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T M Lim

Publications and source records attributed to T M Lim.

At least 37 records · Page 2Linked to original sources

A nuclear microscopic study of elemental changes in the rat hippocampus after kainate-induced neuronal injury.

The effect of intracerebroventricular kainate injection on the elemental composition of the hippocampus was studied in adult Wistar rats, at 1 day and 1, 2, 3, and 4 weeks postinjection, using a nuclear microscope. An increase in calcium concentration was observed on the injected side from 1 day postinjection. The increase peaked at 3 weeks postinjection, reaching a concentration of 18 times normal. Large numbers of glial cells but no neurons were observed in the lesioned CA fields at this time, suggesting that an increased calcium level was present in glial cells. This was confirmed by high-resolution elemental maps of the lesioned areas, which showed very high intracellular calcium concentrations in almost all glial cells. It is possible that the high intracellular calcium level could activate calcium-dependent enzymes, including calpain II and cytosolic phospholipase A2, shown to be expressed in reactive glial cells after kainate injections. In addition to calcium, an increase in iron content was also observed at the periphery of the glial scar at 4 weeks postinjection. Because free iron could catalyze the formation of free radicals, the late increase in iron content may be related to oxygen radical formation during neurodegeneration.

Animals↗

Distribution of perlecan in mouse hippocampus following intracerebroventricular kainate injections.

The distribution of the heparan sulphate proteoglycan (HSPG), perlecan, was studied by immunocytochemistry in the normal mouse hippocampus after intracerebroventricular injections of the potent convulsant and neurotoxin, kainate. A light staining to perlecan was observed in neurons in the normal hippocampus. Following kainate injection, an increase in perlecan immunoreactivity was observed in degenerating neurons from one to three post-injection days, followed by glial cells from 5 days to 4 weeks post-injection. The latter were found at electron microscopy to contain light cytoplasm and dense bundles of glial filaments, and had features of viable reactive astrocytes. Some endothelial cells were also labelled. The significance of an increased expression of perlecan in the injured hippocampus is unknown. One possibility, in view of observations that HSPG promotes neurite outgrowth [A.D. Lander, D.K. Fujii, D. Gospodarowicz, L.F. Reichardt, Characterization of a factor that promotes neurite outgrowth: evidence linking neurite activity to a heparan sulfate proteoglycan, J. Cell Biol. 94 (1982) 574-585] is that perlecan enhances the early stages of brain tissue regeneration. It is, however, speculated that such growth promoting activity may ordinarily be suppressed, due to concurrent increased expression of other proteoglycans such as the NG2 chondroitin sulphate proteoglycan, which are inhibitory to neurite outgrowth [C. Dou, J.M. Levine, Inhibition of neurite outgrowth by the NG2 chondroitin sulfate proteoglycan, J. Neurosci. 14 (1994) 7616-7628]. It is also possible that a similar increased expression of perlecan in neurons and reactive astrocytes could occur in humans following neuronal injury, which could be a source of perlecan, in senile plaques of Alzheimer's disease.

Animals↗

Cardiovascular effects of aspidofractinine-type alkaloids from Kopsia.

Intravenous injection of the aspidofractinine alkaloid, kopsingine (1, 0.2-10.0 mg/kg) from Kopsia teoi, produced dose-related decreases in the mean arterial blood pressure and heart rate in anesthetized spontaneously hypertensive rats, which were similar to those seen in normotensive controls. Minor modifications in the molecular structure of kopsingine, as in kopsaporine (2, the 12-demethoxy derivative of kopsingine) and 14,15-dihydrokopsingine (4), did not significantly alter the hypotensive responses, whereas a more drastic change in the structure, as in the heptacyclic kopsidine A (3) and the 3-to-17 oxo-bridged compound 5, resulted in an increase in blood pressure. The antihypertensive effects of kopsingine (1) and its congeners (2 and 4) along with the pressor effects produced by the heptacyclic oxo-bridged compounds (5 and 3) could be ascribed to central as well as peripheral actions.

Alkaloids↗

Internalization and cytotoxicity are important virulence mechanisms in Vibrio-fish epithelial cell interactions.

