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Biomedical subjects

T Zhou

Publications and source records attributed to T Zhou.

At least 91 records · Page 5Linked to original sources

Bisindolylmaleimide VIII facilitates Fas-mediated apoptosis and inhibits T cell-mediated autoimmune diseases.

Fas-mediated apoptosis is essential for the elimination of cells, and impaired apoptosis can have severe detrimental consequences. Bisindolylmaleimide VIII potentiated Fas-mediated apoptosis in human astrocytoma 1321N1 cells and in Molt-4T cells, both of which were devoid of apoptosis induced by anti-Fas antibody in the absence of bisindolylmaleimide VIII, and in Jurkat and CEM-6 T cells, which showed slight and moderate apoptotic responses, respectively, to low levels of Fas stimulation. Potentiation of Fas-mediated apoptosis by bisindolylmaleimide VIII was selective for activated, rather than non-activated, T cells, and was Fas-dependent, as it was not observed in T cells from Fas-deficient lpr/lpr mice. Administration of bisindolylmaleimide VIII to rats during autoantigen stimulation prevented the development of symptoms of T cell-mediated autoimmune diseases in two models, the Lewis rat model of experimental allergic encephalitis and the Lewis adjuvant arthritis model. Thus, the use of agents such as bisindolylmaleimide VIII may be therapeutically useful for supporting more effective elimination of detrimental cells through enhancement of Fas-dependent apoptosis signaling.

Animals↗

Detection of bone marrow micrometastasis.

The detection of metastasizing single tumor cells has so far been difficult. Using a monoclonal antibody (MAb A45-B/B3) recognizing human cytokeratin, we identified immunocytochemically single tumor cells and micrometastases in patients (n = 24) with nonsmall cell lung cancer at the time of surgery of the primary tumor. The cytokeratin-positive cells (1-14/5 x 10(5) cells) in the bone marrow samples of 9 (9/24) patients were found. We also found a garland-like cluster, which consists of seven cancer cells and two closely connected tumor cells from one bone marrow sample. These results indicate that this technique can be used as a early diagnostic technique of bone marrow micrometastasis in the patient with the nonsmall cell lung cancer.

Animals↗

Crystallization and preliminary x-ray analysis of the catalytic subunit of the ATP-dependent arsenite pump encoded by the Escherichia coli plasmid R773.

The arsenical resistance (ars) operon of the Escherichia coli plasmid R773 encodes a system for the active extrusion from cells of the toxic oxyanions arsenite (AsIIIO2-) and antimonite (SbIIIO2-) via an ATP-driven pump. The arsA and arsB genes of the operon encode the catalytic subunit (ATPase) and the membrane subunit of the pump, respectively. The arsC gene codes for a reductase that converts arsenate (AsVO43-) to arsenite, thus extending bacterial resistance to the pentavalent state of arsenic. Crystals diffracting beyond 2.0 A were obtained for the catalytic subunit of the pump (ArsA). These crystals belong to space group I222, with unit-cell parameters a approximately 73, b approximately 76, c approximately 223 A. A single molecule of ArsA, composed of two homologous halves, occupies the asymmetric unit of the I222 crystals with a predicted solvent content of 46%. Self-rotation function analysis suggests, however, that ArsA adopts a molecular packing corresponding to point group 422. One possible explanation of this result is that the two homologous halves of ArsA are related by a twofold axis of local symmetry and that the two halves of a 'pseudo'-tetramer are related by a crystallographic twofold axis.

Adenosine Triphosphatases↗

Emergence of drug-resistant populations of woodchuck hepatitis virus in woodchucks treated with the antiviral nucleoside lamivudine.

Lamivudine [(-)-beta-L-2',3'-dideoxy-3'-thiacytidine] reduces woodchuck hepatitis virus (WHV) titers in the sera of chronically infected woodchucks by inhibiting viral DNA synthesis. However, after 6 to 12 months, WHV titers begin to increase toward pretreatment levels. Three WHV variants with mutations in the active site of the DNA polymerase gene are present at this time (W. S. Mason et al., Virology 245:18-32, 1998). We have asked if these mutant viruses were responsible for the lamivudine resistance and if their emergence caused an immediate rise in virus titers. Cell cultures studies implied that the mutants were resistant to lamivudine. Emergence of mutant WHV was not always associated, however, with an immediate rise in virus titers in the serum. One of the three types of mutant viruses became prominent in serum up to 7 months before titers in serum actually began to increase, at a time when wild-type virus was still predominant in the liver. The two other mutants did not show this behavior but were detected in serum and liver later, just at the time that virus titers began to rise. A factor linking all three mutants was that a similar duration of drug administration preceded the rise in titers, irrespective of which mutant ultimately prevailed. A simple explanation for these results is that the increase in virus titers following emergence of drug-resistant mutants can occur only as the preexisting wild-type virus is cleared from the hepatocyte population, allowing spread of the mutants. Thus, prolonged suppression of virus titers in the serum may sometimes be a measure of the stability of hepatocyte infection rather than of a successful therapeutic outcome.

