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Biomedical subjects

A Hood

Publications and source records attributed to A Hood.

18 recordsLinked to original sources

Hyperactivation of p21(ras) and the hematopoietic-specific Rho GTPase, Rac2, cooperate to alter the proliferation of neurofibromin-deficient mast cells in vivo and in vitro.

Mutations in the NF1 tumor suppressor gene cause neurofibromatosis type I (NF1), a disease characterized by the formation of cutaneous neurofibromas infiltrated with a high density of degranulating mast cells. A hallmark of cell lines generated from NF1 patients or Nf1-deficient mice is their propensity to hyperproliferate. Neurofibromin, the protein encoded by NF1, negatively regulates p21(ras) activity by accelerating the conversion of Ras-GTP to Ras-GDP. However, identification of alterations in specific p21(ras) effector pathways that control proliferation in NF1-deficient cells is incomplete and critical for understanding disease pathogenesis. Recent studies have suggested that the proliferative effects of p21(ras) may depend on signaling outputs from the small Rho GTPases, Rac and Rho, but the physiologic importance of these interactions in an animal disease model has not been established. Using a genetic intercross between Nf1(+/)- and Rac2(-)(/)- mice, we now provide genetic evidence to support a biochemical model where hyperactivation of the extracellular signal-regulated kinase (ERK) via the hematopoietic-specific Rho GTPase, Rac2, directly contributes to the hyperproliferation of Nf1-deficient mast cells in vitro and in vivo. Further, we demonstrate that Rac2 functions as mediator of cross-talk between phosphoinositide 3-kinase (PI-3K) and the classical p21(ras)-Raf-Mek-ERK pathway to confer a distinct proliferative advantage to Nf1(+/)- mast cells. Thus, these studies identify Rac2 as a novel mediator of cross-talk between PI-3K and the p21(ras)-ERK pathway which functions to alter the cellular phenotype of a cell lineage involved in the pathologic complications of a common genetic disease.

Animals↗

Effects of microsomal enzyme inducers on outer-ring deiodinase activity toward thyroid hormones in various rat tissues.

Microsomal enzyme inducers, such as phenobarbital (PB), pregnenolone-16alpha-carbonitrile (PCN), 3-methylcholanthrene (3MC), and Aroclor 1254 (PCB) are more effective at reducing serum thyroxine (T(4)) than serum triiodothyronine (T(3)). It is possible that rats treated with PB and PCN maintain serum T(3) by increasing serum TSH, which stimulates the thyroid gland to synthesize more T(3). However, it is unclear how serum T(3) is maintained in rats treated with 3MC or PCB, because serum TSH is not increased in these rats. We hypothesized that increased conversion of T(4) to T(3), catalyzed by outer-ring deiodinases (ORD) type-I and -II, is the reason serum T(3) is maintained in rats treated with 3MC or PCB. Furthermore, 3MC and PCB do not increase serum TSH, whereas PB and PCN do, because type-II ORD activity in the pituitary of 3MC- and PCB-treated rats is increased greater than in rats treated with PB or PCN. To test these two hypotheses, male Sprague-Dawley rats were fed either a basal diet or a diet containing PB (300, 600, 1200, or 2400 ppm), PCN (200, 400, 800, or 1600 ppm), 3MC (50, 100, 200, or 400 ppm), or PCB (25, 50, 100, or 200 ppm) for 7 days. Type-I ORD activity was measured in thyroid, kidney, and liver, whereas type-II ORD activity was measured in brown adipose tissue, pituitary, and brain. Type-I ORD activity in thyroid was not affected by PB, 3MC, or PCB treatments, and was slightly increased by PCN. Type-I ORD activity in kidney was not affected by PB, PCN, or 3MC treatments, and was reduced by PCB treatment. Type-I ORD activity in liver was reduced by PB, PCN, 3MC, and PCB treatments. Type-II ORD activity in brown adipose tissue was unaffected by any of the four treatments. Type-II ORD activity in pituitary was unaffected by PB or 3MC treatments, and was increased by PCN or PCB treatments. Type-II ORD activity in brain was unaffected by PB treatment, and was increased by PCN, 3MC, and PCB treatments. Overall, total ORD activity, calculated by summation of ORD activities in thyroid, kidney, liver, brown adipose tissue, pituitary, and brain, was reduced rather than increased by the four microsomal enzyme inducers. In conclusion, increased conversion of T(4) to T(3) is not the reason serum T(3) concentration is maintained in 3MC- or PCB-treated rats. Furthermore, the reason serum TSH is not increased in 3MC- and PCB-treated rats is the result of mechanisms other than increased type-II ORD activity in pituitary.