Vibrio anguillarum and Vibrio damselae are Gram-negative bacteria that cause systemic infections called vibriosis in fish. They can enter fish cells and survive as intracellular parasites. The host-pathogen interactions between these Vibrio species and the fish epithelial cell lines epithelioma papillosum of carp (EPC) and grunt-fin tissue (GF) cells, were examined using phase-contrast, scanning electron and confocal microscopy. In addition, potential signal transduction pathways that precede bacterial internalization were studied by using signal transduction inhibitors. Some Vibrio species induced morphological changes in fish cells and this allowed classification into a cytopathic group and a noncytopathic group. The cytopathic group could be subdivided into two invasive groups (I and II) and a cytotoxic group. Of the invasive strains V. anguillarum 811218-5W (group I) and G/Virus/5(3) (group II), genistein, a tyrosine kinase inhibitor, only inhibited internalization of V. anguillarum G/Virus/5(3) into EPC cells, whereas staurosporine, a protein kinase C inhibitor, accelerated internalization of both strains. Cytochalasin D, an inhibitor of microfilament polymerization, prevented internalization of both strains, whilst vincristin, a microtubule inhibitor, only inhibited internalization of V. anguillarum G/Virus/5(3). For the cytotoxic strain V. damselae ATCC 33539, extracellular products (ECP) alone caused morphological changes in EPC and GF. Bacterial internalization may not be important in the pathogenesis of this group. The non-cytopathic strain V. anguillarum S2/5/93(2) did not enter cells or induce any changes in EPC and GF monolayers. This study has identified some major differences between Vibrio species in their interactions with fish cells in vitro and will thus facilitate future studies of the molecular basis of pathogenesis of vibriosis.

Animals↗

An appraisal of the banded and paracrystalline cytoplasmic inclusions induced in cymbidium mosaic potexvirus- and odontoglossum ringspot tobamovirus infected orchid cells using confocal laser scanning microscropy.

The cymbidium mosaic potexvirus (CyMV) banded inclusions and the odontoglossum ringspot tobamovirus (ORSV) paracrystalline inclusions were studied in flowers and leaves of nine orchid cultivars using the confocal laser scanning microscope. The inclusions varied in length and width and were mostly located adjacent to the cell walls. Some ORSV inclusions fully extended across entire infected cells. We propose that the CyMV banded inclusion was formed from virus aggregates which aligned as periodical stacked layers, appearing as cross bands. The virus aggregates were folded into flexible inclusions, giving rise to various shapes and forms. The ORSV paracrystalline inclusions were observed as needle-like crystals. The confocal laser scanning microscope is an effective tool for the study of the three-dimensional structures of plant virus induced inclusions.

Enzyme-Linked Immunosorbent Assay↗

Study of the three-dimensional images of potyvirus-induced cytoplasmic inclusions using confocal laser scanning microscopy.

The three-dimensional structure of the cytoplasmic inclusions in leaves of Cucurbita pepo L. infected with a Singapore isolate of zucchini yellow mosaic virus (ZYMV-S) was studied using a confocal laser scanning microscope. The cytoplasmic inclusions were found to be linear filamentous structures that varied in thickness and length. The formation of the inclusions probably begins when finely-pointed linear filamentous structures aggregate into bundles forming flat parallel arrays, or diverge into triangular shaped inclusions. Some cytoplasmic inclusions appeared as twisted tubules with empty central cores. The average length and width of the inclusions ranged from 9.4 +/- 0.3 to 20.1 +/- 0.4 microns and from 2.1 +/- 0.1 to 3.7 +/- 0.1 microns. respectively. Confocal laser scanning microscopy is useful for the in situ exploration of three-dimensional structures of cytoplasmic or nuclear inclusions in plant virus infected cells.

Cytoplasm↗

Structural features of tracheal tube biofilm formed during prolonged mechanical ventilation.

The dissemination of tracheal tube biofilm into the mechanically ventilated lung has been proposed as a contributory factor in the pathogenesis of ventilator-associated pneumonia. In the present study, conventional light microscopy, confocal laser scanning microscopy, and scanning electron microscopy were used to examine luminal tracheal tube biofilm in tubes from ten consecutive medical intensive care patients. Biofilms also were cultured. No tube contained a predominantly microbial aggregate. Microorganisms were either dispersed throughout the biofilm or restricted to the most superficial layer. Neutrophil polymorphonuclear cells were present in all biofilms in a pattern suggesting that a layering or stratification had taken place. The distribution of neutrophils and microorganisms was consistent with a progressive accretion of respiratory secretions, rather than formation of a predominantly microbial biofilm.

