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Biomedical subjects

D R Jackson

Publications and source records attributed to D R Jackson.

At least 19 recordsLinked to original sources

Mobility of polychlorinated aromatic compounds in soils contaminated with wood-preserving oil.

Greater understanding of the mobility of polychlorinated aromatic compounds in soils is needed to investigate contamination and design suitable remediation strategies for sites contaminated with wood-preserving oil. The objectives of this study were (1) to develop a suitable aqueous batch extraction method for soil containing wood-preservative residues; (2) to determine partition coefficients for the primary contaminants [pentachlorophenol (PCP), polychlorinated dibenzo-p-dioxins (PCDDs), and polychlorinated dibenzofurans (PCDFS)] in oil, soil, and aqueous phases; and (3) to evaluate the potential soil migration of the primary contaminants. In a three-phase oil-soil-water mixture, PCP, PCDDs, and PCDFs were partitioned to the greatest extent in the oil phase. These results suggest that the migration of contaminants can occur in a saturated subsurface soil zone containing an oil phase at a wood-preserving site. In the absence of a free oil phase, PCDDs and PCDFs were highly partitioned onto soil and were considered non-leachable in the aqueous phase. However, PCP was considered highly leachable from contaminated soil containing only an aqueous liquid phase. Results from this study indicate that removal of any free oil phase present in subsurface soil should have highest priority during the cleanup of contaminated wood-preserving sites.

Oils

Ultrastructural and cytochemical study of hepatocytes and lymphocytes during experimental non-A, non-B infections in chimpanzees.

A human agent of non-A, non-B hepatitis (Inoculum I) was transmitted to chimpanzees and alterations in liver and lymphocytes were studied by electron microscopy and by cytochemical techniques during the acute phase of the disease. Three types of cytoplasmic alterations, consisting of a membraneous and an amorphous part were observed in the hepatocytes. The density of the amorphous constituent decreased after treatment with pronase, but not after treatment with ribonuclease (RNase) or deoxyribonuclease (DNase). The wall of C-III, but not C-II had fibrils with a periodicity the contrast of which markedly increased after pronase treatment. Cytochemical data suggest that the inclusions (C-I-III) represent a cellular reaction to the infectious agent rather than the virus itself. Intranuclear vermicular inclusions (INI) were observed in hepatocytes and lymphocytes as well, mainly in degenerating cells. Tubuloreticular inclusions (TRS) did not appear in circulating lymphocytes during acute infection; however, they could be induced by human alpha interferon treatment in vitro. Increased numbers of lymphocytes with parallel tubular arrays (PTA) were noted at the peak of serum aminotransferase elevations. The latter two alterations (TRS and PTA) most likely represent immunologic reactions of the host to the infectious agent.

Animals

Ultrastructural alterations in serial liver biopsy specimens from chimpanzees experimentally infected with a human non-A, non-B hepatitis agent.

Four chimpanzees experimentally infected with an agent of human non-A, non-B hepatitis were studied to determine the sequence of ultrastructural alterations in hepatocytes during infection. Three of the four types of cytoplasmic alterations previously described in association with non-A, non-B hepatitis were observed in the hepatocytes. Sponge-like cytoplasmic inclusions (designated C-I) were detected at or near the time of peak serum aminotransferase elevations in two of the four chimpanzees. Undulating membranes (designated C-II) were observed in all four chimpanzees, at the time of the first elevation of serum aminotransferase levels. Cytoplasmic tubules (designated C-III) were first observed four, eight, and twelve weeks, respectively, after inoculation in three of the chimpanzees. Four weeks after the peak of serum aminotransferase elevations, cytoplasmic alterations could no longer be detected in hepatocytes of the four chimpanzees. Intranuclear inclusions consisting of 20-27 nm granules and vermicular particles were observed in hepatocytes from preinoculation liver biopsy specimens, as well as biopsies obtained during non-A, non-B hepatitis. The number of these particles was greatest near the time of peak elevation of serum aminotransferase levels, however. Tubulo-crystalline inclusions were noted as well in the endothelial cells from both preinoculated and infected chimpanzees. Cytoplasmic alterations in hepatocytes of chimpanzees experimentally infected with an agent of non-A, non-B hepatitis appear characteristic of infection with this agent. In contrast, intranuclear particles were not specifically related to the non-A, non-B hepatitis infection.

