Search PubMed⌕ Search

Biomedical subjects

P Scott

Publications and source records attributed to P Scott.

At least 55 records · Page 3Linked to original sources

Regulation of the production of soluble IL-4 receptors in murine cutaneous leishmaniasis. The roles of IL-12 and IL-4.

These studies were undertaken with the purpose of elucidating the key signals involved in the regulation of the production of soluble interleukin-4 receptors (sIL-4R) in mice during Th1 and Th2 responses to infection with the parasite Leishmania major. Our results showed that the production of sIL-4R was consistently higher in lymph node cell cultures from animals mounting a predominant Th2 response (BALB/c mice), and that sIL-4R production paralleled that of IL-4 in both mouse strains, even in the presence of a dominant Th1 response (C3H/FeJ mice). Consistently, administration of anti-IL-12 antibodies to infected C3H/ FeJ mice induced a switch from a Th1- to a Th2-type response and resulted in enhanced production of sIL-4R. Addition of rIL-12 to splenic cell cultures, however, was found not to have a direct effect on sIL-4R production induced by IL-4 or T cell mitogens. Moreover, the production of sIL-4R appears to be little influenced by Th1-produced cytokines, inasmuch as recombinant interferon-gamma or supernatants derived from antigen-stimulated Th1 clones did not affect the production of sIL-4R by activated splenic cultures. Despite its correlation with Th2 responses, the presence of IL-4 was not an absolute requirement for the up-regulation of the expression of sIL-4R because increased levels could be induced on cells obtained from IL-4-/- mice. These results indicate that, although enhanced sIL-4R production is a feature related to the activation and/or generation of Th2 responses, it is not absolutely dependent on IL-4 or directly inhibited by IL-12 or Th1 cytokines.

Animals↗

The Effect of Elevated Concentrations of Fructose 2,6-Bisphosphate on Carbon Metabolism during Deacidification in the Crassulacean Acid Metabolism Plant Kalanchöe daigremontiana.

In C(3) plants, the metabolite fructose 2,6-bisphosphate (Fru 2,6-P(2)) has an important role in the regulation of carbon partitioning during photosynthesis. To investigate the impact of Fru 2,6-P(2) on carbon metabolism during Crassulacean acid metabolism (CAM), we have developed an Agrobacterium tumefaciens-mediated transformation system in order to alter genetically the obligate CAM plant Kalanchöe daigremontiana. To our knowledge, this is the first report to use genetic manipulation of a CAM species to increase our understanding of this important form of plant metabolism. Transgenic plants were generated containing a modified rat liver 6-phosphofructo-2-kinase gene. In the plants analyzed the activity of 6-phosphofructo-2-kinase ranged from 175% to 198% of that observed in wild-type plants, resulting in Fru 2,6-P(2) concentrations that were 228% to 350% of wild-type plants after 2 h of illumination. A range of metabolic measurements were made on these transgenic plants to investigate the possible roles of Fru 2,6-P(2) during Suc, starch, and malic acid metabolism across the deacidification period of CAM. The results suggest that Fru 2,6-P(2) plays a major role in regulating partitioning between Suc and starch synthesis during photosynthesis. However, alterations in Fru 2,6-P(2) levels had little effect on malate mobilization during CAM fluxes.

Journal Article↗

Suggestive evidence for a susceptibility gene near the vitamin D receptor locus in idiopathic calcium stone formation.

Calcium is the principal crystalline constituent in up to 80% of kidney stones. Epidemiologic studies have suggested that genetic predisposition plays a major role in the etiology of this condition. This study evaluates by a candidate-gene approach whether the vitamin D receptor (VDR) locus on chromosome 12q12-14 is implicated in idiopathic hypercalciuria and calcium nephrolithiasis in a cohort of 47 French Canadian pedigrees. These comprised 54 sibships with a total of 303 pairs of siblings concordant for > or =1 stone episode. Evidence is provided for linkage to nephrolithiasis with microsatellite marker D12S339 (near the VDR locus, P = 0.01), as well as with flanking markers (D12S1663: P = 0.03 and D12S368: P = 0.01). Inclusion of unaffected sibs in the analyses also supported evidence for linkage. Quantitative trait linkage analysis of urinary calcium excretion yielded linkage to some, but not all, markers. This appears to be the first study to suggest linkage for idiopathic calcium stone formation.

