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Biomedical subjects

B Liang

Publications and source records attributed to B Liang.

At least 91 records · Page 5Linked to original sources

T cell receptor V beta complementarity-determining region 1 peptide administration moderates immune dysfunction and cytokine dysregulation induced by murine retrovirus infection.

Murine AIDS, induced by LP-BM5 murine leukemia retrovirus infection, causes a progressive and profound immunodeficiency in female C57B1/6 mice. Previously, we reported that autoantibodies were elevated during the initiation phases of this murine retrovirus infection and bound peptide determinants corresponding to CDR1 of several TCR V beta-chains. Therefore, we designed studies to determine whether administration of a major autoimmunogenic TCR V beta CDR1 peptide before or after infection with LP-BM5 retrovirus would modulate retrovirus-induced dysregulation of T cell function. Administration of the TCR V beta CDR1 peptide before murine retrovirus infection significantly prevented its suppression of splenic NK cell activity, T and B cell proliferation, and monokine (IL-6 and TNF-alpha) and Th1 cytokine (IL-2 and IFN-gamma) release by splenocytes, and inhibited retrovirus-induced elevation of Th2 cytokine (IL-5 and IL-10). Similar data were obtained with peptide immunization 2 wk after murine retrovirus infection at 6 and 16 wk postinfection. However, delaying peptide immunization until severe suppression of T and B cell mitogenesis had occurred did not restore their functions. Immunization with TCR V beta peptide prevents development of retrovirus-induced immune dysfunction, which suggests a possible pathogenic role of autoreactive T cells as regulatory elements.

Amino Acid Sequence↗

Vitamin E supplementation with interferon-gamma administration retards immune dysfunction during murine retrovirus infection.

Murine retrovirus infection induces loss of vitamin E and immune dysfunction with loss of cytokine production by T-helper cells. Therefore interferon-gamma (IFN-gamma) was given during dietary vitamin E supplementation to effectively prevent murine retrovirus-induced immunosuppression, cytokine dysregulation, and development of murine AIDS. Administration of IFN-gamma during vitamin E supplementation significantly prevented development of retrovirus-induced suppression of splenic natural killer cell activity and T cell proliferation. It also significantly slowed retrovirus-induced elevation of T helper (Th) 2 cytokine [interleukin (IL)-4, IL-5, and IL-10] production and monokine (IL-6 and tumor necrosis factor-alpha) secretion by splenocytes. The treatment also prevented loss of Th1 cytokine (IL-2 and IFN-gamma) secretion by splenocytes from retrovirus-infected mice alleviating splenomegaly and hypergammaglobulinemia. The combined therapy had an additive therapeutic impact. It was more effective than IFN-gamma treatment or vitamin E supplementation alone in delaying the development of retrovirus-induced immunosuppression with its cytokine dysregulation.

Animals↗

Nutritional status and immune responses in mice with murine AIDS are normalized by vitamin E supplementation.

Female C57BL/6 mice were infected with LP-BM5 retrovirus, causing murine AIDS, which is functionally similar to human AIDS. Vitamin E effects on immune functions, cytokine production and nutritional concentrations in retrovirus-infected mice were determined. Retrovirus infection inhibited release of interleukin-2 (IL) and interferon-gamma (IFN) and some immune functions, whereas it stimulated secretion of IL-4, IL-5, IL-6 and tumor necrosis factor-alpha (TNF) and immunoglobulin (Ig) production. Furthermore, retrovirus infection induced some nutritional deficiencies in the tissues. A 15-fold increase in dietary vitamin E largely restored concentrations of some micronutrients (vitamins A and E, zinc and copper) in the liver, intestine, serum and thymus. It also partially restored production of IL-2 and IFN-gamma by splenocytes. Retrovirus-induced elevated production of IL-4, IL-5 and IL-6 by splenocytes in vitro was normalized by vitamin E. Elevated release of IL-6, TNF-alpha, IgA and IgG produced by splenocytes in vitro during murine AIDS were also completely or partially normalized by vitamin E. Vitamin E also prevented retrovirus-induced suppression of splenocyte proliferation and natural killer cell activity. These data indicate that vitamin E supplementation during murine AIDS can help to ameliorate the disorders during murine AIDS, suggesting vitamin E usefulness in treatment of AIDS in humans.

Animals↗

Anti-IL-4 monoclonal antibody and IFN-gamma administration retards development of immune dysfunction and cytokine dysregulation during murine AIDS.