Animals↗

Genetic and biochemical evidence that haploinsufficiency of the Nf1 tumor suppressor gene modulates melanocyte and mast cell fates in vivo.

Neurofibromatosis type 1 (NF1) is a common autosomal-dominant disorder characterized by cutaneous neurofibromas infiltrated with large numbers of mast cells, melanocyte hyperplasia, and a predisposition to develop malignant neoplasms. NF1 encodes a GTPase activating protein (GAP) for Ras. Consistent with Knudson's "two hit" model of tumor suppressor genes, leukemias and malignant solid tumors in NF1 patients frequently demonstrate somatic loss of the normal NF1 allele. However, the phenotypic and biochemical consequences of heterozygous inactivation of Nf1 are largely unknown. Recently neurofibromin, the protein encoded by NF1, was shown to negatively regulate Ras activity in Nf1-/- murine myeloid hematopoietic cells in vitro through the c-kit receptor tyrosine kinase (dominant white spotting, W). Since the W and Nf1 locus appear to function along a common developmental pathway, we generated mice with mutations at both loci to examine potential interactions in vivo. Here, we show that haploinsufficiency at Nf1 perturbs cell fates in mast cells in vivo, and partially rescues coat color and mast cell defects in W(41) mice. Haploinsufficiency at Nf1 also increased mast cell proliferation, survival, and colony formation in response to Steel factor, the ligand for c-kit. Furthermore, haploinsufficiency was associated with enhanced Ras-mitogen-activated protein kinase activity, a major downstream effector of Ras, via wild-type and mutant (W(41)) c-kit receptors. These observations identify a novel interaction between c-kit and neurofibromin in vivo, and offer experimental evidence that haploinsufficiency of Nf1 alters both cellular and biochemical phenotypes in two cell lineages that are affected in individuals with NF1. Collectively, these data support the emerging concept that heterozygous inactivation of tumor suppressor genes may have profound biological effects in multiple cell types.

Animals↗

Differential effects of microsomal enzyme inducers on in vitro thyroxine (T(4)) and triiodothyronine (T(3)) glucuronidation.

Microsomal enzyme inducers that increase UDP-glucuronosyltransferase (UDP-GT) activity are suspected to affect the thyroid gland by increasing the glucuronidation of T(4), which reduces serum thyroxine (T(4)). In response to reduced serum T(4), serum thyroid-stimulating hormone (TSH) increases. However, not all microsomal enzyme inducers that reduce serum T(4) produce an increase in serum TSH. We have shown that serum TSH is increased the most in rats treated with the microsomal enzyme inducers phenobarbital (PB) or pregnenolone-16alpha-carbonitrile (PCN), whereas TSH is affected less in rats treated with 3-methylcholanthrene (3MC) and Aroclor 1254 (PCB). It is unclear why serum TSH is differentially affected by various microsomal enzyme inducers. We propose that the glucuronidation of T(3) might be the reason serum TSH is increased by some microsomal enzyme inducers but not by others. Male Sprague-Dawley rats were fed either a basal diet or a diet containing PB (at 300, 600, 1200, or 2400 ppm), PCN (at 200, 400, 800, or 1600 ppm), 3MC (at 50, 100, 200, or 400 ppm), or PCB (at 25, 50, 100, or 200 ppm) for 7 days; and T(4) and T(3) UDP-GT activities were then determined. T(4) UDP-GT activity was increased in rats treated with PB (120%), PCN (250 to 400%), 3MC (400 to 600%), or PCB (300 to 430%). In contrast, T(3) UDP-GT activity was increased in rats treated with PB (90%) or PCN (120 to 200%), whereas 3MC and PCB treatments did not have an appreciable effect. In conclusion, differential effects on T(3) glucuronosyltransferase activity were found in rats treated with microsomal enzyme inducers.

