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Biomedical subjects

J E Butler

Publications and source records attributed to J E Butler.

At least 19 recordsLinked to original sources

The physical and functional behavior of capture antibodies adsorbed on polystyrene.

Six monoclonal and two polyclonal antibodies to fluorescein (FLU) were affinity purified and immobilized on Immulon 2 polystyrene as capture antibodies (CAbs): (a) by passive adsorption at pH 9.6, (b) via a streptavidin bridge to a biotinylated carrier molecule, and (c) via an antiglobulin which had been previously adsorbed passively to the polystyrene. Data show that less than 3.0% of the binding sites of monoclonal CAbs and approximately 5-10% of those of polyclonal CAbs were capable of capturing antigen (FLU4.2-BSA) after passive adsorption. Immobilization of CAbs via an antiglobulin or a streptavidin bridge, resulted in the preservation of antibody binding sites to greater than 70% for some monoclonals although immobilization via the streptavidin bridge resulted in the highest number of functional sites/well. The data presented are consistent with studies on other adsorbed proteins which demonstrate that passive adsorption on polystyrene results in the loss of protein function. Furthermore, these data show that generally less than half of the binding sites of antibodies available in solution are available after solid-phase immobilization even when non-adsorptive methods are employed. Some polyclonal anti-FLU also have lower average avidity following passive adsorption compared with CAbs immobilization via a streptavidin bridge. Immunochemical studies revealed that adsorbed polyclonal-CAbs performed like monoclonals when tested with multivalent antigens (FLU10-IgA) but in an expected heterogeneous manner in Scatchard plots when tested using univalent FLU-insulin. This observation implied cross-linking of immobilized CAbs by the multivalent antigen. Because only 5-10% of adsorbed polyclonal CAbs are active, the survivors must be non-randomly distributed in clusters to explain the cross-linking. This was confirmed by scanning electron microscopy which gave rise to the hypothesis that antibodies which retain activity after adsorption, are those present in clusters, i.e., the functional adsorbed CAb is an antibody cluster. Data presented in this report on the behavior of adsorbed CAbs, and reviewed from the work of others for various adsorbed proteins, indicate that the method of passive adsorption at pH 9.6, which is widely used in popular microtiter ELISAs, and which has in many ways revolutionized immunoassay, is a method of protein denaturation. Assayists that utilize passive adsorption of proteins on hydrophobic supports as part of their research need to be cognizant of this phenomenon, while inventors of immunoassay should develop alternative methods of immobilization which do not destroy 90% of the functional activity of solid-phase reactant.

Adsorption

The heterogeneity of bovine IgG2--V. Differences in the primary structure of bovine IgG2 allotypes.

The partial amino acid sequences of the gamma chains of the bovine IgG2a(A1) and IgG2a(A2) allotypes were determined. Sequence differences were found in the CH1 domain, the hinge region, and the CH3 domain. The hinge regions displayed only 71.4% similarity and all of the differences were of a radical nature. The A2 hinge has isoleucine instead of serine at 229, histidine for asparagine at 235, proline for histidine at 238, and cysteine instead of proline in position 234; the latter has the potential for forming an additional interheavy chain disulphide bridge. The occurrence of such a bridge could explain the presence of a pepsin fragment consisting of the hinge region and the Fc. A corresponding fragment is not obtained with the A1 allotype. Both allotypes have a shortened hinge region and a truncated CH2 domain. This feature is characteristic of all reported sequences of IgG2 proteins but not IgG1 in cattle and the goat. This structural feature may be important in subclass-specific recognition by Fc gamma receptors in ruminants. A surprising discovery was the occurrence of five substitutions in the CH3 domain of the IgG2a(A2) in comparison with the A1, which are shared with the CH3 of IgG1. These permit the occurrence of isoallotypic determinants and can explain the difficulty encountered in preparing A2-specific antisera during which adsorption with IgG1 is a routine procedure. The primary sequence data we report confirm the presence of major structural differences between the A allotypes of cattle that was suggested by previous work. The sequence of the A1 allotype most closely agrees with the two IgG2 sequences deduced from their nucleotide sequences whereas the sequence differences in the hinge and C-terminal CH3 make IgG2a(A2) unique. The structural differences between allotypes could have major consequences for such biological activities as phagocytosis, transepithelial transport, lymphocyte and complement activation.