Animals

Transmission of non-A, non-B hepatitis from man to chimpanzee.

Non-A, non-B hepatitis was transmitted to four colony-born chimpanzees by intravenous inoculation of human sera. Two chimpanzees were inoculated with serum from a patient with a clinical and serological diagnosis of chronic non-A, non-B hepatitis whose blood appeared to transmit this disease to a nurse following accidental needle-stick, and the other two chimpanzees were inoculated with serum from either of two former blood-donors whose HBsAg-negative blood appeared to transmit clinically recognisable hepatitis, and who were found to have raised serum-aminotransferase levels 1 1/2 and 5 years later. Serum-aminotransferase levels rose in all four chimpanzees, beginning 2--4 weeks after inoculation: peak alanine-aminotransferase values were 210 to 328 I.U./l. Evidence of hepatitis was present in liver biopsy specimens from all four chimpanzees, beginning 8--10 weeks after inoculation. None showed serological evidence of infection with hepatitis A virus, hepatitis B virus, cytomegalovirus, or Epstein-Barr virus.

Alanine Transaminase

Hepatitis B surface antigen and e antigen in pleural effusion: a case report.

Hepatitis B e antigen (HBeAg) and hepatitis B surface antigen (HBsAg) were demonstrated in pleural fluid obtained from a 40-year-old dialysis patient who had HBSAg and HBeAg in her serum. The titers of HBsAg and HBeAg were similar in serum and pleural fluid. Examination of the pleural fluid by electron microscopy revealed the presence of intact hepatitis B virus particles. These findings underline the potential hepatitis B virus infectivity of other body fluids besides blood, especially for medical and laboratory personnel.

Adult

Hepatitis A antigen particles in liver, bile, and stool of chimpanzees.

Virus-like hepatitis A antigen (HA Ag) particles, presumably hepatitis A virus, were isolated from the liver, bile, and stool of three chimpanzees that had been infected with stool filtrates containing HA Ag particles. Specimens of serum, stool, liver biopsy material, and bile were obtained at selected intervals during the experiment. The animals developed mild hepatitis 19-21 days after inoculation, and antibody to HA Ag appeared de novo in their convalescent-phase serum. During acute illness, virus-like particles similar to the HA Ag particle were seen in liver cell cytoplasm by electron microscopy. HA Ag particles were detected by immune electron microscopy and a new radioimmunoassay in isopycnically banded samples of liver, bile, and stool. HA Ag particles were found at densities of 1.29-1.39 g/cm3, but the major peak density for antigen particles in samples of liver, bile, and stool was approximately 1.34 g/cm3. The fact that HA Ag particles can be recovered from chimpanzee liver, bile, and stool makes these potentially important sources of infectious and antigenic materials.

Animals

Hepatitis B core antigen: immunology and electron microscopy.

TWO DISTINCT VIRAL ANTIGENS ARE ASSOCIATED WITH THE HEPATITIS B VIRUS: the hepatitis B surface antigen (HB(s)Ag, Australia antigen) and the hepatitis B core antigen (HB(c)Ag). HB(s)Ag, purified from the serum of asymptomatic human HB(s)Ag carriers, and HB(c)Ag, purified from the liver of a chimpanzee acutely infected with hepatitis B virus, were examined by serological and immune electron microscopic methods. Antisera raised against HB(s)Ag reacted with the outer, surface component of the Dane particle and with the 20-nm spherical and tubular particles present in HB(s)Ag-positive serum, but not with the internal component of the Dane particle or with purified HB(c)Ag particles. Antisera raised against purified HB(c)Ag particles reacted with the internal component of the Dane particle and with HB(c)Ag, but not with the surface of the Dane particle or with the 20-nm spherical and tubular particles associated with HB(s)Ag. Purified HB(c)Ag particles, 27 nm in diameter, demonstrated distinct subunits. The infectious form of hepatitis B virus appears to be represented by the 42-nm Dane particle composed of a 27-nm nucleocapsid core component (HB(c)Ag) surrounded by an antigenically and morphologically distinct lipoprotein surface component (HB(s)Ag).

Animals