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C Carelli

Publications and source records attributed to C Carelli.

32 records · Page 2Linked to original sources

[Production and characterization of human antirenin antibodies prepared with synthetic immunogens].

Specific blockade of renin angiotensin system can be obtained both by enzymatic inhibitors and by passive and active immunization against renin. Recent studies have shown that synthetic peptides mimicking a protein segment can be used as immunogens to elicit antibodies which react with the parent molecule. In order to develop synthetic antirenin antigens we have selected peptidic sequences from human active renin and synthesized the corresponding peptides to produce antibodies able to recognize the entire human molecule and to inhibit its enzymatic activity. Three dimensional models of human renin were used to predict 17 putative epitopes. Then 18 peptides related to 13 potential antigenic determinants were synthesized by solid or liquid phase technic and 11 were shown to be antigenic when tested by their binding to several polyclonal and monoclonal human renin antibodies. The peptides were injected into rabbits and antisera tested by radio-immunoassay (RIA) and enzyme linked immunosorbent assay (ELISA) showed that nine peptides were immunogenic. Mainly, antiserum raised against the peptide mimicking the beta-hairpin 81-50 of active human renin which lies across the catalytic cleft, produced a 25 p. 100 inhibition of plasma renin activity at a 1: 50 dilution. Immunoglobulins, purified from antibodies raised against this epitopes, bound labelled renin and inhibited enzymatic activity of pure human renin on its synthetic tetradecapeptide substrate, in a dose dependent manner.

Antibodies↗

[Immunologic approach of the blockage of the renin angiotensin system in vivo].

To block the renin-angiotensin system by antibodies directed against renin or angiotensins is an old and recent goal. This goal can be attained by passive transfer of antibodies or by active immunization against the different molecules of the system. Only passive transfer of polyclonal antibodies directed against the native substrate (angiotensinogen) has been performed in rats. This acute blockade of angiotensinogen substrate availability decrease blood pressure about 30 mmHg in salt depleted rats. Passive transfer of anti-converting enzyme immunoglobulins has been already performed in rabbit and rat. It induced an immunoallergic reaction in the pulmonary capillary bed. Immunization against angiotensin II has been a powerful tool in the exploration of the role of the renin angiotensin system in hypertension. Passive and active immunization have been performed in different species: rabbit, rat. The majority of the results concerning the decrease in blood pressure was negative. However, some works reported positive results which could be related to the high affinity of antibodies for angiotensins. Passive and active immunizations against renin were also performed in different species: dog, pig, rat, rabbit, primates. The majority of the results concerning the decrease of blood pressure were positive, if species specificity of renin was taken into account. Recently passive transfer of polyclonal and monoclonal antibodies, directed against human renin have been performed in normotensive and hypertensive primates, demonstrating an acute fall in blood pressure comparable to that observed with converting enzyme inhibitors. Active immunization against human renin has also been performed in primates; and the chronic blockade of the renin-substrate reaction obtained in this way was associated with a significant decrease in blood pressure, aldosterone secretion and a disappearance of plasma renin activity. Unfortunately, such an active immunization was associated with an organ specific autoimmune disease within the kidney. In conclusion, passive and active immunization against the different proteins and peptides of the system offers specific models of blockade which can be compared with synthetic inhibitors of renin, converting enzyme and angiotensins. Therapeutic application of this immunological approach necessitates the verification of the total absence of autoimmune disease.

Angiotensinogen↗

Structural requirements for the induction of "immunological castration" by linear monomeric LHRH-lys-MDP administered in saline.

It was previously shown that "castration" could be obtained in male mice by immunizing them in saline with a conjugate referred to as LHRH-Lys-MDP and containing the decapeptide hypothalamic hormone LHRH covalently linked to the adjuvant glycopeptide MDP-Lys. Since coupling was made using carbodiimide, it could have produced oligomers or isomers as well as monomers. In the present investigation male and female mice were immunized in saline with a linear monomeric MDP linked LHRH molecule obtained by total synthesis. Histological studies showed gonadal alterations in both male and female mice. The study of analogs provided a correlation between the "castrative" activity of LHRH-Lys-MDP and its chemical and antigenic structures. However, because LHRH antibody levels were not very high, mechanisms other than antibody response are discussed. Such totally synthesized molecules including a safe adjuvant could make a clinical use of LHRH immunization possible in endocrine-dependent cancers.

Acetylmuramyl-Alanyl-Isoglutamine↗

Synthesis of conjugates between luteinizing hormone releasing hormone (LH-RH) and N-acetyl-muramyl-L-alanyl-D-isoglutamine (MDP) models of totally synthetic vaccines.

Two glycopeptides associating the aminoacid sequence of LH-RH with MDP were prepared, using a Lys residue as a linker. These conjugates, N alpha MDP N epsilon (LH-RH)-Lys and N alpha MDP N epsilon (LH-RH)-Lys-NH2 obtained by condensation of fragments were synthesized by liquid as well as solid phase methods. Both compounds were able to induce anti LH-RH antibodies and immunological castration. They retained the immuno-adjuvant activity of MDP. Such antigen-adjuvant constructs, devoid of carrier and obtained by chemically defined and reproducible synthetic methods could offer suitable tools for structure-activity relationship studies aiming at defining synthetic vaccines.

Acetylmuramyl-Alanyl-Isoglutamine↗

Production and characterization of human renin antibodies prepared with synthetic immunogens.

