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Biomedical subjects

Ji-Eun Lee

Publications and source records attributed to Ji-Eun Lee.

At least 19 recordsLinked to original sources

Hydrogen peroxide triggers the proteolytic cleavage and the inactivation of calcineurin.

Increases in the levels of reactive oxygen species (ROS) are correlated with a decrease in calcineurin (CN) activity under oxidative or neuropathological conditions. However, the molecular mechanism underlying this ROS-mediated CN inactivation remains unclear. Here, we describe a mechanism for the inactivation of CN by hydrogen peroxide. The treatment of mouse primary cortical neuron cells with Abeta(1-42) peptide and hydrogen peroxide triggered the proteolytic cleavage of CN and decreased its enzymatic activity. In addition, hydrogen peroxide was found to cleave CN in different types of cells. Calcium influx was not involved in CN inactivation during hydrogen peroxide-mediated cleavage, but CN cleavage was partially blocked by chloroquine, indicating that an unidentified lysosomal protease is probably involved in its hydrogen peroxide-mediated cleavage. Treatment with hydrogen peroxide triggered CN cleavage at a specific sequence within its catalytic domain, and the cleaved form of CN had no enzymatic ability to dephosphorylate nuclear factor in activated T cells. Thus, our findings suggest a molecular mechanism by which hydrogen peroxide inactivates CN by proteolysis in ROS-related diseases.

Amyloid beta-Peptides↗

Discoidin domain receptor 2 is involved in the activation of bone marrow-derived dendritic cells caused by type I collagen.

Discoidin domain receptors (DDRs), DDR1 and DDR2, are non-integrin receptor tyrosine kinases for collagen in many cell types. In this study, we investigated the contributions of DDRs to the activation of mouse bone marrow-derived dendritic cells (DCs) by type I collagen (ColI). Our data showed that transcript and protein of DDR2 were expressed constitutively in immature DCs and upregulated in TNF-alpha-stimulated mature DCs. ColI treatment induced DDR2 phosphorylation and subsequently induced the upregulation of IL-12 production, CD86 expression, and antigen uptake activity by immature DCs. Depletion of DDR2 by specific siRNA attenuated significantly an increase in expression of IL-12 and CD86 in ColI-treated DCs. Additionally, DDR2-ColI interaction upregulated the ability of mature DCs to activate allogeneic T cells. These findings suggest that DDR2 is a critical collagen receptor for DC activation and that DDR2-collagen interaction plays an important role in the functional capacity of DCs regulating immune responses.

Animals↗

Assembly of a heterobinuclear 2-D network: a rare example of endo- and exocyclic coordination of Pd(II)/Ag(I) in a single macrocycle.

The S3O2 macrocycle L1 was synthesized by a dithiol-dihalide coupling reaction under high-dilution conditions. The reaction of L1 with K2PdCl4 afforded an exocoordinated complex 1, [cis-Cl2Pd(L1)], which can then be manipulated to provide a heterobinuclear complex 3, {[Pd(L1)Ag(NO3)(2.5)](NO3)(0.5)}n, utilizing endocyclic Pd(II) and exocyclic Ag(I) in a single macrocycle through a successive reaction with AgNO3. The network of 3 contains a unique honeycomb-like 2-D sheet made up of the repeating unit [Ag6(NO3)6].

Journal Article↗

Exo-coordination-based supramolecular silver(I) complexes of S2O macrocycles: effect of ligand isomerism on the structural diversity.

An isomeric series of S2O macrocycles incorporating a xylyl group at the ortho (L1), meta (L2), and para (L3) positions were employed to examine the influence of the ring rigidity on silver(I) coordination modes in resulting supramolecular complexes (1-3); L1 and L3 afforded sandwich (1; Ag:L1 = 1:2) and infinite 1-D (3) complexes, respectively; otherwise, L2 gave the 1-D polymer (2a), 2:3 club sandwich (2b), and unique 2:4 bridged dinuclear complex (2c) complexes, in which their topologies vary with the solvent used.