Amino Acid Sequence

Changes in concentration of adenosine triphosphate and adenosine diphosphate in individual preimplantation sheep embryos.

Concentrations of ATP and ADP were measured in 156 sheep embryos by means of an ultramicrofluorescence assay. Stages of preimplantation development measured included unfertilized oocytes through blastocyst-stage embryos. ATP concentrations remained constant through the 8-cell stage; then ATP decreased significantly (p < 0.025) at the morula stage and remained low through the blastocyst stage. ADP concentrations did not change throughout the embryonic stages measured. Decreased levels of ATP with constant levels of ADP caused the ATP:ADP ratio to decrease significantly (p < 0.025) between the 8-cell and morula stages. We suggest that the increase in glucose uptake by sheep embryos observed at the morula stage of development may be due, in part, to a decrease in the ATP:ADP ratio.

Adenosine Diphosphate

Growth and DNA replication in rabbit blastocysts.

DNA content and DNA polymerase activity were measured on rabbit blastocysts removed from the uterus at 24-hr intervals over the period of days 4-7 postcoitum (pc). Median DNA content increased 53 times over the 72-hr period, from 25.3 ng on day 4 to 1,360 ng on day 7. Median DNA polymerase activity (fmole of radiolabeled nucleotide incorporated in 30 min at 37 degrees C) increased 393-fold from day 4 to day 7: 32.8 to 12,900. These embryos also increased in surface area and volume by 334-fold and 6,078-fold, respectively. Litters containing individuals with high DNA content also tended to have similar individuals with high DNA polymerase activity. Therefore, DNA polymerase activity may be a useful measure of the potential for the next cell division. A large amount of variation existed between blastocysts in all parameters measured. An analysis of variance, conducted to partition variation between litters and within litters, determined that within-litter variation was actually greater than that between litters, resulting in intraclass correlation coefficients less than 0.5. There was also a positive regression of DNA content and DNA polymerase activity on surface area in 6- and 7-day-old blastocysts after eliminating variation attributable to litters. The developmental pattern of DNA polymerase activity in the rabbit may be quantitatively different from that described in the mouse. The pattern in mammals is very different from that described in several nonmammalian species.

Animals

The antigen-limited nature of microtiter ELISAs requires partial depletion of IgG to permit reliable determination of rabbit serum IgA antibody activity.

The antigen-limiting nature of microtiter ELISAs predicts that antibodies of minor classes may be underestimated when the same specimen contains large amounts of IgG antibodies specific for the same antigen. Such competitive inhibition can be diagnosed from ELISA titration plots. A method is described to eliminate the negative effects of this competition on the detection of IgA antibodies in rabbit serum. The detectability of rabbit serum antibodies to ovalbumin and bovine serum albumin is increased 10-fold by prior treatment of 1:100 dilutions of serum with 1% Cowan I S. aureus. High concns of S. aureus, e.g. 10%, completely deplete serum IgG without loss of IgA. However, concns higher than 1% do not lead to additional improvement in the detectability of IgA antibodies in the systems studied. The method is rapid, inexpensive and shows no non-specific depletion of IgA from either serum or bronchoalveolar lavage fluid.

Animals

Fluoride: an adjuvant for mucosal and systemic immunity.

