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Evidence for lipopolysaccharide binding in human granulosa-luteal cells.

We investigated whether human granulosa-luteal (GL) cells exhibited lipopolysaccharide (LPS)-binding protein, and the response of follicular aspirate cells to LPS in vitro. Follicular aspirates taken from a human in-vitro fertilization and gamete intra-fallopian-tube transfer programme were subjected to Percoll gradients in order to isolate an enriched population of GL cells. GL cells exhibited specific LPS-binding protein, detected by autoradiography of the cellular lysate on SDS-PAGE after the cells were specifically labelled with a radioiodinated, photoactivable and reducible LPS derivative. LPS binding to the cells was also detected by the appearance of immunofluorescence associated with the cellular membrane when incubated with a fluorescent conjugated LPS receptor antibody. Ninety-four per cent of the cells exhibiting immunofluorescent LPS-binding protein were also positive for the steroidogenic enzyme 3 beta-hydroxysteroid dehydrogenase, as detected by cytochemistry. In order to detect a response to LPS, the enriched population of GL cells were cultured in vitro in the presence or absence of LPS; after 16 h of culture, tumour necrosis factor-alpha (TNF) mRNA was detected by reverse transcription-polymerase chain reaction and Southern blot analysis of the amplified cDNA. The expression of TNF mRNA was enhanced when the cells were cultured in the presence of LPS, which also significantly enhanced TNF secretion into the media during the 16-h period. These results reveal that GL cells exhibit LPS-binding protein and thus increased TNF secretion occurs in response to LPS in follicular aspirate cells. The source of ovarian TNF may be leukocytes, macrophages and/or GL cells.

3-Hydroxysteroid Dehydrogenases↗

Sequential appearance of IL-1 and IL-6 activities in rat carrageenin-induced pleurisy.

IL-1 and IL-6 activities were measured in the pleural exudate of rats during carrageenin-induced pleurisy to examine the relationship of the local production of cytokines to the inflammatory reaction. Time courses of appearance of the cytokines and inflammatory parameters in the exudate were compared. IL-1 activity and exudate volume started to increase at 1 h after the carrageenin injection, and then slightly later IL-6 activity and leukocyte number began to increase. IL-1 showed peak activity of approximately 700 U at 3 h and IL-6, of 6000 U at 5 h in the exudate, whereas exudate volume and number of polymorphonuclear leukocytes continued to increase thereafter. Furthermore, IL-6 level in the plasma of the carrageenin-injected rats showed a peak at 4 h (30 U/ml), and when rhIL-1 alpha (100,000 U) was intrapleurally injected, the more rapid increase in plasma IL-6 level was demonstrated at 1 h (30 U/ml). This latter rise was neutralized with simultaneous injection of anti-rhIL-1 alpha antibody. These facts indicate the possibility that IL-1 produced in the exudate or injected could rapidly propagate a signal to induce IL-6 production in the circulation. It took several hours to transmit an inflammatory signal that stimulated the liver to synthesize the acute-phase protein, T-kininogen. The time lag from the peak induction of IL-1 to the T-kininogen-increase in the pleurisy corresponded well to the interval for T-kininogen-increase by exogenous rhIL-1 alpha injection. These results strongly suggest that the initial inflammatory stimulus induces sequentially IL-1, IL-6, and T-kininogen production in this carrageenin inflammation.

Acute-Phase Proteins↗

Identification of a human lactoferrin-binding protein in Staphylococcus aureus.

