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S C Kinsky

Publications and source records attributed to S C Kinsky.

At least 37 records · Page 2Linked to original sources

Effect of liposomal model membrane composition on immunogenicity.

We have examined the effect of composition on the immunogenicity in mice of liposomal model membranes sensitized with dinitrophenyl-epsilon-aminocaproyl-phosphatidylethanolamine (DNP-Cap-PE) derivatives. Neither cholesterol content nor incorporation of exogenous charged amphiphile (dicetylphosphate, stearylamine) exerted a significant influence on the in vivo anti-DNP response as measured by the appearance of direct plaque-forming cells in the spleen. Similarly, the nature of the fatty acids (saturated vs unsaturated) present in DNP-Cap-PE had no effect. In contrast, the nonpolar region of the basic phospholipids comprising the liposomal bilayers played an important role as revealed by a comparative study of model membranes prepared with beef sphingomyelin (SM), egg phosphatidylcholine (PC), and synthetic distearoyl-, dimyristoyl-, dilauroyl-, and dioleoyl-phosphatidylcholines (DSPC, DMPC, DLPC, DOPC). Thus, liposomes with a large content of phospholipids possessing a high transition temperature (e.g., beef SM, DSPC) were more immunogenic than those containing phospholipids of low transition temperature (e.g., egg PC, DOPC). This correlation held for both unsonicated and sonicated liposomes. These findings may have a bearing on the phenomenon of membrane-localized antigen expression.

Animals↗

Immunogenicity of liposomal model membranes in mice: dependence on phospholipid composition.

This investigation demonstrated that antigenic expression in liposomal model membranes may be markedly influenced by phospholipid composition. Incorporation of dinitrophenylaminocaproylphosphatidylethanolamine (Dnp-Cap-PE) into egg lecithin/cholesterol/dicetylphosphate bilayers did not significantly enhance the response of AKR mice to this synthetic amphipathic antigen. In contrast, the immunogenicity of Dnp-Cap-PE was increased (as measured by either plaque-forming cell frequency of hemagglutination titer) after its insertion into liposomes prepared with beef sphingomyelin instead of egg lecithin. We also show that the response to the Dnp-Cap determinant can be stimulated by the presence of lipid A in the same bilayers without altering the relative immunogenic potency of the sphingomyelin and lecithin liposomes; similarly, incorporation of this mitogen into sphingomyelin liposomes produced a greater polyclonal (nonspecific) response. The response to Dnp-Cap-PE-sensitized liposomes (with or without lipid A) prepared with a series of synthetic phosphatidylcholines (distearoyl-, dipalmitoyl-, dimyristoyl-, dilauroyl-, dioleoyl-) suggests a direct correlation between liposomal immunogenicity and transition temperature of the phospholipid.

Animals↗

Immunogenic properties of liposomal model membranes in mice.

Liposomal model membranes, which were prepared with sphingomyelin, cholesterol, and dicetylphosphate, and sensitized by incorporation of either dinitrophenyl-epsilon-aminocaproylphosphatidylethanolamine (DNP-Cap-PE) or fluoresceinthiocarbamylphosphatidylethanolamine (Fl-PE), can induce a hapten-specific humoral response when administered to AKR mice in saline. The magnitude of the response (as measured by the appearance of direct plaque forming cells in the spleen and/or serum antibody titer) is dependent on liposomal dose, the epitope density of the PE derivative in the liposomes, and the time after immunization. In the case of DNP-Cap-PE sensitized liposomes, only a minor IgG response (as measured by the production of indirect plaques or mercaptoethanol-resistant antibody) could be detected after either primary or secondary immunization. Together with the finding that mice deficient in, or depleted of, thymus-derived (T) lymphocytes respond to liposomes containing DNP-Cap-PE, the available data indicate that these liposomes are primarily T cell-independent immunogens. The liposomes are also immunogenic in other inbred mice strains (differing in H-2 haplotype), although the magnitude of the response varies sufficiently to suggest the existence of high, intermediate, and low responders. On the basis of this preliminary survey, further examination of the possibility that the immunogenicity of liposomes may be under genetic control seems warranted.

Animals↗

Comparative immunogenic properties of N-substituted phosphatidylethanolamine derivatives and liposomal model membranes.

This study describes some of the parameters that quantitatively or qualitatively influence the immunogenicity in guinea pigs of synthetic lipid antigens: phosphatidylethanolamine (PE) derivatives in which the amino (N) group has been substituted with either dinitrophenyl (DNP), dinitrophenylaminocaproyl (DNP-Cap), fluoresceinthiocarbamyl (Fl), or mono (p-azobenzenearsonic acid) throsyl (ABA-Tyr) residues. Previous experiments have shown that the non-covalent insertion of DNP-Cap-PE and ABA-Tyr-PE into the same lipid bilayers of sphingomyelincholesterol-dicetylphosphate liposomes markedly enhanced anti-DNP-Cap antibody formation over that produced by liposomes sensitized with only DNP-Cap-PE. The humoral response to Fl-PE and CNP-PE-sensitized liposomes is also augmented by the simultaneous incorporation of ABA-Tyr-PE. Moreover, micelles containing both DNP-Cap-PE and ABA-Tyr-PE induce more antibodies to the DNP-Cap deteminant than do micelles of DNP-Cap-PE alone, or a mixture of DNP-Cap-PE and ABA-Tyr-PE micelles. Nevertheless, in regard to a humoral response, liposomes were more potent immunogens than were their micellar counterparts. Of all the N-substituted derivatives examined so far, ABA-Tyr-PE is unique in that it can elicit cell-mediated immunity in addition to antibodies. The cellular response to ABA-Tyr-PE is not, however, stimulated by incorporation into liposomal bilayers and requires administration of either micelles or liposomes in complete Freund's adjuvant. In contrast, the ability of ABA-Tyr-PE to enhance a humoral response to another N-substituted PE derivative present in the same immunogen is also observed when the latter are given with incomplete Freund's adjuvant. The relationship of these findings to the immunogenicity of naturally occurring lipid antigens, as well as conventional immunogens having at least one determinant covalently attached to a protein carrier is discussed.

