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M Gravell

Publications and source records attributed to M Gravell.

At least 19 recordsLinked to original sources

Relationship of neurologic status in macaques infected with the simian immunodeficiency virus to cerebrospinal fluid quinolinic acid and kynurenic acid.

Increased concentrations of the excitotoxin quinolinic acid (QUIN) have been implicated in the neurologic deficits and brain atrophy that may accompany infection with the human immunodeficiency virus type-1. Key neuropathologic features of the AIDS encephalitis are replicated in some macaques following infection with the simian immunodeficiency virus (SIV). In the present studies, cerebrospinal fluid (CSF) QUIN concentrations increased within 2 weeks following infection of 11 rhesus macaques (Macaca mulatta) with a neurotropic sooty mangabey isolate of the simian immunodeficiency virus (SIVsm) and were sustained to greater than 2 standard deviations above uninfected control macaques. Highest CSF QUIN concentrations (up to 400-fold above pre-inoculation levels) were observed in 6 SIVsm-infected macaques with motor and behavioral abnormalities during life, brain atrophy on MRI scan and inflammatory lesions within the brain and meninges. Four of the 6 neurologic macaques deteriorated rapidly within 12 weeks after inoculation and had substantially larger increases in CSF QUIN levels than 2 other neurologic macaques and 5 macaques without neurologic signs which survived for longer than 37 weeks. Increases in serum QUIN and CSF kynurenic acid also occurred but generally to a lesser degree than the increases in CSF QUIN. In some animals, increases in serum L-kynurenine concentrations and reductions in CSF and serum L-tryptophan occurred and were consistent with activation of indoleamine-2, 3-dioxygenase, the first enzyme of the kynurenine pathway in extrahepatic tissues. CSF QUIN exceeded serum QUIN in 8.8% of samples from macaques with neurologic signs, supporting increased QUIN synthesis within the central nervous system. Production of [13C6]QUIN was demonstrated in one SIVsm-infected macaque and one uninfected control macaque following an intracisternal injection of [13C6]L-tryptophan and suggests that L-tryptophan is a substrate for QUIN synthesis within the nervous system or meninges, although the cellular localization of QUIN synthesis remain to be determined. We conclude that increases in kynurenine pathway metabolism occur in SIV-infected macaques and are most prominent in macaques with neurologic signs. Macaques infected with SIV offer a model to investigate the relationship between the metabolism of neuroactive kynurenines and neurologic disturbances associated with retroviral infection.

Animals

Observations after human immunodeficiency virus immunization and challenge of human immunodeficiency virus seropositive and seronegative chimpanzees.

Two human immunodeficiency virus (HIV)-seropositive chimpanzees (A-3 and A-86c) infected 4 yr earlier with HIV, along with one uninfected animal (A-36), were inoculated intramuscularly three times in a year with a gamma-irradiated gp120-depleted HIV immunogen in incomplete Freund's adjuvant. Both previously infected animals promptly developed an anamnestic humoral antibody response after the first dose, and the uninfected animal developed a primary humoral response to the first dose and then an anamnestic response to the second dose. Although HIV had been recovered repeatedly from the seropositive animals, they became persistently virus-culture negative at the time of or just before the first inoculation of the immunogen. Intravenous challenge with 40 chimpanzee-infectious-doses of a heterologous HIV strain (HIVIIIB) was done 4 mo after the third inoculation in the three treated chimpanzees and in an untreated control animal (A-189a). The immunized naive animal (A-36) and the unimmunized control (A-189a) became infected, and virus has been isolated from their peripheral blood mononuclear cells for greater than 2 yr after challenge. However, the two previously infected chimpanzees (A-3 and A-86c) resisted challenge and have remained virus negative by peripheral blood mononuclear cell cocultivation for greater than 2 yr of observation after challenge; moreover, no evidence of reinfection was detectable by PCR. Despite the in vivo resistance, however, peripheral blood mononuclear cells from the resistant animals (A-3, A-86c) remained susceptible to infection by HIV in vitro. These findings reveal that a state of immunity can develop and/or be induced to control and/or prevent HIV infection in the chimpanzees. In the absence of any detectable level of neutralizing antibody in A-3 and a low level in A-86c, the patterns of the responses to challenge seen in the four animals suggest that the cell-mediated immune mechanism must have played a significant role in the resistant chimpanzees both in control of their HIV infection and in their resistance to challenge.

Animals

In situ hybridization detection of HTLV-I RNA in peripheral blood mononuclear cells of TSP/HAM patients and their spouses.

