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Biomedical subjects

V A Sundqvist

Publications and source records attributed to V A Sundqvist.

At least 19 recordsLinked to original sources

Cytomegalovirus infection of the central nervous system in patients with AIDS: diagnosis by DNA amplification from cerebrospinal fluid.

A nested polymerase chain reaction (PCR) was evaluated for the detection of cytomegalovirus (CMV) DNA in cerebrospinal fluid (CSF). CSF and serum samples from 19 AIDS patients with intracerebral CMV infection diagnosed at autopsy were retrospectively examined. As controls, CSF and serum samples from 15 AIDS patients with only extracerebral CMV involvement at autopsy, from 10 AIDS patients without CMV infection at autopsy, and from 10 anti-human immunodeficiency virus-negative patients without ongoing CMV infection, were studied. CMV DNA was detected from patients with intracerebral CMV infection in 9 of 9, 5 of 6, and 1 of 4 CSF samples collected, respectively, 1-30, 30-90, and 90-300 days before death. Twelve of 13 sera from these patients were CMV PCR-positive. None of the control patients had CMV DNA in CSF. PCR was positive in 6 of 8 sera from AIDS patients with only extracerebral CMV infection and in serum from 1 AIDS patient without CMV involvement at autopsy. CMV PCR on CSF is highly sensitive and specific. It should be considered a rapid and reliable diagnostic method for CMV infection of the central nervous system.

AIDS-Related Opportunistic Infections

Glycoprotein gp116 of human cytomegalovirus contains epitopes for strain-common and strain-specific antibodies.

Glycoprotein gp116 of human cytomegalovirus (HCMV) is a target for neutralizing antibodies. Gp116 is a component of the gCI complex which consists of gp58 and gp116. Like its homologue, glycoprotein B of herpes simplex virus type 1, gp116 contains a highly antigenic region in the N-terminal part of the molecule, between amino acids 28 and 84. Prokaryotic expression plasmids and synthetic peptides were used to define binding sites for mouse and human monoclonal antibodies (MAbs) as well as HCMV convalescent sera. Site I, located between amino acids 68 and 77, contains an epitope recognized by the human MAb C23, which is capable of neutralizing HCMV independently of complement and the site is conserved between HCMV strains. Of HCMV-positive human sera, 53% recognized site I. Site II was mapped using mouse MAbs as well as human sera. It is located between residues 50 and 54, an area which is not conserved between strains AD169 and Towne, the two laboratory strains of known sequence. Strain-specific antibodies were detected in 25% of human sera. Site II-specific antibodies, purified from human sera by affinity chromatography, were found to be incapable of neutralizing HCMV in tissue culture.

Amino Acid Sequence

Antibody responses to synthetic peptides from cytomegalovirus phosphoprotein 150.

We have identified antigenic regions within phosphoprotein 150 of human cytomegalovirus (CMV pp150) to which seroreactivity appears in patients with active CMV infection or persists in seropositive persons. A range of 8.3 to 61.6% of healthy CMV-seropositive blood donors were immunoglobulin G positive for single peptides, while 91.6% reacted to a mixture of four peptides. All convalescent-phase serum samples from 26 patients with active CMV infection reacted with either of two peptides encompassing amino acids (aa) 594 to 623 and aa 614 to 643. Patients with a primary CMV infection had patterns of reactivity to single peptides different from those of patients with reactivated CMV infection. The immunoglobulin M antibodies reacted preferentially with the peptides encompassing aa 594 to 663 of CMV pp150.

Amino Acid Sequence

Variations in the cytomegalovirus major immediate-early gene found by direct genomic sequencing.