Amino Acid Sequence↗

Insulin receptor substrate-1 enhances growth hormone-induced proliferation.

GH exerts a variety of metabolic and growth-promoting effects. GH induces activation of the GH receptor (GHR)-associated cytoplasmic tyrosine kinase, JAK2, resulting in tyrosine phosphorylation of the GHR and activation of STAT (signal transducer and activator of transcription), Ras-mitogen-activated protein kinase, and phosphoinositol 3-kinase signaling pathways, among others. GH-stimulated tyrosine phosphorylation of insulin receptor substrate (IRS) proteins has been demonstrated in vitro and in vivo. IRS-1 is a multiply phosphorylated cytoplasmic docking protein involved in metabolic and proliferative signaling by insulin, IL-4, and other cytokines, but the physiological role of IRS-1 in GH signaling is unknown. In this study, as noted by others, we detected in murine 3T3-F442A pre-adipocytes GH-dependent tyrosine phosphorylation of IRS-1 and specific GH-induced coimmunoprecipitation with JAK2 of a tyrosine phosphoprotein consistent with IRS-1. We further examined this interaction by in vitro affinity precipitation experiments with glutathione-S-transferase fusion proteins incorporating regions of rat IRS-1 and, as a source of JAK2, extracts of 3T3-F442A cells. Fusion proteins containing amino-terminal regions of IRS-1 that include the pleckstrin homology, phosphotyrosine-binding, and Shc and IRS-1 NPXY-binding domains, but not those containing other IRS-1 regions or glutathione-S-transferase alone, bound JAK2 from cell extracts. Tyrosine-phosphorylated JAK2 resulting from GH stimulation was included in the amino-terminal IRS-1 fusion precipitates; however, neither tyrosine phosphorylation of JAK2 nor treatment of cells with GH before extraction was necessary for the specific JAK2-IRS-1 interaction to be detected. In contrast, in this assay, specific insulin receptor association with the IRS-1 phosphotyrosine-binding, and Shc and IRS-1 NPXY-binding domains was insulin and phosphotyrosine dependent, as previously shown. To test for significance of IRS-1 with regard to GH signaling, IRS- and GHR-deficient 32D cells were stably reconstituted with the rabbit (r) GHR, either alone (32D-rGHR) or with IRS-1 (32D-rGHR-IRS-1). As assayed by three independent methods, GH induced proliferation in 32D-rGHR cells, even in the absence of transfected IRS-1. Notably, however, GH-induced proliferation was markedly enhanced in cells expressing IRS-1. Similarly, GH-induced mitogen-activated protein kinase activation was significantly augmented in IRS-1-expressing cells relative to that in cells harboring no IRS-1. These results indicate that IRS-1 enhances GH-induced proliferative signaling.

3T3 Cells↗

Regulation of Fas-mediated apoptosis in CD2-fas transgenic mice.

Fas-mediated apoptosis is an essential mechanism for maintenance of immune homeostasis. The expression of Fas is regulated at transcriptional and protein levels. Furthermore, several death domain molecules and caspases are crucial downstream mediators and executioners of Fas-mediated apoptosis. A tightly regulated interaction of these molecules ensures normal immune functions, including the execution of activation-induced cell death, T-cell mediated cytotoxicity, and surveillance of immune privileged tissues. In contrast, abnormally increased or decreased Fas-mediated apoptosis is a major pathogenic mechanism of several diseases, including systemic or tissue-specific autoimmune diseases and immune deficiency. Two CD2-fas transgenic mouse lines are described here to demonstrate the importance of controlling Fas-mediated apoptosis. Correction of Fas in Fas-mutant mice restored apoptosis function and ameliorated autoimmune symptoms, whereas a long-term enhancement of Fas expression in Fas-normal mice resulted in an increased acute-phase response and renal amyloidosis in aged transgenic mice.

