PubMed HealthSearch

Biomedical subjects

M V Reddy

Publications and source records attributed to M V Reddy.

At least 19 recordsLinked to original sources

Heat shock treatment of macrophages causes increased release of superoxide anion.

Heat shock treatment of murine macrophages and the J774 cell line resulted in an enhanced capacity to release superoxide anion (O2-) upon stimulation. There was no concomitant increase in hydrogen peroxide production, and the macrophage microbicidal activity against Mycobacterium tuberculosis, Mycobacterium avium complex, and Staphylococcus aureus was not altered.

Animals

Detection of filarial antigen using antibodies raised against Wuchereria bancrofti microfilarial SDS soluble antigen.

Polyclonal antibodies raised in mouse ascitic fluid against Wuchereria bancrofti microfilarial antigens (Wb Mf SDS S Ag) were studied for their diagnostic use in bancroftian filariasis using a dip stick, enzyme-linked immunosorbent assay. In sandwich ELISA, 100% of microfilaremic sera (30 out of 30) 53% of acute filarial sera (7/13), 40% of subacute filarial sera (6 out of 15), 13% of chronic filarial sera (2/15) and 20% of endemic area normal sera (3/15) showed the presence of filarial antigen. Determination of filarial antigen titer in microfilaremic sera showed an apparent positive correlation between microfilarial density and antigen titer. The antibody raised against Wb Mf SDS S Ag was found to be cross reactive with phosphorylcholine epitopes. The filarial antigen detected by anti Wb Mf SDS S Ag antibodies in sandwich ELISA is possibly associated with the active stage (microfilaremia) of infection.

Animals

Functional analysis of the N-terminal domain of Tat protein of the human immunodeficiency virus type 1.

The Tat protein of human immunodeficiency virus type 1 (HIV-1) is a potent trans-activator of the viral long terminal repeat (LTR). The N-terminal region of Tat is rich in proline and acidic residues analogous to the activation domains of other transcription factors such as GAL-4 and CTF/NF-1. Several basic residues are also present in this region. To investigate the role of these structural features in the Tat-mediated trans-activation, we have chemically synthesized and evaluated Tat analogs with alanine or glutamine replacing one or more of these amino acid residues. Our data show that substitution of Glu-2, His-13, or all the proline in the Pro-Xaa3-Pro triad drastically reduced activity. In contrast, changes at Arg-7, Lys-12 and any one proline residue in the triad moderately reduced, and substitution of Lys-19 showed little effect on, activity. These results show that the native structure of the N-terminal 19 amino acid sequence is essential for Tat function, and that the overall topology of this domain and not the acidic residues alone appears necessary for trans-activation.

Amino Acid Sequence

Mechanisms associated with the generation of biologically active human immunodeficiency virus type 1 particles from defective proviruses.

The human immunodeficiency virus (HIV) is the etiological agent of acquired immunodeficiency syndrome (AIDS). HIV exhibits extensive genetic diversity and it is apparent that an infected individual contains different populations of distinct viral strains, a large proportion of which has been found surprisingly to be defective for replication. A similar phenomenon has also been observed with some cell lines that are known to produce infectious viral particles but harbor defective proviral genomes. Here, we investigated the molecular basis of this phenomenon by cloning proviral genomes of HIV from a cell line that was capable of producing high titers of biologically active HIV particles that readily induced syncytia with CD4+ cell lines and peripheral blood lymphocytes. This cell line was found to contain five proviral genomes, all of which, when tested individually, failed to produce replication-competent viruses upon transfection into human cells. However, when a specific combination of two proviral genomes was used in such transfection studies, it was possible to obtain biologically active, replication-competent viral particles that infected and replicated in CD4+ cell lines and induced syncytia characteristic of HIV. Such a result may be due to homologous recombination between proviral DNAs occurring in cells after transfection and/or complementation of replication-defective proviral DNAs. The diploid nature of the viral RNA genome present in the viral particle may enable the persistence of defective HIV genomes.

Cell Line

Postlabeling analysis of polycyclic aromatic hydrocarbon-DNA adducts in white blood cells of foundry workers.