Adult↗

Host susceptibility factors to cutaneous leishmaniasis.

The host-pathogen relationship is the focus of many different studies which use a variety of disease models and different pathogens. Immunological studies in the mouse using the intracellular parasite Leishmania have helped define several aspects of host-pathogen interactions. Resistance to Leishmania is dependent on the development of CD4+ Th1 cells which promote an effective cell mediated immune response. Production of the cytokine IFN-gamma during this immune response activates macrophages enabling them to kill the parasite and control the infection. In contrast, susceptibility to this parasite is characterized by a Th2 response which produces predominantly IL-4. This cytokine promotes high antibody titers directed towards the parasite but does not activate macrophages for parasite killing. This host response results in high parasite numbers and a progressive increase in lesion size. The mouse model of leishmaniasis has been extremely useful in gaining an understanding of the immunological factors important in determining T cell commitment into Th1 or Th2 populations during an in vivo immune response.

Animals↗

Control of Leishmania major infection in mice lacking TNF receptors.

TNF participates in the induction of nitric oxide (NO) production and macrophage activation, leading to the elimination of intracellular pathogens. We previously found that TNF receptor p55-deficient mice (TNFRp55-/-) control replication of Leishmania major in vivo but fail to resolve their lesions. Here we report that mice lacking the p75 receptor (TNFRp75-/-) or both receptors (TNFRp55p75-/-), also control parasite replication, albeit mice lacking the p55 receptor (either TNFRp55-/- or TNFRp55p75-/-) are delayed in their elimination of L. major compared with controls. All TNF receptor-deficient mice developed a Thl-type immune response and up-regulated inducible NO synthase (iNOS) mRNA gene expression in lesions during infection. Thus, neither TNF receptor appears to be absolutely required for NO production or elimination of L. major in vivo. In vitro, however, while macrophages from naive TNFRp75-/- mice could be activated to produce NO and kill L. major, we observed a defect in NO production and parasite killing by resident peritoneal macrophages from naive TNFRp55-/- or TNFRp55p75-/- mice. However, when macrophages were elicited with leishmanial Ag from 4-wk-infected TNFRp55-/- or TNFRp55p75-/- mice, they produced NO and were leishmanicidal. These data suggest that the TNFRp75 plays no essential role in L. major infection in mice and that the p55 receptor may be required for optimal macrophage activation. However, the results also show that a mechanism exists by which macrophages can be primed in vivo during L. major infection to produce NO and kill L. major in the absence of signaling through either of the TNF receptors.

Animals↗

Anterior compartment syndrome of the leg, a clinical-anatomical perspective: a case report.

Decompression of the fascial compartments of the leg is a fairly common procedure that is carried out therapeutically and prophylactically. It is submitted that the guidance offered by the average surgical texts are unclear and imprecise. A junior surgeon would be led to believe that all four compartments require decompression, whereas it is distinctly uncommon for compartments other than the anterior to suffer compression. Anatomic reasons are offered for this predilection. The incisions advised often extend the full length of the leg; not only is this unnecessary but considerable morbidity may result. A case report is presented which underlines the result of an ill placed incision and unfamiliarity with the detailed anatomy of the anterolateral leg muscles. An incision is suggested which is very unlikely to lead to failure to decompress and which should avoid complications.

Adult↗

The role of IL-12 in the maintenance of an established Th1 immune response in experimental leishmaniasis.

