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T D Anderson

Publications and source records attributed to T D Anderson.

At least 19 recordsLinked to original sources

Predictive value of the intracarotid amobarbital test in bihemispheric seizure onset.

The intracarotid amobarbital test (IAT) is used to lateralize language function and assess hemispheric memory. In this study 23 non-lesional epileptic patients were evaluated. The magnitude of the difference in IAT scores between the two hemispheres was significantly greater in the patients whose seizures lateralized on scalp or intracranial EEG than in patients with bihemispheric seizure onset. This suggests that the IAT is useful not only in predicting lateralized seizure focus, but bihemispheric onset as well.

Adult

A validation study for the extraction and analysis of DNA from human nail material and its application to forensic casework.

A validation study was conducted to demonstrate that deoxyribonucleic acid (DNA) could be successfully extracted from human nail material and analyzed using short tandem repeat (STR) profiling and/or mitochondrial DNA (mtDNA) sequencing. This study involved the development of a DNA extraction protocol that includes a cleaning procedure designed to remove external contaminants (e.g., biological, chemical). This protocol was used to test human nail material that had been soaked in whole blood from a second donor and coated with gold-palladium to simulate scanning electron microscopic analysis. The results showed no indication of a mixture and were consistent with that of the nail donor. Fresh human nail material usually yielded both STR profiles and mtDNA sequence information; however, aged human nail material (approximately eight years old) yielded only mtDNA sequence information. Upon completion of the validation study, the extraction protocol was used for the analysis of a torn fingernail fragment recovered from the scene of a violent homicide in 1983. A partial STR profile and mtDNA sequence information indicated that the fingernail fragment was excluded as originating from the suspect and was, in fact, consistent with originating from one of the victims.

DNA

Home health, long-term care, and other compliance activities.

The Federal government continues to crack down on fraud and abuse in the healthcare industry with such initiatives and tools as Operation Restore Trust and intermediate tax sanctions. Home health and long-term care organizations are the latest entities under study by the Office of Inspector General, and the result of these studies likely will be more antifraud and abuse measures being taken against these entities. All healthcare organizations should pay particular attention to their tax risk exposure. Healthcare organizations that put effective compliance programs in place should be able to reduce the overall risk of challenges to their financial practices.

Conflict of Interest

Comparative immunotoxicity assessment of N4-Trimethoxybenzoyl-5'-deoxy-5- fluorocytidine (Ro 09-1390) and 5'-deoxy-5-fluorouridine (5'-DFUR) in BDF1 mice.

N4-Trimethoxybenzoyl-5'-deoxy-5-fluorocytidine (Ro 09-1390) and 5'-deoxy-5-fluorouridine (5'-DFUR) are 5-fluorouracil (5-FU) derivatives developed as anti-tumor pharmaceuticals. To evaluate immunotoxicities of these compounds, BDF1 mice were administered vehicle, 300-2700 mg (0.68-6.14 mmol)/kg/day of Ro 09-1390, or 100-900 mg (0.41-3.66 mmol)/kg/day of 5'-DFUR for 1 to 7 days, and effects on cellularity in lymphoid organs were assessed by immunohistochemistry as well as general toxicologic parameters. To distinguish compound-specific direct action from nonspecific indirect action caused by dietary reduction, dietary restriction groups were also included as control groups. Final body weight, thymus weight, bone marrow cell number (BMC), and leukocyte number were reduced with high dose of both compounds. Reduction of BMC in groups administered with Ro 09-1390 or 5'-DFUR was more severe than in dietary restriction groups given comparative amount of diet with compound-administered groups. Diffuse thymic cortical hypoplasia was observed in the highest dose of both compounds and more apparent in the Ro 09-1390 than in the 5'-DFUR. Focal nodular thymocyte hyperplasia was observed especially in the lower dose of 5'-DFUR. The results indicate that immunotoxic profiles of Ro 09-1390 and 5'-DFUR are very similar and characterized primarily by myelotoxicity and Ro 09-1390 is approximately two-times less toxic than 5'-DFUR on a molar basis in BDF1 mice.

Animals

The stimulatory effects of interleukin (IL)-12 on hematopoiesis are antagonized by IL-12-induced interferon gamma in vivo.