Adult↗

Inheritance of RAPD markers in the guppy fish, Poecilia reticulata.

Random Amplified Polymorphic DNA (RAPD) fingerprinting offers a rapid and efficient method for generating a new series of DNA markers in fishes. Three oligonucleotide primers (two 10-mers and one 9-mer) and their paired combinations were found to generate different but reproducible RAPD fingerprints in the guppy. Of these, a 10-mer primer (designated S3D2) was used to detect DNA polymorphisms in two guppy varieties, Green Snakeskin (GSS) and 3/4Black (3/4B). High Genetic Similarity (SI) was found among individuals of the GSS and 3/4B varieties indicating low intra-variety genetic variability. The average SI values for the Green Snakeskin and 3/4Black varieties were 0.78 +/- 0.104 and 0.81 +/- 0.083, respectively. The average SI value between individuals of the GSS and 3/4B varieties was 0.66 +/- 0.066, indicating higher genetic variability between the two varieties. To study the inheritance of RAPD markers, single-pair crosses were set up between males of the GSS variety and females of the 3/4B variety. The S3D2 primer was used to generate RAPD fingerprints of the parents and their F1 offsprings. A total of 14 RAPD markers were scored from these crosses. Of these markers, eight (60.0%) of them were polymorphic. The RAPD markers were shown by the F1 to exhibit dominant Mendelian inheritance and could thus be used for subsequent genetic linkage mapping of the guppy.

Animals↗

Development of the dorsal root ganglion in a teleost, Oreochromis mossambicus (Peters).

The precursor crest cells of the spinal dorsal root ganglia (DRG) in the tilapia, Oreochromis mossambicus, were analysed by HNK-1 antibody staining, scanning electron microscopy, and DiI labeling techniques. The ontogeny of the DRG was followed in the embryos and young fry of the fish. Neural crest cells which contribute to the formation of the DRG were observed to commence their migration in the trunk region after 40 hours postfertilization. They do not penetrate the somites but travel through the space between the neural tube and the somite. Crest cells destined to become the DRG accumulate at the midsomitic region where the ventral root exits. At 50 to 80 hours postfertilization, they differentiate and become bipolar sensory cells. The DRG continues to grow and develop right through hatching at 115 hours. During the early larval stages, crest cells accumulate around the ventral root and the DRG eventually fuses with the motor root, giving rise to a situation in which the DRG contains not only the sensory cells but also motor fibres. The mixed nature of the DRG was confirmed by HRP retrograde labeling. We believe that this is the first report in describing the formation of the DRG in a teleost.

Animals↗

RAPD analysis: an efficient method of DNA fingerprinting in fishes.

Random Amplified Polymorphic DNA (RAPD) generated using arbitrary primers of 9, 10, 16 and 20 nucleotide lengths by Polymerase Chain Reaction (PCR) was investigated in 12 species of fishes. We found that the amplification products were best resolved by Urea-SDS-PAGE and detected by silver staining. The amplification products ranged from 25 to 75 depending on the primer and template combination. The random primers generated unique fingerprints for each species of fish in terms of number and position of RAPDs. Our results showed that the fish species can be distinguished from each other by RAPDs. The complexity of the RAPDs in the fingerprints may be manipulated to suit the requirement of the study. The use of RAPD in taxonomy, fishery management and fish culture is discussed.

Animals↗

Determinants of total body and regional bone mineral density in normal postmenopausal women--a key role for fat mass.

In order to determine which clinical, anthropometric, dietary, and biochemical variables are independent predictors of total and regional bone mineral density (BMD) in normal postmenopausal women, a cross-sectional study of 140 normal postmenopausal women has been carried out. Subjects were white, aged 45-71 yr (mean 58 yr), and had no history of disorders or medication use likely to influence bone or calcium metabolism. Multiple regression analysis was used to derive models for total and regional BMD in terms of the other variables measured. The analysis indicated that total body BMD was positively related to fat mass (P less than 0.0001), serum estrone (P = 0.0095) and age at menopause (P = 0.0165), and negatively related to age (P less than 0.0001), 24-h urine calcium (P = 0.0002), sex hormone-binding globulin (P = 0.0003), and serum alkaline phosphatase activity (P = 0.0029) (R2 = 0.61). Similar relationships were found in the subregions of the total body scans and in the lumbar spine and proximal femur, with insulin-like growth factor-1, parity, and age at menarche also being related to BMD at at least two of these sites. Lean body mass was not an independent correlate of BMD at any site once fat mass was taken into account. Muscle strength, physical activity, alcohol intake, and dietary intakes of calcium, sodium and protein did not emerge as significant predictors of BMD in this homogeneous group of postmenopausal women. We conclude that total body fat is the most significant predictor of BMD throughout the skeleton and this relationship is not explicable in terms of either estrone production in fat tissue or the dependence of skeletal load-bearing on fat mass. The mechanism underlying this relationship is an important question to be addressed in bone biology.