Animals↗

Effects of microsomal enzyme inducers on thyroid-follicular cell proliferation, hyperplasia, and hypertrophy.

The microsomal enzyme inducer (MEI), phenobarbital (PB), has been proposed to promote thyroid tumors by increasing the biotransformation and elimination of T(4), resulting in an increase in serum thyroid-stimulating hormone (TSH). In turn, TSH stimulates thyroid gland function, growth, and ultimately neoplasia. The dose-dependent effects of MEI on thyroid-follicular cell proliferation, a measure of thyroid gland growth, has not been reported. In the present study, it was hypothesized that MEIs that increase TSH would stimulate thyroid-follicular cell proliferation and the total number of thyroid-follicular cells. Male Sprague-Dawley rats were fed either a basal diet or a diet containing PB (at 300, 600, 1200, or 2400 ppm), pregnenolone-16alpha-carbonitrile (PCN) (at 200, 400, 800, or 1600 ppm), 3-methylcholanthrene (3MC) (at 50, 100, 200, or 400 ppm), or Aroclor 1254 (PCB) (at 25, 50, 100, or 200 ppm) for 7 days. PB and PCN increased TSH 65% and 95%, respectively, whereas 3MC and PCB did not appreciably affect TSH. PB and PCN increased thyroid-follicular cell proliferation 625% and 1200%, respectively, whereas 3MC and PCB did not have a consistent or appreciable effect. The total number of thyroid-follicular cells was not significantly increased by MEI treatment. In conclusion, small increases in TSH by PB and PCN produced large increases in thyroid-follicular cell proliferation, which did not result in a comparable increase in the total number of thyroid-follicular cells. Furthermore, MEI that did not increase TSH did not consistently or appreciably increase thyroid-follicular cell proliferation or cell number.

Animals↗

Sensitivity of thyroid gland growth to thyroid stimulating hormone (TSH) in rats treated with antithyroid drugs.

Antithyroid drugs and phenobarbital (PB) have been shown to promote thyroid tumors in rats. It has been proposed that increased thyroid-stimulating hormone (TSH) mediates the thyroid tumor-promoting effect of antithyroid drugs and PB, and is increased because of decreased thyroxine (T4) concentration. However, PB is much less effective than antithyroid drugs at increasing TSH. It has been proposed that small increases in serum TSH produced by PB treatment is sufficient to promote thyroid tumors. However, the level to which TSH must be increased to stimulate the thyroid gland has not been reported. Therefore, we have examined the effect of increasing serum TSH concentration on thyroid growth by measuring thyroid gland weight and thyroid follicular cell proliferation. Serum TSH concentrations were increased by feeding rats various concentrations of propylthiouracil (PTU) or methimazole (MMI) for 21 days. Serum total T4, free T4, total T3 (triiodothyronine), free T3, and TSH concentrations were measured by radioimmunoassay. Thyroid follicular cell proliferation was measured by autoradiography and expressed as a labeling index (LI). PTU and MMI treatments reduced total and free T4 more than 95% by day 21, whereas total and free T3 were reduced 60%. TSH, thyroid follicular cell proliferation and thyroid weight were increased 560%, 1400%, and 200%, respectively, by day 21. TSH was significantly correlated with thyroid weight and LI. Moderate increases in serum TSH of between 10 and 20 ng/ml increased the number of proliferating thyroid follicular cells, but had no effect on thyroid weight. These results support that small increases in serum TSH can be sufficient to stimulate thyroid follicular cell proliferation. Furthermore, thyroid follicular cell proliferation may be more useful than thyroid weight alone for assessing alterations in thyroid growth in rats treated with chemicals that produce only small to moderate increases in serum TSH.

