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S Gordon

Publications and source records attributed to S Gordon.

At least 289 records · Page 16Linked to original sources

Macrosialin, a mouse macrophage-restricted glycoprotein, is a member of the lamp/lgp family.

Macrosialin is a heavily glycosylated transmembrane protein of 87-115 kDa, highly and specifically expressed by mouse tissue macrophages, and to a lesser extent by dendritic cells. We have isolated cDNA clones encoding macrosialin from a thioglycollate-elicited peritoneal macrophage cDNA library by transient expression in COS cells and panning with the anti-macrosialin monoclonal antibody FA/11. A single 1.3-kilobase macrosialin transcript was detected in both untreated and phorbol 12-myristate 13-acetate-stimulated RAW cells. The cDNA sequence predicts a type I integral membrane protein of 326 residues with a heavily glycosylated extracellular domain of 306 residues containing nine potential N-linked glycosylation sites and numerous potential O-linked glycosylation sites. The extracellular domain consists of two distinct regions, separated by an extended 12 residue proline-rich hinge; a membrane-distal mucin-like domain of 89 residues containing short peptide repeats and consisting of 44% serine and threonine residues; and a membrane proximal domain of 170 residues, which has significant sequence homology to a family of lysosomal associated glycoproteins known as the lamp-1 group. Macrosialin is the murine homologue of the human macrophage glycoprotein CD68 (72% identity, 80% similarity). Both proteins are preferentially expressed by macrophages and share the same bipartite structure having a mucin-like domain and a domain common to the lamp family. Macrosialin and CD68 are the first examples of a lamp family protein with a restricted cell-type-specific expression. They may have evolved from the lamps to carry out specialized functions in dedicated phagocytic cells.

Amino Acid Sequence↗

Urinary hydroxypyridinium crosslinks of collagen as markers of bone resorption and estrogen efficacy in postmenopausal osteoporosis.

Estrogen deficiency-induced bone loss has been associated with accelerated bone turnover. Levels of some biochemical markers, such as serum osteocalcin (BGP), tartrate-resistant acid phosphatase (TRAP), and urinary hydroxyproline (OHP), have been shown to be related to the rate of bone turnover. They may therefore be useful in identifying the individual at risk for osteoporosis and monitoring the efficacy of the treatment. Two recently discovered markers, urinary pyridinoline (PYD) and deoxypyridinoline (DPD), are apparently directly related to bone matrix degradation and may be more accurate markers of bone resorption than OHP or TRAP. To evaluate the effects of menopause, osteoporosis, and estrogen replacement on the excretion of these new markers, we measured the levels of PYD and DPD and other biochemical markers of bone turnover in four groups of women, premenopausal healthy (PRE), postmenopausal healthy (POST), postmenopausal osteoporotic (UTO), and postmenopausal osteoporotic with estrogen treatment (ETO). Significant increases in PYD, DPD, BGP, TRAP, and OHP were found in POST and UTO groups compared with PRE. These increases were blunted by estrogen treatment when the levels of each of the markers returned to PRE levels. When comparing POST and UTO groups, significant increases were observed in UTO only for PYD, DPD, and urinary calcium but not for OHP, BGP, or TRAP. With subgroups matched for age and years from menopause, only DPD discriminated between POST and UTO. Indices of bone formation covaried with markers of bone resorption in the total population.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid Phosphatase↗

Analysis of rat urine proteins and allergens by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and immunoblotting.