Interleukin (IL)-12 synergizes with other cytokines to stimulate the proliferation and differentiation of early hematopoietic progenitors in vitro. However, in vivo administration of IL-12 decreases peripheral blood counts and bone marrow hematopoiesis. Here, we used interferon (IFN) gamma receptor-deficient (IFN gamma R-/-) mice to investigate whether the in vivo inhibition of hematopoiesis by IL-12 is indirectly mediated by IL-12-induced IFN-gamma. IL-12 administered for 4 d (1 microgram/mouse per day) resulted in lower peripheral blood counts and a 2-fold decrease in bone marrow cellularity in wild-type mice, but not in IFN gamma R-/- mice. Bone marrow hematopoietic progenitors were decreased after IL-12 treatment in wild-type mice, but rather increased in IFN gamma R-/- mice. Splenic cellularity was 2.3-fold higher after IL-12 administration in wild-type mice, largely due to natural killer (NK) cell and macrophage infiltration together with some extramedullary hematopoiesis. In IFN gamma R-/- mice, spleen cellularity was less increased, there were fewer infiltrating NK cells, but a strong extramedullary hematopoiesis. Thus, alterations mediated by IL-12-induced IFN-gamma include reduction in bone marrow cellularity and hematopoietic progenitors, as well as pronounced splenomegaly, largely caused by NK cell infiltration. In the absence of IFN-gamma signaling, IL-12 promotes hematopoiesis, consistent with its in vitro activities.

Animals

Administration of recombinant interleukin-12 to mice suppresses hematopoiesis in the bone marrow but enhances hematopoiesis in the spleen.

Although IL-12 has been reported to synergize with c-kit ligand (KL) in promoting hematopoietic stem cell proliferation in vitro, administration of recombinant mouse IL-12 (rIL-12) to normal mice caused a dose- and time-dependent anemia, leukopenia, and thrombocytopenia in vivo. Decreased numbers of bone marrow cells were recovered from the tibiae of IL-12-treated mice, and histologic examination of the marrow revealed a loss of mature neutrophils and red blood cell precursors. However, simultaneously with the suppression of hematopoiesis in the bone marrow, the IL-12-treated mice developed splenomegaly, which was largely caused by a marked enhancement of splenic extramedullary hematopoiesis of the erythroid, myeloid, and megakaryocytic lineages. These histologic observations were confirmed by colony-forming cell assays in which administration of IL-12 was shown to cause a time-dependent decrease in bone marrow CFU-GM, CFU-E, and BFU-E hematopoietic colony-forming cells while causing an increase in splenic CFU-GM and BFU-E colony-forming cells. All these effects were reversible upon cessation of IL-12 treatment. The observation that in IL-12-treated mice hematopoiesis was suppressed in the marrow but enhanced in the spleen suggests that myelosuppression was not caused by a direct effect of IL-12 on hematopoietic progenitors. It seems likely that myelosuppression was caused instead by an IL-12-induced alteration in the local environment of the marrow.

Anemia

Role of interferon-gamma in interleukin 12-induced pathology in mice.

Interleukin 12 (IL-12) activates natural killer (NK) and T cells with the secondary synthesis and release of interferon-gamma (IFN-gamma) and other cytokines. IL-12-induced organ alterations are reported for mice and the pathogenetic role of IFN-gamma is investigated by the use of mice deficient in the IFN-gamma receptor (IFN-gamma R-/-). IL-12 caused a rapid infiltration of liver and splenic red pulp with activated macrophages; this and increased NK cells resulted in a fivefold increase of splenic weight in wild-type mice. Splenomegaly was associated with myelosuppression and decreasing peripheral leukocyte counts. IL-12-induced changes in wild-type mice were associated with markedly increased IFN-gamma serum levels and up-regulation of major histocompatibility complex (MHC) class I and II expression in various epithelia. IL-12 induced a qualitatively similar macrophage infiltration in IFN-gamma R-/- mice, less marked splenomegaly (to 2 x normal), and no MHC upregulation. Strikingly increased vascular endothelial intercellular adhesion molecule-1 expression was apparent in both IFN-gamma R-/- and IFN-gamma R+/+ mice. Restricted to mutant mice was a severe, invariably lethal, interstitial, and perivascular pulmonary macrophage infiltration with diffuse pulmonary edema. Extensive quantitative reverse transcriptase polymerase chain reaction analysis revealed an increase of only IL-6 and IL-10 pulmonary gene transcripts in IFN-gamma R-/- mice compared with wild-type mice. IL-12-induced myelosuppression is due to IFN-gamma-release from NK cells and T cells, and is associated with macrophage activation and distinct MHC class I and II antigen upregulation. The pulmonary pathology in IFN-gamma R-/- mice, however, reveals a toxic potential for IL-12 and suggests that endogenous IFN-gamma plays a protective role in preventing fatal pulmonary disease in these mice.