Blood samples were obtained from 61 volunteers working in a Finnish iron foundry who were exposed to carcinogenic polycyclic aromatic hydrocarbons and from 19 control subjects not known to be exposed to these chemicals. Foundry workers were categorized into high, medium, or low exposure groups, based on their exposure levels to airborne benzo[a]pyrene (BaP) (high greater than 0.2, medium 0.05-0.2, low less than 0.05 micrograms BaP/m3 air). Aromatic adducts were determined in white blood cell DNA from exposed and unexposed subjects using 32P-postlabeling. There was a highly significant correlation between the estimated exposure and adduct levels as determined by analysis of variance. The levels of adducts found in the high and medium group samples ranged from 5 to over 20 adducts in 10(8) DNA nucleotides. No effects due to age, sex, or the smoking habits of the subjects were observed. Within each group, the SEM appeared rather small. This study demonstrates the utility of the 32P-postlabeling assay to assess human exposure to known and unknown environmental aromatic genotoxicants.

Adult

Nuclease S1-mediated enhancement of the 32P-postlabeling assay for aromatic carcinogen-DNA adducts.

Treatment of DNA digests with nuclease P1 prior to 32P-labeling of adducts has previously been shown to enhance the sensitivity of the 32P-postlabeling assay for the detection of aromatic carcinogen-DNA adducts. The enhancement was based on the ability of nuclease P1 to remove the 3'-phosphate from normal nucleotides but not the corresponding phosphate from most aromatic adducted nucleotides. We investigated the utility of another 3'-dephosphorylating enzyme, nuclease S1, for this purpose, and found it to be as effective as nuclease P1. The recovery of DNA adducts derived from benzo[a]-pyrene (B[a]P), benzoquinone (BQ) and 2-acetylaminofluorene (AAF) was comparable after enhancement with either enzyme. Some differences were, however, observed. Recovery of a minor B[a]P adduct was 1.5 times higher by the S1 procedure. Among minor adducts of BQ, two showed higher values (2.8- and 6.1-fold) by the S1 procedure and one by the P1 procedure (2.4-fold). The major AAF adduct, deoxyguanosine-C8-AF, exhibited poorer recovery (1-11%) by either procedure, while the minor adducts, deoxyguanosine-N2-AAF and deoxyguanosine-C8-AAF, showed better recovery (2-3 times) than by the enhancement procedure involving extraction of adducts into butanol. Our results show that the nuclease S1 assay can complement the nuclease P1 assay, with improved recoveries for some adducts. Considering the complexity of the postlabeling assay, this additional variant may prove useful in unequivocal detection of DNA adducts.

2-Acetylaminofluorene

32P-postlabeling detection of thymine glycols: evaluation of adduct recoveries after enhancement with affinity chromatography, nuclease P1, nuclease S1, and polynucleotide kinase.

Thymine glycol (Tg) is a product of DNA damage by oxygen radicals generated by oxidative mutagens and carcinogens and ionizing radiation. The highly sensitive 32P-postlabeling assay was validated and optimized for the measurement of Tg generated in vitro by the reaction of dTp or calf thymus DNA with osmium tetroxide (OsO4). Adduct detection was enhanced by purification of Tg adducts using phenylboronate affinity chromatography or by preferential dephosphorylation of unmodified 3'-nucleotides with nuclease P1, nuclease S1, or polynucleotide kinase; Tg nucleotides were found to be resistant to limited enzymatic 3'-dephosphorylation. Two adducts were seen with OsO4-modified dTp, which may have been cis-Tg adducts, because they were retained on a phenylboronate column, and because OsO4 selectively forms cis-Tg adducts. With OsO4-modified DNA, several adducts were detected, two major derivatives of which coincided chromatographically with those seen in OsO4-modified dTp. The recoveries of major adducts were similar before and after enrichment by different methods, indicating that Tg adducts were resistant to enzymatic dephosphorylation. The efficacy of labeling of the two major Tg adducts by polynucleotide kinase was optimal at 60 microM ATP and higher, whereas it was about 3%, 50%, and 80% of the optimal rate at 2, 10, and 30 microM, respectively. This was in contrast to our previous finding that only 0.25 microM ATP was needed for optimal labeling of benzoquinone-DNA adducts.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate

Penicillinase ELISA for detection of tubercular antigen in tuberculosis.

