scholarly journals THE EFFECT ON SUBSEQUENT AGGLUTINATION OF THE EXPOSURE OF BACTERIA TO HEATED ANTISERUM

1928 ◽  
Vol 47 (2) ◽  
pp. 245-254 ◽  
Author(s):  
F. S. Jones

It is shown that when dilute rabbit serum rich in agglutinin for the hog cholera bacillus is heated at 75°C. for 20 minutes and the bacilli incubated with the heated serum, agglutination fails to result on the addition of unheated immune serum. When the immune serum is first heated to 80°C., it no longer greatly inhibits secondary agglutination when the organisms are exposed to fresh agglutinin. The abortion bacillus agglutinin acts in a similar manner except that the immune serum must be heated above 80°C. for 20 minutes to prevent the second agglutination. The reactions are specific since control experiments with normal rabbit serum heated at various temperatures failed to influence further agglutination. It has also been shown by precipitation tests that there is definite fixation of serum proteins and bacterial cells with the heated sera which would prevent subsequent agglutination. Furthermore, heated antiserum which would prevent the secondary agglutination still possessed the property of deviating complement in a hemolytic series.

Parasitology ◽  
1976 ◽  
Vol 72 (3) ◽  
pp. 269-279 ◽  
Author(s):  
M. D. Rickard ◽  
J. C. Katiyar

SummaryLarvae of Taenia pisiformis were cultured in vitro in medium containing 2·5, 5 or 20% (v/v) of normal rabbit serum (NRS). Greatest development occurred in 20% NRS, and the potency of antigens collected in medium from each culture tested by intradermal (i/d) skin tests in infected rabbits paralleled the in vitro growth rate of larvae. ‘Culture’ antigens from 5% NRS stimulated good immunity in rabbits to a challenge infection with T. pisiformis eggs, although they were poorly reactive in skin tests.T. pisiformis larvae were also cultured in 10% (v/v) of nitrates of serum reduced to one-half of its volume by passage through 300 000 MW cut oif (XM300F) or 100000 MW cut off (XM100F) ultrafiltration membranes. Larvae cultured using XM300F had growth rates comparable with those cultured in 20% NRS, and the antigens released into the culture medium had equal potency in i/d tests and in stimulating protective immunity in rabbits. Larvae did not develop in XM100F orproduce skin-reactive or protective antigens.Crude ‘culture’ antigen from cultures in 20% NRS was separated into 4 fractions by nitration on Sephadex G200. All of these fractions gave i/d skin reactions in infected rabbits. Fraction 3 (F3) was the most active, but was shown by acrylamide gel electrophoresis and immunoelectrophoresis to be highly contaminated with rabbit serum proteins. F3 was separated into fractions on DEAE-Sephadex A50, and the third fraction from this was as active as the original culture medium in i/d skin tests, but had only 5% of the original protein concentration. Electrophoresis demonstrated few serum contaminants, and 2 indistinct protein bands that were not present in a similar fraction of NRS.Neither Sephadex G200 F3 nor DEAE-Sephadex F3 stimulated protective immunity in rabbits, suggesting that antigens stimulating immunity against the establishment of T. pisiformis in rabbits and those provoking cell-mediated immune reactions may be different.