Acute-Phase Reaction↗

Modulation of Ca2+/calmodulin-dependent protein kinase II activity by acute and chronic morphine administration in rat hippocampus: differential regulation of alpha and beta isoforms.

Calcium/calmodulin-dependent protein kinase II (CaMK II) has been shown to be involved in the regulation of opioid receptor signaling. The present study showed that acute morphine treatment significantly increased both Ca2+/calmodulin-independent and Ca2+/calmodulin-dependent activities of CaMK II in the rat hippocampus, with little alteration in the protein level of either alpha or beta isoform of CaMK II. However, chronic morphine treatment, by which rats were observed to develop apparent tolerance to morphine, significantly down-regulated both Ca2+/calmodulin-independent and Ca2+/calmodulin-dependent activities of CaMK II and differentially regulated the expression of alpha and beta isoforms of CaMK II at protein and mRNA levels. Application of naloxone or discontinuation of morphine treatment after chronic morphine administration, which induced the withdrawal syndrome of morphine, resulted in the overshoot of CaMK II (at both protein and mRNA levels) and its kinase activity. The phenomena of overshoot were mainly observed in the beta isoform of CaMK II but not in the alpha isoform. The effects of both acute and chronic morphine treatments on CaMK II could be completely abolished by the concomitant application of naloxone, indicating that the effects of morphine were achieved through activation of opioid receptors. Our data demonstrated that both acute and chronic morphine treatments could effectively modulate the activity and the expression of CaMK II in the hippocampus.

Analgesics, Opioid↗

Apoptosis and cell death in the endocrine system.

Inflammatory diseases of the endocrine system--such as thyroiditis, diabetes, and Graves' disease--are considered to be autoimmune in origin. More recently, these and other autoimmune diseases have been associated with defects in Fas apoptosis. The mutation of the Fas or Fas ligand (FasL) has been observed in a minority of patients with autoimmune disease. However, dysfunction of the Fas apoptosis signaling pathway or production of soluble factors, including sFas and sFasL, may be more prevalent. Certain endocrine tissues, such as the testes, are immune privilege sites. Defects in Fas and FasL expression in immune privilege sites can trigger an inflammatory response. Other factors that trigger inflammatory diseases of the thyroid or islets may be loss of self tolerance, leading to an autoimmune response. An infectious trigger or other environmental agent can initiate organ damage, leading to release of new antigens that initiate the autoreactive process. We have developed a murine cytomegalovirus model of Sjögren's syndrome in which defects in the Fas/FasL pathway are necessary to enable chronic inflammation, even after the initial virus has been cleared. Another interaction between the endocrine system and apoptosis is by direct hormone interaction. This is exemplified by the orphan steroid receptor Nur77. Nur77 is important for T cell apoptosis after signaling through CD3. We have demonstrated that a dominant-negative Nur77 transgenic mouse exhibits a defect in thymic selection of T cells. Therefore, there are many potential mechanisms by which endocrine glands or hormones can affect the Fas apoptosis pathway, resulting in either cell death or a chronic inflammatory disease in the endocrine system, leading to hypothyroidism and diabetes. This inflammatory dysfunction can be reversed by a dominant-negative I kappa B that prevents nuclear translocation of NF-kappa B. We have developed antigen-specific, antigen-presenting cells that express high levels of FasL that can prevent tissue-specific inflammatory disease. Treatment with these cells prevents development of diabetes in NOD mice. Further understanding of the role and regulation of apoptosis in diseases of the endocrine system (e.g., diabetes, thyroiditis) should lead to better methods of treatment and prevention of these diseases.

Animals↗

Relationship between ventral stream for object vision and dorsal stream for spatial vision: an fMRI + ERP study.

Recent imaging studies indicated the existence of two visual pathways in humans: a ventral stream for object and form vision and a dorsal stream for spatial and motion vision. The present study was motivated by a stimulating question: Supposing shape and motion are processed separately in the two pathways, how do the respective cortical areas respond to the stimuli of "forms defined by motion"? fMRI and ERP recordings were combined in order to measure the spatiotemporal activation pattern in the two pathways responding to forms defined by motion, which were produced solely by coherent movement of random dots against a background of dynamic or static random dots. The fMRI data indicated that the stimuli of forms defined by motion indeed activated both dorsal MT/V5 and ventral GTi/GF. Furthermore, the RV curves resulting from fMRI-seeded dipole modeling indicated that each pair of dipoles located at MT/V5 or GTi/GF reached the same best-fit point; a single pair of free dipoles located near the fMRI foci of MT/V5 and GTi/GF could be identified at the corresponding best-fit point; and the source waveforms resulting from fixed dipole modeling also showed simultaneous activation of MT/V5 and GTi/GF dipoles in the time interval around the best-fit point. The present results, therefore, suggest that MT/V5 and GTi/GF appear to be activated in parallel and simultaneously responding to forms defined by motion. Such findings raise interesting issues about the hierarchical organization and the functional specialization in the two pathways.

