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Biomedical subjects

L MacKenzie

Publications and source records attributed to L MacKenzie.

At least 19 recordsLinked to original sources

Calcium signalling--an overview.

Calcium (Ca2+) is an almost universal intracellular messenger, controlling a diverse range of cellular processes, such as gene transcription, muscle contraction and cell proliferation. The ability of a simple ion such as Ca2+ to play a pivotal role in cell biology results from the facility that cells have to shape Ca2+ signals in the dimensions of space, time and amplitude. To generate the variety of observed Ca2+ signals, different cell types employ components selected from a Ca2+ signalling 'toolkit', which comprizes an array of signalling, homeostatic and sensory mechanisms. By mixing and matching components from the toolkit, cells can obtain Ca2+ signals that suit their physiology.

Animals↗

Ultrastructural evidence for differential axonal sprouting in the striatum after thermocoagulatory and aspiration lesions of the cerebral cortex in adult rats.

Thermocoagulation of pial blood vessels overlying the cerebral cortex induces an ischemic degeneration of the cortex. We have previously shown with anatomical tracing techniques that thermocoagulatory lesions of the sensorimotor cortex trigger a robust axonal sprouting of contralateral cortical neurons into the denervated striatum. Similar sprouting was not observed after acute aspiration lesions of the same cortical region. We have now examined immunostaining for the growth-associated protein (GAP)-43 at the ultrastructural level after both types of lesions. A modest increase in growth cone-like structures was observed just below the corpus callosum after both lesions. However, GAP-43-positive growth cone-like structures were markedly increased in the denervated dorsolateral striatum only after thermocoagulatory lesions. In contrast, no significant increase in growth cone immunostaining was found in the dorsolateral striatum after aspiration lesions, confirming the absence of axonal sprouting in the dorsolateral striatum in this condition. Corticostriatal inputs make asymmetric synapses with dendritic spines of striatal neurons. As expected, the density of asymmetric synapses was markedly decreased in the dorsolateral striatum after aspiration lesions. However, it was not different from control after thermocoagulatory lesions that removed the same cortical area. The density of symmetric synapses was decreased after both types of lesions at 16 but not 42 days post-surgery. These data reveal that robust axonal and synaptic remodeling can occur in the dorsolateral striatum of adult rats after ischemic lesions of the cerebral cortex and further demonstrate marked differences in the degree of anatomical plasticity induced by two different types of cortical lesions.

Animals↗

Decrease in striatal enkephalin mRNA in mouse models of Huntington's disease.

Huntington's disease is a devastating progressive neurodegenerative illness characterized by massive neuronal loss in the striatum. It is caused by the presence of an expanded CAG repeat in the gene encoding huntingtin, a protein of unknown function. We have examined the expression of neurotransmitters and other antigens present in striatal neurons with immunohistochemistry, and the level of expression of mRNAs encoding enkephalin, substance P, and glutamic acid decarboxylases with quantitative in situ hybridization histochemistry, in the striatum of two mouse models of Huntington's disease: transgenic animals expressing exon 1 of the human huntingtin gene with 144 CAG repeats and "knock-in" mice containing a chimeric mouse/human exon 1 with 71 or 94 CAG repeats inserted by homologous targeting. Although the transgenic (but not the knock-in) mice were previously shown to display prominent huntingtin- and ubiquitin-containing nuclear inclusions in striatal neurons, in situ nick translation followed by emulsion autoradiography did not reveal any DNA damage in striatum or cortex in these mice. Immunolabeling for calbindin D 28K, enkephalin, substance P, glutamic acid decarboxylases (M(r) 65,000 or 67,000, GAD65 and GAD67), somatostatin, choline acetyltransferase, parvalbumin, and glial fibrillary acidic protein were remarkably similar in transgenic, knock-in, and wild-type mice. Both transgenic and knock-in mice, however, showed a marked decrease in the level of expression of enkephalin mRNA in striatal neurons without significant decreases in mRNAs encoding substance P, GAD65, or GAD67. The data indicate that decreased expression of enkephalin mRNA may be an early sign of neuronal dysfunction due to the Huntington's disease mutation.

Animals↗

Neurological disease, emotional disorder, and disability: they are related: a study of 300 consecutive new referrals to a neurology outpatient department.

