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M Parant

Publications and source records attributed to M Parant.

At least 37 records · Page 2Linked to original sources

[Protective effect of tumor necrosis factor (TNF) obtained by genetic recombination against experimental bacterial or fungal infection].

Recombinant human tumor necrosis factor (rHuTNF) enhanced nonspecific resistance of mice to various bacterial and fungal infections, indicating that the protective effect previously reported by us with serum TNF (sTNF) prepared in mice, could be attributed to this macrophage-derived factor. Comparative assays with both TNF preparations have shown that the protection against the infections challenges was largely correlated with antitumor activity. The protective effect of the rHuTNF preparation, expressed from a cDNA clone in Escherichia coli, was not due to contaminating endotoxin products. Since recombinant TNF and sTNF have no direct bactericidal or anti-fungal activity, the enhanced resistance to infections can be explained by the action of TNF on macrophages and polymorphonuclear cells. The experimental data support the interpretation that TNF has an important role in nonspecific immunity.

Animals

Dissociation between muramyl dipeptide-induced fever and changes in plasma metal levels.

A fall in plasma iron level and an increase in copper level were observed in rabbits subsequent with the febrile response induced by an intravenous administration of muramyl dipeptide, AcMur-L-Ala-D-isoGln (MDP). The pyrogenic activity of MDP was due partly to the induction of circulating endogenous pyrogen (EP). EP produced in vitro by activated macrophages also elicited changes in iron and copper levels in rabbits. Nonpyrogenic MDP derivatives murabutide [MDP(Gln)-OnBu] and the stereoisomer of MDP [MDP(D,D)] did not cause any change in blood metal levels. Another adjuvant and nonpyrogenic analogue, murametide [MDP(Gln)-OMe], elicited hypoferremia and hypercupremia. Murametide, which has been previously shown to induce secretion of circulating EP but prevents in vivo fever response, was unable to prevent an EP-induced effect on plasma metal concentrations. Injection of supernatant fluids of macrophages incubated with these different glycopeptides showed that only compounds able to induce EP release were capable of evoking hypoferremia and hypercupremia. The EP-containing fluid was 10-fold more active on change in temperature and in plasma metal levels when it was given intracerebroventricularly compared with intravenously. In contrast, a pyrogenic dose of MDP that can act directly on the central thermoregulatory structures did not modify iron and copper levels when it was injected intracerebroventricularly.

Acetylmuramyl-Alanyl-Isoglutamine

Stimulation of non-specific resistance to infections by synthetic immunoregulatory agents.

Muramyl dipeptide or MDP (AcMur-L-Ala-D-iGln) is a synthetic immunoadjuvant which can also enhance non-specific resistance to bacterial infections in mice, even by the oral route. By the use of several derivatives, it has been shown that neither adjuvanticity nor pyrogenicity was a perequisite for eliciting an increased resistance, and that unwanted pharmacological effects can be eliminated by minor chemical modifications. Moreover, some lipophilic analogs or derivatives obtained by linking the glycopeptide to a carrier were found to be more active than MDP. Their effectiveness also depended on the dose and the timing of administration, and varied according to the bacterial challenge. The most appropriately timed administration of MDP and derivatives was established between one and four days before the challenge. In some cases, MDP was protective even when injected one hour after the challenge, whereas with other immunostimulants such as lipopolysaccharides or BCG, a negative phase of higher susceptibility may occur under these conditions. MDP still enhanced resistance to bacterial infections in animals with a poor immune status, like newborns or adult mice under immunosuppressive treatment. Moreover, the protective activity was not impaired after repeated injections of large doses of MDP or other adjuvant analogs, a treatment which is known to inhibit specific immune responses.

Acetylmuramyl-Alanyl-Isoglutamine

[Tinea capitis].

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Antifungal Agents

Strain dependence of muramyl dipeptide-induced LAF(IL 1) release by murine-adherent peritoneal cells.

The capacity of MDP to stimulate LAF(IL 1) production by adherent peritoneal cells (APC) from different strains of mice was examined. It was observed that MDP could stimulate thioglycollate-induced APC from DBA/2, C57B1/6, and CBA/CA mice, but not from C3H mice. Resident APC from DBA/2 or C3H/HeJ mice were also responders and nonresponders, respectively, to MDP for LAF(IL 1) production, the positive effect of MDP being more marked on DBA/2 cells in the presence of indomethacin. Because a LPS high-responder C3H substrain (C3HeB/Fe) did not respond to MDP, it was concluded that the strain dependence with respect to the induction of LAF(IL 1) seen with both MDP and LPS was not linked. Moreover, the unresponsiveness of C3H mice to MDP was not linked to their MHC haplotype, because a second H-2k strain (CBA/CA) was a good responder to MDP stimulation.

Acetylmuramyl-Alanyl-Isoglutamine

Production of differentiation-stimulating factor for murine leukemic myeloblast line by monocytic cells stimulated by a nonpyrogenic muramyl dipeptide derivative.