This study was designed to determine if administration of anti-interleukin-4 (IL-4) monoclonal antibody (mAb), interferon-gamma (IFN-gamma) and their combination after LP-BM5 retrovirus infection of female C57BL/6 mice would prevent retrovirus-induction of immunosuppression and cytokine dysregulation. Splenic natural killer (NK) cell activity, T- and B-cell proliferation, and T-helper type 1 (Th1) and Th2 cytokine (IL-2, IFN-gamma, IL-5 and IL-10) and monokine [IL-6 and tumour necrosis factor-alpha (TNF-alpha)] secretions were monitored, as they are usually altered dramatically after murine retrovirus infection. Administration of IFN-gamma and anti-IL-4 significantly prevented retrovirus-induced suppression of splenic NK cell activity, and splenic T- and B-cell proliferation. They also significantly slowed retrovirus-induced elevation of Th2 cytokine (IL-5 and IL-10) release and monokine (IL-6 and TNF-alpha) secretion by splenocytes. They prevented the loss of Th1 cytokine (IL-2 and IFN-gamma) release by splenocytes, and alleviated splenomegaly and hypergammaglobulinemia, precursor signs of development of acquired immune deficiency syndrome (AIDS). These findings could provide insight into the roles of immunomodulator in AIDS treatment as well as the mechanisms by which retrovirus infection induces cytokine dysregulation, facilitating immunodeficiencies in AIDS.

Animals↗

Physical mapping of buzura suppressaria nuclear polyhedrosis virus genome.

A physical map of the genome of buzura suppressaria singly-enveloped nuclear polyhedrosis virus (BsSNPV) was determined using six restriction endonucleases (RE), singly or in pairs, and Southern hybridizations of cloned or gel-purified DNA fragments. The maps of the genomes of BsSNPV and autographa californica multiply-enveloped nuclear polyhedrosis virus (AcMNPV) were different.

Animals↗

Dioxin receptor and C/EBP regulate the function of the glutathione S-transferase Ya gene xenobiotic response element.

The rat glutathione S-transferase Ya gene xenobiotic response element (XRE) has both constitutive and xenobiotic-inducible activity. We present evidence that the XRE is regulated by both the constitutive C/EBP transcription factor and the xenobiotic-activated dioxin receptor. A ligand-activated XRE-binding protein was shown to be dioxin receptor by specific antibody immunodepletion and binding of highly purified receptor. Identification of C/EBP alpha as the constitutive binding protein was demonstrated by competition with a C/EBP binding site, protein-DNA cross-linking to determine the molecular weight of the constitutive protein(s), specific antibody immunodepletion, and binding of purified bacterially expressed C/EBP alpha. Mutational analysis of the XRE revealed that the constitutive factor (C/EBP alpha) shares a nearly identical overlapping binding site with the dioxin receptor. In functional testing of the putative C/EBP-XRE interaction, cotransfected C/EBP alpha activated an XRE test promoter in the non-xenobiotic-responsive HeLa cell line. Unexpectedly, cotransfected C/EBP alpha had no effect on basal activity but significantly increased the xenobiotic response of the XRE test promoter in the xenobiotic-responsive, C/EBP-positive HepG2 cell line. Furthermore, inhibition of C/EBP-binding protein(s) in HepG2 cells by transfection of C/EBP oligonucleotides suppressed the xenobiotic response. These results suggest that C/EBP alpha and dioxin receptor recognize the same DNA sequence element and that transcriptional regulation can occur by cooperative interactions between these two transcription factors.

Animals↗

The hypoxic moderation of systemic hypertension in spontaneously hypertensive rats.

The mechanism of hypoxic moderation of systemic systolic blood pressure was investigated in spontaneously hypertensive rats (SHR). Male SHR rats were divided into hypoxic (H, 5000 m for 15 d) and normoxic (N) groups. The systemic blood pressure of SHR-H (24.9 +/- 1.2 kPa) was found to be 3 kPa lower than that in SHR-N (27.0 +/- 1.3 kPa) (P < 0.05). This protective effect may have been related to the adaptive changes in vascular reactivity which manifested as an increase in the relaxation response of the aorta to ACh (P < 0.01) and a drop in its contraction in response to 5-HT (P < 0.05) following hypoxic exposure. The hypoxic moderating effect against the development of systemic hypertension may have also been related to the increased plasma levels of ANP observed.

Altitude↗

Mapping the entry of reactive oxygen metabolites into target erythrocytes during neutrophil-mediated antibody-dependent cellular cytotoxicity.

Transmitted Soret band optical microscopy has been used to image the entry and passage of reactive oxygen metabolites across target erythrocytes. Due to the rapid cytosolic diffusion of hemoglobin in comparison to video rates, it was necessary to use erythrocytes with relatively immobilized hemoglobin. To achieve this, erythrocytes from patients with sickle cell anemia were used. The movement of reactive oxygen metabolites across rabbit IgG-opsonized sickle cells was observed in real time. These observations indicate that reactive oxygen metabolites can enter and cross targets in an asymmetric fashion.

Anemia, Sickle Cell↗

Imaging neutrophil activation: analysis of the translocation and utilization of NAD(P)H-associated autofluorescence during antibody-dependent target oxidation.

