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J Ray

Publications and source records attributed to J Ray.

At least 73 records · Page 4Linked to original sources

Regulation of voltage- and ligand-gated currents in rat hippocampal progenitor cells in vitro.

Growth medium and substrate regulate the proliferation and differentiation of neural progenitor cells in vitro and the expression of cell type-specific histochemical markers. An important question is whether neural progenitor cells exhibit voltage- and ligand-gated currents, features characteristic of neurons, and whether these currents are regulated differentially by growth conditions. Another issue of interest is whether passaged progenitor cells, after expansion with basic fibroblast growth factor (FGF-2), exhibit the same degree of plasticity as their primary counterparts, or whether they are more committed to a particular phenotype. In primary cultures of embryonic rat hippocampal progenitor cells, growth in proliferative conditions (FGF-2) was associated with low levels of sodium, calcium, N-methyl-D-aspartate (NMDA), and kainate currents compared with other growth conditions. After multiple passages in the continued presence of FGF-2, sodium, calcium, and NMDA, responses declined further; interestingly, kainate and gamma-aminobutyric acid (GABA) responses remained substantial. Moreover, the expression of functional channels and receptors in primary cultures of progenitor cells is up-regulated strongly by growth factors such as BDNF, and NT-3, whereas sodium and calcium currents in passaged cultures respond to such growth conditions to a lesser extent. Kainate and GABA responses were present to a significant extent in passaged cultures, independent of growth condition. We conclude that environmental cues regulate different channels and receptors in distinct ways in neural progenitor cells.

Animals↗

Age-related increase in activity of specific lysosomal enzymes in the human retinal pigment epithelium.

Age related changes in the activity of lysosomal enzymes have been studied in the cultured human retinal pigment epithelium cells collected from 26-85 year old donors. Among four such enzymes studied, activities of cathepsin D and beta-glucuronidase increased with the age of the donors while no notable change in activity of arylsulfatase B and alpha-mannosidase was observed. Kinetic parameters of beta-glucuronidase was measured in retinal pigment epithelium cells isolated from donors of different ages. Similar kinetic parameters for beta-glucuronidase at different ages suggest that the observed increase in the activity of the enzyme with age is not due to post-translational modification of the enzyme. Western blot analysis provides evidence for increased synthesis of beta-glucuronidase with aging. Relative proportions of glycosaminoglycans, the natural substrates of beta-glucuronidase and arylsulfatase B, in the retinal pigment epithelium altered with the age of the donors. A significant decrease of dermatan sulfate levels with aging correlates well with the observed increase in the level of beta-glucuronidase activity.

Adult↗

FGF-2 is sufficient to isolate progenitors found in the adult mammalian spinal cord.

The adult rat brain contains progenitor cells that can be induced to proliferate in vitro in response to FGF-2. In the present study we explored whether similar progenitor cells can be cultured from different levels (cervical, thoracic, lumbar, and sacral) of adult rat spinal cord and whether they give rise to neurons and glia as well as spinal cord-specific neurons (e.g., motoneurons). Cervical, thoracic, lumbar, and sacral areas of adult rat spinal cord (>3 months old) were microdissected and neural progenitors were isolated and cultured in serum-free medium containing FGF-2 (20 ng/ml) through multiple passages. Although all areas generated rapidly proliferating cells, the cultures were heterogeneous in nature and cell morphology varied within a given area as well as between areas. A percentage of cells from all areas of the spinal cord differentiate into cells displaying antigenic properties of neuronal, astroglial, and oligodendroglial lineages; however, the majority of cells from all regions expressed the immature proliferating progenitor marker vimentin. In established multipassage cultures, a few large, neuron-like cells expressed immunoreactivity for p75NGFr and did not express GFAP. These cells may be motoneurons. These results demonstrate that FGF-2 is mitogenic for progenitor cells from adult rat spinal cord that have the potential to give rise to glia and neurons including motoneurons.

Animals↗

Potential effect of cytokines on transgene expression in primary fibroblasts implanted into the rat brain.