Stick sandwich enzyme linked immunosorbent assay (ELISA) using rabbit anti PPD-RT 23 immunoglobulins and enzyme penicillinase has been explored for detection of tubercular antigen in sera and CSF samples of pulmonary tuberculosis and tubercular meningitis (TBM) respectively. The analysis of sera showed 73.3% of pulmonary tuberculosis cases, 16.2% of healthy controls and 44.4% of Hansen's disease positive for tubercular antigen. The accuracies of positive and negative predictive values were 69% and 82% respectively. The analysis of CSF samples showed the presence of tubercular antigen in 76.4% of TBM, 16.6% of pyogenic meningitis cases, 19.4% of neurological diseases other than meningitis and 16.1% non-neurological disease controls. The accuracies of positive and negative predictive values were 48% and 94% respectively. Hence this simple test using economical and indigenous reagents can be applied for the diagnosis of pulmonary and extra-pulmonary tuberculosis.

Antigens, Bacterial

32P-assay of DNA adducts in white blood cells and placentas of pregnant women: lack of residential wood combustion-related adducts but presence of tissue-specific endogenous adducts.

Residential wood combustion (RWC), which has been increasingly used as a heating source, is of health concern because emissions from RWC contain carcinogenic polycyclic aromatic hydrocarbons (PAH). To assess health risk, the possible formation of PAH-DNA adducts in white blood cells (WBC) and placentas of nonsmoking women exposed to RWC smoke during pregnancy was measured by a nuclease P1-enhanced 32P-postlabeling assay having a sensitivity limit of one lesion per 10(9-10) DNA nucleotides. DNA samples isolated from 12 exposed specimens (8 WBC, 4 placentas) and 13 unexposed control specimens (8 WBC, 5 placentas) were hydrolyzed to mononucleotides, which were then 32P-labeled and separated by high-resolution thin-layer chromatography. Comparison of autoradiograms of exposed DNA samples with those of controls failed to show exposure-related adducts. All placental DNA maps exhibited one major (47 +/- 10%) and 12 minor extra spots, however, that were not seen on WBC-DNA maps. These derivatives corresponded to an average of 12 (+/- 6) modifications in 10(9) nucleotides. Similarly, WBC DNA showed four spots that were absent in placental DNA and were not quantified because of their low levels. Neither placental nor WBC DNA adducts coincided chromatographically with the product formed by the reaction of benzo(a)pyrene diol epoxide I with N2 of guanine in DNA. Although these results suggest that RWC smoke does not elicit detectable levels of aromatic DNA adducts in humans, lack of evaluation of RWC exposure levels leaves some uncertainty in this conclusion. The results, however, clearly show that placental and WBC DNA contain covalent modifications that are unrelated to RWC exposure. These DNA derivatives may be caused by ingestion and/or inhalation of, or skin contact with, low levels of environmental genotoxicants or may arise from endogenous electrophiles of as yet unknown origin.

Benzo(a)pyrene

A comparison of DNA adduct formation in white blood cells and internal organs of mice exposed to benzo[a]pyrene, dibenzo[c,g]carbazole, safrole and cigarette smoke condensate.

Measurement of tissue/cell DNA adducts represents a suitable monitor of carcinogen exposure because the majority of chemical mutagens/carcinogens react with DNA, forming covalent adducts, a key event in the initiation of chemical carcinogenesis. Investigations of DNA-adduct formation in vivo in white blood cells (WBC) versus target tissues, i.e. internal organs for most carcinogens, is expected to yield useful information about the suitability of WBC for biomonitoring and risk assessment. For this purpose, female ICR mice were given 0.4 mmole/kg benzo[a]pyrene (BP), 0.045 mmole/kg dibenzo[c,g]carbazole (DBC) or 2.47 mmole/kg safrole by oral gavage or 4 daily doses (equivalent to 3 cigarettes) of cigarette-smoke condensate (CSC) by topical application. At 24 h after dosing, DNA adducts were detected by a nuclease P1-enhanced 32P-postlabeling assay [M.V. Reddy and K. Randerath, Carcinogenesis, 7 (1986) 1543] in WBC and internal tissues treated with individual carcinogens, while CSC treatment elicited aromatic adducts in most tissues but not in WBC. Adduct patterns of WBC DNA were qualitatively similar to those of internal organs, but adduct amounts varied. BP, a systemic carcinogen, bound nearly as much to WBC DNA as to target-tissue DNA samples; whereas the liver carcinogens, DBC and safrole, bound to WBC DNA considerably less (22- and 51-fold, respectively) compared with liver DNA. The number of adducts in 10(7) nucleotides of WBC, liver, lung, kidney and spleen DNA, respectively, were: 2, 5, 3, 2 and 3 with BP; 6, 131, 6, 14 and 4 with DBC; 5, 238, 3, 5 and 0.6 with safrole. For CSC, these values were 0, 1 and 0.02 in WBC, lung and spleen, respectively. Our results show that carcinogen binding to WBC DNA does not reflect binding to target-tissue DNA in a quantitative sense for the carcinogens studied except for BP, and that WBC are not suitable surrogates for monitoring CSC exposure by DNA-adduct measurement after topical application. The CSC data in mice was consistent with the previous findings in humans that smokers' tissues but not WBC show smoking-related bulky/aromatic DNA adducts, as measured by 32P-postlabeling.