Animals↗

Effects of phenobarbital, pregnenolone-16alpha-carbonitrile, and propylthiouracil on thyroid follicular cell proliferation.

Reduced thyroid hormone concentrations (T4 and/or T3) and increased thyroid-stimulating hormone (TSH) have been proposed to mediate the thyroid tumor promoting effects of hepatic microsomal enzyme inducers (MEI) and antithyroid drugs. TSH is known to stimulate thyroid gland function and growth, as well as neoplasia. Thyroid weight has been used as an indicator of thyroid gland growth in MEI studies, but little is known about the effects of these inducers on thyroid cell proliferation. Therefore, we determined the time-course of thyroid cell proliferation of rats treated with MEI, and with the antithyroid drug propylthiouracil (PTU). Male Sprague-Dawley rats were fed either a basal diet or a diet containing phenobarbitol (PB) (1200 ppm), PCN (500 ppm), or PTU (30 ppm) for 3, 7, 14, 21, 30, 45, 60, or 90 days. PB and PCN treatments did not affect T3, but PTU reduced T3 60%. PB and PCN treatments reduced T4 25%, whereas PTU treatment reduced T4 90%. PB and PCN treatments increased thyroid weight 80%, and PTU increased thyroid weight 500%. TSH was not appreciably altered in PB-treated rats, but was increased 75% and 830% in PCN- and PTU-treated rats, respectively. Thyroid cell proliferation was increased 260, 330, and 850% in rats treated with PB, PCN, or PTU, respectively, for 7 days, but returned to control levels by the 45th treatment day. In conclusion, treatment with MEI that produced mild increases in TSH resulted in dramatic increases in thyroid cell proliferation, which peaked after 7 days of treatment and then returned to control values. This result is similar to that of antithyroid drugs, which produce large increases in TSH. These findings may have important implications for the role thyroid follicular cell proliferation has in mediating the thyroid tumor promoting effects of MEI.

Animals↗

Discharging routine phacoemulsification patients at one week.

The reduction of surgically induced astigmatism and rapid refractive stabilisation after phacoemulsification have been well studied and often lead to reduced follow-up. In this prospective study we reviewed a cohort of 100 patients discharged with a refractive prescription at their 1 week post-operative appointment following routine sutureless phacoemulsification through a corneal or scleral section. The aim was to assess the incidence of late pathology and need for review. Eighty-eight patients attended for review between 3 and 4 months post-operatively, of whom 8 (9.1%) who had been symptomatic had already visited ophthalmic casualty. Nine (10.2%) benefited from the follow-up appointment: 4 were given a new refractive prescription that increased their Snellen visual acuity by 1 line; the other 5 were all symptomatic or had incidental findings. We feel that provided there is easy access to the eye department, early discharge with or without refraction is justifiable as those with surgically related pathology at any stage are symptomatic.

Emergency Service, Hospital↗

Systemic cytokine administration alters the histology of the eruption of lymphocyte recovery.

The eruption of lymphocyte recovery occurs after marrow ablative antineoplastic chemotherapy, with the earliest reappearance of lymphocytes in the peripheral circulation. The typical histopathologic findings are not specific, consisting of a perivascular lymphocytic infiltrate in the upper dermis with mild overlying epidermal changes. Since the initial report, 21 additional biopsy specimens from eruptions of lymphocyte recovery were obtained at our institution. Of these specimens, 18 displayed the expected findings while 3 specimens contained a relatively heavy lymphocytic infiltrate with nuclear pleomorphism and hyperchromasia. The majority of lymphocytes from the heavily inflamed tissues expressed CD3 and CD4; rare CD8+ cells were observed. The cells with large irregular nuclear contours displayed an "activated" phenotype, consisting of CD30, HLA-DR, and CD25, accounting for roughly 50% of the total infiltrate. The three patients from whom these specimens were obtained had received human recombinant cytokines in pharmacologic doses (2 granulocyte-macrophage colony stimulating factor, 1 interleukin-3). Three patients in this series also received human recombinant cytokines, but developed eruptions with the typical scant infiltrate of small lymphocytes. These findings extend the histologic spectrum of the eruption of lymphocyte recovery and suggest that the administration of human recombinant cytokines prior to marrow recovery may alter the appearance and phenotype of lymphocytes migrating into the skin.