This is the first report of the direct detection of HTLV-I RNA in uncultured peripheral blood mononuclear cells (PBMNC's) of patients with tropical spastic paraparesis and HTLV-I-associated myelopathy (TSP/HAM) and their spouses, using the technique of in situ hybridization. Twenty-one Colombian patients were tested, all of whom had antibodies to HTLV-I; the presence of HTLV-I proviral DNA in their PBMNC's was confirmed by the polymerase chain reaction technique. Of the 21 patients 15 had a clinical diagnosis of tropical spastic paraparesis (TSP/HAM), 5 were asymptomatic relatives, and 1 patient had leukemia. In situ hybridization was positive in samples from 5 patients; 2 of these were TSP/HAM patients and the other 3 were healthy wives of TSP/HAM patients. This study demonstrates for the first time that viral RNA is expressed in uncultured PBMNC's of some patients with TSP/HAM in whom proviral DNA is also present; furthermore, the detection of HTLV-I RNA in the blood of female partners of TSP/HAM patients clearly illustrates the high likelihood of HTLV-I transmission through sexual contact.

Cell Line

HLA-DR expression in macaque neuroendothelial cells in vitro and during SIV encephalitis.

HLA-DR expression in neuroendothelial cells (NEC) was studied during the course of SIV encephalitis in rhesus monkeys. HLA-DR determinants were detected on NEC in monkeys with SIV encephalitis, but not in control animals. In situ hybridization with an SIV probe indicated that HLA-DR expression was not a consequence of SIV replication within NEC. Cultured rhesus NEC stimulated with gamma interferon expressed HLA-DR to a higher degree than cultured brain fibroblasts or astrocytes. These data support the contention that NEC participate in retrovirus-induced inflammation and autoimmunity within the central nervous system.

Animals

Sustained increases in cerebrospinal fluid quinolinic acid concentrations in rhesus macaques (Macaca mulatta) naturally infected with simian retrovirus type-D.

Sustained increases in CSF concentrations of the excitotoxin quinolinic acid (QUIN) occur in patients with AIDS and have been implicated in the pathogenesis of the AIDS dementia complex. Macaques in captivity may also develop immunodeficiency syndromes caused by retrovirus infection, including simian retrovirus type-D. In the present study, CSF QUIN concentrations were moderately increased in retrovirus type-D-positive/antibody-negative macaques (163.8 +/- 35.1 nmol/l; P less than 0.0001, n = 21) but not virus-negative/antibody-positive macaques (27.4 +/- 9.4 nmol/l, n = 8) compared to uninfected control macaques (23.0 +/- 1.6 nmol/l; n = 22). CSF QUIN concentrations in virus-positive/antibody-negative macaques tended to remain elevated over a 4-20 month period. Post-mortem studies of 9 virus-positive/antibody-negative macaques and 6 virus-negative/antibody-positive macaques revealed inflammatory responses in the brains of 6 of 9 virus-positive/antibody negative macaques, including lymphocytic infiltrates of the choroid plexus in 3 macaques, glial nodules in 3 macaques and perivascular infiltrates in 1 macaque. These lesions were not extensive and no evidence of brain atrophy was observed. No lesions were observed in the 6 antibody-positive/virus-negative macaques. Small increases in plasma L-kynurenine in virus-positive/antibody-negative macaques are consistent with activation of indoleamine-2,3-dioxygenase, the first enzyme in the kynurenine pathway. We conclude that sustained moderate increases in CSF QUIN occur in viremic simian retrovirus type-D macaques. The increases in CSF QUIN may reflect inflammatory responses within the brain or synthesis of QUIN precursors in systemic tissues, their entry into brain and subsequent conversion to QUIN. The neuropathologic significance of these increases in CSF QUIN remains to be determined.

Animals

Simian immunodeficiency viruses from African green monkeys display unusual genetic diversity.

African green monkeys are asymptomatic carriers of simian immunodeficiency viruses (SIV), commonly called SIVagm. As many as 50% of African green monkeys in the wild may be SIV seropositive. This high seroprevalence rate and the potential for genetic variation of lentiviruses suggested to us that African green monkeys may harbor widely differing genotypes of SIVagm. To investigate this hypothesis, we determined the entire nucleotide sequence of an infectious proviral molecular clone of SIVagm (155-4) and partial sequences (long terminal repeat and Gag) of three other distinct SIVagm isolates (90, gri-1, and ver-1). Comparisons among the SIVagm isolates revealed extreme diversity at the nucleotide and amino acid levels. Long terminal repeat nucleotide sequences varied up to 35% and Gag protein sequences varied up to 30%. The variability among SIVagm isolates exceeded the variability among any other group of primate lentiviruses. Our data suggest that SIVagm has been in the African green monkey population for a long time and may be the oldest primate lentivirus group in existence.

Amino Acids

Molecular characterization of simian lentiviruses from east African green monkeys.