Fibroblasts genetically modified with retroviral vectors fail to demonstrate long-term transgene expression upon implantation into the body. Although the mechanisms behind this phenomenon have not been elucidated, one likely cause is the response of the host to the graft. For example, genetically modified fibroblasts grafted into the brain are surrounded by activated microglia and astrocytes. The apparent inflammatory response can last for several weeks. In addition, the center of the graft is typically infiltrated with macrophage-like cells that appear to reside continuously within the graft. This proximity of inflammatory cells to the graft suggests that these cells may somehow influence transgene expression. In the current study, an in vitro model was used to test the effect cytokines [transforming growth factor-beta1 (TGF-beta1), interleukin-1beta, (IL-1beta) and tumor necrosis factor-alpha (TNF-alpha)] that are typically released by peripheral macrophages, activated microglia and/or astrocytes have on long-terminal repeat (LTR)-driven transgene expression in primary fibroblasts. Our data demonstrate that these cytokines can significantly reduce the steady-state level of proviral mRNA. The amount of proviral mRNA returned to control levels within 24 h if the cytokines were removed. In addition, the down-regulation of proviral mRNA levels could be prevented if the cells were incubated with dexamethasone (25 microM) concurrent with the introduction of cytokines. These data demonstrate that cytokines can down-regulate LTR-driven transgene expression in primary fibroblasts maintained in culture. This interaction may be a major reason why transduced cells do not demonstrate long-term transgene expression in vivo.

Animals↗

A rare case of Salmonella neck abscess.

A case of a deep neck abscess caused by Salmonella enteritidis in a 29-year-old previously undiagnosed diabetic patient is reported. Review of relevant literature has shown 11 cases of Salmonella neck abscess. Predisposing conditions include immunosuppression due to any cause. Salmonella sp. should be included in the differential diagnosis of head and neck abscesses in predisposed individuals and treated accordingly.

Abscess↗

Actinomycosis of the posterior triangle: a case report and review of the literature.

Actinomycosis presents acutely as an abscess, or as a chronic lesion mimicking malignancy, tuberculosis, or aspergillosis. Most disease involves the mouth and its immediate site of lymphatic drainage, the anterior triangle of the neck. We present a case of actinomycosis at the apex of the posterior triangle, suspected of being a malignancy, and discuss the importance of being aware of this as a cause of neck lumps. The diagnosis is usually made late because of the difficulties in culturing the organism, or in identifying characteristic 'sulphur granules' in pus or biopsy specimens. For these reasons, the disease is underdiagnosed. When acute or chronic neck lesions prove difficult to diagnose, microscopy and prolonged anaerobic culture of pus and biopsy specimens should be performed in addition in Ziehl-Neelsen staining, tuberculosis and fungal cultures. The tests should be repeated if negative. Specific treatment requires prolonged courses of antibiotics, despite adequate surgical excision, to prevent relapse.

Actinomycosis, Cervicofacial↗

Bipotent progenitor cell lines from the human CNS.

Human central nervous system (CNS) cell lines would substantially facilitate drug discovery and basic research by providing a readily renewable source of human neurons. We isolated clonal human CNS cell lines that had been immortalized with a tetracycline (Tc)-responsive v-myc oncogene; addition of Tc to the growth medium suppressed the oncoprotein rapidly and virtually completely, allowing differentiation to proceed. Two classes of bipotent precursor cells were immortalized: the first class had a default differentiation pathway of neurons only, and the second class had a default differentiation pathway of neurons and astrocytes. We found that after exposure to different external signals in vitro, the environment is capable of redirecting the fate of a particular cell, even in the case of the bipotent precursor cell whose default differentiation pathway was neurons only. These data suggest that extrinsic cues can prevail over intrinsic determinants in directing cell fate in the human CNS.

Astrocytes↗

Characterization of beta-glucuronidase in the retinal pigment epithelium.