OBJECTIVES: To determine the prevalence of anxiety and depressive disorders in patients referred to general neurology outpatient clinics, to compare disability and number of somatic symptoms in patients with and without emotional disorder, the relation to neurological disease, and assess the need for psychiatric treatment as perceived by patients and doctors. METHODS: A prospective cohort study set in a regional neurology service in Edinburgh, Scotland. The subjects were 300 newly referred consecutive outpatients who were assessed for DSM IV anxiety and depressive disorders (PRIME-MD, and HAD), health status, and disability (SF-36), and patients', GPs' and neurologists' ratings of the need for patient to receive psychiatric or psychological treatment. RESULTS: Of 300 new patients, 140 (47%) met criteria for one or more DSM IV anxiety or depressive diagnosis. Major depression was the most common (27%). A comparison of patients with and without emotional disorder showed that physical function, physical role functioning, bodily pain, and social functioning were worse in patients with emotional disorders (p<0. 0005). The median number of somatic symptoms was greater in patients with emotional disorders (p<0.0005). These differences were independent of the presence of neurological disease. Few patients wished to receive psychiatric or psychological treatments. Both general practitioners and neurologists were more likely to recommend psychiatric treatment when the patients' symptoms were medically unexplained. CONCLUSIONS: Almost half of new referrals to general neurology clinics met criteria for a DSM IV psychiatric diagnosis. These patients were more disabled, and had more somatic symptoms. They expressed little enthusiasm for receiving psychiatric treatment.

Adolescent↗

Sexual dimorphism in the spinal cord is absent in mice lacking the ciliary neurotrophic factor receptor.

Ciliary neurotrophic factor (CNTF) has potent survival-promoting effects on motoneurons in vitro and in vivo. We examined knockout mice with null mutations of the gene for either CNTF itself or the alpha-subunit of the CNTF receptor (CNTFRalpha) to assess whether CNTF and/or its receptors are involved in the development of a sexually dimorphic neuromuscular system. Male rodents have many more motoneurons in the spinal nucleus of the bulbocavernosus (SNB) than do females. This sex difference is caused by hormone-regulated death of SNB motoneurons and their target muscles. Sexual dimorphism of SNB motoneuron number developed completely normally in CNTF knockout (CNTF -/-) mice. In contrast, a sex difference in the SNB was absent in CNTFRalpha -/- animals: male mice lacking a functional CNTF alpha-receptor had fewer than half as many SNB motoneurons than did wild-type males and no more than did their female counterparts. Size of the bulbocavernosus and levator ani muscles, the main targets of SNB motoneurons, was not affected in either CNTF or CNTFRalpha knockout males. These observations suggest that signaling through the CNTF receptor is involved in sexually dimorphic development of SNB motoneuron number and that target muscle survival per se is not sufficient to ensure motoneuron survival in this system. In addition, our observations are consistent with the suggestion that CNTF itself is not the only endogenous ligand for the CNTF receptor. A second, as yet unknown, ligand may be important for neural development, including sexually dimorphic motoneuron development.

Androgens↗

Identification of Protoceratium reticulatum as the biogenetic origin of yessotoxin.

Yessotoxin (YTX), a disulfated polyether toxin, was isolated from cultured cells of the marine dinoflagellate Protoceratium reticulatum and unambiguously identified by high-performance liquid chromatography, 1H NMR, and MS data. The result is the first to confirm toxigenicity of this species and demonstrate it as one of the biogenetic origins of YTX found in shellfish.

Animals↗

Fos induction in subtypes of cerebrocortical neurons following single picrotoxin-induced seizures.

In adult rats single seizures of varying behavioural severities were caused by slow, systemic infusion of picrotoxin, an antagonist of the C1- channel at the GABAA receptor. We used a double labelling immunohistochemical method to define the subclasses of neurons that contained Fos protein following seizures. In four cortical regions (piriform, entorhinal, motor and sensory) neuronal subclasses were defined with antibodies against the calcium-binding proteins D-28K, parvalbumin and calretinin (aspiny neurons), and neurofilament protein (spiny neurons). The remaining spiny neuron population was estimated by subtraction of defined subclasses from total neuronal numbers determined from Nissl stain. After seizures, most of the calbindin D-28K immunoreactive interneurons (> 80%) and many of the unlabelled spiny neurons (60-80%) were FOs positive. Co-localisation of Fos was found in about 30% of parvalbumin, calretinin and neurofilament protein immunoreactive neurons. Paradoxically, mild seizures were associated with induction of Fos in up to 80% of cortical cells and more severe seizures with 60%, the difference being due to different levels of Fos induction in spiny neurons. These results also demonstrate that seizures induce Fos predominantly in excitatory cortical neurons.