An assay to detect and sequence DNA from human cytomegalovirus (HCMV) immediate-early gene region 1 has been developed; it involves in vitro amplification by the polymerase chain reaction and direct solid-phase sequencing of the amplified material. Urine samples from 16 patients tested positive for HCMV DNA in both a colorimetric assay for the detection of immobilized amplified nucleic acids and a standard polymerase chain reaction assay with agarose gel electrophoresis. Ten urine samples from healthy people tested negative in the same assays. Analysis of 106-bp fragments from seven patients and two laboratory HCMV strains (Ad 169 and Towne) demonstrated that the viral sequences were conserved in samples collected at different times from the same patient and in tissue-cultured samples. Two of the patient strains had variations in the amplified region, with a total of seven nucleotide substitutions yielding five amino acid alterations in the coding sequence.

Amino Acid Sequence

Cytomegalovirus DNA detection in sera from patients with active cytomegalovirus infections.

Using a specific and sensitive polymerase chain reaction method, we detected reliably the presence of human cytomegalovirus (HCMV) DNA directly in serum samples collected at an early stage of HCMV infection, even before immunoglobulin M (IgM) antibodies were measurable. HCMV DNA was detected in serum from all patients with active HCMV infection; in 91% of these patients, HCMV DNA was found in the acute-phase serum. In 13 of 44 patients, HCMV DNA was found in serum before HCMV-specific IgM. For four kidney transplant recipients, the occurrence of HCMV DNA in serum, virus isolation from urine and leukocytes, and HCMV IgG and IgM serology were determined. We found a correlation between HCMV DNA in serum and positive virus isolation from leukocytes. In three of five congenitally infected infants, HCMV DNA and HCMV IgM were detected in the same sample. Two other infants were HCMV DNA positive, although no HCMV IgM antibodies were measurable. HCMV was found in urine from these infants either by virus isolation or with the polymerase chain reaction. Serum from one of the 22 healthy HCMV-seropositive blood donors was HCMV polymerase chain reaction positive.

Antibodies, Viral

A continuous sequence of more than 70 amino acids is essential for antibody binding to the dominant antigenic site of glycoprotein gp58 of human cytomegalovirus.

Antigenic domain 1 (AD-1) on glycoprotein gp58 of human cytomegalovirus was characterized in detail, using mouse and human monoclonal antibodies as well as human convalescent sera. Series of procaryotically expressed fusion proteins and synthetic peptides of various lengths were used as sources of antigen. Binding of antibodies was found to depend on a continuous sequence of more than 70 amino acids between residues 552 and 635 of gp58. The fine specificities for sequences involved in antibody binding were (i) amino acids 557 to 635 for neutralizing as well as nonneutralizing mouse monoclonal antibodies, (ii) amino acids 552 to 630 for a neutralizing human monoclonal antibody, and (iii) amino acids 557 to 630 for antibodies present in human sera. Experiments involving fragments of AD-1, presented either as procaryotically expressed fusion protein or as synthetic peptides, indicated that the intact structure was required for recognition of AD-1 by antibodies.

Amino Acid Sequence

Induction of MHC class I antigen expression following infection of a human esthesioneuroblastoma cell line with cytomegalovirus and human immunodeficiency virus.

Productive infections with cytomegalovirus (CMV) and human immunodeficiency virus (HIV) were established in the Tp41ON cell line derived from a human esthesioneuroblastoma. HIV antigen expression was highest in cultures coinfected with CMV and HIV. Viral infection caused increased MHC class I antigen expression while class II and CD4 antigens remained undetectable using immunofluorescence methods. Uninfected cultures showed 10% and coinfected cultures 80% class I antigen positive cells. In coinfected cultures, CMV and HIV antigens were detected in 4% and 8% of the cells, respectively. The detection of CMV antigens in some multinucleated cells suggests coinfection with both viruses in these cells, as multinucleated cells were not found in cultures infected with CMV only. The study shows that a cell line showing neuronal differentiation in vitro can be infected with CMV and HIV and that this infection increases MHC class I antigen expression.

Antigens, Neoplasm

Cytomegalovirus DNA detection of an immediate early protein gene with nested primer oligonucleotides.