Fluoride, the agent responsible for reduction of dental caries worldwide, and a recognized proliferative agent, is a potent adjuvant when given intragastrically to rats. Intragastric fluoride causes increases in the size and cellularity of the Peyer's patches and mesenteric lymph nodes as well as the number of plasma cells secreting IgG and IgA antibodies to ovalbumin given in their drinking water. Rats ingesting NaF and fed OA showed a significant increase in surface immunoglobulin expression on lymphocytes from the Peyer's patches and mesenteric lymph nodes. The frequency of CD4+ T cells in these lymphoid tissues was elevated while that of CD8+ T cells was significantly decreased. In separate experiments, rats parenterally immunized with myelin basic protein (MBP) and fed NaF twice weekly, had significantly elevated serum IgG antibody activity to MBP compared to similarly immunized rats not receiving NaF. The supplemental fluoride prescribed for infants and especially that which is inadvertently ingested by children and adults given fluoride gels, is within the concentration range of that which produced the effects we observed in rats. The adjuvant effect we describe thus has relevance for fluoride therapy worldwide.

Adjuvants, Immunologic

Humoral immunity in root caries in an elderly population. 1.

IgA, IgG and IgM antibody activity (ELISA Units/ml) to Streptococcus mutans, Actinomyces viscous and Escherichia coli CF8 in serum, parotid saliva and whole saliva was measured using the amplified ELISA (a-ELISA) while the concentration (microgram/ml) of each isotype of immunoglobulin as well as albumin and lactoferrin, was determined using sandwich ELISAs. Selection of suitable reagents from those commercially available was based on specificity tests using purified human immunoglobulin; most polyclonal reagents required further absorption to attain class specificity. Cross-absorption studies indicated the absence of patient antibodies that were cross-reactive among the bacteria studied, except for IgM in some cases. Expression of response in ELISA Units (E.U.) per microgram of immunoglobulin, i.e. specific activity, revealed that IgG specific activity was significantly higher in parotid saliva than in either whole saliva or serum for all bacteria studied; serum and whole saliva did not differ except for the higher specific activity in whole saliva to E. coli. The value of one E.U. was determined using the Comparative Antibody-immunoglobulin Capture Assay (CACA). Using this novel method, we estimated that about 0.05 percent of serum IgA was specific for Streptococcus mutans, 0.008 for Actinomyces viscosus and 0.004 for Escherichia coli CF8. The percentage of specific IgM antibodies was higher than for IgA and IgG. The concentration of IgA anti-Streptococcus mutans, Actinomyces viscosus and Escherichia coli levels are approximately 92 ng/ml, 25 ng/ml and 16 ng/ml in whole saliva and 46 ng/ml, 9.4 ng/ml and 6.3 ng/ml in parotid saliva.(ABSTRACT TRUNCATED AT 250 WORDS)

Actinomyces

Humoral immunity in root caries in an elderly population. 2.

Saliva specimens stored for 18 months at -20 degrees C with or without glycerol and the anti-protease benzamidine-HCl, lost all antibody activity for S. mutans. IgA activity in processed whole saliva decreased significantly after one week when stored either at 4 degrees C or -20 degrees C with or without glycerol, although it was stable in parotid saliva for at least 40 days. Loss of activity prior to processing was significant in the first 24 h, and the addition of 50% glycerol and storage at -70 degrees after processing, prevented loss of antibody activity in both whole and parotid saliva. Diurnal variations in IgA, lactoferrin and the IgA secretion rate were insignificant in parotid saliva but showed some fluctuations in whole saliva. Albumin and lactoferrin levels exhibited the greatest fluctuation in whole saliva specimens although IgA and IgA antibody levels were still more characteristic of the patient than the time of sampling. Monthly variations in IgA, IgA antibody activity and other parameters were least in parotid saliva and e.g., values for parameters that were high in patients samples on the first month, remained high during the 4-month study period. Statistical analyses showed a high correlation between values obtained for most of the 15 parameters that were measured in parotid and whole saliva specimens collected from greater than 20 patients during 2 successive visits. Whole saliva values for albumin, lactoferrin and albumin levels in parotid saliva, were most variable but differences were not significant. Hence, patients with very low or very high values, even in whole saliva, can be identified within the population on the basis of specimens collected at a single time.