Adult↗

Studies on production of pullulan by the feed batch fermentation.

The feed-batch fermentation of pullulan was investigated based on the conditions of batch fermentation. The optimal conditions of pullulan fermentation were determined by the investigation on the effect of feed mode, initial feed time, intermittent time, and composition of the feed solution on parameters such as productivity, conversion yield, biomass, dissolved oxygen (DO), pH of the fermentation broth, viscosity of the fermentation broth and molecular weight of the product. Above 70% of conversion yield and 100 kD of average molecular weight of the product was obtained at the optimal conditions.

Ammonium Sulfate↗

[Protective and therapeutic effects of intravenous-immunoglobulin on viral myocarditis].

This study was conducted to determine whether the administration of domestically manufactured intravenous-immunoglobulin (IVIG) could prevent or alleviate myocarditis in mice. Male BALB/c mice were randomized into two groups for protection group (P) and therapy group (T), and each of the two groups was subdivided into 4 groups (1, 2, 3 and c). A 7-day protocol with daily IVIG dosage of 200 mg/kg, 500 mg/kg and 1 g/kg for groups, P1, T1, P2, T2 and P3, T3 respectively was designed. In the experiment, the mice were inoculated with Coxsackie virus B3. The prevention groups (P1, P2, P3) received IVIG in the week immediately after the inoculation; the therapy groups (T1, T2, T3) received IVIG in the second week after the inoculation. All the animals were observed for 14 days. The results showed that all mice in groups P2 and P3 survived and the pathological studies revealed no myocarditis change. By the end of observation, however, 7 mice in the control group (Pc) died with severe myocarditis changes while one mouse in group P1 died with only slight inflammatory lesions in the heart. The survival rates of groups P1, P2 and P3(95%, 100% and 100%) differed significantly from the control (65%) statistically (P < 0.05). Similarly, the results of computed image analysis demonstrated that a significant difference existed between the cardiac lesions of groups P1 and Pc in severity (P < 0.05). The survival rates were 80.0%, 93.3%, 93.3% and 53.3% for groups T1, T2, T3 and Tc respectively (P < 0.05 for T2, T3 v. s. control), yet the hearts and heart/body weight ratios of T2 and T3 were significantly smaller than those of control, pathological study was supportive which showed slight (T2 and T3) or mild (T1) lesions of the heart in comparison with the control. These results demonstrate that Chinese made IVIG has definite protective and therapeutic effects on the mice infected with CVB3.

Animals↗

[Dose-related response of adenosine in hypoxic pulmonary hypertension in canines].

The vasodilator test is of critical importance in determining the reversibility of pulmonary hypertension and hence the indication of surgical treatments for cases of marginal pulmonary hypertension associated with left to right shunt. This study aimed at the dose-related vasodilation effect of adenosine (AD) on hypoxic pulmonary hypertension. The hemodynamic indexes were examined in 8 canines with acute hypoxic pulmonary hypertension after administration of intravenous adenosine. The results showed that AD decreased both systemic and pulmonary pressures in a dose-dependent way, with very close linear correlation; so did the systemic and pulmonary resistance (r = -0.970 and -0.994, respectively; P < 0.001). The PASP reductions were significantly greater than SASP reductions at AD doses of 100 to 200 micrograms/(kg.min) (from -11.0% +/- 4.2% to -27.7% +/- 14.8% vs from -2.6% +/- 7.4% to -14.9% +/- 7.0%, respectively), while PVR reductions were significantly greater than SVR reductions (-18.8% +/- 8.05% vs -10.2% +/- 6.86% and -29.8% +/- 14.46% vs -21.1% +/- 9.53%, respectively, P < 0.05). AD increased cardiac output and cardiac index to the significant degree only when the dosage increased to 300 micrograms/(kg.min) or above. These results suggest that AD seems to be the choice of drug in vasodilator test of left to right shunt pulmonary hypertension, and the proper dosage ranges from 100 to 200 micrograms/(kg.min).