Aged↗

An evaluation of myelomeres and segmentation of the chick embryo spinal cord.

We have investigated whether the neuromeres of the developing chick spinal cord (myelomeres) are manifestations of intrinsic segmentation of the CNS by studying the patterns of cell proliferation and neuronal differentiation. Treatment of 2-day embryos with colchicine does produce exaggerated myelomeres, in confirmation of Källén (Z. Anat. Entwickl.-Gesch. 123, 309-319, 1962). However, this does not imply that myelomeres are segmental proliferation centres: the undulations caused by colchicine are irregular alongside the unsegmented mesoderm, and another mitotic inhibitor, bromodeoxyuridine, has no such effects. In contrast to lower vertebrate embryos, there is no evidence for segmental groups of primary motor neurons in the chick: the earliest motor neurons express cholinesterase, and project their axons into the adjacent sclerotome, at random positions in relation to the somite boundaries. The population of motor neurons projecting HRP-labelled axons into a single somite lies out of phase with both myelomere and somite, and is placed symmetrically about the anterior half-sclerotome. The earliest intrinsic spinal cord neurons, as stained with zinc iodide-osmium tetroxide or anti-68 x Mr neurofilament antibody, show no segmental patterns of differentiation. We conclude that, in contrast to the rhombomeres of the developing hindbrain, myelomeres are not matched by segmental groupings of differentiating nerve cells, and result from mechanical moulding of the neuroepithelium by the neighbouring somites.

Animals↗

Segmental lineage restrictions in the chick embryo spinal cord depend on the adjacent somites.

We have investigated whether the developing spinal cord is intrinsically segmented in its rostrocaudal (anteroposterior) axis by mapping the spread of clones derived from single labelled cells within the neural tube of the chick embryo. A single cell in the ventrolateral neural tube of the trunk was marked in situ with the fluorescent tracer lysinated rhodamine dextran (LRD) and its descendants located after two days of further incubation. We find that clones derived from cells labelled before overt segmentation of the adjacent mesoderm do not respect any boundaries within the neural tube. Those derived from cells marked after mesodermal segmentation, however, never cross an invisible boundary aligned with the middle of each somite, and tend to be elongated along the mediolateral axis of the neural tube. When the somite pattern is surgically disturbed, neighbouring clones derived from neuroectodermal cells labelled after somite formation behave like clones derived from younger cells: they no longer respect any boundaries, and are not elongated mediolaterally. These results indicate that periodic lineage restrictions do exist in the developing spinal cord of the chick embryo, but their maintenance requires the presence of the adjacent somite mesoderm.

Animals↗

The differing effects of occipital and trunk somites on neural development in the chick embryo.

In all higher vertebrate embryos the sensory ganglia of the trunk develop adjacent to the neural tube, in the cranial halves of the somite-derived sclerotomes. It has been known for many years that ganglia do not develop in the most cranial (occipital) sclerotomes, caudal to the first somite. Here we have investigated whether this is due to craniocaudal variation in the neural tube or crest, or to an unusual property of the sclerotomes at occipital levels. Using the monoclonal antibody HNK-1 as a marker for neural crest cells in the chick embryo, we find that the crest does enter the cranial halves of the occipital sclerotomes. Furthermore, staining with zinc iodide/osmium tetroxide shows that some of these crest-derived cells sprout axons within these sclerotomes. By stage 23, however, no dorsal root ganglia are present within the five occipital sclerotomes, as assessed both by haematoxylin/eosin and zinc iodide/osmium tetroxide staining. Moreover, despite this loss of sensory cells, motor axons grow out in these segments, many of them later fasciculating to form the hypoglossal nerve. The sclerotomes remain visible until stages 27/28, when they dissociate to form the base of the skull and the atlas and axis vertebrae. After grafting occipital neural tube from quail donor embryos in place of trunk neural tube in host chick embryos, quail-derived ganglia do develop in the trunk sclerotomes. This shows that the failure of occipital ganglion development is not the result of some fixed local property of the neural crest or neural tube at occipital levels. We therefore suggest that in the chick embryo the cranial halves of the five occipital sclerotomes lack factors essential for normal sensory ganglion development, and that these factors are correspondingly present in all the more caudal sclerotomes.