Renin is an aspartyl protease that plays a key role in regulating blood pressure. The aim of this study was to use synthetic peptides to produce antibodies able to recognize the entire human renin molecule and to inhibit its enzymatic activity. Two three-dimensional renin models were used to predict 17 putative epitopes. Then 18 peptides related to 13 potential antigenic determinants were synthesized by solid- or liquid-phase technique, and 11 were shown to be antigenic when tested by their binding to several polyclonal human renin antibodies. The peptides were injected into rabbits, and antisera tested by radio-immunoassay (RIA) and enzyme-linked immunosorbent assay (ELISA) showed that nine peptides were immunogenic. The peptide related to the flap region which lies across the renin catalytic cleft showed potentially useful characteristics. Immunoglobulin G, purified from antibodies raised against this epitope, bound labelled renin and inhibited its enzymatic activity in a dose-dependent manner. This approach constitutes the basis for the development of a synthetic antirenin vaccine able to inhibit the renin-angiotensin system specifically.

Amino Acid Sequence↗

Immunological castration by a totally synthetic vaccine: modification of biological properties of LH-RH after conjugation to adjuvant-active muramyl peptide.

Recently, we demonstrated that immunological castration of male mice can be obtained by immunization with Luteinizing Hormone-Releasing Hormone (LH-RH) directly coupled to NAcMur-L-Ala-D-isoGln-L-Lys (MDP-Lys) without carrier and Freund's Complete Adjuvant (FCA) but in the presence of Polyvinyl-Pyrrolidone (PVP). In the present report, we have observed that: (a) immunization by the conjugate, LH-RH-MDP-Lys, was very effective even in absence of PVP, and this conjugate was more active than other conjugates containing MDP coupled to LH-RH fragments; (b) a strong secondary response could be observed by the administration of free LH-RH suggesting that the endogenous secretion of LH-RH might elicit a boosting effect; (c) administration of MDP-Lys coupled to LH-RH decreased the pyrogenicity of the glycopeptide; (d) such a conjugation also decreased the hormonal activity of the antigen although it enhanced its immunogenicity. These results show that a conjugate (2000 dalton) of a decapeptide hormone with a synthetic adjuvant glycopeptide can induce immunological castration in mice after administration in saline. The immunopharmacological properties of the conjugate and its conditions of efficacy suggest that such an approach could find clinical application.

Acetylmuramyl-Alanyl-Isoglutamine↗

Analysis of the antigenic relationship of various derivatives of n-acetyl-muramyl-l-ala-d-isoglutamine (MDP), using anti-MDP antibodies.

Antibodies to N-acetyl-muramyl-L-alanyl-D-isoglutamine (MDP) were produced in rabbits by injection of MDP conjugated to various carriers [bovine gamma globulin (BGG), methylated BSA or sheep erythrocytes]. The anti-MDP was assayed by a direct enzyme-linked immunosorbent assay (ELISA) using horse radish peroxidase linked to MDP-Lys. Various derivatives of MDP were employed in an inhibition of ELISA for analysis of specificity of antibodies and study of the relationship of configuration to biological activity. The results confirmed previous findings that MDP alone is not immunogenic but can act as a hapten when conjugated to carriers. The antibodies were shown to be primarily directed against the muramyl residue. Modifications of this region of MDP yielded derivatives with weak reactivity against anti-MDP, while some changes of other regions had no effect on its antigenicity. Optical isomers of MDP had reduced activity as compared to MDP and polymeric MDP was a strong inhibitor. The structure and function relationship is discussed for some derivatives.

Acetylmuramyl-Alanyl-Isoglutamine↗

Immunological castration of male mice by a totally synthetic vaccine administered in saline.

It had been reported that immunological neutralization of the hypothalamic luteinizing hormone-releasing hormone (LH-RH) can be achieved by injection of the synthetic hormone, a decapeptide, linked to a carrier and administered with Freund's complete adjuvant. Data presented here demonstrate that the resulting immunological castration can be obtained by administering in an aqueous medium the synthetic decapeptide directly conjugated to the synthetic immunomodulator glycopeptide N-acetylmuramyl-L-alanyl-D-isoglutamine. In the group receiving the conjugate, a higher titer of anti-LH-RH antibodies was obtained than in the group receiving LH-RH in Freund's emulsion. Moreover, histological examination showed that seminiferous tubules were atrophied and that no spermatozoides could be observed. This procedure could lead to applications in the veterinary field and also serve as a useful model for other antiviral or antibacterial synthetic vaccines.

Animals↗

Persistent enhancement of cell-mediated and antibody immune responses after administration of muramyl dipeptide derivatives with antigen in metabolizable oil.

Circulating antibody titers can be increased when the antigen is administered in an aqueous medium with N-acetylmuramyl-L-alanyl-D-isoglutamine (muramyl dipeptide). Results reported here show that cell-mediated immunity can be demonstrated when this synthetic adjuvant or an active analog is injected with an antigen (ovalbumin) in metabolizable squalane emulsion. Under these conditions a lipophilic derivative of muramyl dipeptide was shown to be even more active and to enhance long-lasting immune responses.

Acetylmuramyl-Alanyl-Isoglutamine↗

Comparison of the developmental kinetics of antibody- and immunoglobulin-forming cells in normal and tolerant mice.

The developmental kinetics of antibody-forming cells (AFC) and of cells synthesizing immunoglobulins without detectable antibody function against the antigen injected (IFC) were compared in lymph nodes of normal mice and tolerant mice receiving an immunogenic challenge. Tolerant states to bovine serum albumin (BSA), induced in adult mice, and to human gamma-globulin (HGG), induced in newborn mice, were studied. Whatever the tolerant state induced, the following main results were obtained: 1) both AFC and IFC were suppressed in tolerant mice, and this to approximately the same extent for the two populations; 2) both the suppression of the AFC and of the antigen-induced IFC were specific to the tolerogen used.

Animals↗