Adult↗

Primary invasive cutaneous Microsporum canis infections in immunocompromised patients.

Two cases of primary invasive cutaneous infections caused by the zoophilic dermatophytic species Microsporum canis are presented. The first case occurred in a liver transplant recipient who was receiving immunosuppressive therapy. Multiple erythematous papules were seen on both legs, and a biopsy revealed invasive fungal hyphae. The second case was diagnosed in a human immunodeficiency virus-positive individual with a CD4 lymphocyte count of 81 mm3. Raised red nodules were seen on her scalp and face. Histopathology was consistent with bacillary angiomatosis, and in addition, invasive septate hyphae were observed. The two strains recovered from the biopsy specimens from both individuals had colony morphologies consistent with that of M. canis, but it was difficult to induce production of macroconidia. These cases serve to increase the awareness of this unusual infection, reinforce the need for cultures, and raise some interesting questions about the potential virulence of this dermatophyte species.

AIDS-Related Opportunistic Infections↗

Penicillin susceptibility testing of penicillinase producing Neisseria gonorrhoeae by the E test: a need for caution.

The penicillin MICs of 52 clinical isolates of penicillinase producing Neisseria gonorrhoeae (PPNG) and five reference strains were tested by agar dilution and the E test. All 52 PPNG were scored resistant (> or = 2 mg/L) by agar dilution whereas only 78.8% (41/52) and 82.7% (43/52) were classified as resistant by normal (0.016-256 mg/L) and low range (0.002-32 mg/L) E test MICs respectively. Isolates with an E test penicillin MIC > or = 0.19 mg/L should be checked by a specific test for beta-lactamase production.

Gonorrhea↗

Transgenic mice expressing human sickle hemoglobin are partially resistant to rodent malaria.

The polymorphic frequency of the gene for beta s-globin involved in the generation of sickle trait and sickle cell anemia in the human population is caused by the enhanced resistance of sickle trait individuals to Plasmodium falciparum malaria, as supported by epidemiologic and in vitro studies. However, the mechanism for the protective effect of sickle hemoglobin in vivo has not been fully defined. The generation of transgenic mice expressing high levels of human beta s- and alpha-chains has allowed us to study this phenomenon in vivo in an experimental model. We infected the transgenic beta s mice with two species of rodent malaria and found a diminished and delayed increase in parasitemia as compared with controls. This is in contrast to our previous studies involving the introduction of a beta A transgene, which does not alter the infection. The use of this model allowed us to address the question of the mechanism of protection against malaria in mice expressing sickle hemoglobin. We find that splenectomy of transgenic mice completely reverses the protection against Plasmodium chabaudi adami infection. The results reported have shown a relationship between the presence of the beta s gene product and partial resistance to malaria in an experimental model in vivo and shows that the spleen plays an important role in this protection.

Animals↗

Hepatitis B surface antigen binds to human serum albumin cross-linked by transglutaminase.

It has been postulated that polymerized human serum albumin may play a role in the infection of hepatocytes by hepatitis B virus, because both the envelope of hepatitis B virus (HBsAg) and hepatocytes exhibit binding activity for human serum albumin after cross-linking by glutaraldehyde. Since glutaraldehyde-dependent cross-linking of albumin molecules is not likely to occur in vivo, we considered the possibility that albumin may be polymerized by the action of transglutaminase enzymes present in plasma as activated factor XIII or released into plasma from tissues. Guinea pig liver transglutaminase covalently cross-linked human serum albumin molecules into dimers, trimers and polymers up to hexamers as shown by polyacrylamide gel electrophoresis in sodium dodecyl sulfate. HBsAg particles bound transglutaminase-cross-linked as well as glutaraldehyde-cross-linked human serum albumin as demonstrated by radioimmunoassay and immunoelectron microscopy. The binding was blocked by preincubation of HBsAg with transglutaminase- or glutaraldehyde-cross-linked human serum albumin, anti-HBs or monoclonal anti-pre-S2, but not by polymerized bovine or rat serum albumin or by monomeric human serum albumin. These data indicate that HBsAg particles contain specific binding sites for transglutaminase-cross-linked human serum albumin, but it remains to be determined whether the albumin polymers play a role in the attachment of hepatitis B virus to hepatocytes.