BACKGROUND: In rats, urine has been identified as a major source of the allergens that cause laboratory animal allergy, an important occupational health problem. METHODS AND RESULTS: Urinary proteins and allergens of Wistar rats were studied by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and immunoblotting. Proteins excreted by male and female rats during puberty were similar and of low molecular weight. In adulthood, moderate increases in diffuse staining of 26 and 21 kd occurred in female urine. In males the 17 kd protein increased dramatically and the 23 and 21 kd proteins moderately. The urine excretion of high-molecular-weight proteins (75 to 63 kd) increased with age in males (females not studied). Immunoblot studies with six sera showed allergens in urine of male and female rats of all ages, three of which were present in all urine (75, 68, and 21 kd). Three allergens (17, 16, and 15 kd) in female urine may be allergenically similar to the 17 kd allergen in adult male urine. Adult male urine allergens were studied further with sera from 83 rat-hypersensitive subjects. Major allergens were identified at 23, 21, and 17 kd, and all sera had IgE to one or more of these proteins. Twenty-seven percent had IgE to 68 and 63 kd allergens. Minor allergens were identified at 75, 51, and 44 kd. CONCLUSIONS: Rat urine is an important source of the major allergens associated with rat hypersensitivity. Age and sex markedly influence the protein and allergenic constituents of rat urine.

Aging↗

HIV-1 pseudotype virus containing a Cocal virus genome and an HIV envelope: construction, assay and use.

A method is described for the production and assay of pseudotype viruses between human immunodeficiency virus type 1 (HIV-1) and Cocal virus (COV), containing an HIV-1 envelope and a COV genome (COV(HIV)). COV(HIV) pseudotype virus is a useful tool for the investigation of a variety of questions regarding HIV entry into susceptible cells, including steps in virus binding, fusion, and internalization, and the role of molecules which inhibit entry. COV, a rhabdovirus closely related to vesicular stomatitis virus (VSV), replicated and caused cytopathic effect in primary cultures of human peripheral blood lymphocytes (PBLs) and monocyte-derived macrophages (MDM), and in human cell lines of lymphocytoid or monocytoid origin, making it an ideal candidate for pseudotype production. 174XCEM cells, which were permissive for selected macrophage-tropic strains as well as most lymphocyte-tropic strains of HIV-1, were used to produce stocks of putative pseudotype virus. To neutralize parental COV in these stocks, a rabbit antiserum was produced which had a neutralization index of > 10(7) at a dilution of 1:100. Using these methods, pseudotype viruses were produced with a titer of about 10(4) PFU per ml; these same stocks contained HIV-1 at a titer of about 10(5) TCD50 per ml and COV at a titer of about 10(8) PFU per ml. CD4-expressing HeLa cells were used to assay pseudotype stocks made with lymphocyte-tropic strains of HIV-1. The authenticity of the pseudotype stocks was validated by several controls, including their failure to register on congenic CD4-negative HeLa cells and their inhibition by monoclonal anti-CD4 antibodies such as Leu 3a.

Animals↗

Macrophages and inflammation in the central nervous system.

Acute inflammation plays an important role in host tissue defense against injury and infection, and also subsequent tissue repair. In the central nervous system parenchyma, following many types of insults, the acute inflammatory response to rapid neuronal degeneration or challenge with inflammatory substances differs dramatically from that of other tissues. The rapid recruitment of neutrophils is virtually absent and monocytes are only recruited after a delay of several days. It appears that the microenvironment of the central nervous system has evolved mechanisms to protect it from the potentially damaging consequences of some aspects of the acute inflammatory response.

Animals↗

Microglial responses to physiological change: osmotic stress elevates DNA synthesis of neurohypophyseal microglia.

We were interested to discover whether microglia could play a role in the remodelling of the adult CNS or participate in adaptations to physiological rather than pathological changes. We have studied microglia in the neurohypophysis of adult mice since microglia normally interact with neurons in this tissue and the biochemical and anatomical consequences of osmotic stress on the neurohypophysis are well known. In this study, we have examined microglial immuno-phenotype and numbers synthesizing DNA in the neurohypophysis of adult mice to establish whether these cells respond to progressive osmotic stress. Neurohypophyseal F4/80+ microglia underwent a large synchronous burst of DNA synthesis 48 h after initiation of osmotic stress (drinking 2.5% saline). The labelling index (percentage of F4/80+ cells labelled by [3H]thymidine) 1 h after injection the isotope rose to 17% from a control value of less than 1%. On the third day of treatment the labelling index had returned to control levels. In contrast, non-microglia cells in the neurohypophysis and microglial cells elsewhere in the brain did not show this response. The increase in DNA synthesis was not accompanied by signs of microglia activation commonly observed in inflammatory models. They did not acquire an "activated" or "hypertrophic" morphology, nor was their staining with a panel of antibodies greatly altered. A small up-regulation of CD45 expression was the only phenotypic change detected. Thus, neurohypophyseal microglia respond to increased neurosecretory activity during the adaptation to osmotic stress in a distinctive way which differs from microglia reactions to inflammatory stimuli elsewhere in the CNS.