A rapid and sensitive polymerase chain reaction (PCR) was developed to detect conserved sequences from the immediate early gene of human cytomegalovirus (HCMV). The primers sequences were from EcoRI J fragment of Ad169. The first primer set was selected to amplify a 242 bp fragment and the next primer set was nested within the first and amplified a 146 bp fragment. With the single PCR system it was possible to detect 100 fg HCMV DNA but with double PCR 5-10 fg were detectable. Specific amplification was seen in urines from patients with HCMV infections. 20 urine samples were analysed by single PCR, double PCR and virus cultivation. The double PCR was the most sensitive method. Urines from healthy seropositive persons and cells infected with other members of the herpes virus family were negative with all three methods. This suggests that specific amplification by double PCR is sensitive and can be used for rapid detection of HCMV DNA in cases with activated infection.

Antigens, Viral

Characterization of a major antigenic region on gp55 of human cytomegalovirus.

A major antigenic region localized to the C-terminal part of the 55K glycoprotein of human cytomegalovirus (HCMV) was mapped using synthetic peptides. Analysis of the region with six sera from healthy anti-HCMV seropositive blood donors showed that the length of the reactive sequence varied between four and eight amino acids (aa). The shortest sequence recognized was VTSG (aa 798 to 801 of the 130K precursor protein), but most sera required the three or four residues C-terminal to this to react, giving a major site of VTSGSTKD (aa 798 to 805). Using peptides immobilized on polyethylene pins, the importance of both interior (between aa essential for the binding of an antibody) and extension spacer residues was evident. Free peptides containing the reactive sequence were prepared for use in a conventional ELISA and optimal pH conditions for coating were determined. The best results were achieved at pH 2 to 3, which is in agreement with the advantageous net charge of these peptides at this low pH. Anti-HCMV positive sera showed a sensitivity of approximately 50% for both peptides on polyethylene pins and peptides coated onto plates.

Amino Acid Sequence

SPAM-8, a mouse-human heteromyeloma fusion partner in the production of human monoclonal antibodies. Establishment of a human monoclonal antibody against cytomegalovirus.

A heteromyeloma (mouse x human) cell line (SPAM-8) was produced by fusing mouse myeloma cells (SP2/0) with human peripheral blood lymphocytes. The cells were sensitive to aminopterin and resistant to ouabain. The cells showed a doubling time of about 19 hours and a cloning efficiency of 0.8 cells/well (to obtain growth in 50% of wells seeded) using mouse thymocytes as feeder cells. The number of chromosomes was about 86 and 1% of the total DNA was of human origin. Fusion of SPAM-8 cells with lymphocytes prepared from human spleens resulted in approximately one hybridoma per 10(5) seeded lymphocytes. A trioma (human x [mouse x human]) cell line was established by fusing cells of an Epstein-Barr virus-transformed B cell line with SPAM-8 cells. The trioma cells produced antibodies (IgG1, K) against cytomegalovirus, in a concentration of 7 micrograms/ml in spent medium, over a period of six months of continuous culture. The results obtained indicate that the heteromyeloma SPAM-8 may be used as a fusion partner in the production of human monoclonal antibodies.

Animals

Characterization of human monoclonal antibodies directed against the pp65-kD matrix antigen of human cytomegalovirus.

Human monoclonal antibodies specific for human cytomegalovirus (CMV) antigens have been established using peripheral blood lymphocytes from a seropositive donor. Immortalization of antigen-specific B cells was achieved by Epstein-Barr virus transformation followed by somatic cell fusion of antigen-specific lymphoblastoid cells. Four clones producing high-affinity antibodies (0.2-7 x 10(9) M-1) specific for the viral matrix protein pp65 have been further characterized with respect to epitope specificity of secreted antibodies. The studied antigen represents a major protein produced by in vitro-cultivated virus, and is important in the serodiagnosis of CMV infection. The human monoclonal antibodies recognized different epitopes, some of which proved to be overlapping. The fine specificity of these antibodies was evaluated using synthetic peptides covering the sequence of pp65. The antibody MO58 recognized a linear epitope (residues 283-288) whereas antibody MO53 recognized a discontinuous epitope involving residues 208-216 and 280-285. Despite the close proximity of these epitopes, the antibodies did not compete with each other for the same binding site on intact antigen.