Animals↗

Selective inhibition of Abeta fibril formation.

We describe here an inhibitor of in vitro fibril formation, hexadecyl-N-methylpiperidinium (HMP) bromide, which is selective for the Alzheimer's disease peptide Abeta. At 10 microM, its IC50 for inhibiting Abeta aggregation at pH 5.8, HMP bromide does not inhibit fibril formation by other amyloidogenic polypeptides nor does it affect the folding stability of the beta-sheet-rich immunoglobulin VL domain REI. In addition, small structural modifications of HMP bromide reduce or eliminate its ability to inhibit pH 5.8 aggregation of Abeta. These indications of specificity, plus the ability of the molecule to inhibit A beta aggregation at concentrations almost an order of magnitude below its critical micelle concentration, suggest a mechanism of inhibition other than micellar solubilization of Abeta. HMP bromide is required in approximately a 1:1 stoichiometry for effective inhibition at pH 5.8. Although stoichiometric amounts of HMP bromide with respect to total Abeta inhibit Abeta fibril formation at pH 7.4, the molecule is incapable, at lower concentrations, of blocking the seeding of fibril formation by small amounts of added Abeta fibrils. The results suggest the existence of a binding surface on A beta capable of binding amphipathic molecules such as HMP bromide and which, when occupied, precludes assembly of A beta into amyloid fibrils. Molecules that bind to this site with high specificity may prove to be useful therapeutic agents for preventing or retarding the cerebral amyloid plaque formation implicated in Alzheimer's disease pathology.

Alzheimer Disease↗

Fos-determined distribution of neurons activated during the Bezold-Jarisch reflex in the medulla oblongata in conscious rabbits and rats.

Experiments were performed in unanaesthetized rabbits and rats to investigate the distribution, within the medulla oblongata, of neurons activated during the Bezold-Jarisch reflex. Repeated intravenous injections of phenylbiguanide evoked depressor and bradycardic responses in both rabbits and rats. Fos-positive neurons were present in the nucleus tractus solitarius and in the caudal ventrolateral medulla oblongata. Double-label tyrosine hydroxylase (TH) immunohistochemical studies in the ventrolateral medulla showed that most Fos-positive neurons in the caudal ventrolateral medulla were TH-negative neurons scattered between A1 noradrenaline cells, in the rabbit and in the rat. Approximately 20% of neurons in the caudal ventrolateral medulla in rabbits, and 50% in rats, were immunoreactive for both Fos and TH. Some Fos-positive, TH-negative neurons in the caudal ventrolateral medulla were retrogradely labelled with cholera toxin B-Gold after injection of this tracer into the sympathoexcitatory region of the rostral ventrolateral medulla. Our data suggests that neurons in the nucleus tractus solitarius, and rostrally projecting TH-negative neurons in the caudal ventrolateral medulla, are part of the pathway by which stimulation of cardiopulmonary receptors inhibits sympathetic vasomotor tone to decrease blood pressure during the Bezold-Jarisch reflex.

Animals↗

Increased expression of connexin-43 in the rat myometrium during labor is associated with an increase in the plasma estrogen:progesterone ratio.

The molecular mechanisms that regulate the synthesis of the myometrial gap junction protein, connexin-43 (Cx-43), are controversial. We measured myometrial Cx-43 messenger RNA, protein and gap junction frequency, and area in myometrial samples collected from nonpregnant rats and pregnant rats at days 5, 10, 15, 17, 18, 19, 20, 21, 22, 23 (during delivery), and 1 day postpartum and correlated these data with plasma concentrations of estradiol 17 beta and progesterone. Cx-43 transcripts were low or undetectable (connexin-43:glyceraldehyde phosphate dehydrogenase ratio < 0.2) in nonpregnant rats or in rats before day 10 of pregnancy. Transcripts rose to 0.52 +/- 0.11 on day 10, increased (2.9-fold) to 1.51 +/- 0.48 on day 22, and increased a further 2.9-fold to maximal levels of 4.42 +/- 0.67 during labor. Cx-43 protein was barely detectable on day 21 [0.12 +/- 0.04 relative optical density (ROD) units], increased 2.5-fold on day 22 (0.30 +/- 0.04 ROD units), and a further 3.7-fold during delivery (1.10 +/- 0.15 ROD units), at a time when gap junctions were present in large numbers in the cell membrane. Between day 21 and delivery the increase in Cx-43 transcripts (8.2-fold) and protein (9.2-fold) were of a similar magnitude. There was a significant positive correlation between the increases in Cx-43 transcripts and the increase in the ratio of plasma estradiol to progesterone. Levels of Cx-43 transcripts, protein, and gap junctions fell rapidly postpartum. Our data demonstrate: 1) that transcripts encoding the gap junction protein, Cx-43, are at maximal levels during delivery and that this increase is temporally associated with increases in Cx-43 protein and the appearance of gap junctions; and 2) that these data, in association with changes in plasma steroid concentrations, are consistent with myometrial Cx-43 transcript levels being regulated positively by estrogen and negatively by progesterone during pregnancy.