Adaptation, Physiological↗

Mitosis and apoptosis of microglia in vivo induced by an anti-CR3 antibody which crosses the blood-brain barrier.

Microglia, the resident tissue macrophages of the central nervous system, have a highly differentiated morphology and do not express many of the antigens typically associated with other tissue macrophages. Activation of microglia is associated with a change in morphology and an increase in their repertoire of antigen expression. Microglia become activated in many neuropathological conditions including chronic neurodegenerative diseases and human immunodeficiency virus neuropathology, yet little is known of the mechanisms involved. Here we demonstrate for the first time that microglia can be activated and induced to divide and/or undergo apoptosis via a beta 2-integrin (complement receptor type 3, CR3, Mac-1 or CD11b/CD18) using an anti-CR3 monoclonal antibody (McAb5C6). This antibody, which has been shown to block myelomonocytic recruitment during central nervous system inflammation, is unique in that it can cross the intact blood-brain barrier to activate microglia. Since CR3 not only binds the iC3b component of the alternative complement cascade but also denatured proteins this suggests a potential route for microglia activation in neuropathological conditions.

Animals↗

Multicenter randomized trial of ofloxacin versus cefoxitin and doxycycline in outpatient treatment of pelvic inflammatory disease. Ambulatory PID Research Group.

A multicenter randomized comparative trial was done to assess the safety and efficacy of oral ofloxacin (400 mg twice daily for 10 days) versus cefoxitin (2 g intramuscularly) followed by doxycycline (100 mg twice daily orally for 10 days) for the outpatient treatment of uncomplicated pelvic inflammatory disease (PID). Neisseria gonorrhoeae (GC) grew on pretreatment endocervical cultures from 43 of 268 women (16%), and in 30 of 247 women (12%) cultures were positive for Chlamydia trachomatis (Ct). Ninety-five percent (122/128) of the women treated with the ofloxacin regimen and 93% (112/121) of those treated with the cefoxitin/doxycycline regimen had cure or improvement on examination at a minimum of one follow-up visit. All GC species were eradicated by both ofloxacin and cefoxitin. Among women who returned for follow-up, the eradication of C trachomatis was 88% (15/17) for the cefoxitin/doxycycline group and 100% (18/18) for ofloxacin. Side effects were more prevalent in the cefoxitin/doxycycline group (15%) than in the ofloxacin group (7%), nausea/vomiting being the most frequent adverse effect. In this study, it appears that ofloxacin and cefoxitin/doxycycline have similar clinical effectiveness for the outpatient treatment of uncomplicated pelvic inflammatory disease.

Adolescent↗

Identification of macrophages and dendritic cells in the osteopetrotic (op/op) mouse.