Human lactoferrin (HLf) is an iron-binding protein with antimicrobial activity that is present in high concentrations in milk and various exocrine secretions. HLf is also an acute-phase protein secreted by polymorphonuclear leucocytes, and its binding to a large number of clinical isolates of Staphylococcus aureus has been described recently from our laboratory. We have now characterised the HLf-staphylococcal interaction in S. aureus strain MAS-89. The binding of 125I-HLf to strain MAS-89 reached saturation in less than 90 min and was maximal between pH 4 and 9. Unlabelled HLf displaced 125I-HLf binding. Various plasma and subepithelial matrix proteins, such as IgG, fibrinogen, fibronectin, collagen and laminin, which are known to interact specifically with S. aureus, did not interfere with HLf binding. A Scatchard plot was non-linear; this implied a low affinity (1.55 x 10(7) L/mol) and a high affinity (2.70 x 10(8) L/mol) binding mechanism. We estimated that there were c. 5700 HLf binding sites/cell. The staphylococcal HLf-binding protein (HLf-BP) was partially susceptible to proteolytic enzymes or periodate treatment and was resistant to glycosidases. An active HLf-BP with an apparent Mr of c. 450 Kda was isolated from strain MAS-89 cell lysate by ion-exchange chromatography on Q-sepharose. In SDS-PAGE, the reduced HLf-BP was resolved into two components of 67 and 62 Kda. The two components demonstrated a positive reaction with HLf-HRPO in a Western blot. These data establish that there is a specific receptor for HLf in S. aureus.

Bacterial Proteins↗

Conformational flexibility of the serum amyloid precursor SAA.

SAA is a normal acute-phase serum protein and is thought to be the precursor of amyloid protein AA which is deposited as insoluble beta-pleated sheet fibrils in secondary amyloidosis. Native SAA has a molecular weight of 160,000 and has not been isolated; it has been most frequently purified as a species (designated SAAL) of 12,500 mol. wt. by gel filtration in dissociating solutions. The conformational properties of SAA proteins in patients with and without amyloidosis have been compared in an effort to determine the factors involved in the induction of the beta-pleated sheet conformation in the amyloid SAA protein prior to fibril deposition. Amyloid and nonamyloid SAA proteins are similar in that they readily undergo conformational changes which result in the formation of heterogenous mol. wt. SAA species and in an increased exposure of antigenic determinants which cross-react with AA fibril proteins. Amyloid and nonamyloid SAA are different, however, in that amyloid SAA is more resistant to dissociation to SAAL. Amyloid SAAL, while similar to nonamyloid SAAL in immunoreactivity, shows a greater tendency toward aggregation. The relative resistance of both amyloid SAA and SAAL to complete dissociation may play an important role in amyloid fibril formation from these precursors.

Amyloid↗

The rat female protein, a pentraxin with lectinic properties.

The C-reactive protein is the major acute phase protein (APP) in humans which binds lectin-like to different membraneous structures and exerts an important function in non-specific defense. Because of a pentameric molecular symmetry CRP as well as serum amyloid P component (SAP) and hamster female protein (FP) was merged into a special protein family named pentraxins. In rats a protein was found referred to as rat FP which was close related to hamster FP with respect to hormonal regulation and APP nature as well. Based on this conformity the molecular structure of rat FP was analyzed and as the results a pentameric structure could be demonstrated for rat FP, too. Furthermore, the response of rat CRP and FP on injection of adrenal hormones, agents being involved in acute phase reaction, was investigated. Epinephrine administration led to an increase in CRP and a decrease in FP serum concentration. Dexamethasone has the same effect in case of FP and changed the CRP concentration in a biphasic way with a maximum at about 0.01 mg/kg, a minimum at 0.6 mg/kg and a return to control values at 1.8 mg/kg. Thus, the results indicate a neuroendocrine control of CRP and FP but probably in a different way. Using FITC-labelled lectin the exposition of galactose-containing membraneous structures could be demonstrated in carbon tetrachloride-injured liver tissue in contrast to controls. These binding sites are in accordance with increased FP-binding shown by immunofluorescence histochemistry. Thus, lectin-like properties may be ascribed to rat FP comparable to CRP and SAP activity. The results are discussed with respect to findings from literature that also the acetylcholine receptor seems to have a pentameric structure.

Acute-Phase Proteins↗

Modification of inflammatory processes by phenobarbital in rats.

