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Biomedical subjects

A Del Mistro

Publications and source records attributed to A Del Mistro.

44 records · Page 3Linked to original sources

Chromosome damage induced in cord blood T-lymphocytes infected in vitro by HTLV-I.

Experiments were carried out to investigate whether the human T-lymphotropic virus type I (HTLV-I), alone or in combination with a chemical mutagen such as mitomycin C (MMC), has the capacity to damage host chromosomes. Cord-blood T lymphocytes (CBL) were infected by co-cultivation with lethally irradiated HTLV-I-producing cells. Infected and immortalized CBL were then studied for frequencies of sister chromatid exchanges (SCE), chromosome breaks and micronuclei. HTLV-I-infected cells had statistically higher baseline SCE, chromosome aberrations and micronucleus values than the uninfected control CBL. While MMC treatment further augmented these values both in control and in infected lymphocytes, the latter did not show dose-related increases, most likely because of the more pronounced MMC-induced delaying effect on cell progression to mitosis. In view of similar previous observations in mouse lymphocytes carrying the Moloney murine leukemia virus, it is suggested that expression of a common retrovirus gene product, such as the pol endonuclease, might be responsible for the cytogenetic abnormalities observed. In addition to the IL-2 autocrine loop, the direct induction of chromosome damage by HTLV-I in target lymphocytes may be related to the pathogenesis of malignancies associated with HTLV-I infection.

Cell Transformation, Viral↗

Identification of human papillomavirus types in male urethral condylomata acuminata by in situ hybridization.

An in situ hybridization technique was applied under stringent conditions to paraffin sections of urethral condylomata from male patients to determine the presence of DNA sequences of human papillomavirus (HPV) types 6, 11, 16, and 18. The material consisted of 15 classical condylomata acuminata, two flat condylomata, and five recurrent lesions. HPV DNA sequences could be identified in all 15 condylomata acuminata; in 13 lesions, two types of viral DNA were observed (types 6 and 11 in 12, types 6 and 18 in one). In the remaining two condylomata acuminata, only HPV type 11 was present. One of the two flat condylomata was negative with all the probes, and one was borderline-positive for HPV 6. Four of five recurrent lesions contained the same types of viral DNA as the primary lesions, albeit with slight differences in the intensity of viral expression. One lesion was negative with all probes. We conclude that urethral condylomata in males contain the same types of HPV as seen in other anogenital lesions of both sexes and that infection with two viral types is common. In situ hybridization with HPV DNA probes is applicable to archival material and therefore may prove to be of value in future epidemiologic studies comparing lesions in sexual partners. The determination of viral type may have therapeutic implications.

Adolescent↗

Characterization of human papilloma virus types in condylomata acuminata in children by in situ hybridization.

The presence of human papilloma virus (HPV) DNA sequences of types 6, 11, 16, and 18 was determined by in situ hybridization under stringent conditions on archival paraffin-embedded tissue sections in eight condylomata acuminata observed in children below the age of 12 years. Viral sequences were detected in seven of eight cases: all of them contained HPV 6, four contained also HPV 11, and one contained HPV 16 and 18. Papilloma virus common antigen was detected in only three of eight cases, all of them being positive also by in situ hybridization. We conclude that most condylomata acuminata in children are associated with the same types found in anogenital lesions in adults. Since little is known about the long-term significance of genital condylomas in children the identification of the papilloma virus type may prove to be important as a prognostic tool particularly in patients infected with HPV types 16 and 18, thought to have high oncogenic potential.

Antigens, Viral↗

Immortalization of human T lymphocytes by HTLV-I: phenotypic characteristics of target cells and kinetics of virus integration and expression.

In-vitro infection of normal human lymphocytes with HTLV-I (human T-cell lymphotropic retrovirus type I) has been carried out to study the target cell specificity and the kinetics of infection. Cord blood (CBL) and adult peripheral blood lymphocytes (PBL) have been co-cultivated with irradiated HTLV-I donor cells (MT2 and C91PL lines). Established ('immortalized') HTLV-I positive cell lines were obtained only from CBL: in comparison with PBL, a less mature phenotype of T-cell subsets and a lower interferon-gamma production was evidenced in CBL. A progressive variation of differentiation antigen representation and of exogenous T-cell growth factor (TCGF, interleukin-2, IL-2) medium concentration was observed with increasing time from infection. The four established lines obtained showed a predominant T3+, T4+, T8-, Tac+ phenotype and a reduced TCGF requirement. Studies on kinetics of HTLV-I infection showed that p19 and p24 viral antigens became expressed after a lag phase of 5 weeks. DNA Southern blot analysis indicated that a shift from polyclonal to monoclonal pattern of proviral integration occurred with time of culture, both complete and defective copies being transmitted from donor to recipient cells.

Antigens, Differentiation, T-Lymphocyte↗

Differential response to the cytopathic effects of human T-cell lymphotropic virus type III (HTLV-III) superinfection in T4+ (helper) and T8+ (suppressor) T-cell clones transformed by HTLV-I.

