come from root. Few concomitant bacterial cells were found in seaweed, while stem-root contained enough bacterial cells. Three predominant bacteria have been isolated and identified; Pantoea agglomerans, Enterobacter cloacae, and Serratia ficaria. These LPSs were purified and their chemical compositions were examined. They are similar to that of Escherichia coli except that their molecular sizes are smaller. Since LPS is non-toxic when taken orally or percutaneously, these LPSs may also be advantageous in the cure of intractable diseases.

Animals↗

Homeostasis as regulated by activated macrophage. III. Protective effect of LPSw (lipopolysaccharide (LPS) of wheat flour) on gastric ulcer in mice as compared with those of other LPS from various sources.

Protective effect of lipopolysaccharide (LPS) from various sources on gastric ulcer has been examined in mice using parenteral as well as oral route. Ulcer is induced by indomethacin, stress or alcohol. LPS was prepared from 6 species of bacteria (Escherichia coli, Pantoea agglomerans, Serratia ficaria, Enterobacter cloacae, Bordetella pertussis, Alcaligenes faecalis) and from wheat flour. When administered intravenously, LPS of Pantoea agglomerans was the most effective among other LPS examined. Lipopolysaccharide of wheat flour (LPSw) showed a significantly protective effect by the oral route, especially when given ad libitum in drinking water to mice.

Animals↗

Oral or percutaneous administration of lipopolysaccharide of small molecular size may cure various intractable diseases: a new version of Coley's toxin.

Based on our new finding that an inflammation in which tumor necrosis factor (TNF) is primed or triggered (ontogenic inflammation) can regulate the homeostasis in ontogenesis, we have identified a new lipopolysaccharide from wheat flour (LPSw) that can induce ontogenic inflammation in adult mice. LPSw can prime adult mice to produce TNF when given orally or percutaneously, suggesting that it may maintain homeostasis in adults. LPSw can cure experimental animals of diabetes, hyperlipidemia, ulcer, and herpes. It can also stimulate bone resorption and egg-laying, and shows a strong analgesic effect that is blocked by naloxone. This effect even allows a release from drug addiction. Suppression of serum cholesterol level by oral uptake of LPSw in Watanabe heritable hyperlipidemic (WHHL) rabbit was also observed. Infection of toxoplasma was prevented by oral uptake of LPSw. The realization that a single oral or percutaneous administration of LPSw may be a cure for multiple intractable diseases may lead to the presentation of a nontoxic type of Coley's toxin, which is known to be an efficient cancer treatment, but has high toxicity.

Administration, Cutaneous↗

Purification of recombinant human tumor necrosis factor precursor from Escherichia coli.

To study its biological functions, tumor necrosis factor precursor (proTNF) with a molecular size of 26-KDa was obtained as a recombinant protein from Escherichia coli. The recombinant proTNF was successfully accumulated in the insoluble form, corresponding to about 10-15% of total E. coli proteins. Solubilization, gel filtration and anion exchange chromatography were performed under denatured conditions followed by dialysis in phosphate-buffered saline. These processes removed most of the contaminating bacterial proteins, yielding proTNF with a purity of about 70-80%. This recombinant proTNF is expected to be useful for functional studies on activated macrophages with membrane integrated proTNF.

Blotting, Western↗

Antitumor activity of a novel chimera tumor necrosis factor (TNF-STH) constructed by connecting rTNF-S with thymosin beta 4 against murine syngeneic tumors.

We have shown the in vivo usefulness of a novel chimera tumor necrosis factor (TNF), called rTNF-STH, which was constituted with human thymosin beta 4 and recombinant human TNF-SAM1. Tumor necrosis was induced by intravenous injection of a smaller amount of rTNF-STH (1 x 10(3) U/mouse, 0.67 microgram/mouse) than rTNF-alpha or rTNF-S (1 x 10(4) U/mouse, 2.5-5 micrograms/mouse). Significant antitumor effects of rTNF-STH to Meth A fibrosarcoma, B16 melanoma, MH134 hepatoma, or Lewis lung carcinoma (3LL) were observed by systemic injection of rTNF-STH at the maximum tolerable dose of 1 x 10(4) U/mouse (6.7 micrograms/mouse); this dose did not cause regression of tumors by conventional rTNF-alpha. rTNF-STH showed a significant prolongation of its half-life in serum. The average calculated half-life of the chimera protein is about 110 min, which is 15 times longer than that of original TNF-SAM1 (7.5 min). On the basis of this prolongation of half-life of rTNF-STH and its efficient hemorrhagic necrotic activity, the antitumor effect of rTNF-STH--as compared with that of the known TNF species--is discussed. Findings indicate that use of the chimera protein to alter the N-terminal region of TNF may be a promising approach to obtain molecules that more favorably attack tumors and other diseases than conventional rTNFs.

Animals↗

Post-translational processing of tumor necrosis factor production.

To elucidate the mechanism of tumor necrosis factor (TNF) production, we analyzed proteins produced in macrophages sharing the epitope of TNF according to the priming and triggering of TNF production. Rabbit alveolar macrophages primed with Bacillus Calmette-Guerin (BCG) were isolated and cultured in vitro with 35S-methionine, and the proteins produced were analyzed using anti-rabbit TNF monoclonal antibody. Primed with BCG, alveolar macrophages synthesized two proteins with molecular sizes of 50 and 17 kilodaltons (kDa) (p50 and p17) sharing the same epitope with mature TNF within the cells. These two proteins were released into the medium where other proteins were detected without TNF-activity. Cultured with lipopolysaccharide (LPS triggering), the primed alveolar macrophages released TNF-activity into the medium where p17 together with many larger proteins was detected by immunoprecipitation. In vitro translation of messenger ribonucleic acid (mRNA) from BCG-primed macrophages showed that primary TNF has a molecular size of 28 kDa (p28). These results suggest that active TNF of p17 is secreted when triggered via post-translational processing of the precursor molecules synthesized through priming with BCG.

