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C D Howell

Publications and source records attributed to C D Howell.

28 records · Page 2Linked to original sources

Suppressor function of liver mononuclear cells isolated during murine chronic graft-vs-host disease. II. Role of prostaglandins and interferon-gamma.

Mononuclear inflammatory cells (MC) isolated from the livers and spleens of mice with chronic graft-vs-host disease (CGVHD) to minor histocompatibility antigens (B10.D2----BALB/c) show defective proliferation when stimulated with Con A and LPS. In turn, both CGVHD liver and spleen cells suppress the proliferation of mitogen-stimulated normal spleen cells in a genetically unrestricted manner. The suppressor activity of CGVHD spleen cells is mediated by plastic nonadherent null (natural suppressor) cells and involves a soluble suppressor factor(s). In contrast, the suppressor activity of CGVHD liver cells is mediated by macrophages (M phi). In the current studies we show that the suppressor activity of CGVHD liver cells is also mediated by soluble factors and compare the roles of prostaglandins and interferon (IFN)-gamma in mediating defective proliferation and suppressor activities of CGVHD liver and spleen MC. Monoclonal antibody to IFN-gamma partially reversed the defective mitogen-stimulated proliferation of CGVHD spleen MC but had no effect on proliferative response of CGVHD liver MC. Indomethacin did not alter the low proliferative response of either CGVHD liver or spleen MC. Anti-IFN-gamma inhibited the ability of CGVHD spleen cells to suppress proliferation of Con A and LPS-stimulated B10.D2 spleen cells. In contrast, anti-IFN-gamma resulted in a small decrease in the ability of liver MC to suppress Con A (but not LPS)-stimulated cell proliferation. Indomethacin decreased the ability of both CGVHD liver and spleen cells to suppress Con A-stimulated proliferation but had inconsistent effects on LPS-stimulated proliferation. These results show that IFN-gamma and prostaglandins partially mediate the suppressor activity of CGVHD spleen MC. The suppressor activity of CGVHD liver MC also involves prostaglandins but is relatively independent of IFN-gamma.

Animals↗

Suppressor function of hepatic mononuclear inflammatory cells during murine chronic graft-vs-host disease. I. Macrophage-enriched cells mediate suppression in the liver.

Murine chronic graft-vs-host disease (CGBHD) to minor histocompatibility antigens (B10.D2----BALB/c) is characterized by inflammatory destruction of intrahepatic bile ducts, scleroderma-like skin lesions, and lymphoid involution. Spleen cells isolated from this model proliferate poorly when stimulated with mitogens. Previous reports indicate defective lymphocyte proliferation in this model is the result of active suppression induced by the graft-vs-host reaction in the spleen and is mediated by Thy 1.2-, sIg-, plastic nonadherent, splenic natural suppressor (NS) cells. To determine whether the intense CGVHD in the liver is associated with induction of suppression, we compared the suppressor activity of hepatic and splenic mononuclear inflammatory cells isolated concurrently during murine CGVHD. Both hepatic and splenic MC suppressed the proliferation of mitogen-stimulated normal spleen cells in a non-MHC, non-Mls restricted manner. T cells contributed to the suppressor activity of both populations. However, the suppressor activity of hepatic MC was mediated largely by a macrophage-enriched population of MC while that of splenic MC was mediated largely by NS cells.

Animals↗

Disappearing bile ducts: immunologic mechanisms.

In primary biliary cirrhosis, chronic graft-versus-host disease, and chronic liver transplant rejection, immunologic mechanisms appear to cause destruction of intrahepatic bile ducts and consequently may lead to liver failure. Understanding those mechanisms may lead to improved therapy. Recent findings and clinically relevant concepts are discussed.

Antigen-Presenting Cells↗

SME observations of O2 (1 delta g) nightglow: an assessment of the chemical production mechanisms.

Solar Mesosphere Explorer (SME) observations of the 3 a.m. 1.27 micrometers nightglow at 45 N latitude, averaged over the period 10-31 July 1984, are reported. From the deduced volume emission rates, we derive the O2(a1 delta g) night-time production rates for the 80-100 km altitude range. Utilizing the mean SME-acquired 3 p.m. ozone profile for the same latitude and time period and an updated photochemical model, we determine night-time O, O3, H, OH, HO2, and H2O2 profiles. These are used in calculating the rates of reactions which are sufficiently exothermic to produce O2(1 delta) or excited states of OH or HO2, which could transfer their energy to O2 to form O2(1 delta). Of these reactions, most have rates that are quite small compared with the observed night-time O2(1 delta) production rate. For several others, laboratory experiments have found O2(1 delta) yields which are insufficient for simulating the observed O2(1 delta). Using yields of O2(1 delta) based on published laboratory and observational studies, we find that the sum of two reaction sequences can approximate the SME measurements: (1) O+O+M and (2) H+O3 followed by OH*+O2.

Atmosphere↗

Hepatic homing of mononuclear inflammatory cells isolated during murine chronic graft-vs-host disease.

Liver injury in murine chronic graft-vs-host disease (CGVHD) to minor histocompatibility Ag, B10.D2----BALB/c (600 rad), is characterized by mononuclear cell inflammation and necrosis of interlobular bile ducts. Bile duct destruction in this model is similar to that which occurs in human CGVHD, late liver transplant rejection, and primary biliary cirrhosis. This model provides a unique opportunity to isolate mononuclear inflammatory cells from the liver during CGVHD, study their functions, and investigate the immunologic mechanisms responsible for bile duct destruction. In the present study, we compared the in vivo organ homing of mononuclear inflammatory cells (MC) isolated from the liver and spleen during the course of CGVHD. MC isolated from the liver showed a progressive increase in homing to the livers of BALB/c mice from day 7 through 42. In contrast, the hepatic homing of MC isolated from the spleen peaked at day 21 and subsequently declined. CGVHD spleen MC showed a progressive increase in homing to the spleen of BALB/c mice whereas CGVHD liver MC showed no change over time. Homing to other organs was negligible. The hepatic and splenic homing of MC isolated during CGVHD was significantly greater in BALB/c (host) mice than in B10.D2 (donor) mice. Autoradiography was used to determine the intrahepatic sites at which CGVHD liver MC accumulate after i.v. injection into BALB/c mice. The results indicated that MC isolated from the liver when bile duct inflammation is most intense accumulate preferentially in hepatic portal spaces in close proximity to interlobular bile ducts. These results suggest that hepatic homing by CGVHD liver MC is specific for minor histocompatibility Ag expressed on host biliary epithelial cells. These data support the hypothesis that bile duct destruction in murine CGVHD is mediated by MC that are sensitized to minor histocompatibility Ag expressed by host biliary epithelial cells.

Animals↗

Interaction of parathion and malathion with hepatic cytochrome P-450 from rats treated with phenobarbital and carbon disulfide.

Alterations in the activity of drug-metabolizing enzymes and the concentration of cytochrome p-450 from liver microsomes of rats pretreated with phenobarbital for enzyme induction and later given a single oral dose (0.4 ml/kg) of carbon disulfide (CS2) have been examined. In vitro incubations of these microsomes with parathion and malathion showed no significant change in the amount of cytochrome p-450 from that present in the corresponding controls. This inhibition of oxidative desulfuration of these insecticides by microsomes from CS2-treated animals could be attributed to the prior binding with cytochrome p-450 of sulfur released from CS2 as confirmed from the results of spectral binding of SKF 525-A, parathion and malathion. These results lead to the conclusion that CS2, parathion and malathion undergo oxidative desulfuration in an analogous manner and that the metabolism of the insecticides is impaired in liver previously exposed to CS2.

Aniline Compounds↗