Amino Acid Sequence

Epitope mapping of the HIV-1 gag region with monoclonal antibodies.

A new type of immunochemical mapping of the human immunodeficiency virus type 1 (HIV-1) gag region was performed. By use of native HIV-1 viral lysates or the gag recombinant p24-15 antigen, a new set of monoclonal antibodies (Mabs) to the gag region proteins was generated. Synthetic HIV-1 peptides covering the entire gag region were used to specifically localize the continuous epitopes by direct binding to the Mabs and by blocking the Mab immunoreactivity. The identified immunogenic epitopes were localized between the gag amino acids (aa) 108-127, 203-217, 208-222, 248-282, 273-302, 288-307, 308-322, 331-354 and 408-422. These continuous epitopes formed seven immunogenic regions. One strongly p17-reactive Mab appeared to react with a discontinuous epitope, the components of which were 110 aa distant in the linear sequence: aa 23-27 and 128-132. The synthetic peptides appeared to be more congruent with the Mab-reactive sites in solution than when coated to a solid phase.

Amino Acid Sequence

An enzyme-linked immunosorbent assay for IgG antibodies to human herpes virus 6.

An indirect enzyme-linked immunosorbent assay (ELISA) with human herpes virus 6 (HHV6) membrane antigen was compared with indirect immunofluorescence assay (IFA) for measurement of HHV6 IgG antibodies. Five hundred serum samples from 403 Swedish patients with suspected symptomatic Epstein-Barr virus (EBV) infections were examined. The specificity of the ELISA compared with IFA was 98.7% and the sensitivity was 98.4%. In 90% of the patients, IgG antibodies to HHV6 were detected with both assays. The highest HHV6 IgG titers were found mainly in patients with EBV or CMV infections, but HHV6 mononucleosis was not diagnosed. The same HHV6 antigen was assessed for IgM ELISA but was found to be of limited value due to high IgM reactivity with the control antigen. The HHV6 IgM ELISA requires further investigation. The IgG ELISA described is a reliable alternative to IFA for measurement of HHV6 IgG antibodies and for large scale epidemiological studies.

Antibodies, Viral

Antibodies against varicella-zoster virus and herpes simplex virus deoxythymidine kinase in heterologous infections.

Antibody responses to varicella-zoster virus (VZV) deoxythymidine kinase (dTK) and herpes simplex virus (HSV) dTK in homologous and heterologous infections were studied. Antibodies blocking the enzymatic activity of VZV-dTK appeared late after varicella and decreased more or less in parallel with the decreasing complement fixing [CF] titre. In herpes zoster, on the other hand, antibodies to VZV-dTK appeared soon after infection. Antibodies against HSV dTKs appeared long after primary infection, but they were subsequently present in all other HSV-CF positive sera. In recurrent HSV, all acute sera were already HSV-dTK antibody positive, and three of nine persons showed an increase in titer between their acute and convalescent sera. Blocking antibodies to VZV-dTK appeared rapidly in specimens from three of 18 individuals positive by an immunofluorescence VZV-immunity test during HSV infection, whereas all other specimens remained devoid of blocking antibodies against VZV-dTK. A rise in antibody titre against HSV-dTK during VZV infections was observed in serum specimens from three of 13 HSV-CF positive patients, whereas an antibody response against HSV-dTK was not found in HSV-CF negative individuals in connection with VZV infections. The relevance of the sporadic increase in the titres of antibodies against heterologous viral dTKs is discussed.

Adolescent

Human immunodeficiency virus type 1 p24 production and antigenic variation in tissue culture of isolates with various growth characteristics.