IL-12 initiates the development of cell-mediated immunity by promoting the differentiation of naive T cells into the Th1 phenotype, and is essential in the development of a Th1 immune response to the intracellular protozoan parasite, Leishmania major. The present study investigated whether IL-12 is also required for the maintenance and effector function of an established Th1 immune response in L. major-infected mice. While neutralization of IL-12 compromised the ability of a leishmanial antigen-reactive Th1 cell clone to produce IFN-gamma in vitro, lymph node cells taken from 2-week L. major-infected mice were able to secrete IFN-gamma in an IL-12-independent manner. However, when a short-term T cell line was established in vitro from lymph node cells, the production of IFN-gamma again became IL-12 dependent. These results suggest that other factors may compensate for IL-12 in vivo in promoting IFN-gamma production during L. major infection. To directly assess if IL-12 was required in vivo for resistance to L. major, we studied the effect of IL-12 neutralization on both a primary and secondary L. major infection in C3H mice. L. major infection in C3H mice is characterized by the development of a small lesion that heals by 8 weeks, and these animals are resistant to reinfection. As previously reported, administration of anti-IL-12 monoclonal antibody (mAb) during a primary infection led to severe disease. However, mice that had healed from a primary infection with L. major and were treated with anti-IL-12 mAb were as resistant as control animals. These findings suggest that once Th1 cells have developed, their effector function in vivo is independent of IL-12, and that this independence is not due to an intrinsic property of the T cell, but to the microenvironment created by the infection.

Animals↗

Differentiation, regulation, and death of T helper cell subsets during infection with Leishmania major.

The development and regulation of specific types of immune responses are dependent on understanding the biology of T helper cell (Th cells) subsets. We primarily use murine infections with the intracellular protozoan parasite, Leishmania major, as our model to investigate Th1/2 cell biology, where following infection, some inbred strains of mice develop a Th1 response and heal, but others develop a Th2 response and fail to control parasite replication. We focus on three major questions: 1. What factors are involved in Th cell development? 2. How can we switch an established immune response from one type to another? 3. How are immune responses downregulated once the parasites are eliminated? We demonstrated that interleukin (IL)12 promotes Th1 cell development and that IL12 is an effective adjuvant for cell-mediated immunity. We are now defining factors regulating the expression of the IL12 receptor and the importance of CD28-B7 interactions for the development of vaccine-induced immunity. We also found that IL12, in combination with chemotherapy, abrogates a Th2 response. These results have implications for treatment of infectious diseases, autoimmunity, and allergy. Currently, we are studying how such switching occurs. Finally, we found that TNFRp55-/- mice are unable to heal leishmanial lesions in spite of eliminating the parasites. This result suggests that the tumor necrosis factor receptor (TNFR) p55 plays a critical, and previously unrecognized, role in downregulating pathogen-induced inflammatory responses. Our current hypothesis is that the TNFRp55 is required for induction of cell death in these lesions, and that in its absence, lymphocytes accumulate at the site of inflammation.

Animals↗

Cytogenetic analysis of a parachordoma.

We report the cytogenetic and histopathological findings in a 7-year-old female child with an intranasal tumor that is most consistent with a parachordoma. Karyotypic analysis of the tumor revealed clonal numerical and structural chromosome abnormalities. Seven cells displayed recurrent changes: der(2)t(2;4), del(3q), and the loss of chromosomes 9, 10, 20, and 22. Four cells showed a loss of chromosome 17. To the best of our knowledge, these are the first clonal chromosome abnormalities described in parachordoma.

Child↗

Prader-Willi syndrome and psychotic symptoms: 1. Case descriptions and genetic studies.

Six people with Prader-Willi syndrome (PWS) who developed psychoses are described. Along with other literature reviewed in the present paper, the results imply an association between PWS and psychotic symptoms. Genetic studies were possible in five cases and SNRPN expression was examined in three cases. Maternal uniparental disomy and 15q11q13 deletions were found, demonstrating that psychotic symptoms are not associated with a single type of genetic abnormality.

Adolescent↗

Differential regulation of the interleukin-12 receptor during the innate immune response to Leishmania major.

