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31.
A shift of physiological regulations from a homeostatic to a non-homeostatic modality characterizes the passage from non-NREM sleep (NREMS) to REM sleep (REMS). In the rat, an EEG index which allows the automatic scoring of transitions from NREMS to REMS has been proposed: the NREMS to REMS transition indicator value, NIV [J.H. Benington et al., Sleep 17 (1994) 28-36]. However, such transitions are not always followed by a REMS episode, but are often followed by an awakening. In the present study, the relationship between changes in EEG activity and hypothalamic temperature (Thy), taken as an index of autonomic activity, was studied within a window consisting of the 60s which precedes a state change from a consolidated NREMS episode. Furthermore, the probability that a transition would lead to REMS or wake was analysed. The results showed that, within this time window, both a modified NIV (NIV(60)) and the difference between Thy at the limits of the window (Thy(D)) were related to the probability of REMS onset. Both the relationship between the indices and the probability of REMS onset was sigmoid, the latter of which saturated at a probability level around 50-60%. The efficacy for the prediction of successful transitions from NREMS to REMS found using Thy(D) as an index supports the view that such a transition is a dynamic process where the physiological risk to enter REMS is weighted at a central level.  相似文献   
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33.
Novel osteoblast-adhesive peptides for dental/orthopedic biomaterials   总被引:3,自引:0,他引:3  
Next generation dental/orthopedic biomaterials must be designed to enhance and support osteoblast adhesion. The osteoblasts use different ways to adhere, that is, integrin- and proteoglycan-mediated mechanisms. The present study reports on the synthesis and osteoblast-adhesive properties of peptides carrying RGD motifs and of sequences mapped on human vitronectin. Our data suggest that osteoblast adhesion on polystyrene plates modified with a linear peptide, in which the GRGDSP sequence is repeated four times, was significantly higher when compared to the adhesion obtained using branched peptides, interestingly containing the same motif. Osteoblast adhesion assays on acellular bone matrix using this active peptide gave very promising results. We also demonstrated that a novel peptide, carrying the X-B-B-B-X-B-B-X motif (where B is a basic amino acid and X is a nonbasic residue), promotes proteoglycan-mediated osteoblast adhesion more efficiently with respect to the KRSR sequence that was recently proposed as heparan-sulfate binding peptide.  相似文献   
34.
Summary We have evaluated by means of immunocytochemistry the distribution of various cytoskeletal and contractile proteins (cytokeratins, vimentin, desmin and -smooth muscle actin) in 23 salivary or lacrimal gland primary tumours (15 pleomorphic adenomas and 8 carcinomas in pleomorphic adenoma), one third of which contained areas of normal gland. Normal epithelial luminal cells were stained by cytokeratin antibodies with a general specificity, while myoepithelial cells were selectively stained by a monoclonal antibody (SK2-27) reacting in immunoblots with cytokeratin polypeptides 14, 16 and 17, according to the classification of Moll et al. (1982) and by an antibody directed against -smooth muscle actin (Skalli et al. 1986). In pleomorphic adenomas, both epithelial and myoepithelial cells displayed typical topographic distributions; moreover, myoepithelial cells showed two distinct cytoskeletal phenotypes. These findings could account in part for the heterogeneity of aspects observed in this tumour. In carcinomas, malignant cells were always positive to cytokeratin antibodies with general specificity and myoepithelial cells were absent as judged by anticytokeratin SK2-27 and anti--smooth muscle actin immunostainings. However, interestingly, there was in all cases a strong positivity for -smooth muscle actin in stromal cells, similarly to what has previously been described for mammary carcinoma (Skalli et al. 1986). Our findings may be useful for the interpretation of the histogenesis of salivary and lacrimal tumour and stromal cells.  相似文献   
35.
We developed a competitive, enzyme-linked immunosorbent assay for the quantitation of toxic shock syndrome toxin 1 (TSST-1). Polyvalent immunoglobulin G from immunized rabbits was used as the capture antibody, and alkaline phosphatase conjugated to purified toxin served as the indicator enzyme. A standard curve was generated with each experiment, from which the concentration of toxin in culture supernatants was extrapolated. The assay was useful for determining toxin concentrations of 0.03 to 0.5 micrograms/ml, which is a substantial, practical improvement over immunodiffusion methods. Staphylococcal enterotoxins A through E were not significantly cross-reactive in the assay, and staphylococcal protein A did not interfere with quantitation of TSST-1. By testing a variety of staphylococcal strains, we found 100% concordance between toxin determinations made with our assay and those made by the investigators from whom the strains were obtained. The competitive, enzyme-linked immunosorbent assay is a highly reproducible, inexpensive means of determining TSST-1 concentrations and may have broad applicability in the field of toxic shock research.  相似文献   
36.