We isolated six human T-cell lymphotropic virus type I (HTLV-I)-transformed T-cell clones carrying the phenotypic markers of helper and suppressor T cells. Five of the transformed T-cell clones produced infectious HTLV-I, but one (clone 55) contained a defective provirus and was therefore not competent for viral replication. To test whether there is interference between HTLV-I and the cytopathic virus HTLV-III in infection and/or their biological effects, we superinfected these T-cell clones with HTLV-III. The recipient cells that we used displayed either the OKT4 or the OKT8 membrane antigens (helper or suppressor phenotype, respectively). The superinfection was successful in all cases, regardless of phenotype of the recipient cells and status of viral production. Both HTLV-III and HTLV-I were expressed by the infected cell lines containing complete HTLV-I proviruses, as demonstrated by electron microscopy and immunofluorescence. However, only HTLV-III in the virus mixture obtained from the culture supernatants was transmitted to the human neoplastic T-cell line H9. The nonproducer clone 55 did not express HTLV-I upon superinfection with HTLV-III. HTLV-III exerted its cytopathic effect on all but one of the superinfected T-cell clones 15-20 days after infection. The exception, clone 67, is also the only cell clone that expresses the phenotypic marker of suppressor T lymphocytes (OKT8); the other clones carry the OKT4 antigen, correlated with helper functions. The virus released from the superinfected clone 67 is cytopathic for fresh peripheral and umbilical-cord blood lymphocytes, suggesting that cellular factors, rather than a genetic change in the virus, may be responsible for the lack of cytopathic effect of HTLV-III on the suppressor T-cell clone 67.

Antigens, Differentiation, T-Lymphocyte↗

One year follow-up study of T-cell subsets and incidence of seropositivity for HTLV-I and HTLV-III antibodies in patients treated "on demand" or sporadically with clotting concentrates.

A 1-year follow-up study of the T-cell subset abnormalities was carried out in 16 severe haemophilia A patients, treated "on demand" with an average amount of 500 U/kg/yr of factor VIII concentrate (group A) and in 15 mild haemophiliacs or von Willebrand patients treated only sporadically with less than 3000 U of factor VIII and no longer exposed to any other blood component in the 2 years preceding the beginning of the study (group B). In group A, 50% and 70% of patients showed a reduced or inverted T 4/T 8 ratio, respectively, at the beginning and at the end of follow-up. These values were of 30% and 20% in patients of group B, suggesting a long-lasting effect of concentrate therapy on T-cell subsets. The low T 4/T 8 ratio was mainly due to an increase of suppressor cells. None of the patients was found positive for anti HTLV-I, whereas 3 patients, all belonging to the group A, showed antibodies against HTLV-III. Thus, in these patients, HTLV-III seems not to be the only cause of low T 4/T 8 ratio.

Antibodies, Viral↗

Absence of the cell cycle inhibitor p27Kip1 protein predicts poor outcome in patients with stage I-III colorectal cancer.

BACKGROUND: The p27Kip1 protein regulates the G1 to S phase transition of cell cycle by binding to and inhibiting the cyclin E/Cdk2 complex. This study explores the prognostic significance of the absence of the p27Kip1 protein in patients with colorectal cancer (CRC). METHODS: Formalin-fixed tumor sections from 124 patients who underwent curative resection for stage I-III CRC were analyzed by immunohistochemistry using MoAb anti-p27KiP1. RESULTS: Detectable levels of p27Kip1 protein were found in 86% of tumors. Median follow-up was 55 months. Actuarial 5-year disease-free survival (DFS) and overall survival (OS) were 76% and 85%, respectively, in patients with tumors with p27Kip1 protein expression and 34% and 40%, respectively, in those whose tumors lacked p27Kip1 protein expression (P < .001). At multivariate analysis, tumor stage (III vs. I-II) and p27Kip1 protein status (absence vs. presence) were found to be independent prognostic factors for DFS and OS. CONCLUSIONS: Lack of p27KiP1 protein expression in CRC is a negative prognostic marker and may therefore be useful in selecting early-stage patients more likely to benefit from adjuvant treatment.

Adenocarcinoma↗

Immunological markers in the cerebrospinal fluid of HIV-1-infected children.

Several immunological abnormalities were detected in the cerebrospinal fluid (CSF) of human immunodeficiency virus type 1 (HIV-1)-infected children. Intrathecal synthesis of immunoglobulins, free light chains (FLC), IL-1 beta, IL-6, and M-CSF were demonstrated both in asymptomatic children and children with subacute encephalopathy. Our findings further support the hypothesis that an immunopathological subclinical process within the central nervous system (CNS) may be an early manifestation of acquired immunodeficiency syndrome (AIDS). Cytokine detection in the CSF may represent a useful diagnostic tool in evaluating the outcome of HIV-1-infected patients.

AIDS Dementia Complex↗