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Biomedical subjects

J R Gordon

Publications and source records attributed to J R Gordon.

At least 19 recordsLinked to original sources

Induction of intra-articular tumour necrosis factor during acute inflammatory responses in equine arthritis.

Synovial fluid (SF) was collected at 2, 12 and 26 h post racing from 5 Thoroughbred horses (6 joints) with degenerative joint disease. The effects of serial arthrocentesis on SF TNF alpha levels were controlled for by testing, in parallel, site- and time-matched samples from clinically normal horses (i.e. without arthritis). A significant induction in TNF alpha bioactivity was detected in SF from arthritic joints (compared to the control joints) over the 26 h following racing. After subtraction of values for the arthrocentesis control SF, TNF alpha and protein levels and WBC and mononuclear cell numbers each peaked at 12 h in the SF from the degenerative joints, although there were no statistically significant correlations between any of these parameters. The presence in the SF of TNF alpha, as well as immunoreactive IL-1 beta and IL-6, was confirmed through use of specific anti-human cytokine IgG antibodies in neutralisation and slot-blot radioimmunoassays. TNF beta was not detected in the SF by slot-blot radioimmunoassay. These results suggest that a significant increase in intra-articular TNF alpha occurs during acute inflammatory arthritis in horses. The lack of correlation between infiltrating inflammatory cells and SF TNF alpha levels further suggests that the source of TNF alpha may be resident cells of the joint, as opposed to infiltrating cells found within the joint fluids. SF from clinically normal and arthritic joints of racing and hospitalised horses were also screened for bioactive TNF alpha.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Promotion of mouse fibroblast collagen gene expression by mast cells stimulated via the Fc epsilon RI. Role for mast cell-derived transforming growth factor beta and tumor necrosis factor alpha.

Chronic allergic diseases and other disorders associated with mast cell activation can also be associated with tissue fibrosis, but a direct link between mast cell mediator release and fibroblast collagen gene expression has not been established. Using in situ hybridization, we show that the elicitation of an IgE-dependent passive cutaneous anaphylaxis (PCA) reaction in mice results in a transient, but marked augmentation of steady state levels of type alpha-1 (I) collagen mRNA in the dermis. While peak levels of collagen mRNA expression in the skin are observed 16-24 h after mast cell activation, substantial numbers of dermal cells are strongly positive for collagen mRNA at 1 and 2 h after antigen challenge, before circulating inflammatory cells are recruited into the tissues. Furthermore, experiments in mast cell-reconstituted or genetically mast cell-deficient WBB6F1-W/Wv mice demonstrate that the increased expression of collagen mRNA at sites of PCA reactions is entirely mast cell dependent. In vitro studies show that the supernatants of mouse serosal mast cells activated via the Fc epsilon RI markedly increase type alpha-1 (I) collagen mRNA levels in mouse embryonic skin fibroblasts, and also upregulate collagen secretion by these cells. The ability of mast cell supernatants to induce increased steady state levels of collagen mRNA in mouse skin fibroblasts is markedly diminished by absorption with antibodies specific for either of two mast cell-derived cytokines, transforming growth factor beta (TGF-beta 1) or tumor necrosis factor alpha (TNF-alpha), and is eliminated entirely by absorption with antibodies against both cytokines. Taken together, these findings demonstrate that IgE-dependent mouse mast cell activation can induce a transient and marked increase in steady state levels of type alpha-1 (I) collagen mRNA in dermal fibroblasts and that mast cell-derived TGF-beta 1 and TNF-alpha importantly contribute to this effect.

Animals

Inhibition of endogenous dopamine release in amphibian retina by L-2-amino-4-phosphonobutyric acid (L-AP4) and trans-2-aminocyclopentane-1,3-dicarboxylate (ACPD).

The metabotropic glutamate receptor agonists 2-amino-4-phosphonobutyric acid (AP4) and trans-2-aminocyclopentane-1,3-dicarboxylate (ACPD) blocked light-stimulated dopamine release from Xenopus laevis retina. ACPD suppressed release in darkness but AP4 did not. AP4 blocked release stimulated in darkness by picrotoxin, a GABA-A receptor antagonist. The data suggest that regulation of dopamine release in Xenopus retina involves subpopulations of metabotropic glutamate receptors.

Aminobutyrates

Mast cell cytokines in allergy and inflammation.