Ligands↗

Corneal tattooing to mask subsequent opacification after amniotic membrane grafting for stromal corneal ulcer.

PURPOSE: We aimed to report on the cosmetic efficacy of corneal tattooing using India ink for resolving corneal opacities resulting from amniotic membrane grafting carried out to promote corneal wound healing in stromal corneal ulcers. METHODS: Amniotic membrane grafting of corneal ulcers was carried out in three patients. After corneal re-epithelialization, a 30-gauge needle filled with India ink was placed into the amniotic membrane space located between the regenerated corneal epithelium and the stromal bed. The ink was then carefully injected. RESULTS: The cornea was successfully stained with India ink in all cases. There were no significant complications during the mean follow-up period of 17 months. All the patients were satisfied with the corneal staining. CONCLUSION: When a corneal opacity occurs after an amniotic membrane graft for stromal corneal ulcer, corneal tattooing by intrastromal injection of India ink into the amniotic membrane space may be a very useful method of achieving a good cosmetic result.

Amnion↗

Enhanced osteoclastogenesis in 4-1BB-deficient mice caused by reduced interleukin-10.

UNLABELLED: Enhanced osteoclastogenesis was observed in bone marrow-derived macrophage cells from 4-1BB-deficient mice than in those from wildtype mice. 4-1BB and 4-1BB ligand interaction may play a role at a certain stage of osteoclast formation through increased level of IL-10, a negative regulator of osteoclastogenesis. INTRODUCTION: 4-1BB is an inducible T-cell costimulatory molecule and a member of the TNF receptor family. The expression pattern of 4-1BB and 4-1BB ligand (4-1BBL) has suggested that 4-1BB plays a role not only in various responses related to innate immunity but also in bone metabolism. MATERIALS AND METHODS: Osteoclast formation was evaluated in bone marrow-derived macrophage cells (BMMs) from wildtype and 4-1BB-deficient (4-1BB-/-) mice. Expression of interleukin-10 (IL-10) during osteoclast formation was analyzed at the mRNA and protein levels. RESULTS: Expression of IL-10 was higher in RANKL-stimulated wildtype BMMs than 4-1BB-/- BMMs. When 4-1BBL was stimulated with 4-1BB-Fc fusion protein, the expression of IL-10 in BMMs increased. Neutralization of IL-10 was not as effective in preventing inhibition by IL-10 of osteoclast differentiation in 4-1BB-/- BMMs as in wildtype BMMs. When IL-10 was added to the culture medium, osteoclast formation was inhibited more efficiently in the 4-1BB-/- BMMs than in the wildtype BMMs. CONCLUSIONS: Interaction of 4-1BB and 4-1BBL stimulates IL-10 production through 4-1BBL signaling. 4-1BBL plays a role at a certain stage of osteoclast formation, and IL-10 may mediate this effect. The elevated level of osteoclastogenesis in 4-1BB-/- BMMs may thus be caused, in part, by a lower level of IL-10.

4-1BB Ligand↗

Alteration of collapsin response mediator protein-2 expression in focal ischemic rat brain.

Collapsin response mediator protein-2 is highly expressed in the adult brain and it has been speculated to play roles in nervous system diseases. Studies determined for the first time whether collapsin response mediator protein-2 expression is altered in brain ischemia. We observed ischemia-modulated expression of different-sized collapsin response mediator protein-2. As the ischemic duration increased, the expression level of a known major 62 kDa collapsin response mediator protein-2 was decreased, whereas the expression of a newly-detected 58 kDa collapsin response mediator protein-2 was clearly increased in middle carotid artery-occluded rat brain tissues. Analysis of the two collapsin response mediator protein-2 bands revealed that the novel 58 kDa collapsin response mediator protein-2 observed in middle carotid artery-occluded rat brain tissues was a cleavage form; the predicted cleavage site is located at the carboxy-terminal of the collapsin response mediator protein-2. These data suggest that collapsin response mediator protein-2 is an important candidate controlling ischemic stroke.