Animals↗

The assessment of intestinal calcium absorption using stable strontium.

The availability of currently used methods of measuring intestinal calcium absorption is limited by their expense and complexity. Since this measurement may be important in selecting appropriate therapies for patients with osteoporosis, a simpler procedure is required. This paper describes a test which measures the intestinal absorption of stable strontium. A comparison of this test with the single-isotope radio-calcium absorption test in the same group of patients showed a close correlation between the fractional absorption rates of the two elements (r = 0.93, P less than 0.001). Subjects were correctly categorized as having normal or low absorption in 12 out of 13 cases (92%) and the value in the misclassified subject was at the borderline between normal and low calcium absorption. The convenience, low cost, and freedom from radioactivity of stable strontium make it suitable for routine clinical use and, if necessary, repeated testing. If these early results are confirmed, this test will make the assessment of calcium absorption much more widely available.

Aged↗

Goitre and thyroid dysfunction during chronic amiodarone treatment.

We measured thyroid function in a cross-sectional survey of 37 unselected patients receiving chronic amiodarone treatment. Palpable goitre was presented in 17 patients and was a new finding in ten. Despite frequent elevations of serum free T4 (67%) or free T4 index (43%), all 37 patients were clinically euthyroid with a normal or decreased serum free T3 or free T3 index. Mean urine iodide/creatinine excretion was increased 13-fold. Three patterns of thyroid function were seen; in 21 patients with normal TRH responses, the mean basal serum TSH was significantly elevated. Five patients had biochemical hypothyroidism which did not require treatment. Eleven patients had evidence of thyroid autonomy and the three patients with absent TRH responses each gave a past history of goitre or thyrotoxicosis; a trial of carbimazole treatment in these three was without clinical benefit. The observed spectrum of subclinical goitre and thyroid dysfunction may result from an unpredictable thyroid response to excessive free iodide combined with a weak goitrogenic effect of amiodarone mediated by increased TSH secretion.

Adult↗

Thyrotrophin displacement activity of serum immunoglobulins in health and disease.

A radioreceptor assay for TSH displacement activity (TDA) was employed as an index of thyroid stimulating immunoglobulins (TSlg) in serum from patients with autoimmune thyroid disease. TDA was less than or equal to 20 in normal subjects (37/37), patients without thyroid disease (36/38), non-toxic goitre (18/19) and toxic nodular goitre (16/17) and was significantly lower in Nepalese subjects with severe endemic goitre. TDA was greater than 20 in 84% of patients with untreated hyperthyroid Graves' disease (70/83), in Hashimoto's thyroiditis (3/17) and following subtotal thyroidectomy (8/14) or 131I therapy (7/11), but was less than or equal to 20 in euthyroid patients treated with carbimazole (58/59) and during spontaneous remission (18/19). Serial TDA measurements during antithyroid drug therapy suggested that carbimazole has a direct effect in reducing TSlg concentration but that TDA is not a useful prognostic indicator of short term relapse or remission.

Autoimmune Diseases↗

The effect of luminance upon the distribution and behavior of the Eleotrid fish Gobiomorus dormitor, and its prey.

Gobiomorus dormitor success in capturing prey, cichlids, poeciliids and atherinids, is correlated with low luminance. Both prey and predator populations inhabiting rocky areas in Lake Jiloa, Nicaragua shift to deeper water during the dry season when luminance is greater. Predator and prey populations are also deeper over bright sandy areas than over rocks. Predators, during the middle of the day, attack prey significantly less in water above 3 m than in water between 3-12 m, but there is a significant increase in the number of attacks occurring above 3 m at twilight. The predator becomes more active, and the prey disappear into holes at twilight. These data suggest that conclusions concerning the importance of light in structuring the community and behavior of marine fishes can be generalized to tropical freshwater systems.

Animals↗