Two monoclonal antibodies (Mabs) reacting with different epitopes of the human immunodeficiency virus type 1 core protein p24 (HIV p24) were used either singly or in combination as tracers in enzyme-linked immunosorbent assays. The culture supernatant of 215 samples of peripheral blood mononuclear cells from 112 patients were measured for HIV p24 and reverse transcriptase (RT) activity during cultivation. One hundred forty-one cultures were positive for HIV p24 and 122 for RT after 32 days of cultivation. After 8-9 days, HIV p24 was detected in 50.4% and RT in 27.8% of the cultures later judged as HIV positive. Two patients seemed to have substrains of HIV-1 not reactive with one of the Mabs.

Acquired Immunodeficiency Syndrome

Total, anti-viral, and anti-myelin IgG subclass reactivity in inflammatory diseases of the central nervous system.

Total IgG subclass levels, anti-viral, anti-myelin basic protein (anti-MBP), and anti-ganglioside 1 (anti-GM1) IgG subclass levels were measured in 6 patients with herpes simplex virus encephalitis (HSVE), 16 with borreliosis, 8 with other bacterial infections, 12 with multiple sclerosis (MS), 13 with subacute sclerosing panencephalitis (SSPE), 5 with glioblastoma and 12 controls. Total IgG1 levels were elevated in cerebrospinal fluid (CSF) from all patient groups (but not in the controls), IgG2 in bacterial infections, IgG3 in HSVE and borreliosis and IgG4 in some SSPE patients. The anti-viral (anti-measles, varicella zoster virus and rubella) IgG antibodies in MS were restricted to IgG1, anti-measles IgG to IgG1 and sometimes IgG4 in SSPE, anti-borrelia IgG to IgG1, IgG2 and IgG3. In contrast to anti-viral antibodies, anti-MBP and GM1 antibodies belonged to IgG1, IgG3 or IgG4 in MS. The nature of the immunological activation appears to be reflected in the subclass patterns elicited in the central nervous system. Different IgG subclass patterns in infectious diseases and MS suggest a difference between antigen-specific and non-specific B-cell activation.

Antibodies

Biological characterization of paired human immunodeficiency virus type 1 isolates from blood and cerebrospinal fluid.

Virus has been isolated from the blood and cerebrospinal fluid (CSF) of eight subjects with varying severity of human immunodeficiency virus type 1 (HIV-1) infection and from the frontal lobe of one patient with AIDS. The five patients with AIDS-related complex (ARC) and AIDS also showed neurological/psychiatric complications. With the exception of one isolate from the CSF of an asymptomatic carrier, all isolates replicated in peripheral blood mononuclear cells and monocytes after cell-free transmission. Isolates obtained from the blood of patients in late stages of HIV infection replicated in 3 (of 4) cases in H9 cells, whereas none of the blood isolates from patients in the early stages did so. The capacity of CSF isolates to replicate in H9 cells was low (only 2 of 12). Paired virus isolates from blood and CSF of the same patient could be distinguished by their replicative capacity in different cell lines, type of cytopathic effect, and protein profile as tested by radioimmunoprecipitation. The results indicate that variant viruses with distinct biological characteristics may be isolated from the blood and CSF of the same patient.

AIDS Dementia Complex

Acid hydrolysis of serum samples to increase detection of HIV antigen.

Sera from 32 HIV-infected patients and 20 controls were assayed for HIV antigen (HIV-Ag) and antibodies following acid hydrolysis. Acid hydrolysis, followed by neutralization immediately prior to the assay, was found to be a simple means to solubilize immune complexes and allowed recovery of 40-50% of complexed antigen. Following acid hydrolysis, HIV-Ag levels rose or became detectable in 22/32 patients and HIV IgG1-4 levels rose in 17/20 patients studied. The results show that complexed HIV-Ag may evade detection in HIV-infected patients.

Acquired Immunodeficiency Syndrome