Muramyl dipeptide (MDP) and adjuvant-active derivatives were confirmed as unable directly to induce differentiation of mouse myeloid leukemia M1 cells. They were, however, found effective in stimulating either rabbit macrophages or human blood monocytes to produce differentiation-stimulating activity (D factor). The various conditioned media (CM) thus obtained were able to induce differentiation of the myeloblastic M1 cell line as indicated by the appearance of Fc receptors and inhibition of cell proliferation. Among the synthetic glycopeptides inducing the production of D factor, murabutide (MDP[Gln]-OnBu) was as effective as MDP, although it did not stimulate monocytes to simultaneously release endogenous pyrogen. The absence of pyrogenicity in murabutide CM was attested by IV or intracerebroventricular administration to rabbits. However, in the same CM, LAF(IL1) activity estimated by potentiation of the in vitro proliferative response to phytohemagglutinin of mouse thymocytes was usually higher than that induced by MDP.

Acetylmuramyl-Alanyl-Isoglutamine

Changes in rabbit febrile responses to muramyl dipeptide (MDP) after coupling to a synthetic carrier.

Muramyl dipeptide (MDP) is a small molecular weight synthetic glycopeptide (less than 500), which has been shown to be an immunoadjuvant, and to induce a biphasic febrile response in the rabbit--probably via the release of endogenous pyrogen--accompanied by a marked leukopenia. Macromolecularization by coupling to a synthetic carrier (MW approximately or equal to 60,000) potentiates the immunostimulant properties of MDP but also its pyrogenicity. The present study demonstrates that such a conjugate induced the release of endogenous pyrogen in vivo and in vitro at lower dosage levels than free MDP. Further experiments showed that there existed several differences between free and conjugated MDP. Thus, after intravenous administration of the conjugate, the fever pattern was monophasic with a prompt defervescence and not accompanied by leukopenia at dosage levels inducing similar increase in body temperature. In addition, when fever was recorded after intracerebroventricular administration, the increase in sensitivity was much greater in the case of free MDP than of MDP-A--L.

Acetylmuramyl-Alanyl-Isoglutamine

Direct and indirect in vivo stimulation of LAF-like production induced by acute nonspecific inflammatory processes.

Peritoneal macrophages harvested from animals undergoing an acute non-immunological inflammatory reaction induced by an injection of calcium pyrophosphate ( CaPP ) or dextran into the pleural cavity showed an enhanced level of production of a lymphocyte activating factor (LAF) like material. On the other hand, macrophages harvested from the site of inflammation did not show enhanced production of this activity when compared to macrophages derived from normal controls. This enhanced activity was observed for up to two/three days after initiation of the inflammatory reaction and was obtained in both the presence and absence of lipopolysaccharide (LPS) during in vitro cultivation. Thus these results demonstrate that the acute inflammatory reaction, initiated by a non-antigenic stimulus ( CaPP ), is able to stimulate macrophages remote from the inflammatory site to produce a factor which behaves like LAF in a standard LAF assay.

Animals

Inhibition of endogenous pyrogen-induced fever by a muramyl dipeptide derivative.

N-acetylmuramyl-L-alanyl-D-isoglutamine, or muramyl dipeptide (MDP), is a synthetic immunoadjuvant analogue of a bacterial peptidoglycan subunit that has a definite pyrogenic effect in the rabbit. Some adjuvant-active derivatives such as murabutide [MDP(Gln)-OnBu] or murametide [MDP(Gln)-OMe] are not pyrogenic. Murabutide did not stimulate human or rabbit cells to release endogenous pyrogen (EP), but murametide induced EP production at the same dosage levels as MDP. Moreover, plasma from rabbits treated with murametide transferred into untreated recipients elicited a febrile response typical of EP fever and comparable with that induced by plasma from MDP-treated animals. Murametide not only inhibited the central effect of EP that is generated but also the effect of an extra dose of EP administered later by the intravenous route. Moreover, pretreatment of rabbits with murametide decreased fever responses induced by certain high-molecular-weight exogenous pyrogens as mediated through the production of EP.

Acetylmuramyl-Alanyl-Isoglutamine

Smooth muscle stimulation by an immunomodulatory compound muramyl dipeptide: does it involve serotoninergic system?

Contractions evoked by muramyl dipeptide (MDP), a synthetic compound possessing immunostimulatory properties, were studied in several isolated nerve-smooth muscle preparations. The contractions by micromolar concentrations of MDP were evoked either by direct interaction with smooth muscle (rat stomach strip) or at least partly indirectly via neurogenic stimulation (guinea pig ileum); the effect was stereospecific since the MDP-D was not active. The insensitivity of the preparations to serotonin (5-HT), either inherent (vas deferens) or after 5-HT antagonists or after desensitization to 5-HT, prevented or markedly reduced the contractile activity by MDP. On the other hand, a nanomolar concentration of MDP enhanced the sensitivity of the rat stomach strip to 5-HT.