High-molecular-weight polysaccharides from the extracellular slime of Pseudomonas aeruginosa were evaluated as immunogens in Pseudomonas burn infections in mice. Immunization with immunotype 1 or 2 polysaccharides induced a strong immunotype-specific and weak cross-reactive antibody response but protected mice against burn infections caused by either immunotype. Passive protection was provided by rabbit antiserum to immunotype 1 polysaccharide against burn infection by the homologous organism. Pseudomonas high-molecular-weight polysaccharides are potentially effective vaccines in burn infections.  相似文献   
37.
We explored the genetic basis for the differing immune responses observed in inbred strains of mice to a high-molecular-weight polysaccharide (PS) from Pseudomonas aeruginosa immunotype 1 (IT-1). Previous studies have shown that C3H mice immunized with this antigen produce only immunotype-specific antibody. BALB/c mice immunized with IT-1 PS produce both anti-IT-1 PS antibody and antibody cross-reactive with PS from P. aeruginosa immunotype 2 (IT-2). In the current study, we observed that, in addition, these two strains differ in their ability to respond to low immunizing doses of IT-1 PS. C3H mice generated a protective antibody response after a 1-microgram immunization, whereas BALB/c mice failed to produce protective antibody after receiving 1 microgram of PS. Both strains generated protective levels of antibody after a 50-micrograms immunization. Genetic analysis of these response patterns indicates that the ability to produce cross-reactive antibody and the ability to respond to a 1-microgram immunization are independently inherited traits. In addition, the responsiveness of C3H mice to a 1-microgram immunization with the production of protective levels of antibody is not linked to the mouse major histocompatibility (H-2) complex, to sex-linked genes, or to a single gene outside the H-2 complex.  相似文献   
38.
The antigenic types of 129 isolates of Nocardia asteroides from diverse clinical, environmental, and geographic origins were determined. The majority of the isolates studied were of bovine (56) or human (44) origin; 11 were derived from six species of animals other than cattle, and 10 were isolated from environmental sources; the source of 8 strains could not be determined. Testing culture filtrate antigens against four standard reference sera in a gel diffusion precipitin test established the antigenic type of 95.3% of the isolates. After excluding strains that weighted the data because of common infection, the distribution of serotypes was examined according to the origin of the isolate. Type I was the most frequently encountered serotype (31.9%); types III (15.0%) and IV (20.4%) were also observed frequently, as was the antigenic mixture III + IV (14.2%). There was an apparent difference in frequency of type III and IV antigens among isolates of bovine and human origin; type III made up 20.0% of the bovine isolates and 13.6% of the human isolates, whereas type IV constituted 10.0% of bovine and 27.3% of human isolates.  相似文献   
39.