Previous studies have shown the central role of interleukin 12 (IL-12) in the development of resistance to Leishmania major infection in C3H mice. We now show that during the innate immune response the lymph node cells of L. major-infected C3H mice upregulate the IL-12 receptor on CD4(+), CD8(+), and B220(+) cells. An increase in the ability of the lymph node cells to bind IL-12 correlates with 9.3- and 4.6-fold increases in the mRNA expression levels of the IL-12Rbeta1 and -beta2 subunits, respectively. In contrast, BALB/c mice, which are susceptible to L. major infection, have no increase in the ability of the lymph node cells to bind IL-12 and correspondingly smaller increases in the mRNA expression levels of the IL-12Rbeta1 and -beta2 subunits of 2- and 1.5-fold, respectively. Neutralizing IL-4 and the administration of exogenous IL-12 upregulate IL-12R expression in BALB/c mice, while the neutralization of IL-12 in C3H mice blocks increased IL-12 receptor expression. These experiments reveal an important role for the regulation of the IL-12 receptor during the innate immune response after infection of mice with a pathogen.

Animals↗

Acute stroke teams: results of a national survey. National Acute Stroke Team Group.

BACKGROUND AND PURPOSE: The sensitivity of the brain to brief periods of profound ischemia or prolonged periods of modest ischemia mandates an aggressive approach to acute stroke care. Past studies have shown that many stroke patients do not receive acute care in an urgent and timely fashion. The formation of acute stroke teams (AST) is one approach that can be used to accelerate the delivery of acute stroke care. METHODS: We conducted a survey of major stroke program directors and neurovascular experts throughout the United States. The survey focused on issues related to the presence of AST, their staffing, operational features, and utilization at the surveyed programs and hospitals. RESULTS: Surveys were returned from 45 of 60 centers. Ninety-one percent of the respondents indicated that they currently had an AST, with 66% formed between 1995 and 1997. Staffing of ASTs consisted of attending physicians (95%), nurses or study coordinators (73%), fellows (49%), and residents (46%). In almost all cases (98%), the AST was led by a neurologist or neurosurgeon, and 98% of the ASTs operated on a 24-hours-per-day, 7-days-per-week basis. The most common call frequency was 2 to 3 times per week (41%), followed by >5 calls per week (29%). In 59% of the cases, the teams cost </=$5000 per year to operate. The vast majority (78%) of ASTs responded within 10 minutes of receiving a call. CONCLUSIONS: The formation of ASTs is quite common at the surveyed programs. Although staffing patterns vary, most teams are led by neurologists or neurosurgeons. The utilization of ASTs varies by facility, but they appear to be useful, with only a modest incremental financial cost. The use of ASTs may assist in providing more rapid medical care to stroke patients and increase the use of some acute therapies. Extension of the AST concept to nonacademic hospitals appears feasible.

Academic Medical Centers↗

Hypoxia enhances cellular proliferation and inositol 1,4, 5-triphosphate generation in fibroblasts from bovine pulmonary artery but not from mesenteric artery.

When pulmonary hypertension occurs in the face of hypoxia there is remodeling of all three layers of the pulmonary vessels, but in particular, there is an increase in number of adventitial fibroblasts. Hypoxia causes vasoconstriction in the pulmonary circulation and vasodilation in the systemic circulation. We hypothesized that there are fundamental differences in oxygen sensing and cell signaling between systemic and pulmonary artery cells in response to hypoxia. Here, we determined the effect of hypoxia either alone or in combination with known growth factors such as serum, endothelin-1 (ET-1), and platelet-derived growth factor (PDGF) on the proliferative responses of bovine pulmonary artery and mesenteric artery fibroblasts. Fibroblasts were obtained from primary cultures. Growth was assessed by [3H]thymidine incorporation. Inositol 1,4,5-triphosphate (IP3) generation was measured using a competitive binding assay. Hypoxia alone increased proliferation of pulmonary artery fibroblasts (611 +/- 24%), but not in those from the mesentery. Furthermore, hypoxia had the effect of increasing the replicative response of pulmonary fibroblasts to serum and PDGF, but no change was observed in the mesenteric cells. ET-1 had no effect on growth of either cell type. PDGF gave rise to a significant elevation in IP3 production under hypoxic conditions in the pulmonary artery cells (234%), but not in the mesenteric cells. ET-1 caused no change in IP3 production in any cell type. These data suggest that hypoxia sensitizes pulmonary artery fibroblasts to the proliferative effect of mitogens through a pathway that is not present, or is present but repressed, in the mesenteric cells.

Analysis of Variance↗