Animals

Schwann cell mitochondrial alterations in peripheral nerves of rabbits treated with 2',3'-dideoxycytidine.

2',3'-Dideoxycytidine (ddC) is a nucleoside analogue and reverse-transcriptase inhibitor that is approved for treatment of AIDS patients. A rabbit model of ddC neurotoxicity was developed to help understand the dose-limiting clinical neurotoxicity of ddC. Rabbits with a myelinopathy resulting from treatment with ddC exhibited mitochondrial alterations in Schwann cells of sciatic and tibial nerves and dorsal root ganglia. These changes were initially evident after 16 weeks of oral treatment with 35 mg/kg per day of ddC and were positively correlated with myelin pathology in individual animals. Cup-shaped mitochondria were frequently observed; when these mitochondria occurred in multiple concentric arrays or at various angles to one another, different profiles were formed depending on the plane of section. An increased number of mitochondrial cristae assumed a tubular configuration. It is suggested that the complex aggregations of mitochondria seen in this experiment are an adaptive response to altered mitochondrial function caused by treatment with ddC.

Acquired Immunodeficiency Syndrome

Administration of recombinant IL-12 to normal mice enhances cytolytic lymphocyte activity and induces production of IFN-gamma in vivo.

IL-12 is a heterodimeric cytokine that has been shown to enhance natural killer (NK) and cytotoxic T lymphocyte (CTL) responses, and to induce IFN-gamma production in vitro. In this study, we have examined the effects in vivo of administering purified murine rIL-12 to normal mice. Daily injections of rIL-12 i.p. (1 ng to 10 micrograms/day) caused dose-dependent enhancement of NK cell lytic activity in the spleens and livers of treated mice. Histologic examination of the livers of IL-12-treated mice revealed focal mononuclear cell infiltrates, and flow cytometry studies indicated that the livers of IL-12-treated mice contained increased numbers of NK cells, CD8+ T cells, and monocytes. Liver and splenic lymphoid cells from IL-12-treated mice, unlike liver and splenic lymphoid cells from control mice, spontaneously secreted IFN-gamma in vitro, suggesting that they had been induced by IL-12 to produce IFN-gamma in vivo. Consistent with this, IFN-gamma could be detected in the serum of IL-12-treated mice. In mice which had been immunized by footpad injection of allogeneic splenocytes, daily administration of rIL-12 i.p. was shown to enhance the specific CTL response in the draining lymph nodes. Thus, these studies demonstrate that IL-12 can enhance NK and CTL activity and induce IFN-gamma production in vivo, as well as in vitro, and suggest possible mechanisms by which IL-12 may exert therapeutic effects in the treatment of some tumors and infectious diseases.

Animals

Enhanced antitumor efficacy in mice by combination treatment with interleukin-1 alpha and interferon-alpha.

The antitumor efficacy of recombinant murine interleukin-1 alpha (rMuIL-1 alpha) was evaluated either alone or in combination with recombinant human hybrid interferon alpha A/D (IFN-alpha A/D) against the murine B16 F10 malignant melanoma. Treatment of subcutaneous tumor-bearing mice intraperitoneally with rMuIL-1 alpha resulted in a dose-dependent inhibition of tumor growth with the greatest activity obtained with the maximum tolerated dose of rMuIL-1 alpha (10 micrograms per treatment). Augmented tumor inhibition comparable to that seen in mice treated with a high dose of rMuIL-1 alpha was observed in subcutaneous tumor-bearing mice injected with the combination of IFN-alpha A/D and a low dose of rMuIL-1 alpha. Similar inhibition of subcutaneous tumor growth was obtained in T-cell-deficient nude or natural killer cell-deficient beige mice. In contrast, treatment of mice bearing B16F10 experimental pulmonary metastases with rMuIL-1 alpha resulted in no decrease in the number of metastases, and rMuIL-1 alpha did not potentiate the antimetastatic activity of IFN-alpha A/D. A synergistic induction of IL-6 was induced in mice treated with the combination of rMuIL-1 alpha plus IFN-alpha A/D but the level of IL-6 induced was not correlated with inhibition of tumor growth because this elevation of IL-6 was not observed in tumor-bearing nude mice. No direct antiproliferative activity was demonstrable in vitro against B16 F10 cells with rMuIL-1 alpha, IL-6, or rMuIL-1 alpha plus IL-6, and addition of these cytokines did not enhance the antiproliferative activity of IFN-alpha A/D.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Mitochondrial schwannopathy and peripheral myelinopathy in a rabbit model of dideoxycytidine neurotoxicity.