1920 ◽  
Vol 32 (3) ◽  
pp. 283-293 ◽  
Author(s):  
Ida W. Pritchett

1. No demonstrable antiopsonins are formed in rabbits following the intravenous injection of monovalent pneumococcus horse sera, Types I, II, and III. 2. The serum of rabbits injected with immune pneumococcus horse serum, Type I, II, or III, or with normal horse serum, when mixed in the proportion of 1:4 with Type I or Type II pneumococcus horse serum, can greatly augment, in vitro, the opsonization and agglutination of Type I and Type II pneumococci by the homologous immune horse sera. No similar effect is obtained with Type III serum and pneumococci. 3. The increase in opsonization and agglutination is dependent upon (a) specific sensitization of the pneumococci by the homologous immune serum and (b) the presence of the precipitating serum. In the absence of sensitization, as when a heterologous or normal horse serum is employed, opsonization and agglutination do not occur, even though a precipitating mixture is provided. The substitution of normal rabbit serum for the precipitating rabbit serum gives opsonization and agglutination in dilutions slightly higher than are effected with salt solution only, due possibly to the more favorable medium created for the leucocytes by the addition of 25 per cent of whole rabbit serum. 4. Different methods of combining the immune horse serum, precipitating rabbit serum, and pneumococci yield very similar results, preliminary sensitization of the bacteria before precipitation, or precipitation in the rabbit-horse serum mixture before the addition of the pneumococci for sensitization causing little if any difference in result from that obtained when immune horse serum, precipitating rabbit serum, and pneumococci are all mixed and incubated together. 5. This increased opsonization in the test-tube does not seem to be paralleled by increased protective power, or at any rate such protection is not readily demonstrated.


1940 ◽  
Vol 72 (5) ◽  
pp. 511-521 ◽  
Author(s):  
Theodore Shedlovsky ◽  
Joseph E. Smadel

Electrophoretic studies were made on vaccine virus, collodion particles, and glass particles suspended in 0.01 molar buffer solutions at pH 7.9, in which the moving boundary method was used. In some experiments, uncoated particles were used; in others, particles were coated with proteins and then resuspended in the buffer solution after a washing; in still others, an excess of protein which had been used to coat the particles was included in the buffer medium. Streaming boundaries were obtained with all dilute suspensions of particles in solutions containing no soluble protein instead of the flat ones usually observed with the Tiselius moving boundary technique. This boundary artifact was suppressed by maintaining a density gradient of sufficient magnitude in association with the moving boundary to counteract the tendency of endosmotic flow. This was done partially by increasing the concentration of the particles in the suspensions, and almost completely by retaining an excess of soluble-coating substance in the solutions containing the particles. The mobility of elementary bodies of vaccinia corresponds to that found for the heat-stable (S) antigen. This value was not altered by drying, heating, ether extraction, or simple washing, but was materially increased by treatment with the surface active detergent (duponol) which presumably altered the nature of the surface of the virus particles. Collodion particles coated with the heat-stable antigen of vaccinia had the same mobility as elementary bodies under comparable conditions. Glass particles coated with normal rabbit serum moved at the rate of albumin, the fastest serum component in the buffer solutions used. However, both collodion particles and vaccine virus moved at a somewhat slower rate when they were similarly coated and measured in the presence of an excess of serum in the solutions. This was probably due to adsorption of a small amount of one of the slower components (globulin) of rabbit serum on the surface of the particles. Simple washing after treatment seemed to remove the coating of serum proteins, at least in part, from both collodion particles and elementary bodies of vaccinia.


1917 ◽  
Vol 25 (6) ◽  
pp. 765-788 ◽  
Author(s):  
Hideyo Noguchi ◽  
Seinai Akatsu