Animals

Diagnostic use of polyclonal antibodies raised in mouse ascitic fluid in bancroftian filariasis.

Polyclonal antibodies were produced against Brugia malayi adult antigens (BmA (PBS) SAg and BmA (SDS) SAg) in mouse ascitic fluid by immunising Balb/c mice intraperitoneally with high ratio of adjuvant to immunogen. The diagnostic use of these antibodies in detecting circulating filarial antigen in bancroftian filariasis was studied by sandwich enzyme-linked immunosorbent assay (sandwich ELISA) using stick assay system. Both antibodies raised against PBS and SDS soluble antigens were found to be equally sensitive and relatively specific in detection of circulating filarial antigen. When anti BmA (PBS) SAg antibody was used in sandwich ELISA, 90% of microfilaraemic sera, 30-40% of acute and sub acute filarial sera, 20% of chronic filarial sera, 7% of endemic normal sera and none of 15 non-endemic normal sera were positive for filarial antigen. Using anti BmA (SDS) Sag antibody, 93% of microfilarial sera, 40% of acute and sub acute filarial sera, 20% of chronic filarial sera and none of 15 endemic and non-endemic normal sera showed the presence of filarial antigen. The filarial antigen detection using anti BmA S Ag antibodies produced in mouse ascitic fluid in sandwich ELISA may be useful in detection of active stage (microfilaraemia) of infection.

Animals

32P-postlabeling assay for carcinogen-DNA adducts: description of beta shielding apparatus and semi-automatic spotting and washing devices that facilitate the handling of multiple samples.

The utilization of the 32P-postlabeling assay in combination with TLC for the sensitive detection and estimation of aromatic DNA adducts has been increasing in the past few years. The procedure consists of 32P-labeling of carcinogen-adducted 3'-nucleotides in the DNA digests using [gamma-32P]ATP and polynucleotide kinase, separation of 32P-labeled adducts by TLC, and their detection by autoradiography. During both 32P-labeling and initial phases of TLC, a relatively high amount of [gamma-32P]ATP (3.0-4.5 mCi) is handled when 30 samples are processed simultaneously. We describe the design of acrylic shielding apparatus, semi-automatic TLC spotting devices, and devices for development and washing of multiple TLC plates, which not only provide substantial protection from exposure to 32P beta radiation, but also allow quick and easy handling of a large number of samples, thus expediting the assay workup and making it less labor-intensive. Specifically, the equipment includes: (i) a multi-tube carousel rack (7.5 cm diameter and 7.7 cm height) having 15 wells to hold capless Eppendorf tubes (0.5 ml) and a rotatable lid with an aperture to access individual tubes; (ii) a pipet shielder; (iii) two semi-automatic spotting devices to apply radioactive solutions to TLC plates; (iv) a multi-plate holder for TLC plates; and (v) a mechanical device for washing multiple TLC plates. Item (i) is small enough to be held in one-hand, vortexed, and centrifuged to mix the solutions in each tube while beta radiation is shielded. Items (iii) to (iv) aid in the automation of the assay.

Carcinogenicity Tests

DNA adduction by phenol, hydroquinone, or benzoquinone in vitro but not in vivo: nuclease P1-enhanced 32P-postlabeling of adducts as labeled nucleoside bisphosphates, dinucleotides and nucleoside monophosphates.