BACKGROUND: The reverse transcriptase inhibitor, 2',3'-dideoxycytidine (ddC), causes a dose-limiting peripheral neuropathy in humans, the mechanism of which is unknown. Rabbits given ddC develop peripheral myelinopathy and axonopathy, but it has not been determined if either the myelin or axonal changes are primary or if they occur concurrently. EXPERIMENTAL DESIGN: To characterize sequential development of the ddC-induced neuropathy, 40 rabbits were given either vehicle or ddC by oral intubation at a dose of 35 mg/kg per day for 24 weeks. Electrophysiologic studies, pathologic examination of peripheral and central nervous system and skeletal muscle, and biochemical analysis of the sciatic nerve were performed at baseline (electrophysiology only) and after 8, 12, 16, 20, and 24 weeks of treatment. RESULTS: Neuropathologic changes in peripheral nerves were first evident at 16 weeks and were more pronounced at 20 and 24 weeks; onset of paresis occurred at week 20, whereas clear electrophysiologic deficits were seen only at week 24. Electrophysiologic changes were prolonged F-waves (measure of proximal motor conduction) and minor changes in distal conduction measurements. Pathologic changes included myelin splitting, intramyelinic edema, demyelination, and remyelination of the largest diameter nerve fibers in the ventral root and sciatic nerve. Axonal degeneration and reduction in axonal diameter were seen. Enlarged mitochondria with abnormal ultrastructure were present in Schwann cells of those animals with a myelinopathy. Mitochondrial abnormalities or other signs of degeneration were not seen in neurons of the dorsal root ganglia or in skeletal muscle. Significant changes were not present in myelin protein composition, myelin lipid composition, or activity of the myelin-specific enzyme 2',3'-cyclic nucleotide 3'-phosphohydrolase. Major reductions in levels of protein zero (P0, the homophilic adhesion protein of myelin) were not seen; however, the turnover rate of P0 was reduced as P0 messenger RNA expression in ddC-treated sciatic nerves decreased to 30 to 50% of control values. CONCLUSIONS: The peripheral neuropathy caused by ddC in rabbits is characterized as a myelinopathy of the proximal portion of the nerve fibers and as an axonopathy involving both proximal and distal fibers. The myelinopathy was associated with enlarged and abnormally shaped mitochondria in Schwann cells and is consistent with an effect of ddC on structure and function of Schwann cell mitochondria. Altered Schwann cell metabolism was evident by reduced levels of P0 messenger RNA, loss of homophilic myelin adhesion at the intraperiod line, and subsequent intramyelinic edema. Because axonal degeneration occurred concurrently with the myelin changes, it could not be determined if axonal changes were secondary to serve myelinic edema or if they represented a primary effect of ddC on neurons.

Animals

Interleukin-12: a cytokine with therapeutic potential in oncology and infectious diseases.

IL-12 is a cytokine that promotes cell-mediated immunity by promoting Th1-type cytokine responses, enhancing the lytic activity of NK/LAK cells, augmenting specific CTL responses, and inducing the production of IFN-gamma. On the other hand, IL-12 suppresses the development of Th2-type cytokine responses and humoral immunity, particularly IgGl and IgE responses. It is likely that IL-12 normally plays an important role in the host defense against intracellular microbial pathogens. In addition, the administration of rIL-12 to mice has been shown to have potent therapeutic effects in several tumour and infectious disease models. IL-12 has been shown to be more efficacious than IL-2 in several murine tumour models, and toxicology studies suggest that it may have a substantially better therapeutic index. In addition, the long serum half-life of IL-12 relative to other cytokines will allow more flexibility in dosing schedules. However, future clinical trials are required to determine whether the efficacy of IL-12 seen in these experimental models is predictive for its use as an immunomodulatory drug in humans.

Animals

Biologic effects of recombinant human interleukin-12 in squirrel monkeys (Sciureus saimiri).