Animals↗

Polymorphism and expression of the galactosyltransferase-associated protein kinase gene in normal individuals and galactosylation-defective rheumatoid arthritis patients.

We used restriction endonuclease digestion of leukocyte DNA to assess the structural integrity of an N-acetylglucosamine beta 1----4 galactosyltransferase (GalTase)-associated (GTA) protein kinase gene in rheumatoid arthritis (RA) patients. This analysis provides evidence that the gross structure of the GTA protein kinase gene locus remains intact in patients with defective galactosylation and that this gene locus is polymorphic both in normal individuals and in patients with RA, although no polymorphisms unique to RA patients were observed. Initial data on the expression of this gene indicate that comparable levels of GTA protein kinase messenger RNA are present in the lymphocytes of normal individuals and RA patients, irrespective of whether lymphocytes were obtained from patients with decreased or normal levels of galactosylation.

Acetylglucosamine↗

The antibody repertoire of early human B cells. II: Expression of anti-DNA-related idiotypes.

Cord blood B cells were immortalized in vitro with Epstein-Barr virus (EBV). Supernatants containing greater than 500 ng/ml IgM from clones/lines were tested for expression of anti-DNA-associated 16/6 and PR4 idiotypes (id) by ELISA. Four of 70 lines, but no clones, were positive for 16/6 id and none expressed the PR4 id. The presence of 16/6 id on four cell lines was associated with specificity for ssDNA, cardiolipin and Fc of IgG. No association was seen with binding to the K30 polysaccharide of Klebsiella. One clone binding this antigen also had anti-ssDNA, anti-Fc and anti-cardiolipin activity but did not express 16/6 id. Our data support the germ-line nature of the 16/6 id and are consistent with the notion that IgM autoantibody-producing B cells use VH genes which are part of the normal B cell repertoire.

Antibodies, Antinuclear↗

T gamma delta-cell subsets in cord and adult blood.

A minor population of T cells expresses a heterodimeric antigen receptor composed of gamma and delta chains (TcR-1). In blood from adults, two subsets of T gamma delta cells can be identified by the monoclonal antibodies (MoAb) BB3 and A13. Little is known about the distribution and markers of these subsets early in life. We have therefore examined both the frequencies of these cells in cord blood and their expression of the cytotoxicity-associated marker serine esterase (SE), using immunocytochemical techniques. Our data show lower percentages of TcR-1+ cells in the blood of newborns compared with that in adults. However, the ratio of the A13+/BB3+ cells was significantly higher in cord than in adult blood. Whereas virtually all the adult TcR-1+ cells in blood were SE-positive, only a small proportion of the cord blood cells carried this enzyme. This was restricted to the BB3+ T gamma delta-cell subset in the cord. Our data suggest different characteristics of the TcR-1+ cells in blood from newborns compared with adult blood, and study of the functions of the different subsets, e.g. cytotoxicity, will be important in understanding their particular role in immunity.

Adult↗

The antibody repertoire of early human B cells. III. Expression of cross-reactive idiotopes characteristic of certain rheumatoid factors and identifying V kappa III, VHI, and VHIII gene family products.