Aged

Maternal-neonatal immunoregulation: suppression of de novo synthesis of IgG and IgA, but not IgM, in neonatal pigs by bovine colostrum, is lost upon storage.

Fifty-four neonatal pigs were allotted to 4 groups and reared in an electrically controlled automatic feeding device (autosow). Each group was reared on a different pool of bovine colostrum: fresh, stored 1 month, stored 6 months, and stored 8 years. Bovine and porcine immunoglobulins in the sera of these pigs, and in a group of conventionally reared pigs, were measured periodically during the first 42 days after birth. The maximal concentration of absorbed bovine immunoglobulin was reached between 12 and 18 hours and equaled or exceeded the amount of porcine immunoglobulin absorbed by the conventionally reared pigs. Large differences in the concentrations of the bovine immunoglobulin isotypes among the various pools of colostrum were positively correlated with concentration of these isotypes in the sera of the neonatal pigs fed these pools. Relative to their concentrations in colostrum, approximately 41% of the IgG1, 55% of the IgG2, 29% of the IgM, and 67% of the IgA was absorbed. The IgA was absorbed the best and IgM was least absorbed. Significant trends or differences in absorption were not observed among groups. Neonatal pigs given fresh colostrum, which had a higher fat content, had significantly more weight gain (P less than 0.05). This occurred, despite the fact that the fresh colostrum had the lowest concentration of bovine immunoglobulin. Serum half-lives for bovine IgG1 and IgG2 were significantly less than for porcine IgG (P less than 0.05), whereas the half-lives for bovine and porcine IgM and IgA were similar. De novo-synthesized immunoglobulins were detectable in serum after 6 days; IgM concentrations reached a maximum at 15 days in neonatal pigs given stored, but not fresh, colostrum.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

The isotypic, allotypic and idiotypic heterogeneity of bovine IgG2.

The antigenic heterogeneity of bovine IgG2 observed by single radial diffusion, when different cattle sera are tested with a panel of IgG2-specific reagents, was examined by a combination of biochemical and serological assays. Using an autologous anti-A1 allotypic reagent, the major antigenic heterogeneity detected by swine, rabbit and goat anti-IgG2 reagents was due to their propensity to recognize the AI allotope. All heterologous reagents and most monoclonals so far test are biased in their specificity toward this determinant. A second type of serological heterogeneity, recognized by only certain heterologous reagents, was their specificity for what we have called the IgG2b isotype of IgG2. This isotype is found in all cattle, has a restricted ion-exchange elution behaviour and does not bear a-locus allotypic determinants; molecules bearing the latter are now designated IgG2a. IgG2a elutes from anion-exchange columns in subpopulations over a wide range of ionic strength including fractions which contain IgG2b and IgG1 as well. Using IgG2a from an AI homozygous steer, these subpopulations were shown to result from idiotypic variation which appears to primarily reside in their VH-regions.

Animals

Heterogeneity of bovine IgG2--I. The A1 allotypic determinant is the major antigenic determinant recognized on bovine IgG2a by polyclonal rabbit anti-IgG2a.

Rabbit antisera specific for the IgG2a subclass of bovine immunoglobulins also contain antibodies which recognize the A1 allotype of this immunoglobulin subclass. In many sera anti-Al constitutes the major specificity of these rabbit antisera and all of the 10 rabbits immunized with Al(+) IgG2a produced some antibodies which recognized the allotype. The determinant is the same as recognized by a bovine alloantiserum to Al. The Al allotype is shared by the intact and the Fc portion of IgG2a, but rabbits immunized with the Fc fragment also recognize an Al-related determinant which is not exposed on intact Al(+) IgG2a. None of the four rabbits immunized with Al(-) IgG2a produced precipitating antibodies which recognized the gene product of the Al(-), i.e. A2 allele, suggesting that only Al is an immunodominant antigenic determinant for rabbits. Data reported here help to explain the antigenic heterogeneity seen among the IgG2 populations from different cattle when they are tested by immunoprecipitation using rabbit anti-IgG2 reagents.