We used a panel of monoclonal antibodies and immunocytochemistry to identify macrophages and dendritic cells in mice that are deficient in macrophage colony stimulating factor (M-CSF or CSF-1) because of the recessive osteopetrotic (op/op) mutation. Prior work had shown that osteopetrosis is associated with a lack of osteoclasts, phagocytic cells required for remodelling in bone. Additional macrophage populations proved to be very M-CSF dependent. op/op mice had few and sometimes no peritoneal cavity phagocytes, splenic marginal zone metallophils, and lymph node subcapsular sinus macrophages. Other populations, however, reached substantial levels in the absence of M-CSF, including phagocytes in the thymic cortex, splenic red pulp, lymph node medulla, intestinal lamina propria, liver (Kupffer cells), lung (alveolar macrophages) and brain (microglia). Dendritic cells, which are specialized accessory cells for T-dependent immune responses and tolerance, were readily identified in skin and in the T-dependent regions of spleen, lymph node and Peyer's patch. The identification of dendritic cells utilized antibodies to MHC class II products and four different antigens that are primarily expressed by these accessory cells. Our findings indicate that only a few macrophage populations are critically dependent upon M-CSF in vivo. With respect to dendritic cells, the data are consistent with prior in vitro work where it was noted that GM-CSF but not M-CSF supported dendritic cell viability, function and growth.

Animals↗

[Feline ocular melanoma. Clinical and pathologico-anatomic findings in 37 cases].

The clinical and pathological findings of 37 feline ocular melanomas are described. The majority of the tumors examined were diffuse iris-ciliary body melanomas of epithelioid and pleomorphic (anaplastic) cell type with numerous mitotic figures. The majority of the tumors showed invasion of the anterior sclera. Metastases were found in three cases predominantly in the abdominal viscera (liver). The clinical diagnostics as well as the differential diagnosis, therapy and prognosis of feline uveal melanoma are presented. The causal pathogenesis is discussed comparatively.

Abdominal Neoplasms↗

Interleukin 4 regulates induction of sialoadhesin, the macrophage sialic acid-specific receptor.

Sialoadhesin is a nonphagocytic lectin-like receptor found on a restricted population of tissue macrophages in lymphoid and hemopoietic tissues. In bone marrow, it is localized to areas of contact between the resident stromal macrophages and developing granulocytes, which together form myeloblastic clusters. Sialoadhesin is highly specific for sialylated glycoconjugates and may play a role in adhesion and trophic hemopoietic cell interactions, although its function is unknown. Resident peritoneal macrophages do not express high levels of sialoadhesin in vitro unless an inducing element found in normal mouse serum is present. The restricted in vivo location of this marker and its induction by mouse serum prompted us to examine the possible influence of various cytokines on its expression, measured by a sheep erythrocyte rosetting assay. None of the cytokines tested was able to induce sialoadhesin; however, interleukin 4 (IL-4) prevented the induction in the presence of serum. Expression of other macrophage markers was not influenced in parallel, and Western blotting showed that sialoadhesin antigen in cell lysates was selectively reduced by IL-4. Inhibition by IL-4 was dose dependent, could be blocked by antibodies to both IL-4 and the IL-4 receptor, and was overcome by increased serum concentrations. IL-4 is therefore a potent cytokine regulator of the sialic acid-specific receptor implicated in macrophage-hemopoietic cell interactions.

Animals↗

Intracerebral injection of proinflammatory cytokines or leukocyte chemotaxins induces minimal myelomonocytic cell recruitment to the parenchyma of the central nervous system.

Neither excitotoxic neurodegeneration nor lipopolysaccharide induces an acute myelomonocytic exudate in the murine central nervous system (CNS) parenchyma (Andersson, P.-B., V. H. Perry, and S. Gordon. 1991. Neuroscience, 42:201; Andersson, P.-B., V. H. Perry, and S. Gordon. 1992. Neuroscience 48:169). In this study formyl-methionyl-leucyl-phenylalanine, platelet-activating factor, interleukin 8 (IL-8), IL-1, or tumor necrosis factor alpha were injected into the hippocampus to assess whether these leukocyte chemotaxins and known mediators of recruitment could bypass this block. They induced morphologic activation of microglia and widespread leukocyte margination but little or no cell exudation into the CNS parenchyma. By contrast, there was acute myelomonocytic cell recruitment to the choroid plexus, meninges, and ventricular system, comparable to that in the skin after subcutaneous injection. The normal CNS parenchyma appears to be a tissue unique in its resistance to leukocyte diapedesis, which is shown here to be at a step beyond chemotactic cytokine secretion or induction of leukocyte adhesion to cerebral endothelium.

