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Biomedical subjects

G T Burger

Publications and source records attributed to G T Burger.

8 recordsLinked to original sources

Histological sectioning of the rodent larynx for inhalation toxicity testing.

In rodents, the larynx is a major site of histopathologic alteration following inhalation exposure to particulates, vapors, and aerosols. Specifically, the epithelial lining of a narrowly delineated region on the ventral floor of the larynges of rats and mice appears to be especially vulnerable to inhaled materials, and is recognized as a preferred site for histopathological evaluation in inhalation studies. This site is located at the base of the epiglottis, cranial to the ventral laryngeal diverticulum (ventral pouch). The presence of underlying seromucinous glands is critical for histologic identification of this site. We report a histologic sectioning technique, using the ventral laryngeal diverticulum as the anatomical landmark, to obtain tissue sections from this area of predilection in rats and in mice.

Administration, Inhalation

Experimental Coxiella burnetii infection of guinea pigs and mice.

The susceptibility of five inbred strains of mice, designated DBA/1J, DBA/2J, C57BL/6J, Balf/CJ, and AKR/J, as well as outbred Hartley and Moen-Chase guinea pigs to infection with Coxiella burnetii by several routes was studied. The DBA/2J mice were more susceptible to infection and had higher mortality rates than other strains of mice. Guinea pigs were more susceptible to infection than mice. Lesions observed in the infected animals were similar to those previously described in man and experimentally infected animals.

Aerosols

Appearance of cellular and humoral immunity in guinea pigs after infection with Coxiella burnetii administered in small-particle aerosols.

The development of humoral and cell-mediated immune responses was studied in guinea pigs infected with Coxiella burnetti administered in small-particle aerosols. Direct macrophage migration inhibition was observed in cultured peritoneal exudate cells as early as 3 days after exposure. Maximum inhibition of macrophages cultured with phase I or II antigen occurred 14 to 21 days postexposure and persisted through 35 days. This inhibitory action was no longer detectable at 42 days. Serum antibody to the phase II antigen of C. burnetii was detected at 14 days, and serum antibody to phase I antigen was detected at 21 days, 18 days after the cell-mediated immune response.

Aerosols

Fibrosarcoma in a white-tailed deer.

A large, rapidly growing subcutaneous fibrosarcoma was observed on the head of an aged male white-tailed deer (Odocoileus virginianus) from Frederick County, Maryland. Although there was no evidence of distant metastasis, the large neoplastic mass had extensively invaded the osseous supraorbital process, and had several small satellite nodules nearby.

Animals

Studies on Macaca mulatta infected with Rocky Mountain spotted fever.

Acid-base alterations and changes in other selected serum constituents (free fatty acids, triglycerides, cholesterol, copper, cortisol, alpha1-acid glycoprotein, haptoglobin, and albumin) were measured during a study of Rocky Mountain spotted fever in 16 male rhesus macaques. Blood samples were taken from nonanesthetized macaques conditioned to repeated handling. Arterial pH increased and PCO2 decreased during the febrile period. Free fatty acids, triglycerides, copper, cortisol, alpha1-acid glycoprotein, and haptoglobin increased, whereas albumin decreased during the disease. Significant changes were not observed in arterial PO2. Cholesterol remained unchanged. The increase in arterial pH and decrease in PaCO2 indicated that respiratory alkalosis was present in macaques acutely affected with Rocky Mountain spotted fever.

Animals

Changes in blood serum constituents and hematologic values in Macaca mulatta with Rocky Mountain spotted fever.

Forty-seven male Macaca mulatta, 3 to 4 kg weight, were inoculated intravenously or subcutaneously with various doses of yolk sac-grown Rickettsia rickettsii. Thirty-four macaques became febrile and exhibited signs of infection ranging from transient illness with a few days of fever to severe illness with subsequent death. The rash appeared more frequently in the macaques inoculated subcutaneously. Febrile macaques that survived had leukocytosis, with concomitant neutrophilia. Febrile macaques that died had, in addition, marked terminal leukopenia and thrombocytopenia. Packed cell volume of all febrile macaques decreased. In almost all of the febrile macaques, there were increased serum urea nitrogen, glutamic-oxaloacetic transaminase, and lactate dehydrogenase and decreased total serum protein and amylase concentrations. A few febrile macaques had increased bilirubin values and decreased sodium, chloride, phosphorus, and alkaline phosphatase concentrations. Changes did not occur in serum glucose, potassium, calcium, and glutamic-pyruvic transaminase values. The experimental form of Rocky Mountain spotted fever in the macaque provides a subhuman primate model for studying the pathophysiology of this disease.

Amylases

Demonstration of Rickettsia rickettsii in the rhesus monkey by immune fluorescence microscopy.

Indirect immune fluorescence was used to detect rickettsiae in the tissues of a primate inoculated subcutaneously with Rickettsia rickettsii. Rickettsiae were identified by indirect immuno fluorescence predominantly in skin, skeletal muscle, scrotum, testicles, nares, heart, kidney, liver, brain, spleen, pancreas, and larynx. Cell culture assay confirmed the presence of infectious organisms in those specimens.

Animals