The carcinogenicity of benzene has been considered to be in part mediated by its chemically reactive metabolic product benzoquinone (BQ), which is formed from the intermediary metabolites phenol and hydroquinone (HQ). We have evaluated the DNA-binding capability of these chemicals in vitro and in vivo by postlabeling. Treatment of rat Zymbal glands in culture with phenol and HQ or direct reaction of BQ with DNA produced DNA adducts, which were detectable by the nuclease P1-enhanced 32P-postlabeling assay as 5'-32P-labeled 3',5'-bisphosphate products. The enhancement of sensitivity in this assay is based on the previous finding that nuclease P1 hydrolyzes the phosphate attached to the 3' side of normal nucleotides but not the corresponding phosphate of most aromatic/bulky adducted nucleotides. Also based on this hydrolytic property of nuclease P1, we developed an additional sensitive procedure that permitted the detection of DNA lesions as 5'-32P-labeled products of dinucleotides, pXpN, or of nucleoside monophosphates, pX, where X and N indicate an adducted nucleoside and a normal nucleoside respectively. In the latter assay, adducted DNA was first digested with nuclease P1 and acid phosphatase to yield XpN and N. The latter were then 32P-labeled to yield [5'-32P] pXpN or 32P-labeled and treated with venom phosphodiesterase to obtain [5'-32P]pX. After optimization of enzymatic conditions, the modified nuclease P1 assay yielded adduct recoveries similar to those obtained by the bisphosphate assay for in vitro phenol-, HQ- and BQ-DNA adducts. Neither of the nuclease P1-enhanced postlabeling procedures showed exposure-specific adducts in vivo in the bone marrow, Zymbal gland, liver and spleen of female Sprague-Dawley rats at 24 h after the last of four single, daily p.o. doses of 75 mg/kg phenol or 150 mg/kg phenol/HQ (1:1). Our results show that phenol, HQ and BQ produce adducts in vitro, but corresponding adducts are not detected in vivo with phenol and phenol/HQ, even when measured by the standard and modified nuclease P1 postlabeling methods capable of detecting 1 adduct in 10(9-10) DNA bases.

Acid Phosphatase

Postlabeling and immunoassay analysis of polycyclic aromatic hydrocarbons--adducts of deoxyribonucleic acid in white blood cells of foundry workers.

Blood samples were obtained from volunteers who were occupationally exposed to polycyclic aromatic hydrocarbons in a Finnish iron foundry and from referents not known to be occupationally exposed to this class of chemical carcinogens. Aromatic adducts were determined in the deoxyribonucleic acid of white blood cells from the exposed workers with the 32P-postlabeling and immunologic techniques. There was a correlation between the estimated exposure in a particular job and the adduct levels. Jobs of men with high adduct levels (greater than 1 adduct/10(7) nucleotides in the postlabeling assay) included sand preparation, molding, shake-out, and transport. The adduct levels were low in men in pattern making, melting, and fettling. This study suggests that 32P-postlabeling and immunoassay may be useful in monitoring human exposure to known and previously unidentified environmental genotoxic agents.

Benzo(a)pyrene

Comparison of Dot-ELISA with Sandwich ELISA in detecting circulating antigen in patients with bancroftian filariasis.

Dot-ELISA assay was compared with standard Sandwich ELISA in detecting parasite antigen in sera from patients with bancroftian filariasis. The same monoclonal antibody and the same serum samples were used in both assays. With Dot-ELISA, 67 of 70 serum samples from microfilaremic patients were positive at a dilution of 1:50. End titers ranged from 1:80 to 1:1 280. While with Sandwich ELISA, 64 of the 70 serum samples were positive at a dilution of 1:10. End titers ranged from 1:10 to 1:320. The specificity of both assays was over 91%, but their sensitivity was markedly different. Dot-ELISA could detect as little as 0.055 ng/ml microfilarial antigen added to normal human serum, whereas the lower limit of detection by Sandwich-ELISA was 10 ng/ml parasite antigen. An additional advantage of Dot-ELISA is that it does not require radioactivity or sophisticated equipment and, therefore, can be performed in virtually all filariasis-endemic areas.

Animals