Our previous studies have shown that a high frequency of Epstein-Barr virus (EBV)-immortalized cord blood (CB) and fetal liver (FL) clones produce IgM antibodies which display extensive autoreactivity for IgG Fc (rheumatoid factor, RF). To investigate further the repertoire of these early B cells, we have examined the expression of CRI associated with RF paraproteins in relation to antibody specificity and polyreactivity. CRI were detected by ELISA and/or flow cytometry using a panel of well-characterized monoclonal antibodies defining idiotopes associated with particular V kappa and VH gene family products and raised against Fc-specific paraproteins. Many of the CRI were expressed by these clones, suggesting that they may be markers of early B cells. The presence of the CRI was not always associated with Fc specificity. Three of eight CB/FL clones expressed the V kappa III subgroup of light chains, and two of these expressed the V kappa III sub-subgroup associated CRI, 17-109. These two clones reacted with IgG Fc, and one also bound to single-stranded DNA. The VHIII-associated idiotope D12 was expressed on IgM from 4 out of 9 FL and 5 out of 12 CB clones. D12 and B6 (also a VHIII-associated CRI) were coexpressed in 4 out of 5 CB clones but not in the four FL clones. Seven out of nine clones expressing these idiotopes were polyreactive, and five had Fc-binding activity. Three of the 12 CB clones expressed the VHI-associated conformational idiotope G8. One of 20 CLL clones expressed both B6 and D12, and another expressed both 17-109 and the VHI-associated G6 and G8 idiotopes. Taken together, these data provide evidence for the frequent usage, in early B cells, of V kappa subgroups and VH-associated idiotopes of RF paraproteins. The expression of these CRI was not a prerequisite for binding to IgG Fc, but there was a frequent association of these idiotopes with it. Differences in expression of CRI between CLL and early B-cell clones may suggest differences in the pattern of VH usage between these subsets of B cells.

B-Lymphocytes↗

Relation between lymphocytotoxic antibodies, anti-DNA antibodies and a common anti-DNA antibody idiotype PR4 in patients with systemic lupus erythematosus, their relatives and spouses.

Forty-two patients with systemic lupus erythematosus (SLE), 65 of their healthy relatives and 20 spouses were studied for the presence of lymphocytotoxic antibodies (LCA), anti-lymphocyte antibodies (ALA), antibodies to DNA and a common idiotype (Id) PR4. Seventy-one per cent of the patients had positive levels of LCA, and in 34% the PR4 Id was detected; normal levels were found in their families. Anti-PR4, an anti-Id, failed to block the lymphocytotoxic activity in those nine patients who both carried the Id and had LCA. This indicates that the Id was not present on LCA. There was no correlation between anti-DNA antibodies and LCA, suggesting that different mechanisms are involved in their expression.

Antibodies, Antinuclear↗

Mutagen treatment of single Chinese hamster ovary cells produces colonies mosaic for glucose-6-phosphate dehydrogenase activity.

When populations of single Chinesee hamster ovary (CHO) cells were exposed to the mutagen ethyl methane sulfonate (EMS), allowed to grow into colonies, and stained for glucose-6-phosphate dehydrogenase (G6PD) activity, two types of unstained colonies were observed at a frequency of about on per thousand stained colonies. These negative-staining colonies consisted of (1) colonies uniformly deficient in staining activity (pure); and (2) colonies containing both stained and unstained sectors (mosaic) in various relative sizes and patterns. Unstained cells isolated from mosaic colonies were genetically stable and had significantly reduced or absent G6PD activity. Random cell aggregation or chromosome segregation from tetraploid cells is not a significant cause of the sectoring phenomenon. Also, mosaic colonies are not principally caused by mutation at one of two replicated G6PD genes and their subsequent segregation during division. The simplest explanation for this phenomenon is that EMS induces a mutational change in one of the two DNA strands and DNA replication then produces normal and mutant double-stranded DNAs which segregate into wild-type and G6PD-deficient cell types, producing a mosaic colony.

Animals↗

Effects of chronic LHRH agonist treatment on the endometrium and ovaries of the stumptailed macaque.

Eight stumptailed macaques were injected daily with 5 or 20 micrograms D-Ser(But)6des Gly luteinizing hormone releasing hormone ethylamide (LHRH agonist) for approximately one year in order to prevent ovulation. On the last day of treatment (7 monkeys) or during the mid-luteal phase of the first cycle after treatment (1 monkey), a laparotomy was performed. Uterine size was slightly smaller (P less than 0.01) than in controls with normal cycles (n = 6). A full thickness wedge of anterior uterine wall was excised and examined histologically. Five of the agonist-treated monkeys had endometrium consistent with an atropic or resting proliferative pattern, but in 2 the appearance varied from early proliferative to marked secretory. All appeared entirely benign. The remaining animal studied in the luteal phase after stopping treatment exhibited a normal secretory endometrium. Ovaries from 2 of the LHRH agonist-treated animals were also studied histologically and found to consist of follicles at various stages of maturation. The occurrence of endometrial activity in 2 of the 8 LHRH agonist-treated monkeys stresses the need for careful endometrial assessment during clinical trials involving repeated administration of LHRH agonists in women.

Animals↗