PURPOSE: To study the biochemical and molecular characteristics of the lysosomal enzyme beta-glucuronidase (GUSB) in the retinal pigment epithelium (RPE) and other tissues of different species. METHODS: Freshly isolated and cultured cells were harvested, and GUSB activity was measured fluorimetrically in cell homogenates or tissue culture media using the synthetic substrate 4-methyl-umbelliferyl beta-D-glucuronide (4-MUG). The temperature and pH optima, and thermal stability of GUSB in the RPE and fibroblasts were established. Distribution of glycosaminoglycans (GAGs), the natural substrates of GUSB, in the RPE and fibroblast cell layer and media was examined by cellulose acetate electrophoresis following 72 h of metabolic labeling with Na2(35)SO4. Total or poly A(+)-RNA isolated from cells or tissues of different species were examined in Northern blots to identify GUSB mRNA transcripts. RESULTS: Among all the species, the activity of GUSB and its mRNA level was found to be consistently high in RPE cells. In RPE cultures, the activity was detected in the cell layer and the media, and the activity decreased in both compartments with serial passage. While the temperature and pH optima for the enzyme activity was similar across the species, the thermal stability was remarkably different. The GAG profiles in RPE cells were different from fibroblasts. Supplementation of the cultured cells with selected GAGs moderately increased the GUSB activity. A GUSB transcript was detected in all the tissues examined. In man, mouse, dog, and cat the size of the transcript was 2.4 kb, while the rat GUSB transcript was 2.7 kb. CONCLUSIONS: The ubiquitous distribution of GUSB was evident from the biochemical and molecular studies. Presence of a high level of GUSB activity in the RPE makes it an ideal model for studies of this enzyme both in normal as well as in diseases resulting in GUSB deficiency.

Animals↗

Absorption of ciprofloxacin and norfloxacin when administered as niosome-encapsulated inclusion complexes.

An attempt has been made to design suitable niosome-encapsulated drug delivery system for ciprofloxacin and norfloxacin. Encapsulation of ciprofloxacin and norfloxacin in niosomes was investigated and the nasal and intestinal absorption of the products studied. More than 80% of the drugs were successfully encapsulated to give products with sustained release characteristics. Encapsulation in niosomes also improved the stability of the antibacterial compounds. Although the systemic availability of these niosome-encapsulated antibacterial compounds was not increased after nasal administration, intestinal absorption was significantly higher in comparison with that of plain inclusion complexes.

Absorption↗

Differentiation of adult hippocampus-derived progenitors into olfactory neurons in vivo.

Neurogenesis continues throughout adulthood in discrete regions. Proliferative zones include the subependymal zone, from where progenitors migrate along the rostral migratory pathway to differentiate into neurons in the olfactory bulb, and the hippocampal subgranular zone, where they migrate and differentiate into granule neurons. Progenitors isolated from adult subependymal zone exhibit in vitro neurogenesis when stimulated with epidermal or fibroblast growth factor. Cultured adult rat hippocampal progenitors (AHPs) grafted to adult rat hippocampus show site-specific neuronal differentiation. Here we investigate determinants of multipotentiality in the adult central nervous system, by grafting AHPs into homotypic (hippocampus) or heterotypic (the rostral migratory pathway) neurogenic sites or a heterotypic, non-neurogenic site (the cerebellum). We found that grafts into neurogenic, but not nonneurogenic sites, showed neuronal differentiation. Furthermore, AHPs grafted in the rostral migratory pathway migrated into the olfactory bulb, differentiating into tyrosine-hydroxylase-positive neurons, a non-hippocampus phenotype. These results reveal that AHP populations can respond to persistent neuronal differentiation cues in the adult central nervous system.

Adult↗

Differentiation of the immortalized adult neuronal progenitor cell line HC2S2 into neurons by regulatable suppression of the v-myc oncogene.

A regulatable retroviral vector in which the v-myc oncogene is driven by a tetracycline-controlled transactivator and a human cytomegalovirus minimal promoter fused to a tet operator sequence was used for conditional immortalization of adult rat neuronal progenitor cells. A single clone, HC2S2, was isolated and characterized. Two days after the addition of tetracycline, the HC2S2 cells stopped proliferating, began to extend neurites, and expressed the neuronal markers tau, NeuN, neurofilament 200 kDa, and glutamic acid decarboxylase in accordance with the reduced production of the v-myc oncoprotein. Differentiated HC2S2 cells expressed large sodium and calcium currents and could fire regenerative action potentials. These results suggest that the suppression of the v-myc oncogene may be sufficient to make proliferating cells exit from cell cycles and induce terminal differentiation. The HC2S2 cells will be valuable for studying the differentiation process of neurons.

Animals↗

Fibroblast growth factor-2 protects entorhinal layer II glutamatergic neurons from axotomy-induced death.