Adenosine↗

[Influence of intravenous-immunoglobulin on T lymphocyte subsets, NK cell and some cytokines in mice with experimental viral myocarditis].

This study sought to gain an insight into the immunological pathogenesis of viral myocarditis and the mechanism of therapeutic action of intravenous-immunoglobulin (IVIG) on the disease, BALB/c mice were randomized into four groups: normal control group; "myocarditis model group", inoculated intraperitoneally with CVB3; "IVIG protection group", injected intraperitoneally with CVB3 and IVIG; and "IVIG treatment groups", injected intraperitoneally with CVB3 and IVIG. The amount of T cell in different T cell subsets and the activities of NK cell, IL-1 and IL-2 were assayed using spleen specimen while peripheral blood was used to measure TNF activity. The results showed: that in comparison with normal control, all spleen T cell subsets decreased in amount in myocarditis model group, so did its NK cell activity while its IL-1, IL-2 and TNF activities increased significantly. When compared with myocarditis model group, however, both IVIG protection group and IVIG treatment group showed significant elevation of NK cell activity and T cell subsets but reduced IL-1, IL-2 and TNF activities with no remarkable change in T cell subsets. The results of suggest that the immunological injury mediated by T cells plays a critical role in the pathogenesis of viral myocarditis. The protective and therapeutic effects of IVIG on the murine CVB3 myocarditis and the related immunological evidence of its actions may indicate the prospect that IVIG will become a potent and safe treatment for viral myocarditis in human.

Animals↗

[Studies on degradation of poly-(propyl,3-hydroxypropyl)-DL-asparamide and release of conjugate linking aspirin in vivo and in vitro].

Two polyasparamide derivants having different hydrophilicities were selected to be degraded in vivo and in vitro. The results demonstrate that the degradation process of polyasparamide is enzymatic hydrolysis. Materials with different hydrophobicities are different in degradation rate and the same material has different metabolic rates in the planting position, kidney and liver. The release results of two polymeric drugs indicate that protease is of advantage to release of drug, and hydrophobicity of material is also an advantage to the release.

Animals↗

[Otoacoustic emissions for newborn hearing screening].

OBJECTIVE: To evaluate the validity of transient evoked otoacoustic emissions (TEOAE) and distortion product otoacoustic emissions (DPOAE) in newborn hearing screening and to establish the feasible pass/fail criteria of screening. METHODS: One hundred and eight newborns (216 ears) were screened by TEOAE and DPOAE with Celesta 503 Cochlear Emission Analyzer. The outcome of OAE screening was compared with that of auditory brainstem response(ABR) test. RESULTS: When the criterion of passing TEOAE screening was based on the correlation coefficient of waveforms equal to or greater than 0.60 (r > or = 0.60), the co-positivity and co-negativity to the ABR results were 100% and 93.8% respectively. When the pass criterion of DPOAE was set as that the response levels were greater than the 5th percentile (P5) of the normal newborns in more than five out of eight frequencies, the co-positivity and co-negativity were 100% and 94.3% respectively. The outcome of TEOAE and DPOAE screening between r > or = 0.60 and P5 showed the best correlation, r = 0.6583 (n = 216, P = 0.0001). CONCLUSION: r > or = 0.60 and P5 were the feasible pass criteria of TEOAE and DPOAE for newborn hearing screening respectively. OAE proved to be an objective tool for rapid and effective test in universal newborn hearing screening.

Acoustic Stimulation↗

Development of a multiple-drug delivery implant for intraocular management of proliferative vitreoretinopathy.