Animals

Identification and characterization of a hapten-modifiable TEPC 15 cross-reactive idiotype in swine.

Rabbits and swine immunized with TEPC 15 IgA, goats immunized with T15-positive IgM and swine immunized with affinity-pure swine anti-phosphorylcholine (PC) all produce antibodies which recognize a hapten-inhibitable idiotypic determinant on swine anti-PC. The similarity in reactivity and order of inhibitability with various PC analogs of the heterologous (swine anti-TEPC 15) and isologous (swine anti-swine anti-PC) reagents indicates that they recognize a related idiotype and suggest it may be the predominant idiotype expressed on swine anti-PC antibodies. The heterologous and isologous anti-idiotypic reagents generated in this study recognize swine and mouse anti-PC but not normal swine IgM, IgG or MOPC 460. Only reactions with swine anti-PC and mouse T15-positive anti-PC proteins are hapten-inhibitable. The greater inhibitory capacity of trimethylammonium and acetylcholine than PC suggests that the idiotope(s) recognized on swine anti-PC by the anti-idiotypic reagents is integral rather than peripheral to the anti-PC binding site. The nearly exclusive IgM anti-PC response of swine to Streptococcus pneumoniae R36A and PC-Brucella have so far hindered attempts to study the isotypic distribution of the idiotype.

Animals

Basophil chemotaxis under agarose: variability among guinea pig donors and response to sera of different species.

Guinea pig basophils were tested against chemotactic factor(s) generated from homologous and heterologous sera. An "under agarose" method of quantitating leukocyte chemotaxis was adapted to measure serum-derived basophil chemotactic factor(s) (BCF). The method was found to be simple, reproducible, and sparing of time and reagents and it provided simultaneous controls. Because of the economy of reagents compared with the Boyden chamber technique, basophils from individual guinea pigs could be studied and were found to be variable in responsiveness. A definite difference in the response of guinea pig basophils to zymosan-activated sera of various other species was demonstrated. Guinea pig basophils responded to zymosan-activated serum from guinea pig and rat but failed to respond to zymosan-activated serum from human, hamster, rabbit, or cow. Optimal conditions were determined for cell numbers, serum activation and dilution, and migration times for studies of guinea pig BCF. The under agarose technique provides a practical alternative to chamber methods for the study of basophil chemotaxis. Although guinea pig basophils do not respond to human serum-derived BCF, the economy of reagents with this technique gives promise toward adaptation of the method to studies of human basophil chemotaxis.

Animals

Immunologic aspects of breast feeding, antiinfectious activity of breast milk.

The most apparent immunologic role of the mammary gland is supply to antibodies to the neonate. In cattle the gland must be able to secrete large quantities of IgG antibodies over a short time period to supply the offspring with protection against systemic pathogens. This is accomplished by selective transfer of IgG from serum to the gland followed by eventual absorption by the neonate gut. In all mammals, the mammary glands provide IgA antibodies specific for pathogens or antigens which enter or invade the neonatal gut. An entero-mammary cell circulation provides the mechanism for conveying such specificity to the lacteal IgA antibodies. Some IgA antibodies may also be derived from the circulation so that the quantitative significance of serum derived versus locally produced IgA in different species requires clarifications. IgG and IgG lacteal antibodies ingested by the neonate, provide short-term systemic and long-term enteric humoral immunity to the neonate. In addition to providing passive immunity, at least swine IgG appears to have a regulatory role in the development of the systemic humoral immune system of the neonate. Such a phenomenon may be general for IgG antibodies transferred in colostrum or in utero. While passive antibodies and immunoglobulins may be most important for the neonate, the many other potentially anti-infectious elements transferred in colostrum and milk may also play important roles. 'Bifidus' factor particularly, but also lysozyme and lactoferrin are probably all important although more convincing experimental data will be needed to support this assumption. Studies of cells of the lymphoid and reticuloendothelial systems in milk are more recent and their role in the neonate remains to be convincingly demonstrated. In summary, the immunologic and anti-infectious roles of the mammary glands are (1) Supply of IgA antibodies against enteric antigens to the neonate on a 'long-term' basis throughout lactation; (2) Short-term supply of IgG (and IgA) in Group II and III mammals for eventual absorption into neonatal serum; (3) The supply of numerous nonspecific factors such as 'bifidus factor,' lactoferrin, and lysozyme throughout lactation; (4) Regulation of the development of humoral immunity by an apparent feedback mechanism involving maternal IgG; (5) Self-protection of the gland by sensitized T-lymphocytes acting directly or using lymphokines on macrophages; and (6) Self-protection of the gland by secreted antibodies that may act in complement-independent cytolysis, as opsoins for polymorphonuclear-leukocytes or directly as agents preventing colonization.