Enzyme-inducing drugs such as phenobarbital (PB) increase serum concentrations of an acute-phase protein, alpha 1-acid glycoprotein (AGP), in man, dogs, and rats via an unknown mechanism. We studied the effects of PB on components of an acute inflammatory reaction in rats in order to determine if PB acts only on this biological marker of inflammation or is capable of altering the clinical course of inflammatory processes. Local carrageenan injection induces a similar time-dependent plantar edema and increases serum AGP levels in Sprague-Dawley (SD) and Dark Agouti (DA) rats. Pretreatment with PB for seven days modified neither parameter in SD rats while plantar edema was aggravated and serum AGP levels were increased in DA rats. The sedative-hypnotic properties of PB were not involved, since a single administration of this drug had no action in DA rats. On the other hand, chronic PB administration reduced the severity of an autoimmune disease, type II collagen-induced arthritis, in DA rats. These data indicate that PB, a potent inducer a cytochrome P-450-dependent enzymes, modifies the course of the inflammatory process. Preliminary results with macrophage transfer experiments suggest that this response to PB could be mediated by stimulated macrophages.

Acute Disease↗

Acute-phase proteins from the liver and enzymes from myocardial infarction; a quantitative relationship.

In 14 patients with acute myocardial infarction (M.I.) not having any other disease, the possible quantitative relationship between enzymes from M.I. and changes in concentration of acute phase reactants coming from the liver were studied. The patients were followed up until 1 1/2 years after M.I. and comparison of baseline-protein values took place using a control group of 18 healthy individuals. Quantitation of protein changes was done by planimetric determination of the area under the concentration curve and by taking peak values. The myocardial infarction was quantitatively estimated by mathematical analysis of the time course of alpha-hydroxybutyrate dehydrogenase (alpha-HBDH) plasma concentrations and by taking peak values. A quantitative relationship with enzymatic infarct size was found for haptoglobin, alpha1-acid glycoprotein, alpha1-antitrypsin, C-reactive protein, fibrinogen and E.S.R. Albumin and transferrin did not show a negative quantitative relationship with enzymatic infarct size. Humoral factors originating from the site of tissue injury and evoking in proportion a positive acute phase reaction by the liver are probably the basis for this observed quantitative relationship.

Acute Disease↗

Use of conserved sequences from hepatitis C virus for the detection of viral RNA in infected sera by polymerase chain reaction.

Three oligonucleotide primer combinations selected from the 5' noncoding, the nucleocapsid and the putative nonstructural regions of the hepatitis C virus genome were compared in a nested polymerase chain reaction assay with respect to sensitivity and specificity for the detection of viral RNA in chimpanzee-infected and human-infected sera. Sera from both the acute and the chronic phase of the infection were obtained from 13 animals inoculated with five different non-A, non-B hepatitis strains and from seven cardiac surgery patients who had non-A, non-B hepatitis develop after transfusion and who had been tested in parallel for the presence of hepatitis C virus RNA and anti-C 100-3. A total of 90% of the acute-phase and 100% of the chronic-phase sera tested positive for hepatitis C virus RNA when the 5' noncoding-derived or the nucleocapsid-derived combinations were used; only 58% and 56%, respectively, gave positive results with the putative nonstructural primers, whereas 33% and 71%, respectively, scored positive for C100-3. Thus polymerase chain reaction primers selected from either the highly conserved 5' noncoding or nucleocapsid-regions appear to provide the sensitivity and the specificity necessary to detect low levels of hepatitis C virus RNA in both chimpanzee-infected and human-infected sera.

Animals↗

Interleukin-6 and its receptor in autoimmunity.

Interleukin-6 (IL-6) is a multifunctional cytokine which acts on a wide variety of cells, regulating immune response, acute phase reaction and hematopoiesis. In accordance with its pleiotropic functions, IL-6 is indicated to be involved in the pathogenesis of several diseases including autoimmunities, lymphoid malignancies and inflammations. An elevated level of IL-6 is demonstrated in patients with rheumatoid arthritis and cardiac myxoma, which can explain symptoms of these diseases, such as autoantibody production and increase in acute phase proteins. Therefore, inhibitors of IL-6 production or IL-6 receptor-mediated signal transduction may be used for treatment of IL-6-related diseases. The IL-6 receptor system consists of two membrane proteins, a ligand-binding chain (IL-6R) and a non-ligand-binding signal transducer, gp130, both of which belong to the cytokine receptor family. Binding of IL-6 to IL-6R triggers the association of IL-6R and gp130, and gp130 in turn transduces the signal. A nuclear factor for controlling IL-6 gene expression (NF-IL6) is also involved in the transcriptional regulation of various acute-phase protein genes. IL-6-stimulation of hepatocytes, through modification of pre-existing NF-IL6 protein, leads to binding of NF-IL6 to IL-6-responsive elements and activation of acute-phase protein genes. NF-IL6 is shown to recognize the enhancer core sequence of several viruses, suggesting a possible relationship of virus infection and IL-6 expression.