A prototype multiple-drug delivery implant has been developed for the intraocular management of proliferative vitreoretinopathy (PVR). Because of the recurrent nature of the disease, PVR causes blindness in approximately 7% of patients who have undergone retinal re-attachment surgery. The poly(dl-lactide-co-glycolide) 50/50 (PLGA) implant consists of three cylindrical segments, each of which contains one of the following drugs: 5-fluorouridine (5FUrd, an antimetabolite), triamcinolone (Triam, a corticosteroid), and human recombinant tissue plasminogen activator (t-PA, a thrombolytic agent). The device can be inserted through a 20-gauge syringe needle into the vitreous body of the eye. The implant also possesses a PLGA coating over the t-PA-containing terminal segment, which creates a lag-time to deliver t-PA when most needed and to decrease the risk of postoperative bleeding. Two methods of cylinder fabrication were investigated: heat and solvent extrusion. The release behavior of several drugs was examined as a function of the processing variables including: extrusion method, drug loading, polymer molecular weight, and drug particle size. The presence of either the organic solvent (acetone) during processing or a highly water-soluble drug (5FUrd) in the formulation increased the polymer porosity, which in turn, increased the drug release-rate. Drug loading effects were consistent with percolation concepts, and a low-molecular-weight PLGA (e.g., Mw=42000 for inherent viscosity=0.58 dl/g) was desirable to produce controlled release close to one month. Based on pharmacological and pharmacokinetic data of these compounds and our clinical experience with this disease, several design criteria for a combined implant were devised. Optimal cylindrical segments from the formulation studies were selected and combined in series to form a contiguous implant. After successful combination and coating procedures were developed, prototype implants were prepared. From the 3-drug prototype, 5FUrd and Triam were released approximately 1 microgram/day for over 4 weeks and 10-190 microgram/day over 2 weeks, respectively. The solvent-extrusion procedure did not significantly alter the stability of the encapsulated t-PA (>94+/-5% serine protease activity after preparation). After a lag-time of approximately 2 days, t-PA was released active at a rate of approximately 0.2-0.5 microgram/day in approximately 2 weeks. The release characteristics from the combined implant largely met our initial design criteria. Hence, controlled-release implants of this kind may have potential use for intraocular treatment of PVR.

Chromatography, High Pressure Liquid↗

Apoptosis mediated by Fas but not tumor necrosis factor receptor 1 prevents chronic disease in mice infected with murine cytomegalovirus.

The role of Fas- and TNF-receptor 1 (TNF-R1)-mediated apoptosis in the clearance of virally infected cells and in the regulation of the immune response was analyzed after murine cytomegalovirus (MCMV) infection of C57BL/6 (B6)-+/+ mice, Fas-mutant B6-lpr/lpr mice, TNF-R1 knockout B6-tnfr0/0 mice, and double-deficient B6-tnfr0/0 lpr/lpr mice. There was approximately equivalent clearance of MCMV in B6-+/+, B6-tnfr0/0, and B6-lpr/lpr mice, and by day 28 no infectious virus could be detected in the liver, kidney, lung, or peritoneal exudate. However, delayed virus clearance was observed in B6-tnfr0/0 lpr/lpr mice. An acute inflammatory response occurred in the liver, lung, and kidney of all mice, which was most severe 7 d after MCMV infection, but resolved by day 28 in B6-+/+ and B6-tnfr0/0 mice, but not in B6-lpr/lpr or B6-tnfr0/0 lpr/lpr mice. These results indicate that apoptosis mediated by either Fas or TNF-R1 is sufficient for rapid clearance of the virus. However, apoptosis induced by Fas, but not TNF-R1, is required for the downmodulation of the immune response to the virus and prevention of a chronic inflammatory reaction.

Animals↗

Inhibition of tumor necrosis factor alpha decreases inflammation and prolongs adenovirus gene expression in lung and liver.

The clinical application of adenoviral gene therapy currently is impeded by the potent host immune response to the virus, which limits the duration of its effects. In these studies, we investigated the role of TNF-alpha and of a soluble TNF receptor (TNF-bp) in the inflammatory response and expression of a lacZ-expressing adenovirus (AdCMVlacZ) in the liver and lung of mice. The expression of the recombinant adenovirus was studied in mouse liver and lung by determining the activity of the lacZ gene product of the adenovirus. The mononuclear cell inflammatory response was determined histologically at different times after intravenous or intranasal administration of AdCMVlacZ. The cytotoxic T cell and antibody response to the adenovirus was determined. Treatment with TNF-bp reduced circulating levels of TNF-alpha, greatly reduced the inflammatory response, and resulted in prolonged expression of lacZ for up to 30 days in the liver and lung after either intravenous or intranasal administration of adenovirus. Treatment with TNF-bp had no effect on anti-adenovirus antibodies and induction of cytotoxic T cells 30 days after administration of AdCMVlacZ. These results indicate that TNF-alpha is the primary factor driving the early inflammatory response leading to elimination of adenovirus-infected cells in the liver and lung and that TNF-bp is capable of inhibiting these effects.

Adenoviridae↗