Animals↗

Intratumoral tumor necrosis factor induction in tumor-bearing mice by exogenous/endogenous tumor necrosis factor therapy as compared with systemic administration of various biologic response modifiers.

The relationship between the induction of tumor necrosis factor (TNF) (as an indicator of inflammatory reaction) in tumor tissues and its antitumor effect was investigated in tumor-bearing mice by using nine biologic response modifiers (BRMs) and by exogenous/endogenous TNF therapy following a previously reported protocol. Close correlation between the induction of TNF-rich inflammation in tumor tissues and the antitumor effect of BRM were observed. The results of this study suggest that the conditions necessary for exerting antitumor effects of biologic response modifiers may be the induction of TNF (50 to 200 U/g) at the tumor lesions at an early stage after BRM administration and maintenance of the detectable amount of TNF (approximately 10 U/g) for more than 6 hours. Tumor necrosis factor should also be induced in the liver and spleen so that its activity can be maintained in the tumor lesions.

Animals↗

TNF-driven inflammation during mouse liver regeneration after partial hepatectomy and its role in growth regulation of liver.

To determine the role of TNF-driven inflammation in self-regulation of cell growth and differentiation, mouse liver regeneration after partial hepatectomy was examined for TNF-driven inflammation. Hepatectomy provoked priming state for TNF production in both whole body and liver on day 3 when the peak mitotic response occurred. Histochemical studies of liver also showed an inflammatory symptom; hepatocellular necrotic foci appeared by 6 hours after hepatectomy. TNF itself was secreted spontaneously in liver transiently on day 1 to 2 after hepatectomy just before the proliferation of hepatocytes. Dexamethasone reduced both TNF secretion and hepatocyte proliferation after hepatectomy. Recombinant murine TNF stimulated the in vitro proliferation of hepatocytes. These findings indicate that hepatectomy induces short-term secretion of TNF in liver and TNF-driven inflammation has an important role in liver regeneration, at least in part by the direct stimulation of hepatocyte proliferation.

Animals↗

Expression of TNF-alpha and TNF-beta transcripts in murine embryonal carcinoma cells and trophoblast cell.

Using a combination system of Transcription and PCR, we examined gene expression of TNF-alpha, TNF-beta and other cytokines (IL-1, G-CSF, IL-3 and IFN-gamma) in embryonal carcinoma cell lines (PCC3, PCC4, ECA2 and F9) and trophoblast cell line (PL/B6). We found that both TNF-alpha and TNF-beta transcripts were expressed in all of the embryonic cell lines. We also detected transcripts of two types of TNF receptors and transcription factor NF-kappa B in these embryonic cells.

Animals↗

Priming effect of orally administered muramyl dipeptide on induction of endogenous tumor necrosis factor.

Orally administered muramyl dipeptide (MDP) was found to prime induction of endogenous tumor necrosis factor (TNF) in mice. This priming effect was observed after oral administration of MDP of more than 100 micrograms/mouse; the maximal time interval between oral administration of MDP and i.v. injection of OK-432, a triggering agent for induction of endogenous TNF, was extended over 3-10 h and then decreased after 24 h. Antitumor effect against Meth-A, MH134, and MM46 tumor cells in mice was observed after oral administration of MDP followed by i.v. injection of OK-432. These findings suggest that orally administered MDP can be used as a priming agent for inducing endogenous TNF in cancer patients, and that MDP, a component of enteric bacteria, must have an important role in maintaining homeostasis through activation of macrophages.

Acetylmuramyl-Alanyl-Isoglutamine↗

Enhancement of HIV replication and giant cell formation by tumor necrosis factor.

Human T cell lines Molt-4, Jurkat, and TLOm-1 were infected by HIV-1 in the presence of various concentrations of r-TNF. The infectivity of HIV-1 was monitored by an indirect immunofluorescence method using anti-HIV-1-positive human serum. We found that r-TNF enhanced the replication of HIV-1. HIV-1-induced giant cell formation between HIV-1 chronically infected Molt-4 cells and HIV-1-uninfected Molt-4 cells was accelerated by r-TNF. The median tissue culture infectious doses (TCID50) of HIV-1 determined in the presence of TNF revealed that TNF apparently accelerated the time of the appearance of CPE but did not affect final titer of HIV-1.

Cells, Cultured↗

Cytocidal effect of tumor necrosis factor on cells chronically infected with human immunodeficiency virus (HIV): enhancement of HIV replication.

Tumor necrosis factor (TNF), a monokine initially described as a tumoricidal agent, facilitated the replication of human immunodeficiency virus (HIV) in vitro. The viability of human T-cell line MOLT-4/HIV, chronically infected with HIV, was affected by the addition of a low dose (10 ng/ml) of recombinant TNF-alpha (rTNF-alpha), while uninfected MOLT-4 cells were resistant to treatment with rTNF-alpha at concentrations up to 1,000 ng/ml. A marked increase in the level of HIV-specific RNA was detected in MOLT-4/HIV cells as early as 1 h after exposure to rTNF-alpha and reached almost maximum level within 6 h. Production of HIV particles from MOLT-4/HIV was also increased at 6 h after treatment with rTNF-alpha. Nearly identical phenomena were observed in CCRF-CEM/HIV, Jurkat/HIV, and H9/HIV cells, although the sensitivity of these cell lines to rTNF-alpha varied. A human T-lymphotropic virus type 1-infected cell line, MT-4, was insensitive to treatment with rTNF-alpha.

Antibodies, Monoclonal↗