Fluorescence intensified/enhanced microscopy has been used to study the metabolic activation of living human neutrophils in time-lapse sequences. The autofluorescence associated with NAD(P)H's emission band was studied within individual quiescent and stimulated cells. Excitation of NAD(P)H-associated autofluorescence was provided by a high-intensity Hg-vapor lamp. The background-subtracted autofluorescence signals were computer enhanced. In some cases the ratio image of NAD(P)H-associated autofluorescence to tetramethyl-rhodamine methyl ester (TRME) fluorescence, which was found to be uniformly distributed within neutrophils, was calculated to normalize autofluorescence intensities for cell thickness. Activation of the NADPH oxidase by phorbol myristate acetate, F-, N-formyl-methionyl-leucyl-phenylalanine (FMLP), or tumor necrosis factor (TNF) dramatically reduced autofluorescence levels. Membrane solubilization with sodium dodecyl sulfate eliminated autofluorescence. Thus, control experiments indicated that most or all of the detectable NAD(P)H-associated autofluorescence was due to NAD(P)H, consistent with previous non-microscopic studies. To understand the metabolic events surrounding the internalization and oxidative destruction of targets, we have imaged the NAD(P)H-associated autofluorescence of neutrophils and the Soret band of antibody coated target erythrocytes during cell-mediated cytotoxicity. Absorption contrast microscopy of the erythrocyte's Soret band is an especially sensitive indicator of the entry of reactive oxygen metabolites into this target's cytosol. Thus, it is possible to spectroscopically dissect and image the substrate (NADPH) and product (O2-) reactions of the NADPH oxidase in living unlabeled neutrophils. During real-time experiments at 37 degrees C, the level of NAD(P)H-associated autofluorescence surrounding phagosomes greatly increases before the disappearance of the target's Soret band. NAD(P)H-associated autofluorescence in the vicinity of phagocytosed erythrocytes is greatly diminished after target oxidation. This suggests that NAD(P)H is translocated to the vicinity of phagosomes prior to the oxidation of targets. The apparent cytosolic redistribution of NAD(P)H was confirmed by ratio imaging microscopy to control for cell thickness. We suggest that NADPH including its sources and/or carriers accumulate near phagosomes prior to target oxidation and that local NADPH molecules are consumed during target oxidation.

Antibodies↗

The usefulness of nocturnal resting splints in the treatment of ulnar deviation of the rheumatoid hand.

Seven patients with definite RA and bilateral ulnar deviation of Fearnley grade I were included in a study of the usefulness of nocturnal resting splints. Each patient used the splint on average 17 months on one hand, randomly chosen, with the free hand as control. Joint mobility, grip strength, pain and radiographic findings were recorded at start and finish of the study. Splint treatment influenced grip strength positively, and most patients stated pain relief during the night. However, all but one patient showed progression of ulnar deviation in both hands, and there was no significant difference in progression between treated and nontreated hands. This study thus supported the use of resting splints at night for pain relief but not for prevention of ulnar deviation.

Aged↗

[Teratologic studies of methyl 5-aminosalicylate and salicylazopyridine].

Methyl 5-aminosalicylate hydrochloride (M-5-AS) at the dosages of 21, 42, 209, and 417 mg.kg-1.d-1 ig to mice during d 6-15 of pregnancy, no obvious effects on the placenta, fetus weight, sex differentiation, external appearance, visceral, and skeletal development were observed. In rats ig M-5-AS 56 and 556 mg.kg-1.d-1 produced no noticeable effects on the organogenesis or teratogenesis either. In mice and rats ig salicylazopyridine 410 and 1089 mg.kg-1.d-1 respectively no obvious teratogenicity was detected. However, aspirin 250 mg.kg-1.d-1 ig did bring about significant teratogenicity in rats.

Abnormalities, Drug-Induced↗

Genetic variation, chronic stress, and the central and peripheral noradrenergic systems.

Male rats from two inbred strains genetically selected for variation in response to stress were exposed for 9 consecutive days to 50 min of intermittent foot shock and killed 24 h after the last stress session. Maudsley Nonreactive (MNRA/Har) rats, genetically selected for decreased reactivity to stress, exhibited a significantly greater elevation (114% above control levels) in tyrosine hydroxylase activity in the locus ceruleus after chronic stress than Maudsley Reactive (MR/Har) animals (63% above control levels), genetically selected for heightened reactivity to stress. In the peripheral noradrenergic system, chronic stress produced an increase in norepinephrine (NE) content of small intestine and submaxillary gland of MNRA/Har rats, whereas chronic stress had no effect on NE content of these same tissues in MR/Har animals. These results are consistent with the proposition that genetic selection for variation in susceptibility to stress has altered the capacity of the central and peripheral noradrenergic system to adapt to chronic stress.

Adrenal Glands↗