Acetylmuramyl-Alanyl-Isoglutamine

[The Yellow-nails syndrome. Apropos of 2 cases. Review of the literature].

The authors report 2 cases of yellow nails. These cases have evolved these last years, producing clinical aspects that reflect a typical association between the pulmonary and/or sinus reactions and the yellow nails. The authors discuss the scarce typical to the yellow nails syndrome and the different associations reported in the literature. The physiopathology is not known but many hypothesis have been discussed.

Adult

Production of lymphocyte activating factor in the absence of endogenous pyrogen by rabbit or human leukocytes stimulated by a muramyl dipeptide derivative.

N-acetylmuramyl-L-alanyl-D-isoglutamine or MDP is a synthetic immunoadjuvant capable of inducing a febrile response in the rabbit and of eliciting production of endogenous pyrogen (EP) in vivo and in vitro. It was also shown to stimulate in vitro lymphocyte activating factor (LAF) release. After conjugation to a synthetic carrier, the pyrogenic effect of MDP is strongly enhanced. Recently, adjuvant active derivatives of MDP devoid of pyrogenicity such as MDP(Gln)-OnBu (AcMur-L-Ala-D-Gln-alpha-nbutyl ester) have become available. In the present study, their stimulating properties on rabbit peritoneal exudate cells or human peripheral blood mononuclear cells were simultaneously evaluated by testing lymphocyte activating property and pyrogenic effect of the culture supernatant. In both types of cell cultures, whereas MDP elicited dual effects, the nonpyrogenic analog MDP(Gln)-OnBu produced LAF without detectable pyrogenicity even when a very sensitive assay (intracerebroventricular administration) was used. In contrast, conjugated MDP was capable of inducing the production of endogenous pyrogen in rabbit cell cultures with no or little LAF release. These results argue against the possibility that a single factor is responsible for both LAF and EP activities.

Acetylmuramyl-Alanyl-Isoglutamine

Fate of two 14C labelled muramyl peptides: Ac-Mur-L-Ala-gamma-D-Glu-meso-A2pm and Ac-Mur-L-Ala-gamma-D-Glu-meso-A2pm-D-Ala-D-Ala in mice. Evaluation of their ability to increase non specific resistance to Klebsiella infection.

The metabolic fate in mice of two 14C labelled meso-A2pm containing muramyl-peptides, the muramyl-tripeptide (Ac-Mur-L-Ala-gamma-D-Glu-14C-meso-A2pm) (MTP) and the muramyl-pentapeptide (Ac-Mur-L-Ala-gamma-D-Glu-meso-A2pm-14C-D-Ala-14C-D-Ala) (MPP) has been studied. As with 14C-MDP, the radioactive muramyl-tripeptide and muramyl-pentapeptide disappear rapidly from the organs and the radioactivity is found mainly in the urine. In contrast to MDP, the two meso-A2pm containing muramyl-peptides are not excreted intact in the urine. In both cases labelled fragments have been identifed: meso-A2pm from MTP and the tetrapeptide gamma-D-Glu-meso-A2pm-D-Ala-D-Ala from MPP. The ability of the two muramyl-peptides to increase nonspecific resistance of mice to Klebsiella infection was also investigated. The muramyl-pentapeptide injected i.v. one day before a lethal dose of K. pneumoniae protects both adult and neonate mice, as does MDP itself; the muramyl-tripeptide is inactive.

Acetylmuramyl-Alanyl-Isoglutamine

Central pyrogenic activity of muramyl dipeptide.

Fever can be elicited in the rabbit by the intravenous administration of relatively large doses of a synthetic immunoadjuvant, N-acetylmuramyl-L-alanyl-D-isoglutamine, or muramyl dipeptide (MDP). This response could be mediated by endogenous pyrogen because MDP has been shown to induce their production both in vivo and in vitro. The results reported here show that intracisternal injection of minute amounts of MDP could elevate fever without activating the release of endogenous pyrogen in the plasma or in the cerebrospinal fluid. Moreover, indomethacin inhibited hyperthermia produced by intracerebroventricular administration of MDP. Therefore, our findings argue in favor of a direct effect of the glycopeptide on the thermoregulatory centers besides its indirect effect through the production of leukocytic pyrogen. This molecule apparently represents the minimal requirement for the pyrogenicity of bacterial peptidoglycan because administration, even by the intracerebral route, of a mixture of muramic acid and of its dipeptide moiety did not elicit fever.

Acetylmuramyl-Alanyl-Isoglutamine

Antimicrobial resistance enhancing activity of tumor necrosis serum factor induced by endotoxin in BCG-treated mice.

Serum from BCG-infected mice that receive a lethal dose of LPS induces necrosis of a variety of transplanted mouse tumors. This serum (TNS) was shown to protect mice against two types of infectious challenges, Klebsiella and Listeria organisms. The antimicrobial activity was also demonstrated in adult C3H/He mice and in newborn mice, which are known to be refractory to the LPS-mediated increase in nonspecific resistance to infections.

Animals