BACKGROUND: Interleukin-12 is a novel heterodimeric cytokine that stimulates the proliferation of activated T and NK cells and induces lymphokine-activated killer cell activity in vitro. To investigate the biological effects of recombinant human IL-12 (rHuIL-12) in vivo, two exploratory studies were conducted in squirrel monkeys (Sciureus saimiri), which have been shown to be pharmacologically responsive to rHuIL-12 in vitro. EXPERIMENTAL DESIGN: In the first study, 18 monkeys (3/sex/group) were given daily subcutaneous injections of 0 (vehicle control), 10, or 50 micrograms/kg/day rHuIL-12 for 14 days. In the second study, 18 monkeys were given 0, 0.1, or 1 micrograms/kg/day rHuIL-12 for 14 days The animals were monitored for clinical signs, hematology and clinical chemistry changes, and sacrificed on day 15 to evaluate gross and histopathologic changes. One monkey in the high dose group was sacrificed moribund on day 14. RESULTS: Monkeys given rHuIL-12 had dose-related hematologic changes characterized by mild to moderate anemia and leukocytosis. Serum chemistry changes included hypoproteinemia, hypoalbuminemia, hypophosphatemia, and hypocalcemia. Gross pathologic findings included generalized lymph node enlargement and splenomegaly with pulmonary edema and peritoneal effusions in two high dose monkeys. Dose-related histopathologic findings included thymic cortical atrophy, splenic lymphoid hyperplasia with histiocytic hyperplasia and extramedullary hematopoiesis of red pulp, Kupffer cell hypertrophy and hyperplasia, trilineage bone marrow hyperplasia, and reactive hyperplasia of lymph nodes. Animals in the 10 and 50 micrograms/kg/day dose groups developed high titers of anti-rHuIL-12 antibodies by day 15. CONCLUSIONS: These studies indicate that rHuIL-12 is bioactive over a wide dose range and induces prominent hyperplasia of hematopoietic and lymphohistiocytic tissues in squirrel monkeys. Moreover, positive immunomodulatory activity (enhanced lymphocyte lytic activity) was detected at a dose of rHuIL-12 that is 500-fold less than the dose causing severe toxicity.

Animals

Species differences in nucleotide pool levels of 2',3'-dideoxycytidine: a possible explanation for species-specific toxicity.

The nucleoside analogue, 2',3'-dideoxycytidine (ddC), a potent inhibitor of human immunodeficiency virus reverse transcriptase (in its anabolized triphosphorylated form), mediates virologic and immunologic improvements in AIDS patients. Clinical studies using ddC have shown various ddC-related toxicities, the most pronounced being a dose-limiting peripheral neuropathy. The dose responsiveness and manifestation of the ddC-related neuropathy vary among species, with greatest sensitivity in human > monkey > rabbit whereas mice and rats are insensitive to ddC-related neuropathy. This study has examined nucleotide pool sizes of ddCTP and its constituents (ddC, ddCMP, ddCDP) in cultured fibroblasts (human, rabbit, mouse) and freshly isolated peripheral lymphocytes (monkey, rabbit, rat, and mouse). Cells were treated with 10 microM [3H]ddC and nucleotide pool sizes analyzed by HPLC. The formation of nucleotide pools increased during the 24-hr assay period. Fibroblast pool formation of phosphorylated metabolites was significantly greater in human > rabbit > mouse. Lymphocytes demonstrated a similar pattern with monkey > rabbit > mouse = rat. Total ddC anabolite pools were also found to be significantly smaller (p < 0.05) in rodent lymphocytes than in those of rabbit or monkey, and rodent fibroblasts were smaller than those of human or rabbit (p < 0.05). These findings indicate that nucleoside phosphorylation and intracellular levels of phosphorylated metabolites may play an important role in determining species sensitivity and manifestation of ddC-related toxicity.

Animals

Cytokine-induced changes in the leukon.

Cytokines are regulatory peptides, produced by virtually every nucleated cell type in the body, that have pleiotropic effects on hematopoietic, lymphoid, and other cell types. Cytokines usually act locally as autocrine or paracrine cellular signals intended to maintain local homeostasis but in disease states can spill over into the circulation to initiate systemic reactions. The systemic administration of high doses of recombinant cytokines is associated with a multitude of pharmacologic and toxicologic effects, frequently involving the hemolymphopoietic system. These effects may represent direct or indirect pharmacologic or hyperpharmacologic activity or may represent toxicity. The objective of this review is to present the general types of hemolymphopoietic changes associated with cytokine administration to animals and to provide examples of cytokine-induced effects on the hemolymphopoietic system.

Animals

Effect of chronic interleukin-2 treatment on RES phagocytic activity in the rat.

The effect of chronic interleukin-2 (IL-2) injection upon reticuloendothelial system (RES) function in the rat has been determined. Seven-day treatments with two doses of human recombinant IL-2 resulted in a dramatic reduction in the phagocytic uptake of the liver and spleen, while increasing the weight of both organs. There were dramatic histological changes in the intestine, liver and spleen as well. These results suggest that the chronic use of IL-2 can result in hepatic dysfunction, which is associated with altered RES phagocytic function.

Animals