Recent findings indicate that mast cells can influence biological responses through the production of cytokines and suggest that many allergic reactions and other biological processes may be regulated by a "mast cell-leukocyte cytokine cascade". This hypothesis proposes that certain biological responses are initiated by mast cell activation, resulting in the mast cell-dependent release of TNF-alpha and other cytokines which can promote the recruitment of eosinophils, neutrophils, and other effector cells. The recruited effectors then influence the progression of the response by providing additional sources of some cytokines which also can be elaborated by mast cells, as well as by producing other cytokines not known to be of mast cell origin.

Animals

Evaluation of dexamethasone for reduction of postsurgical sequelae of third molar removal.

Sixty patients with bilaterally symmetrical impacted third molars participated in this double-blind, within-subject study to quantify the effects of 4 mg of dexamethasone on reducing postsurgical sequelae. Each patient's surgery was staged by mouth side and completed in two appointments 5 to 6 weeks apart. A preoperative dose of dexamethasone given intravenously was randomized to mouth side and surgical appointment; sterile water served as a control. Major areas assessed in this study were facial swelling, pain, and trismus. No difference in swelling and daily pain was noted. However, trismus and global pain were significantly affected by the steroid. Patients had a daily postsurgical increase in incisal opening of 4 to 6 mm over the control side during the examination period. Patients evaluated pain by choosing the least painful side. By a greater than 4:1 margin, patients chose the steroid side as the least painful side. No increase in the rate or type of complications was detected between control and steroid sides.

Adolescent

Analyzing mast cell development and function using mice carrying mutations at W/c-kit or Sl/MGF (SCF) loci.

Mast cells have been implicated in a wide variety of biological responses, but identifying the nature and importance of the mast cell's specific contributions to these reactions has been difficult. W/Wv mice have mutations affecting the c-kit tyrosine kinase receptor which is encoded at the W locus and which is necessary for normal mast cell development. In W/Wv mice, the cells which ordinarily give rise to normal mast cell populations do not adequately respond to a major migration, survival, proliferation and maturation factor expressed in the microenvironments where mast cells ordinarily develop: the c-kit receptor ligand, SCF. As a result, W/Wv mice virtually lack tissue mast cells. However, adoptive transfer to W/Wv mice of immature mast cells derived in vitro from the bone marrow cells of the congenic normal (+/+) mice selectively repairs the mast cell deficiency of the W/Wv recipients. These "mast cell knock-in" mice can be used to analyze the expression of biological responses in tissues which differ only because they do or do not contain populations of mast cells. This approach permits identification and quantification of the specific contributions of the mast cell to biological responses expressed in the skin, gastrointestinal tract and other anatomical sites, and also greatly facilitates analysis of the mechanisms by which mast cells influence these responses.

Animals

Eosinophils from patients with blood eosinophilia express transforming growth factor beta 1.

The infiltration of eosinophils into tissues during pathologic responses is often associated with extracellular matrix alterations such as fibrosis. Transforming growth factor-beta 1 (TGF-beta 1) is a well-characterized multifunctional cytokine known to exert potent effects on the extracellular matrix. In this report, we showed the production of TGF-beta 1 by human eosinophils from patients with blood eosinophilia. Northern blot analysis using RNA isolated from eosinophils purified from a patient with the idiopathic hypereosinophilic syndrome (HES) detected the 2.5-kb TGF-beta 1 transcript. In situ hybridization and immunohistochemistry of leukocytes from two patients with HES and two patients with blood eosinophilia localized TGF-beta 1 messenger RNA (mRNA) and protein to eosinophils. No other cell type contained TGF-beta 1 mRNA by in situ hybridization, whereas other leukocytes contained detectable TGF-beta 1 protein by immunohistochemistry. Eosinophils from four normal donors contained little or no detectable TGF-beta 1 protein by immunohistochemistry, whereas eosinophils from two of these four normal donors labeled weakly for TGF-beta 1 mRNA by in situ hybridization. These results show that eosinophils in the peripheral blood of patients with blood eosinophilia can express TGF-beta 1, but that eosinophils in the blood of normal donors contained little or no TGF-beta 1.

Adult

Release of both preformed and newly synthesized tumor necrosis factor alpha (TNF-alpha)/cachectin by mouse mast cells stimulated via the Fc epsilon RI. A mechanism for the sustained action of mast cell-derived TNF-alpha during IgE-dependent biological responses.