Asymptomatic infection with simian lentiviruses (also called simian immunodeficiency viruses, or SIV) is common among feral African green monkeys. To characterize the range of SIV genetic diversity among infected African green monkeys, we have determined nucleotide sequences from complete or partial molecular clones of four distinct SIVagm isolates from Kenya and Ethiopia. The nucleotide and amino acid variability we observed among the SIVagm isolates was greater than the variability within any other group of primate lentiviruses. These data suggest that: a) African green monkeys have been infected with simian lentiviruses for many years; and b) novel and uncharacterized primate lentiviruses may exist in the feral African green monkey population in other parts of Africa.

Amino Acid Sequence

Infection of macaque monkeys with simian immunodeficiency virus from African green monkeys: virulence and activation of latent infection.

The virulence of three isolates of simian immunodeficiency virus from African green monkeys (SIVagm) was studied in rhesus and pigtailed macaques. None of 15 rhesus monkeys and one of four pigtailed monkeys died from infection during the time they were studied (up to 33 months). SIVagm was only isolated from rhesus monkeys for up to 2 months after inoculation. However, when these animals were secondarily infected with Simian acquired immunodeficiency syndrome retrovirus type 1 (SRV-1), SIVagm was activated and isolated. Dual infection caused increased mortality.

Animals

Animal models of AIDS.

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Acquired Immunodeficiency Syndrome

Predictors of clinical AIDS in young homosexual men in a high-risk area.

One hundred and sixty-seven homosexual men in Los Angeles characterized by HIV antibody, T-cell numbers, titres to cytomegalovirus (CMV), and specific sexual practices were followed for two years for immune changes and for more than three years for development of clinical AIDS. Thirty-five per cent had antibody to HIV at baseline. The mean level of T-helper (Th) cells was significantly lower and of T-suppressor (Ts) cells significantly higher in HIV seropositives than in seronegatives. The annualized incidence of HIV seroconversion was 7%. Eight men developed AIDS, an attack rate of 14% in those with HIV antibody at baseline. A number of observations were made: T-cell alterations, except a transient elevation in Ts cells, were unusual in the absence of HIV antibody; a seropositive man with a T-cell alteration was significantly less likely to revert to 'within normal limits' than was a seronegative man; a steady decline in the number of Th cells preceded onset of clinical AIDS; the number of Ts cells remained higher in men subsequently developing AIDS than in other seropositive men; clinical AIDS occurred only in men with HIV antibody whose CMV antibody levels were above the median for the group (1:1600); and the attack rate for clinical AIDS was 50% in men with HIV antibody and elevated CMV who at baseline had either: fewer than 325 Th cells/cc, or whose Th/Ts ratio was below 0.8 (but whose levels of Th and Ts cells were within normal limits).(ABSTRACT TRUNCATED AT 250 WORDS)

Acquired Immunodeficiency Syndrome

Morphological changes of an inflammatory myopathy in rhesus monkeys with simian acquired immunodeficiency syndrome.

Eleven of 25 rhesus monkeys which died of simian acquired immunodeficiency syndrome (SAIDS) caused by infection with a type D retrovirus related to Mason-Pfizer monkey virus showed evidence of muscle weakness and atrophy and had elevated levels of muscle enzymes. Biopsies of affected muscle studied with enzyme histochemistry showed the characteristic features of polymyositis. Inflammatory cells consisting of lymphocytes, macrophages, and large vacuolated bizarre-shaped cells of undetermined type were surrounding or invading muscle fibers and were present in the perivascular spaces and endomysia septa. Within the perivascular infiltrates, lymphocytes were abundant but very few macrophages were present. Other myopathic features including profound proliferation of fibrous tissue, necrosis, and phagocytosis of muscle fibers were noted to a variable degree. The retrovirus was isolated from affected muscles. The clinical and historical features of polymyositis in rhesus monkeys with SAIDS are very similar to those of human polymyositis. The polymyositis in SAIDS induced by a type D retrovirus related to Mason-Pfizer monkey virus is an excellent primate model to study the mechanism and morphological changes of viral-induced muscle damage.

Acquired Immunodeficiency Syndrome

Polymyositis associated with AIDS retrovirus.

Two homosexual men were initially seen with polymyositis as the only manifestation of the acquired immunodeficiency syndrome (AIDS) retrovirus infection. They developed AIDS-related complex a few weeks later and typical AIDS two to six months after onset of muscle weakness. By use of anti-human T-cell lymphotropic virus type III antiserum and monoclonal antibodies to lymphocyte subsets in an immunofluorescence technique, viral antigens were found in the OKT4-positive lymphoid cells surrounding muscle fibers and invading the endomysia septa. We concluded that an initial infection with the AIDS retrovirus can be associated with polymyositis, which may be the first clinical manifestation of an impending AIDS-related complex or AIDS.