Adjuvants, Immunologic↗

Immunogenicity of liposomal model membranes sensitized with mono(p-azobenzenearsonic acid)tyrosylphosphatidylethanolamine derivatives. Antibody formation and delayed hypersensitivity reaction.

We have previously reported that hapten specific antibodies are produced in guinea pigs immunized with certain N-substituted phosphatidylethanolamine derivatives (either free or incorporated into liposomal membranes) in complete Freund's adjuvant. In this paper, we describe the synthesis of mono(p-azobenzenearsonic acid)tyrosylphosphatidylethanolamine (ABA-Tyr-PE). Immunication with this compound (either free or present in liposomes) not only results in the formation of anti-azobenzenearsonyl antibodies, but also confers cellular immunity as manifested by delayed hypersensitivity reactions elicited by challenge with either azobenzenearsonyl-bovine serum albumin or sensitized liposomes. Thus, ABA-Tyr-PE immunized guinea pigs differ from those immunized with azobenzenearsonyl-bovine serum albumin which produce anti-bodies but do not reveal a delayed reaction. Moreover, the ABA-Tyr-PE immunized animals differ from those immunized with mono(p-azobenzenearsonic acid)tyrosine; this substance has been shown by other investigators to confer cellular immunity without antibody formation in guinea pigs. However, the deacylated homolog of ABA-Tyr-PE (i.e., mono(p-azobenzenearsonic acid)tyrosylglycerophosphorylethanolamine) has the same immunological properties as mono(p-azobenzenearsonic acid)tyrosine. These observations justify the further exploitation of liposomal model membranes as novel immunogens that are able to elicit both cell and humoral mediated immune responses.

Animals↗

Stimulation and inhibition of anti-hapten responses in guinea pigs immunized with hybrid liposomes.

Guinea pigs were immunized with liposomal model membranes containing phosphatidylethanolamine (PE) or glycerophosphorylethanolamine (GPE) derivatives in which the amino function was substituted with either dinitrophenylaminocaproyl (Dnp-Cap) or mono(p-azobenzenearsonic acid)tyrosyl (ABA-Tyr) residues. Previous studies have demonstrated that hapten-specific antibodies are elicited by DNP-Cap-PE or ABA-Tyr-PE sensitized liposomes and that cell-mediated immunity is induced by ABA-Tyr-PE (but not Dnp-Cap-PE) sensitized liposomes. These liposomes differ from conventional immunogens in which haptens are covalently attached to immunogenic carriers. This investigation describes two new aspects of liposomal immunogenicity in animals immunized with hybrid liposomes containing both Dnp-Cap-PE and ABA-Tyr-PE. (1) Stimulation of the anti-Dnp response by incorporation of increasing amounts of ABA-Tyr-PE; (2) inhibition of anti-ABA antibody formation by incorporation of increasing amounts of DNnp-Cap-PE. The two phenomena are dependent on the presence of each determinant in the same lipid bilayer. Thus, entrapment of the water-soluble deacylated derivative of ABA-Tyr-PE (i.e., ABA-Tyr-GPE) in a aqueous compartments of Dnp-Cap-PE sensitized liposomes does not enhance anti-Dnp antibody production. Similarly, entrapment of the non-amphipathic derivative of DNP-Cap-PE (i.e., Dnp-Cap-GPE) within ABA-Tyr-PE sensitized liposomes does not suppress anti-ABA antibody formation. Furthermore, mixtures of Dnp-Cap-PE sensitized liposomes and ABA-Tyr-PE sensitized liposomes neither stimulated nor inhibited the anti-hapten responses. These results indicate that preparation of hybrid liposomes with different N-substituted PE derivatives provides an extremely convenient method for controlling hapten and/or immunologic carrier determinant density.

Aminocaproates↗

Immune response to liposomal model membranes: restricted IgM and IgG anti-dinitrophenyl antibodies produced in guinea pigs.

Guinea pigs were immunized with liposomal model membranes actively sensitized with 2,4-dinitrophenyl-aminocaproylphosphatidyl-ethanolamine. The immune response was characterized by the formation of both IgM and IgG anti-DNP plaque-forming cells (PFC) which paralleled the appearance of anti-DNP antibodies in the serum. Plaque inhibition by DNP-lysine indicated that the PFC produced after liposomal immunization fell in a much narrower range of avidity groups than the PFC obtained after immunization with DNP-albumin and, in this regard, resembled MOPC 315. The restricted nature of the serum IgG anti-DNP antibodies was confirmed by isoelectric focusing and revealed the expression of a limited number of clones in all cases.

Animals↗