Mast cell-associated mediators are generally classified into two groups: the preformed mediators, which are stored in the cells' cytoplasmic granules and are released upon exocytosis, and the newly synthesized mediators, which are not stored but are produced and secreted only after appropriate stimulation of the cell. We now report that tumor necrosis factor alpha (TNF-alpha)/cachectin represents a new type of mast cell-associated mediator, in that IgE-dependent mast cell activation results in the rapid release of preformed stores of the cytokine followed by the synthesis and sustained release of large quantities of newly formed TNF-alpha. We also demonstrate that challenge with specific antigen induces higher levels of TNF-alpha mRNA at skin sites sensitized with IgE in normal mice or mast cell-reconstituted genetically mast cell-deficient WBB6F1-W/W1' mice than at identically treated sites in WBB6F1-W/W1' mice that are devoid of mast cells. These findings identify mast cells as a biologically significant source of TNF-alpha/cachectin during IgE-dependent responses and define a mechanism whereby stimulation of mast cells via the FC epsilon RI can account for both the rapid and sustained release of this cytokine.

Animals

Cytokine production by mast cells and basophils.

Mast cells and/or basophils have been implicated in the expression of a wide variety of biological responses, including immediate hypersensitivity reactions, host responses to parasites and neoplasms, angiogenesis, tissue remodeling, and immunologically non-specific inflammatory and fibrotic conditions. Recent findings suggest that an important mechanism by which mast cells influence such biological responses is through the production of a broad panel of multifunctional cytokines. In contrast, the extent to which basophils can produce cytokines is uncertain.

Animals

Recruitment of neutrophils during IgE-dependent cutaneous late phase reactions in the mouse is mast cell-dependent. Partial inhibition of the reaction with antiserum against tumor necrosis factor-alpha.

Much of the clinically important pathology associated with IgE-dependent disorders is thought to reflect the actions of the blood-borne leukocytes recruited during these responses. To evaluate the extent to which mast cells are responsible for the leukocyte infiltration associated with IgE-dependent cutaneous reactions, we attempted to elicit these responses in normal mice, genetically mast cell-deficient W/Wv mice, and in W/Wv mice selectively repaired of their mast cell deficiency by the intradermal injection of cultured mast cells derived from the congenic normal (+/+) mice. We found that the tissue swelling associated with IgE-dependent passive cutaneous anaphylaxis reactions developed rapidly and diminished markedly from 2 to 4 h after antigen challenge, but remained detectable for at least 24 h after elicitation of the responses. Infiltration of leukocytes (predominantly neutrophils) also occurred at these sites, but reached maximal levels 6-12 h after antigen challenge, persisted at high levels for 24 h, and largely waned by 48 h. Virtually all of the tissue swelling and leukocyte infiltration associated with IgE-dependent cutaneous reactions was mast cell dependent. Intradermal injection of 40 U of recombinant murine TNF-alpha (rmTNF-alpha) elicited neutrophil infiltration similar in magnitude and kinetics to that observed after IgE-dependent mast cell degranulation. A rabbit anti-rmTNF-alpha (R anti-rmTNF-alpha) antiserum, which was able to inhibit 84% of the neutrophil infiltration observed after i.d. injection of rmTNF-alpha, inhibited IgE-, and mast cell-dependent leukocyte infiltration by 47 +/- 7% in three separate experiments. These findings indicate that TNF-alpha contributes to mast cell-dependent recruitment of leukocytes during IgE-dependent cutaneous late phase reactions, but suggest that other mast cell-associated mediators probably also contribute to this response.

Animals

Factors V and VII anticoagulant activities in the salivary glands of feeding Dermacentor andersoni ticks.

The salivary glands of Dermacentor andersoni ticks possess anticoagulant activities that can alter the clotting time of rabbit whole blood. Salivary gland extracts from female ticks inhibit both the intrinsic and extrinsic coagulation systems, and maximal activities against both pathways occur when the ticks attain about 250 mg feeding weight. These anticoagulants are directed against both coagulation factors V and VII, but they do not affect factors II or X. Despite this salivary anticoagulant activity, heavily tick-infested rabbits suffer no visible alteration of their peripheral blood coagulability and have no detectable circulating fibrin degradation products, suggesting that the ticks do not secrete a factor with fibrinolytic activity.