Acquired Immunodeficiency Syndrome

Polymyositis in an immunodeficiency disease in monkeys induced by a type D retrovirus.

Fifty percent of primates with acquired immunodeficiency caused by a well-characterized type D retrovirus (SAIDS D) developed clinical, laboratory, and histologic features of polymyositis. By use of specific antisera and immunochemical techniques, we found the virus in the lymphoid cells surrounding muscle fibers and invading the endomysia septa. SAIDS D virus was isolated from the involved muscles and infected myotubes of normal muscle in tissue culture. These results suggest that retroviruses, a group of viruses increasingly associated with human diseases, can cause polymyositis with immunodeficiency in nonhuman primates and could play a role in human polymyositis.

Acquired Immunodeficiency Syndrome

Differences among isolates of simian hemorrhagic fever (SHF) virus.

Simian hemorrhagic fever (SHF) virus is a member of the Togaviridae family which currently is unclassified to genus. We have studied the relatedness of four different SHF virus isolates obtained from infected macaque or patas monkeys. Differences were found among isolates in type and severity of disease produced in patas monkeys, cell sensitivity to infection, viral antigens, and levels of specific antibody induced in patas monkeys. Based on these criteria, the four isolates have been grouped in two categories: those producing acute infections in patas monkeys (LVR, P-180) and those producing persistent infections (P-248, P-741). The P-180 isolate induced the most severe disease in experimentally infected patas monkeys, but only occasionally were their infections fatal. Persistently infected patas monkeys were viremic over a period of years, but showed no signs or symptoms of infection. All four isolates were found to be antigenically related by use of enzyme-linked immunosorbent assay (ELISA); the P-248 isolate showing the weakest antigenic relationship. However, none of the four isolates induced cross-neutralizing antibodies in infected patas monkeys. High titers of specific IgG antibody (up to 31,250 as determined by ELISA) were induced in acutely infected patas monkeys (LVR, P-180), but antibody was barely detectable (less than or equal to 50) in persistently infected patas monkeys (P-248, P-741). LVR lytically infected USU-104 cells, patas monkey peritoneal macrophages (PMAC), and rhesus monkey PMAC. The P-180 isolate lytically infected both patas monkey PMAC and rhesus monkey PMAC, but not USU-104 cells. The isolates producing persistent infections (P-248, P-741) lytically infected only rhesus monkey PMAC. These results show that marked differences exist among isolates of SHF virus from naturally infected animals. These differences should be useful in categorizing new isolates.

Animals

Elimination of persistent simian hemorrhagic fever (SHF) virus infection in patas monkeys.

Devastating epizootics of simian hemorrhagic fever (SHF) have been iatrogenically initiated in captive colonies of macaque monkeys by strains of SHF virus emanating from asymptomatic persistently infected patas monkeys. We have found that persistently infected patas monkeys can be cleared of their infection by superinfection with strains of SHF virus which cause acute infections in this species. All 20 persistently infected animals subjected to this procedure have been cleared of their infection within 3 months. These animals were shown to be virus free by the most sensitive in vitro and in vivo tests currently available and periodic tests of serum from these animals over several years have shown them to remain virus free. Superinfection has in some cases caused some adverse clinical symptoms (anorexia, lethargy, facial edema, dehydration, and mild subcutaneous hemorrhages), but with supportive care, no fatal infections have occurred. Thus, superinfection with acute strains of SHF virus is a highly effective method of eliminating persistent infection in patas monkeys.

Animals

Transmission of simian acquired immunodeficiency syndrome (SAIDS) with type D retrovirus isolated from saliva or urine.

Saliva and urine specimens from rhesus monkeys with SAIDS were found to contain a type D retrovirus related to Mason-Pfizer monkey virus (MPMV) which has been linked etiologically to SAIDS. Virus isolates from saliva and urine were shown to have the characteristics of the SAIDS agent by their reverse transcriptase divalent cation preference for synthetic template-primers, production of characteristic cytopathology in Raji cells and antigenic relatedness to MPMV as determined by enzyme-linked immunosorbent assay (ELISA) and competition radioimmunoassay (RIA). Electron micrographs of parotid tissue from an animal with SAIDS also showed budding particles with type D retrovirus morphology. A tissue culture grown virus isolate from urine of an animal with SAIDS, produced SAIDS when inoculated into two normal juvenile rhesus monkeys. Since saliva and urine of monkeys with SAIDS contain infectious SAIDS virus, they are likely sources of virus by which the disease is naturally transmitted. Thus, care should be taken to avoid contact of normal and infected animals.

Acquired Immunodeficiency Syndrome