The entorhinal cortex is a major relay between the hippocampus and other cortical and subcortical regions. Glutamatergic axons from layer II neurons form the entorhinal cortical projection to the hippocampus via the perforant pathway. We have demonstrated previously that lesion of the perforant pathway causes the death of approximately 30% of entorhinal layer II (ECL2) neurons. To elucidate mechanisms contributing to neuronal death and to investigate strategies preventing it, we identified the phenotype of the vulnerable neuronal population. Sections were immunolabeled with antibodies to the neuronal markers NeuN, glutamate, and calbindin-D28k, and to receptors for fibroblast growth factor-2 (FGFR1) and NMDA (NMDAR1) and were examined using confocal microscopy. Calbindin immunoreactivity was strikingly lamina-specific to ECL2, where one-third of all ECL2 neurons were calbindin-positive. Localization of glutamate revealed that half of the glutamatergic ECL2 neurons coexpressed calbindin. Quantification using unbiased stereology at 9 weeks after lesion of the perforant pathway revealed that the only ECL2 neuronal population that experienced a significant (70%) loss (20% of the total) was the population of glutamatergic ECL2 neurons that did not coexpress calbindin. All ECL2 neurons expressed FGFR1; therefore, we tested the role of FGF-2 in the survival of glutamatergic ECL2 neurons. We grafted fibroblasts genetically engineered to express nerve growth factor or FGF-2 and found that only FGF-2 grafts prevented loss of the vulnerable glutamatergic/calbindin-negative neurons. We present a hypothesis for the selective vulnerability of these glutamatergic/calbindin-negative ECL2 neurons and address the role of FGF-2 in neuronal rescue.

Afferent Pathways↗

Long-term survival of transplanted basal forebrain cells following in vitro propagation with fibroblast growth factor-2.

The intracerebral transplantation of freshly dissected fetal tissue containing cholinergic neurons of the developing basal forebrain has been reported to reverse lesion-induced or age-related cognitive deficits in animal models of cholinergic neuronal degeneration. Grafts of cultured fetal neurons, however, have generally shown poor cellular survival and limited therapeutic benefit. We tested the hypothesis that recent advances in the identification of growth factors that promote the survival and propagation of fetal precursor cells in vitro would improve the long-term survival of cultured neurons following intracerebral implantation. Dissociated cells from gestational Day 14 rodent basal forebrain were grown in chemically defined media supplemented with 20 ng/ml basic fibroblast growth factor. Two weeks postplating, numerous cells were present in the cultures and showed immunoreactive labeling for a variety of markers, including glutamic acid decarboxylase, neuron-specific enolase, neurofilament proteins, glial fibrillary acidic protein and, occasionally, choline acetyltransferase. To determine if cultured basal forebrain cells would survive intracerebral implantation, the cells were implanted homotypically into the nucleus basalis magnocellularis. To enhance the potential for graft survival in vivo, cells were also implanted into the nucleus basalis magnocellularis following an ibotenic acid lesion and into the denervated frontal cortex. Animals sacrificed between 2 weeks and 7 months following transplantation showed good and comparable graft survival in all sites. Immunocytochemical analysis revealed that representative populations of cells observed in vitro survived for prolonged periods in vivo, even in sites distal from their normal cellular targets. Thus, neuronal populations expanded in vitro can successfully survive and maintain cellular phenotypes post-transplantation. These results suggest a potential for isolating and growing specific neuronal populations in vitro for intracerebral transplantation.

Animals↗

Systemic lupus erythematosus and pulmonary hypertension during pregnancy: report of a case fatality.

The case of a 25-year-old pregnant woman with systemic lupus erythematosus and severe pulmonary hypertension is presented. The pregnancy was complicated by worsening right heart failure and pre-eclampsia, requiring a caesarian section at 29 weeks' gestation. On the fourth day postpartum, the patient's respiratory status worsened and she was transferred to the coronary care unit where she soon died from combined right heart failure and respiratory arrest. The presumed pathogenesis and etiology of lupus-related pulmonary hypertension are discussed, in addition to noninvasive tests and proposed management. Given that the mortality rate is very high during pregnancy and therapy is of limited value, women with lupus-associated pulmonary hypertension should avoid conceiving. Those who choose to become pregnant must be carefully managed by a multidisciplinary team.

Adult↗

Role of weaning in the nutritional status of infant--a longitudinal study in the rural area of Aligarh.

Influences of weaning practices on nutritional status were studied in a cohort of 200 infants over a period of one year in the rural area of Aligarh. Weaning was late in most of the infants under study. The nutritional status of infants up to 6 months was significantly better than that of infants more than 6 months of age. Most of them used the family-type food as weaning food.

Developing Countries↗