Acute-Phase Proteins↗

Saliva versus lesion swabs for PCR diagnosis of acute-phase clade Ib mpox in Uganda: a prospective matched hospital cohort study.

BACKGROUND: As clade Ib mpox expands through HIV-affected populations in east and central Africa, diagnostic specimen selection should balance accuracy, accessibility, and operational feasibility in outbreak settings. Here, we aimed to compare the diagnostic performance of matched plasma, saliva, genital, anal, and skin specimens during the acute rash phase of clade Ib mpox to identify clinically practical and high-yield sampling approaches for outbreak response and clinical care. METHODS: We conducted a prospective cohort study of 155 adults (median age 30 years, IQR 25-36) hospitalised at Uganda's national mpox referral hospital. The specimens were collected between March 3 and April 10, 2025, during the clade Ib outbreak. All participants were admitted with suspected mpox and were subsequently confirmed by MPXV PCR. We collected 836 clinical specimens (acid citrate dextrose plasma, saliva, genital swabs, anal swabs, and skin swabs) during the acute phase (visit 1; 14 days [SD 2] after systemic symptom onset) and at approximately 3 months (visit 2). A matched acute-phase subset (n=80) provided concurrent plasma, saliva, genital, and skin specimens for within-participant comparisons. MPXV DNA was quantified by F3L real-time quantitative PCR, and cycle threshold (Ct) values were compared using paired Wilcoxon signed-rank tests. Whole-genome sequencing of selected acute specimens confirmed clade assignment. FINDINGS: In the matched subset at visit 1, PCR positivity was high in saliva (78 [98%] of 80), skin swabs (78 [98%] of 80), and genital swabs (77 [96%] of 80). Results for the saliva closely mirrored genital and skin swab results, supporting saliva as a high-yield alternative when lesion sampling is painful, operationally difficult, or unacceptable. Plasma had substantially lower sensitivity (34 [43%] of 80) and showed poor agreement with mucocutaneous compartments. At 3 months, persistent MPXV DNA was rare (ten [9%] of 109) and clustered among people with HIV, including the only two participants with persistent plasma positivity. All sequenced genomes clustered within clade Ib. INTERPRETATION: During the established rash phase (14 days [SD 2] after onset), saliva provides diagnostic yield similar to that provided by lesion swabs for clade Ib mpox in this hospitalised cohort. These findings are restricted to this sampling window; further studies are needed to define performance in prodromal, pre-rash, and asymptomatic infection. FUNDING: CEPI through its Centralised Laboratory Network.

Adult↗

Hepatitis "C" antigen in non-A, non-B post-transfusion hepatitis.

Evidence for a new hepatitis-specific antigen has been obtained from double immunodiffusion assays between acute and convalescent sera obtained from patients with non-A, non-B post-transfusion hepatitis. The designation hepatitis C (HC) antigen is proposed. HC was found in the acute-phase sera of all 13 non-A, non-B post-transfusion hepatitis patients with longer incubation and duration periods (type 2) tested, but only transiently in 4 out of 10 acutephase sera obtained from patients with type 1 non-A, non-B hepatitis, with shorter incubation and duration periods. The antigen was also detected in 2 out of 16 single specimens obtained during the acute phase from acute hepatitis patients who had not received a blood-transfusion. This suggests presence of a carrier state. No patients with alcoholic hepatitis and no healthy blood-donor carried HC antigen. The antigen seems distinct from those of hepatitis A and B (surface and core). It migrated in the serum beta-globulin region and had a buoyant density of 1.30 and a molecular weight between 100 000 and 300 000. Antibodies against HC antigen were found in only 30% of the type-2 non-A, non-B post-transfusion hepatitis patients and did not persist for long. However, these antibodies were directed specifically against HC antigen and moved in a manner similar to 7S globulin on rate-zonal centrifugation.