Animals

Nonspecific activation of complement factor 5 by isolated Dermacentor andersoni salivary antigens.

Salivary gland extracts from feeding Dermacentor andersoni ticks contain an activity that activated both rabbit and human complement to produce inflammatory cell chemotactic activity. Purified salivary antigens (SGA), isolated from the glands of female ticks with anti-saliva immunoglobulins from tick-resistant rabbits, also induced chemotactin generation. It has been demonstrated previously that the intradermal injection of such SGA into normal animals induces nonspecific inflammatory reactions that mimic the responses accompanying tick feeding on normal animals. The chemotactic activity generated in serum by SGA was mediated either directly or indirectly by C5, as it could be abrogated by antisera directed against C5 but not by anti-C3 sera. That the in vitro generation of C5 by tick salivary proteins has relevance to tick feeding is suggested by the fact that many of the host inflammatory responses elicited by ixodid tick feeding also are effects known to be elicited by C5.

Animals

Mast cells as a source of both preformed and immunologically inducible TNF-alpha/cachectin.

Tumour necrosis factor-alpha (TNF-alpha)/cachectin is a multifunctional cytokine that has effects in inflammation, sepsis, lipid and protein metabolism, haematopoiesis, angiogenesis and host resistance to parasites and malignancy. TNF-alpha was first described in activated macrophages, but certain mouse or rat mast cell populations (reviewed in refs 4,5) and some in vitro-derived human cells with cytochemical features of mast cells-basophils may also contain products similar to TNF-alpha. Here we present evidence that resident mouse peritoneal mast cells constitutively contain large amounts of TNF-alpha bioactivity, whereas cultured, immature mast cells vary in their TNF-alpha content. IgE-dependent activation of cultured or peritoneal mast cells induces extracellular release of TNF-alpha and augments levels of TNF-alpha messenger RNA and bioactivity. These findings identify mouse mast cells as an important source of both preformed and immunologically inducible TNF-alpha, and suggest that release of TNF-alpha by mast cells may contribute to host defence, the pathophysiology of allergic diseases and other processes dependent on TNF-alpha.

Animals

Phorbol 12-myristate 13-acetate-induced development of functionally active mast cells in W/Wv but not Sl/Sld genetically mast cell-deficient mice.

The normal skin and other tissues of adult genetically mast cell-deficient WBB6F1-W/Wv or WCB6F1-Sl/Sld mice contain less than 1.0% the number of mast cells present in the corresponding tissues of the congenic normal (+/+) mice. We previously reported that mature dermal mast cells developed locally in the skin of W/Wv, but not Sl/Sld, mice at sites of chronic idiopathic dermatitis. We now report that the repeated application of phorbol 12-myristate 13-acetate (PMA) to the ear skin of either W/Wv or +/+ mice induces both dermatitis and a striking and dose-dependent increase in the number of dermal mast cells. The number of dermal mast cells at sites treated for 6 weeks with 5 micrograms PMA, three times per week, was 39 +/- 7/mm2 and 305 +/- 34/mm2 for W/Wv and +/+ mice, respectively; the corresponding values for vehicle-treated skin were 1.5 +/- 1.0/mm2 and 145 +/- 8/mm2, respectively. The PMA-induced dermal mast cells in W/Wv mice appeared mature by morphology, stained with the heparin-binding fluorescent dye, berberine sulfate, and were competent to express IgE-dependent passive cutaneous anaphylaxis responses. The development of mast cells was a local, not systemic, effect of PMA treatment. PMA treatment also induced dermatitis in both WCB6F1-Sl/Sld and +/+ mice, but was associated with increased numbers of dermal mast cells only in the WCB6F1(-)+/+ mice. PMA treatment had no detectable effect on the ability of bone marrow-derived cultured mast cells to survive in the skin of Sl/Sld mice. These findings establish a convenient model system for analyzing factors associated with the development of endogenous populations of mast cells in genetically mast cell-deficient W/Wv mice.

Administration, Cutaneous

Mast cells as a source of multifunctional cytokines.