The O antigen of the Pseudomonas aeruginosa lipopolysaccharide is the optimal target for protective antibodies, but the unusual and complex nature of their sugar substituents has made it difficult to define the range of these structures needed in an effective vaccine. Most clinical isolates of P. aeruginosa can be classified into 10 O-antigen serogroups, but slight chemical differences among O polysaccharides within a serogroup give rise to subtype epitopes. These epitopes could impact the reactivity of O-antigen-specific antibodies, as well as the susceptibility of a target strain to protective, opsonic antibodies. To define parameters of serogroup and subtype-epitope immunogenicity, antigenicity, and surface expression on P. aeruginosa cells, we prepared high-molecular-weight O-polysaccharide vaccines from strains of P. aeruginosa serogroup O2, for which eight structurally variant O antigens expressing six defined subtype epitopes (O2a to O2f) have been identified. A complex pattern of immune responses to these antigens was observed following vaccination of mice. The high-molecular-weight O polysaccharides were generally more immunogenic at low doses (1 and 10 μg) than at a high dose (50 μg) and usually elicited antibodies that opsonized the homologous strain for phagocytic killing. Some of the individual polysaccharides elicited cross-opsonic antibodies to a variable number of strains that express all of the defined serogroup O2 subtype epitopes. Combination into one vaccine of two antigens that individually elicited cross-reactive opsonic antibodies to most members of the O2 serogroup inhibited, instead of enhanced, the production of antibodies broadly reactive with most serogroup O2 subtype strains. Thus, immune responses to P. aeruginosa O antigens may be restricted to a limited range of epitopes on structurally complex O antigens, and combining multiple related antigens into a single vaccine formulation may inhibit the production of those antibodies best able to protect against most P. aeruginosa strains within a given O-antigen serogroup.It has been established through animal and human experimentation that the lipopolysaccharide (LPS) O antigen of Pseudomonas aeruginosa is a target for protective antibodies (3, 36, 38). The studies of Knirel and colleagues (17, 19) on the chemical composition and structure of the major O-side-chain polysaccharides have provided important insights into the immunochemical properties of these antigens, but our understanding of their antigenic and immunogenic properties is incomplete. This point is highlighted by the inability to date to develop effective, LPS-specific immunotherapies for human P. aeruginosa infection (7).Results obtained with animals by using immunogens and antibodies specific to the O polysaccharides have indicated that slight chemical differences among bacterial strains with otherwise closely related O-side-chain structures can produce a complex pattern of reactions between antibodies and related antigens (13). With standard serologic methods using whole-cell agglutinations, strains of P. aeruginosa can be classified as members of one serogroup (serotype); members of each serogroup share a group-specific antigen. Further subdivision into subtypes, which correlate with structural variants determined by Knirel and colleagues (17), can be accomplished with appropriate antisera (22).To develop safe and effective O-antigen-specific P. aeruginosa vaccines, we have utilized the high-molecular-mass (>100,000-Da) fraction of O polysaccharides. These antigens are safe and immunogenic in humans and animals (13, 27, 37) and elicit protective antibodies to the strains from which they are isolated. However, in recent studies of animals immunized with a heptavalent high-molecular-weight O-polysaccharide vaccine whose individual components were isolated from single strains representative of the major serogroups causing P. aeruginosa infection, opsonic antibody responses to the group-specific antigens were not commonly elicited (13). Thus, in spite of chemical and serologic relatedness among subtype strains within a P. aeruginosa serogroup, single antigens isolated from one subtype strain do not always elicit opsonic antibodies to all of the strains within the serogroup (13). Previous results showed that a particular O antigen from a given serogroup may elicit group-specific immunity, while an O antigen from another serogroup may elicit only immunity specific to the subtype epitopes expressed on that particular O antigen.To explore this situation further and gain additional insight into the serologic diversity among P. aeruginosa LPS O antigens, we prepared high-molecular-weight O-polysaccharide immunogens from five strains of P. aeruginosa serogroup O2 that, together, express all six of the identified subtype antigens (Table (Table1).1). These polysaccharides were used to immunize mice, and the resultant sera were assessed by enzyme-linked immunosorbent assay (ELISA) and for opsonic killing activity. The results showed a complex interaction among the strains with regard to high-molecular-weight O-polysaccharide immunogenicity, antigenicity, serogroup and subtype epitope density, and susceptibility to opsonic killing. These findings indicate that the current serogroup classifications of P. aeruginosa are probably inadequate to define the full range of LPS antigens needed to elicit comprehensive immunity to a wide range of clinical isolates.

TABLE 1

Strains used for immunogen production, their serologic classification by subtype epitope, and chemical structures of the associated O antigens Open in a separate windowaBoldface type indicates a feature of a structure that distinguishes it from a related structure of the same serogroup. Abbreviations: FucNAc, 2-acetamido-2,6-dideoxygalactose (N-acetylfucosamine); Man(NAc)2A, 2,3-diacetamido-2,3-dideoxymannuronic acid; Man(2NAc3N)A, 2-acetamido-3-acetamidino-2,3-dideoxymannuronic acid; Gul(NAc)2A, 2,3-diacetamido-2,3-dideoxyguluronic acid. bThe lower structure is also part of the O antigen of strain 170007; there is about a 2:1 ratio of the upper and lower structures.   相似文献   
40.
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