Animals↗

Xanthogranuloma: report on clinical and histologic findings in 64 patients.

Although xanthogranulomas are frequently encountered by pediatricians and dermatologists, data on the course of this tumor are restricted to several series with limited follow-up. We report on our experience with 64 patients whom we were able to identify from the surgical files. Our data support the currently held view that xanthogranulomas are generally benign, self-limited lesions. They may persist or continue to erupt for years, however, particularly in individuals who develop the first lesion after age 20 years.

Adolescent↗

Morphologic, immunohistochemical, and ultrastructural studies of the production of hepatitis B virus in vitro.

Well differentiated human hepatoblastoma Hep G2 cells after transfection with cloned hepatitis B virus (HBV) genomes produce replicative HBV DNA intermediates, high levels of HBsAg, HBeAg and HBcAg as well as mature Dane particles. To analyze the replication cycle of HBV, we studied the expression of HBV antigens with monoclonal antibodies by immunomorphologic methods in the transfected cells at various time intervals after plating. HBcAg and HBeAg were detected in the cytoplasm and less frequently in the nuclei of transfected cells. The percentage of positive cells increased with time after plating and reached a plateau of about 50% positive cells at 10 days. HBsAg and the large and middle HBsAg polypeptides were observed in the cytoplasm of transfected cells and a maximum of 20 to 30% positive cells was reached during the 3rd week after plating. Examination of viable cells in suspension revealed HBcAg/HBeAg and HBsAg expression on the cell surface. Electron microscopy demonstrated characteristic core particles in the nuclei and cytoplasm and Dane particles in cytoplasmic vesicles and culture media of transfected cells. The HBV producing cells did not show any evidence of a cytopathic effect. These observations demonstrate significant similarities between the HBV DNA transfected cells and infected human hepatocytes which support active HBV replication in vivo. Taken together, the results suggest that the cultured cells may serve as a model to elucidate a number of unsolved problems of the molecular and cellular pathobiology of hepatitis B.

Carcinoma, Hepatocellular↗

Antigenic characterization of the oligosaccharide portion of the lipooligosaccharide of nontypable Haemophilus influenzae.

Monoclonal antibodies (MAbs) directed against epitopes in the oligosaccharide portion of the lipooligosaccharide (LOS) of nontypable Haemophilus influenzae (NTHI) were used to characterize the LOS of this pathogen. Western blot (immunoblot) analysis with four LOS-specific MAbs and proteinase K-derived LOS preparations from 69 NTHI strains allowed the classification of these strains into nine LOS antigenic groups. The use of these MAbs in a more sensitive colony blot radioimmunoassay system together with these same NTHI strains identified 14 LOS antigenic groups. Extensive cross-reactivity was detected between the LOS epitopes of these NTHI strains and the LOS of H. influenzae type b. The epitopes recognized by these MAbs were not accessible to antibody on the surface of every strain. These LOS epitopes were also not stably expressed by NTHI growing in vitro; the observed frequency of LOS antigen variation ranged from 1 to 24% when large numbers of colonies of NTHI strains were screened for reactivity with the LOS-directed MAbs in the colony blot radioimmunoassay. This LOS antigenic variation was sometimes associated with alterations in the profile of the LOS molecule as resolved by dodecyl sulfate-polyacrylamide gradient gel electrophoresis followed by staining with silver. These data indicate that considerable antigenic diversity exists among NTHI strains with regard to the oligosaccharide epitopes in their LOS molecules.

Antibodies, Bacterial↗