Mast cells have been implicated in the expression of a wide variety of biological responses, including immediate hypersensitivity reactions, host responses to parasites and neoplasms, immunologically non-specific inflammatory and fibrotic conditions, angiogenesis, and tissue remodeling and wound healing. However, the molecular basis for the action of the mast cell in many of these responses is obscure. In this review, John Gordon, Parris Burd and Stephen Galli suggest that the production of a broad panel of multifunctional cytokines may represent an important mechanism by which mast cells influence physiological, immunological and pathological processes.

Animals

Schistosoma mansoni: analysis of the humoral and cellular basis of resistance in guinea-pigs vaccinated with radiation-attenuated cercariae.

This study addresses the humoral and cellular basis of specific acquired immunity in the guinea-pig irradiated vaccine model of schistosomiasis mansoni. Rodents vaccinated with 500 gamma-irradiated cercariae and then splenectomized 4.5 weeks later showed a 33% reduction in resistance to challenge as compared to vaccinated animals or vaccinated/sham splenectomized controls. Serum harvested from once vaccinated individuals conferred modest levels of resistance upon naive recipients in some experiments, but transfer was not achieved consistently. Serum from vaccinated and thrice boosted rodents (Vbbb) routinely transferred around 45% immunity, however, provided it was given in 4 ml aliquots on day 9 post-challenge; Vbbb serum thus transferred 50% of donor immunity. Interestingly, multiple doses of this protective serum given on and either side of day 9 did not enhance the protection achieved with a single 4 ml aliquot. Neither peripheral lymph node cells nor splenocytes from the polyvaccinated serum donors were able to transfer resistance to recipient guinea-pigs and they failed to augment the protection achieved with Vbbb serum. Foot-pad testing revealed no correlation between delayed hypersensitivity responses and immunity to challenge in vaccinated guinea-pigs. Although polyvaccine guinea-pig serum successfully protected homologous recipients, it failed to protect mice when administered either at the time of challenge (the optimal schedule for transfer of polyvaccine mouse serum), or around day 9 (the optimal schedule for guinea-pigs). Similarly, guinea-pigs could not be protected with polyvaccine rat serum that conferred 75% resistance upon naive recipient rats.

Animals

Interleukin 3-dependent and -independent mast cells stimulated with IgE and antigen express multiple cytokines.

In response to IgE and specific multivalent antigen, mast cell lines (both growth factor-dependent and -independent) induce the transcription and/or secretion of a number of cytokines having a wide spectrum of activities. We have identified IL-1, IL-3, IL-5, IL-6, IFN-gamma, GM-CSF, JE, MIP1 alpha, MIP1 beta, and TCA3 RNA in at least two of four mast cell clones. The production of these products (except JE) is activation-associated and can be induced by IgE plus antigen. In selected instances cytokine expression can also be induced by activation with Con A or phorbol ester plus ionophore, albeit to levels less than those observed with IgE plus antigen. In addition, long-term mast cell clones and primary cultures of bone marrow-derived mast cells specifically release IL-1, IL-4, and/or IL-6 bioactivity after activation. These findings suggest that in addition to their inflammatory effector function mast cells may serve as a source of growth and regulatory factors. The relationship of mast cells to cells of the T lymphocyte lineage is discussed.

Animals

Mast cells: immunologically specific effectors and potential sources of multiple cytokines during IgE-dependent responses.

Mast cells are critical effectors in many IgE-dependent responses, and the numbers and phenotype of certain mast cell populations can be influenced, through IL-3 and IL-4, by the same T cells that regulate IgE production. However, IgE can interact with cells other than mast cells, and different mast cell populations express significant variation in multiple important aspects of their phenotype, including mediator content and responses to cytokines and stimuli of activation. As a result it may be difficult to define the unique contributions of mast cells to IgE-dependent reactions. One approach for analysing the roles of various mast cell populations in individual biological responses is to attempt to elicit these reactions in mice in which the presence or absence of specific mast cell populations can be regulated experimentally. We have used genetically mast cell-deficient and mast cell-reconstituted mice to demonstrate that mast cells provide essential effector function in certain IgE-dependent responses involving the skin, stomach or lungs but are not necessary for the pulmonary alterations and death associated with active anaphylaxis. Similar approaches can be used to investigate the biological significance of the production, by mast cells stimulated with IgE and specific antigen, of cytokines similar or identical to IL-1, IL-3, IL-4, IL-5, IL-6, TNF-alpha/cachectin, IFN-gamma, GM-CSF, JE, MIP-1 alpha, MIP-1 beta and TCA3.

Animals