Animals↗

Interleukin 4 potently enhances murine macrophage mannose receptor activity: a marker of alternative immunologic macrophage activation.

Expression of the macrophage mannose receptor is inhibited by interferon gamma (IFN-gamma), a T helper type 1 (Th-1)-derived lymphokine. Interleukin 4 (IL-4), a Th-2 lymphocyte product, upregulates major histocompatibility class II antigen expression but inhibits inflammatory cytokine production by macrophages. We have studied the effect of IL-4 on expression of the macrophage mannose receptor (MMR) by elicited peritoneal macrophages. We found that recombinant murine IL-4 enhances MMR surface expression (10-fold) and activity (15-fold), as measured by the respective binding and degradation of 125I-mannose-bovine serum albumin. Polymerase chain reaction analysis of cDNAs from purified primary macrophage populations revealed that MMR, but not lysozyme or tumor necrosis factor alpha, mRNA levels were markedly increased by IL-4. The above effects were associated with morphologic changes. These data establish IL-4 as a potent and selective enhancer of murine MMR activity in vitro. IL-4 induces inflammatory macrophages to adopt an alternative activation phenotype, distinct from that induced by IFN-gamma, characterized by a high capacity for endocytic clearance of mannosylated ligands, enhanced (albeit restricted) MHC class II antigen expression, and reduced proinflammatory cytokine secretion.

Animals↗

Stromal macrophages of the choroid plexus situated at an interface between the brain and peripheral immune system constitutively express major histocompatibility class II antigens.

Using immunocytochemistry we have shown that there is a population of macrophages within the stroma of the choroid plexus of rats and mice which expresses high levels of major histocompatibility complex Class II antigens. In whole mount preparations of the choroid plexus, the morphology and regular distribution of these cells is similar to the Langerhans cells of the skin. These cells reside at an important interface between the central nervous system and the peripheral immune system and their possible role in immune-mediated diseases of the central nervous system is discussed.

Animals↗

The acute inflammatory response to lipopolysaccharide in CNS parenchyma differs from that in other body tissues.

Acute inflammation is important for defence against infection, wound repair and the mediation of auto-immune tissue destruction. Myelomonocytic recruitment in acute inflammation is a stereotyped and non-specific response to tissue insult which begins within 2 h. In this study, lipopolysaccharide was injected into the murine CNS and other body sites of mice to compare the inflammatory responses. Doses of lipopolysaccharide which induced typical myelomonocytic recruitment in skin and the choroid plexus had no effect in CNS parenchyma, apart from the morphological activation of local resident microglia. The CNS parenchymal response proceeded independently of that in the choroid plexus-cerebral ventricles and had three distinct and unique phases. Initially there was minimal neutrophil exudation and a two-day delay before any increase in macrophage-microglial cell number. Next, there was a rapid increase in macrophage-microglial cell numbers during the third day, mainly due to recruitment of blood monocytes. During this phase, leukocyte recruitment was restricted to monocytes which rapidly adopted the arborized microglial phenotype. Monocytes migrated through an intact blood-brain barrier independent of changes in solute permeability. Finally, there was a florid myelomonocytic reaction predominantly in the white matter, one week after intracerebral injection of 2 micrograms lipopolysaccharide. At this time, the leukocyte reaction disrupted the blood-brain barrier, mononuclear phagocytes expressed macrophage morphology and abundant major histocompatibility complex Class II antigen, and T lymphocytes were present. Myelomonocytic entry into the CNS was partially inhibited by prior blockade of the type 3 complement receptor, known to mediate leukocyte adhesion to endothelium elsewhere. The processes which lead to rapid myelomonocytic recruitment in other tissues are absent in CNS parenchyma. Understanding the molecular mechanisms responsible could have considerable significance both for CNS pathophysiology as well as possible anti-inflammatory therapeutic application elsewhere in the body.

Animals↗