Experiments were carried out for the study of culture spirochetes in their relation to various immunity reactions in vitro. Several strains of Treponema pallidum and one each of Treponema calligyrum, Spirochata refringens, Treponema microdentium, and Treponema mucosum were used. Tests were made of immune substances responsible for agglutination, complement fixation, spirocheticidosis, and opsonization. In cases of agglutination and complement fixation, cross titrations were made. 1. In the sera derived from rabbits immunized with various spirochetes agglutinins were demonstrated in varying quantities for the homologous antigens. The amounts of agglutinins developed were considerably higher in the pallidum immune sera than in the other groups. There was no parallelism between the amounts of antigens injected and the amounts of agglutinins developed. 2. Cross titrations among different pallidum strains revealed that the agglutiantion is not necessarily strongest when homologous antigens and immune sera are brought together. 3. On the other hand, the reactions between the immune sera and antigens belonging to different species were sufficiently specific to justify the grouping. 4. Certain degrees of group reactions were observed between the pallidum immune sera and the calligyrum, and occasionally very faintly also between the pallidum and the refringes antigens and vice versa. There was a much more pronounced group reaction between the calligyrum and refringes. The immune serum and antigen of the microdentium showed a slight affinity for the mucosum but none for the pallidum, calligyrum, or refringes, while the mucosum immune serum caused a slight agglutination with many members of the other groups. Hence, it appears that the pallidum is more or less related to the calligyrum, while the affinity between the calligyrum and refringes, and possibly also between the calligyrum and mucosum in a much smaller degree, seems close. The microdentium showed the least relation to any other spirochetes. 5. Titration of agglutinins in the sera obtained 3 months after the cessation of immunization revealed that the agglutinin contents were already greatly reduced, having fallen roughly to 0.01 of the original strenght. The rates of disappearance were irregular in different animals and bore no direct relation to the initial titers. Titration made of the immune sera which had been preserved aseptically in a refrigerator (6°C.) during the same period (3 months) indicated that the original strength of these sera was reduced to about one-tenth. The agglutinins for spirochetes disappear from the rabbit's body much more rapidly than they are reduced in the separated sera by deterioration on standing at 6°C. 6. Titration of the immune sera for complement fixation power showed with a few exceptions, in which there was only slight complement binding, that the titers were high enough to indicate the presence of this principle. The anti-pallidum sera possessed higher average titers than the other immune sera tested with correspondingly homologous antigens. The least active were the anti-refrigens sera. 7. Cross titration of anti-pallidum immune sera for complement fixation showed that a given serum with a high titer for its own strain of antigen was also strong with most of the other strains of the pallidum. Instances occurred also in which the titers with heterologous pallidum antigens fell far below those of the homologous. Group reactions between the different spirochetes) such as the pallidum and the calligyrum, the calligyrum and the refringens, and the microdentium and the mucosum, were also indicated. The mucosum and the pallidum showed a slight degree of group reaction. No anti-pallidum serum fixed complement with the microdentium. 8. The immune sera were tested for their spirochetiddal properties in vitro against the correspondingly specific and heterologous varieties with and without the addition of complement. Many of the anti-pallidum sera killed their own strains. Normal rabbit serum exhibited only a slight degree of inhibition. Without complement, the immune sera caused a considerable reduction in the number or density of colonies, but not a complete suppression of growth. Complement alone had no injurious effect upon the pallidum strains. The antisera for the calligyrum, refringens, and mucosum showed feeble spirocheticidal action, while the antisera for microdentium was stronger. A syphilitic rabbit serum tested against a strain of culture pallidum gave a feeble inhibitory effect. 9. Under the influence of immune sera and complement, the spirochetes undergo within a few hours complete disintegration or granular degeneration. Without complement, they are more powerfully agglutinated, but no disintegration occurs, even after 20 hours, and complement alone has no effect. 10. In the presence of homologous immune serum and complement, the culture pallidum may be ingested by the leukocytes, but phagocytosis is slight, possibly on account of the filamentous nature of the organisms. The spirochetes in such a mixture disintegrate within a few hours, disintegration being especially rapid when the immune leukocytes are used. In the absence of immune serum, phagocytosis is not noticeable, while without complement but in the presence of immune serum and leukocytes, some phagocytosis, without subsequent lysis, occurs. A virulent strain of pallidum, obtained from syphilitic orchitis in a rabbit, exposed to agglutination, lysis, and phagocytosis by an immune serum prepared by means of culture pallidum strains, showed only slight agglutination and phagocytosis but rapid immobilization without disintegration in the presence of complement.