Acute Disease↗

The involvement of TNF, IL-1 and IL-6 in the immune response to protozoan parasites.

One early reaction of the host to infection with protozoan parasites is the secretion of an array of potent cytokines including tumor necrosis factor (TNF), interleukin (IL-1) and IL-6. The combined action of these cytokines causes fever, leukocytosis and the production of acute phase proteins such as C-reactive protein (CRP). These early responses contribute significantly to the outcome of infection by influencing the course of infection directly and by regulating the specific immune response to the parasite.

Acute-Phase Proteins↗

Cell-mediated immunity to Epstein-Barr-virus-transformed lymphoblastoid cells in acute infectious mononucleosis.

Mononuclear peripheral blood leukocytes from 21 patients with infectious mononucleosis and 16 healthy controls were tested in a 51Cr-release assay for cytotoxicity against two human lymphoblastoid cell lines derived from the same donor. One line contained the Epstein-Barr virus (EBV); the other did not. Acute-phase leukocytes were significantly more cytotoxic against the EBV-infected cell line than were control leukocytes. Mean (+/- S.E.) lysis at a leukocyte-target-cell ratio of 100:1 was 10.6 +/- 1.6 per cent for patients and 3.4 +/- 0.6 per cent for controls (P less than 0.0005). Cytotoxicity correlated with the percentage of atypical lymphocytes. Cells of three patients with acute mononucleosis-like illnesses failed to show killing activity above those of normal controls. Cytotoxicity against the EBV-negative line was not significantly different for each group. The finding of cytotoxic cells in infectious-mononucleosis patients with atypical lymphocytes suggests that these cells operate in vivo to limit the proliferation of altered EBV-transformed B lymphoblasts.

Acute Disease↗

Transient immunoglobulin M antibody response to hepatitis C virus capsid antigen in posttransfusion hepatitis C: putative serological marker for acute viral infection.

The development of serological assays for hepatitis C virus (HCV) has made specific diagnosis possible. However, markers useful in indicating acute-phase HCV infection have not been identified. By an immunoblotting method, we characterized the IgM and IgG antibody response against HCV capsid antigen in patients with HCV infection. Among 88% of patients with acute posttransfusion hepatitis C recruited in a prospective study, there was a transient IgM antibody response. The IgM antibody appeared shortly after onset of hepatitis (average 3.7 weeks), persisted for several months (average 18 weeks), and then disappeared. In contrast, the IgG antibody persisted long-term once it appeared. Among patients with chronic hepatitis C with milder disease activities (serum aminotransferase increase above normal levels of less than 4-fold), the IgM antibody was negative in the majority (72%). In those with acute exacerbations (aminotransferase increase of greater than 10-fold), about 55% were negative for the IgM antibody. The reactivity of the IgM antibody in the rest was weaker or became negative upon further dilution of serum. The results suggest that IgM anti-capsid antibody may serve as a marker indicating acute or active HCV infection.

Acute Disease↗

Localization of hepatitis A antigen in marmoset organs during acute infection with hepatitis A virus.

Twelve marmosets (Saguinus mystax) were inoculated intravenously (iv) with hepatitis A virus (HAV). One died early (day 12); seven were sacrificed at the time of elevation in level of alanine aminotransferase (serum glutamic-pyruvic transaminase), and four without elevation were not sacrificed but seroconverted. In the seven marmosets sacrificed during the acute stage of illness, hepatitis A antigen (HA Ag) was detected in the liver by immunofluorescence in all cases, by immune electron microscopy in four, and by enzyme-linked immunosorbent assay (ELISA) in three. The HA Ag appeared by immunofluorescence as very fine granules in the cytoplasm of hepatocytes and Kupffer cells. The HA Ag could not be detected by immunofluorescence in biopsy specimens taken from the duodenum, jejunum, ileum, or transverse colon in any of eight marmosets in which necropsy was performed during the acute or preacute stage of illness. These findings suggest that the gut is not involved during the acute phase of HAV infection following iv inoculation into marmosets. The ELISA results showed that only three of 12 marmoset livers obtained during the acute phase of HAV infection could be used as an antigen source in serologic testing for antibody to HA Ag. Thus, marmoset livers were no better as a source of HA Ag than acute-phase stools from patients with type A hepatitis.