Animals

The differential enzyme susceptibility of bovine immunoglobulin G1 and immunoglobulin G2 to pepsin and papain.

Purified bovine immunoglobulins IgG1 and IgG2 were subjected to enzymatic degradation with pepsin and papain. Results were monitored using density gradient ultracentrifugation, acrylamide electrophosesis and immunodiffusion employing subclass- and light chain-specific antisera. The results indicated a marked enzymatic susceptibility of IgG1 to digestion with pepsin. This differential susceptibility can also be demonstrated in unfractionated bovine gamma-globulin. No striking differences between the two subclasses were observed during treatment with papain in the presence of cysteine and after 24 h, most IgG1 and IgG2 was degraded to Fc and Fab fragments. The pepsin Fc fragment generated from IgG2 was larger than that generated from IgG1 although the F(ab')2 fragments were simialr in size. These results are consistent with the hypothesis that the Fc region of IgG1 contains multiple cleavage sites for pepsin whereas IgG2 has few. Rabbits immunized with the first elution peak from a 30 h pepsin digest of bovine gamma-globulin fractionated on Sephadex G-150, responded primarily to common gamma-chain and IgG2-specific determinants. Thus, the differential susceptibility of bovine subclasses to pepsin provides a method for stimulating IgG2-specific antibodies in rabbits.

Animals

Amplification of the enzyme-linked immunosorbent assay (ELISA) in the detection of class-specific antibodies.

A modification of the standard enzyme-linked immunosorbent assay (ELISA) is described which circumvents the requirement for specifically purified antibodies from which antibody-enzyme complexes are made. The assay utilizes the principle of a soluble anti-alkaline phosphatase immune complex (AP-A-AP) and has been called the amplified ELISA. Methods for preparing and evidence for the specificity of rabbit anti-rat gamma-FC, IgM (mu) and IgA (alpha) are presented. These reagents are used to measure anti-DNP antibodies belonging to classes IgG, IgM and IgA in rat serum. Using antiglobulin and anti-enzyme reagents prepared in guinea pigs, anti-ovalbumin antibodies are measured in rabbit serum. Titration curves are similar when the amplified ELISA is compared to the standard ELISA. A change in slope suggesting an effect of saturation of antigen sites, occurs at the same input antibody concentration for both assays. Determination of the anti-DNP concentration of unknown sera by extrapopulation from titration graphs of a known serum suggests that the value is overestimated, i.e., amplified when the amplified ELISA is used. In addition, the amplified ELISA has an improved ability to detect low levels of antibody. Evidence is presented which illustrates how the use of optimally conjugated DNP-proteins, age of conjugates, and optimal dilutions of secondary antiglobulins and the AP-A-AP reduce non-specific binding in the amplified ELISA. The amplified ELISA is capable of detecting 2.4 ng of antibody to ovalbumin in a one: one million dilution of rabbit serum with high reproducibility and low background.

Animals