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Biomedical subjects

W K Nahm

Publications and source records attributed to W K Nahm.

8 recordsLinked to original sources

Systemic 5-fluorouracil producing an inflammatory response in porokeratosis.

Topical 5-fluorouracil has been used as an effective treatment for porokeratosis. Upon its treatment, an inflammatory effect occurs with the topical 5-fluorouracil. We report a case of a patient with disseminated superficial actinic porokeratosis displaying a comparable inflammatory process following therapy with systemic 5-fluorouracil used to manage a metastatic breast cancer.

Administration, Oral↗

Slow release iodine preparation and wound healing: in vitro effects consistent with lack of in vivo toxicity in human chronic wounds.

BACKGROUND: Antiseptic agents, particularly slow-release preparations, are increasingly being used in the management of chronic wounds. One such agent, cadexomer iodine, carries iodine (0.9% weight/weight) immobilized in beads of dextrin and epichlorhydrin and has been demonstrated to be highly effective in promoting healing of exudative wounds. However, there have been no studies directly assessing the potential lack of toxicity of cadexomer iodine on human cutaneous tissues. OBJECTIVES: To determine if, within a certain concentration range, cadexomer iodine is non-toxic to human cells and cutaneous tissue and to assess histologically human chronic exudative wounds that are being treated with cadexomer iodine. METHODS: We examined the effects of varying concentrations of cadexomer iodine on the viability of human fibroblasts in culture (by trypan blue exclusion). The morphology, cellular proliferation capacity (measured by [3H]thymidine uptake), ability to produce alpha 1(I) procollagen chain mRNA, and cell outgrowth from neonatal foreskin explants were also evaluated in human fibroblasts after incubation with various concentrations of cadexomer iodine. Moreover, biopsies of chronic exudative wounds concurrently treated with cadexomer iodine were stained with haematoxylin and eosin or a Gram stain and evaluated microscopically. RESULTS: At concentrations of up to 0.45%, cadexomer iodine was found to be non-toxic to fibroblasts in vitro; there were no changes in viability, morphology, cellular proliferation, ability to produce collagen, and cell outgrowth from explants. In vivo, skin biopsies of chronic exudative wounds being treated with cadexomer iodine demonstrated no evidence of cell necrosis, displayed re-epithelialization, and revealed bacteria within the cadexomer beads. CONCLUSIONS: These studies demonstrate that cadexomer iodine has definite non-toxic concentration ranges for fibroblasts in vitro, which are consistent with a lack of cellular toxicity in human chronic exudative wounds treated with cadexomer iodine. Cadexomer iodine may also have the additional property of trapping microorganisms.

Adult↗

The antifungal agent butenafine manifests anti-inflammatory activity in vivo.

BACKGROUND: Dermatophyte infections are often accompanied by a striking inflammatory reaction, alleviation of which has often been achieved by the concomitant but controversial use of topical steroidal agents. Recent investigations have suggested the presence of inherent anti-inflammatory properties associated with certain antifungal agents, particularly those within the allylamine class. Butenafine, the first and only approved representative of the benzylamine antifungals, possesses a chemical structure and antifungal activity similar to the allylamines. Although several studies have demonstrated excellent antimycotic efficacy, none has addressed anti-inflammatory properties associated with butenafine. OBJECTIVE: This study was designed to determine whether butenafine, a benzylamine antifungal, expresses anti-inflammatory activity in vivo. METHODS: A randomized single-blinded control investigation comparing the attenuation of UVB irradiation-induced erythema by butenafine, its proprietary base cream, and no application (negative control) was performed in humans. RESULTS: Butenafine demonstrated a significant and marked decrease in UVB-induced erythema as compared with both the base cream and the unaltered control. CONCLUSION: The benzylamine antifungal agent butenafine demonstrates inherent anti-inflammatory properties, in vivo, as demonstrated by reduced cutaneous erythema response after UVB irradiation.

Administration, Topical↗

Nonobligate role of early or sustained expression of immediate-early gene proteins c-fos, c-jun, and Zif/268 in hippocampal mossy fiber sprouting.