Acute Disease↗

Enzyme-linked immunosorbent assay for detection of hepatitis A antigen in stool and antibody to hepatitis A antigen in sera: comparison with solid-phase radioimmunoassay, immune electron microscopy, and immune adherence hemagglutination assay.

Previously described techniques for detection of hepatitis A antigen (HA Ag) and antibody (anti-HA) have required purified HA Ag and expensive equipment. Herein is described an enzyme-linked immunosorbent assay (ELISA) for specific detection of HA Ag in human stool filtrates and of anti-HA in sera by using selected HA Ag-containing human stool filtrates as the antigen source. Because human stools often react nonspecifically in serological tests for HA Ag, blocking with preexposure and hyperimmune anti-HA sera from a chimpanzee inoculated with hepatitis A virus was used to confirm specific detection of HA Ag. The sensitivity of ELISA was found to be comparable to that of solid-phase radioimmunoassay (SPRIA) and immune electron microscopy (IEM). Of 37 acute-phase stools collected from nine patients, 16 were positive for HA Ag by ELISA. In 13 of these, HA Ag particles were found by IEM, and an additional 3 stools negative by ELISA contained HA Ag particles by IEM. Eight control stools were negative by both ELISA and IEM. Anti-HA was measured in sera by demonstrating its ability to block binding of the enzyme conjugate to HA Ag in a stool without detectable nonspecificity. This test (blocking ELISA) was as sensitive and specific as blocking SPIRA, IEM, and immune adherence hemagglutination and, like SPRIA and IEM, detected early-developing antibody. The ELISA is simple to perform and requires only a minimum of equipment. It is useful for screening stools for HA Ag and for monitoring HA Ag during purification, as well as for detecting early and late anti-HA in sera.

Acute Disease↗

The value of acute phase protein measurements in clinical practice.

There is clearly a role for the measurement of acute phase proteins and other indices of the acute phase reaction but it is equally clear that no one laboratory test is suitable for use in all clinical situations. The choice of acute phase protein measurement depends on the diagnostic sensitivity and specificity of the measurement in the particular clinical situation. The choice of measurement must also include a decision on time of sampling and whether single or serial sampling would be more appropriate. In most situations where acute phase measurement is useful CRP is the assay of choice with alpha 1-antichymotrypsin also being useful in inflammatory bowel disease and other situations where a wider time window is required. The ESR or plasma viscosity can be useful to screen for disease. Cytokine and enzyme-inhibitor complex measurements may be important assays in the future.

Acute-Phase Proteins↗

Observations on the interleukin-6 and acute phase protein profiles in the disease course of patients with lupus erythematosus.

In vitro models have shown that interleukin-6 (IL-6) is the main dominator of the stimulation of the full spectrum of acute phase proteins. This study describes IL-6 levels in relation to levels of acute phase proteins in 15 systemic lupus erythematosus (SLE) patients, with special attention given to those patients with increased serum levels of IL-6. Three episodes with elevated levels of IL-6 were observed in a period shortly after a flare-up of SLE, in three of the 15 patients. In one of these three patients a clear increase in the C-reactive protein (CRP) level, preceded by an IL-6 increase, was observed. In the other two patients, CRP levels remained unchanged. It is speculated that, next to IL-6, another signal is operative or needed for the start of an acute phase reaction. However, influences of the disease itself or of the administered therapy cannot be excluded as the cause of the described discrepancy between IL-6 and acute phase protein profiles in these two SLE patients.

Acute-Phase Proteins↗