1928 ◽  
Vol 48 (3) ◽  
pp. 413-429 ◽  
Author(s):  
Kenneth Goodner

1. The continuation of our experiments with intradermal Type I pneumococcus infection in rabbits has furnished further evidence of the marked analogies between this condition and that of human lobar pneumonia. 2. It has been found that the amount of antiserum necessary for successful therapy increases as the disease progresses, and that this progression has a definite mathematical character. Such a condition, it seems, can only be caused by a progressive accumulation of some toxic or antagonistic substance, the exact nature of which is not known. 3. Various lots of antipneumococcus sera have been tested for their therapeutic properties. The results from seven such sera show that this therapeutic value does not parallel the mouse-protective value. It is suggested that the rabbit technic may prove useful for the routine comparison and standardization of antipneumococcus sera since it represents a simple method for determining that property for which the serum is to be utilized. 4. The effect of non-specific therapy in this condition has been determined to be a transient disappearance from the blood stream of circulating organisms. This result was obtained with such heterologous materials as normal horse serum and typhoid vaccine but not with the homologous normal rabbit serum. 5. Rabbits recovering from the intradermal disease without treatment or with such inadequate treatment that the disease runs its normal course, were shown to have a definite though not permanent immunity. Cases in which the disease had been arrested at 24 hours by effective therapy with heterologous immune serum showed no immunity after the early disappearance of the passively administered elements. Cases which were brought to early recovery with immune homologous serum did show a definite immunity comparable to that which was developed in other animals as the result of an untreated course of the disease. 6. The immunity conferred by single and multiple vaccination is reported. The possibility of the application of such methods in the pneumonias of man is discussed and a method for such an application is suggested.


1963 ◽  
Vol 25 (4) ◽  
pp. 451-456 ◽  
Author(s):  
A. N. CONTOPOULOS ◽  
T. HAYASHIDA

SUMMARY Antiserum prepared by the immunization of rabbits, with homogenates of rat anterior pituitary gland according to a procedure previously outlined, was absorbed with homologous serum proteins and tissues to remove various non-specific antibodies. Varying levels of plasma from gonadectomized male rats, containing high levels of gonadotrophic hormone activity, were injected into hypophysectomized, immature female rats. The simultaneous injection of antiserum resulted in complete neutralization of gonadotrophic hormone as judged by the inhibition of ovarian and uterine weight responses and the extent of follicular development in the ovaries of the rats used for the bioassay. The degree of inhibition was dependent upon the relative amount of antiserum employed. Normal rabbit serum did not have any inhibitory effect. No detectable non-specific or toxic effects were noted in the animals injected with antiserum.


1960 ◽  
Vol 112 (1) ◽  
pp. 107-124 ◽  
Author(s):  
Jacques Oudin

The injection into one rabbit (with Freund's adjuvants) of a specific precipitate made with antibodies from the serum of another rabbit is usually followed by the appearance in the serum of the first rabbit of antibodies which precipitate the serum of certain rabbits but not of others. It was found that the antigen (or one of the antigens) concerned in the reaction of these anti rabbit serum antibodies with rabbit sera had an antibody function, and was therefore a protein. It was concluded that at least one serum protein antigen, the specificity of which so far has been considered to be uniform throughout the animal species, can instead be present in different individuals as different forms or allotypes with somewhat different antigenic specificities. A large number of rabbit sera were allowed to react with a large number of rabbit immune sera. The gel method of immunochemical analysis made it possible to enumerate the allotypes that took part in each reaction. In addition, the technique mainly used (simple diffusion in separate tubes) made it possible to recognize the presence of one given allotype by the mere aspect of the precipitation zone in the reaction of one suitable immune serum with any serum in which the concerned allotype occurred. Neighboring reactions of sera, in contact with each other and with the suitable immune serum, in suitable cells easily constructed in the laboratory, were carried out occasionally and, each time, their results agreed with the previous identification. The analysis of the reactions in tubes lead to a list of seven allotypes designated by a, b, c, d, e, f, and g, of which two or more (e not included) were contained in almost every serum. The specific conditions necessary for antibody formation against an allotype are its absence from the serum of the immunized animal and, except in the case of cross-reactivity, its presence in the immunizing material. When these necessary conditions are fulfilled for several allotypes at the same time, their competition in the immunization seems to favor the allotype present at the highest concentration. The individuality of six of the listed allotypes has been discussed independently of the part of their specificity that may be common to all the allotypes of one given protein antigen in all the individuals of the same animal species. A cross-reaction of the anti f rabbit antibodies with allotype g has been observed. When two allotypic specificities were detected in one serum, attempts were made to find whether they were carried by two allotypes, i.e. by two distinct kinds of molecules, instead of being the manifestation of two "allotypic patterns" present on the same molecules. The presence of several allotypes in the immune sera made it often impossible to find definitive answers in this regard. However, for a limited number of cases of two allotypic specificities present in one serum, it could be demonstrated that at least a large proportion (if not the totality) of the two allotypes were independent of each other. No sign of a systematic coexistence of two allotypic patterns on the same molecules has been observed to date.