Axon sprouting in dentate granule cells is an important model of structural plasticity in the hippocampus. Although the process can be triggered by deafferentation, intense activation of glutamate receptors, and other convulsant stimuli, the specific molecular steps required to initiate and sustain mossy fiber (MF) reorganization are unknown. The cellular immediate early genes (IEGs) c-fos, c-jun, and zif/268 are major candidates for the initial steps of this plasticity, because they encode transcription factors that may trigger cascades of activity-dependent neuronal gene expression and are strongly induced in all experimental models of MF sprouting. The mutant mouse stargazer offers an important opportunity to test the specific role of IEGs, because it displays generalized nonconvulsive epilepsy and intense MF sprouting in the absence of regional cell injury. Here we report that stargazer mice show no detectable elevations in c-Fos, c-Jun, or Zif/268 immediate early gene proteins (IEGPs) before or during MF growth. Experimental results in stargazer, including (1) a strong IEGP response to kainate-induced convulsive seizures, (2) no IEGP response after prolongation of spike-wave synchronization, (3) no IEGP increase at the developmental onset of seizures or after prolonged seizure suppression, and (4) unaltered levels of the intracellular Ca2+-buffering proteins calbindin-D28k or parvalbumin, exclude the possibility that absence of an IEGP response in stargazer is either gene-linked or suppressed by known refractory mechanisms. These data demonstrate that increased levels of these IEGPs are not an obligatory step in MF-reactive sprouting and differentiate the early downstream molecular cascades of two major seizure types.

Animals↗

Association of invasive pneumococcal disease with season, atmospheric conditions, air pollution, and the isolation of respiratory viruses.

We examined the relation of invasive pneumococcal disease to season, atmospheric conditions, and the rate of respiratory virus isolation in a community-wide surveillance program in Houston. Among adults, the number of cases of pneumococcal bacteremia peaked in midwinter and declined strikingly in midsummer, indicating a high degree of inverse correlation with the ambient temperature. We detected significant correlations between the occurrence of pneumococcal disease and the isolation of respiratory syncytial virus (P < .001), influenza virus (P < .001), and all viruses except influenza virus (P < .001), as well as with air pollution, as measured by SO2 levels (P < .001). In contrast, the rate of invasive pneumococcal disease among infants and children was relatively more sustained from October through May, with a notable decrease in summer months; the incidence of pneumococcal disease was therefore less strongly correlated with cold weather and less closely associated with the isolation of respiratory syncitial virus or influenza virus. However, pneumococcal disease among infants and children was associated with isolation of these viruses after a 4-week lag period as well as with isolation of adenovirus and ragweed pollen counts. The finding, with regard to children, that correlations tended to be stronger for events that occurred 1 month previously than for those that occurred contemporaneously is consistent with the concept that viral or allergic events predispose to otitis media with effusion, which becomes suppurative and leads to pneumococcal bacteremia or meningitis. For adults, a more immediate predisposition to pneumococcal pneumonia and bacteremia because of viral infection or air pollution was suggested.

Adenoviruses, Human↗

Molecular and cellular plasticity in developing epileptic brain.

Defined transgenic models of epilepsy in the mouse represent unique opportunities to examine interactions between synchronous synaptic activity and cellular programs of brain development. We are beginning to acquire a list of the kinds of genes favoring sudden, intermittent aberrant discharges in central neurons, and we have found that, rather than arising from a few gene superfamilies regulating membrane excitability, they are involved in many diverse functions of the cell. Whereas some primary gene defects impinge directly on membrane electrogenesis and neurotransmitter signaling at synapses, others are too far removed from these processes to clearly visualize the steps by which they promote epileptogenesis. We have tantalizing evidence that several, and probably all, epilepsy genes entrain some degree of secondary molecular and cellular plasticity, and we can guess that these downstream rearrangements may account for the delayed onset of epileptic phenotypes in some syndromes. It is too early to tell whether these, or other induced changes, provide the basis for the reversibility of some epilepsies. The diversity of epilepsy genes and their intervening cellular phenotypes promise to provide a rich source of novel molecular targets for therapeutic discovery and will have a lot to teach us in the future about the developmental potential of neural circuits in the mammalian brain.

Animals↗

Aberrant expression of neuropeptide Y in hippocampal mossy fibers in the absence of local cell injury following the onset of spike-wave synchronization.

Stargazer mutant mice inherit a recessive neuronal excitability phenotype featuring frequent non-convulsive spike-wave seizures that arise from synchronous bursting in neocortical, thalamic and hippocampal networks. Immunocytochemistry reveals that granule cells in the mutant dentate gyrus aberrantly express neuropeptide Y (NPY) at multiple ages following the developmental onset of seizures. The ectopic NPY is selectively concentrated in the mossy fibers, co-localizing with the releasable dense core vesicle pool. The NPY content of native NPY+local circuit neurons is also elevated in the mutant CNS. There is no concurrent elevation of hippocampal 72 kDa heat shock protein (HSP72), glial fibrillary acidic protein (GFAP) or NADPH-diaphorase, three markers that are induced during cellular injury, and no evidence of granule cell loss. Since mossy fiber NPY expression appears after the developmental onset of spike-wave discharges and can be induced in wild type granule cells by electrical stimulation, the altered peptide phenotype is likely to reflect transynaptic gene induction triggered by synchronous bursting. These results link a specific pattern of repetitive synaptic input with selective molecular plasticity in dentate granule cells that may contribute to dynamic modifications in hippocampal network excitability.

Action Potentials↗