Author(s):  
O. E. Bradfute

Maize rayado fino virus (MRFV) causes a severe disease of corn (Zea mays) in many locations throughout the neotropics and as far north as southern U.S. MRFV particles detected by direct electron microscopy of negatively stained sap from infected leaves are not necessarily distinguishable from many other small isometric viruses infecting plants (Fig. 1).Immunosorbent trapping of virus particles on antibody-coated grids and the antibody coating or decoration of trapped virus particles, was used to confirm the identification of MRFV. Antiserum to MRFV was supplied by R. Gamez (Centro de Investigacion en Biologia Celular y Molecular, Universidad de Costa Rica, Ciudad Universitaria, Costa Rica).Virus particles, appearing as a continuous lawn, were trapped on grids coated with MRFV antiserum (Fig. 2-4). In contrast, virus particles were infrequently found on grids not exposed to antiserum or grids coated with normal rabbit serum (similar to Fig. 1). In Fig. 3, the appearance of the virus particles (isometric morphology, 30 nm diameter, stain penetration of some particles, and morphological subunits in other particles) is characteristic of negatively stained MRFV particles. Decoration or coating of these particles with MRFV antiserum confirms their identification as MRFV (Fig. 4).


1986 ◽  
Vol 113 (4) ◽  
pp. 570-575 ◽  
Author(s):  
Firyal S. Khan-Dawood

Abstract. Immunoreactive oxytocin is detectable in the corpora lutea of women and cynomolgus monkeys by radioimmunoassay. To localize the presence of oxytocin and neurophysin I in ovarian tissues of subhuman primates, three corpora lutea and ovarian stromal tissues and two Fallopian tubes obtained during the menstrual cycle of the baboon and decidua from two pregnant baboons were examined using highly specific antisera against either oxytocin or neurophysin I and preoxidase-antiperoxidase light microscopy immunohistochemistry. Oxytocin-like as well as neurophysin I-like immunoreactivities were found in some cells of all the corpora lutea only, but could not be demonstrated in ovarian stromal tissues, Fallopian tubes and decidua. Specificity of the immunocytochemical reaction was further confirmed by immunoabsorption of the antiserum with excess oxytocin or neurophysin, after which the immunoreactivities for both oxytocin and neurophysin in the luteal tissue were negative. Similar controls using normal rabbit serum gave no positive staining for either oxytocin or neurophysin. Counterstaining of the positive immunoreactivities for oxytocin and neurophysin I with Mayer's haematoxylin and eosin demonstrated clearly that the oxytocin and neurophysin I appeared as granular material mainly within the cytoplasm of the luteal cells. The localization of immunoreactive oxytocin and neurophysin I in the corpus luteum of the baboon demonstrates directly the presence of these two neurohypophysial peptides within primate luteal cells and suggests their local production.


1984 ◽  
Vol 160 (4) ◽  
pp. 1241-1246
Author(s):  
C Jones

Plant lectins are cytotoxic and can be used to select for mutants of animal cells that exhibit structural changes in cell surface carbohydrates reflecting glycosylation defects. We isolated eight lectin mutants of Chinese hamster ovary (CHO) cells that appear to represent three different phenotype classes. These lectin mutants were much more sensitive to the cytotoxic action of normal rabbit serum (NRS) than were the parental cells. This increased cytotoxicity was heat sensitive, specifically absorbed, and inhibited by simple and complex carbohydrates. No killing was observed under conditions in which only the alternate complement pathway was active. An NRS-resistant subclone that was isolated from one lectin mutant was shown to have also regained wild type behavior when tested with the lectins. The possibility that naturally occurring antibodies in rabbit serum are reacting with incomplete carbohydrate chains on the surface of the lectin mutants is discussed.


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