Amino Acid Sequence↗

Hematuria and proteinuria in a mass school urine screening test.

A total of 1,044 school children identified with hematuria and/or proteinuria during a mass school urine screening test were referred to pediatric nephrologists at 13 hospitals in Korea. These children had isolated hematuria (IH) (60.1%), isolated proteinuria (IP) (26.4%: transient, 19.6%; orthostatic, 4.9%; persistent, 1.9%) or combined hematuria and proteinuria (CHP) (13.5%). The patient's history, physical examination, laboratory tests, kidney ultrasound and Doppler ultrasonography were obtained. Renal biopsies were performed on 113 children who showed severe proteinuria, hypertension, abnormal renal function, family history of chronic renal disease, systemic diseases or persistent hematuria and/or proteinuria for more than 12 months. IgA nephropathy (IgAN), thin basement membrane nephropathy (TBMN), membranoproliferative glomerulonephritis (MPGN), focal segmental glomerulosclerosis (FSGS), other GN, Alport syndrome and lupus nephritis were detected. IgAN and TBMN were the most common causes in the CHP group and IH group, respectively. Abnormal findings on the renal ultrasound with or without Doppler ultrasonography were noted in 147 cases (suspected nutcracker phenomenon, 65; increased parenchymal echogenicity, 40; hydronephrosis, 15). This study showed that the use of a mass school urine screening program can detect chronic renal disease in its early stage and recommends that more attention should be paid to identifying those children with CHP and massive proteinuria. A school urine screening program can detect chronic renal disease in its early stage. When mass screening is used, the initial aggressive diagnostic procedures such as renal biopsy are not needed. In addition, a regular follow-up for those children with IH and IP is certainly warranted.

Adolescent↗

Donor effect on supramolecular structures of silver(I) perchlorate complexes of macrocycles with O2S2X (X=S, O and NH) donor sets.

By virtue of simple one donor variations of O(2)S(2)X-donor macrocycles (L(1): X=S, L(2): X=O and L(3): X=NH) towards silver(I) perchlorates, four supramolecular complexes (1-3) with different topologies have been isolated; L(1) afforded solvent- and anion-free sandwich complex (1), otherwise L(2) and L(3) gave the dimeric (2a), 1-D polymeric (2b), and tetrameric bowl-type (3) complexes with solvent or anion coordination.

Journal Article↗

Cadmium(II) and mercury(II) complexes of an NO2S2-donor macrocycle and its ditopic xylyl-bridged analogue.

The NO2S2-donor macrocycle (L1) was synthesised from the ring closure reaction between Boc-N-protected 2,2'-iminobis(ethanethiol) (3) and 2,2'-(ethylenedioxy)bis(benzyl chloride) (4) followed by deprotection of the Boc-group. alpha,alpha'-Dibromo-p-xylene was employed as a dialkylating agent to bridge two L1 to yield the corresponding N-linked product (L2). The X-ray structure of L2 (as its HBr salt) is described. A range of Cd(II) and Hg(II) complexes of L1 (6-9) and L2 (10-12) were prepared and characterised. Reaction of HgX2 (X = Br or I) with L1 afforded [Hg(L1)Br]2[Hg2Br6].2CH2Cl2 6 and [Hg(L1)I(2)] 7, respectively. For 6, the Hg(II) ion in the complex cation has a distorted tetrahedral coordination environment composed of S2N donor atoms from L1 and a bromo ligand. In 7 the coordination geometry is highly distorted tetrahedral, with the macrocycle coordinating in an exodentate manner via one S and one N atom. The remaining two coordination sites are occupied by iodide ions. [Hg(L1)(ClO4)]ClO4 8 was isolated from the reaction of Hg(ClO4)2 and L1. The X-ray structure reveals that all macrocyclic ring donors bind to the central mercury ion in this case, with the latter exhibiting a highly distorted octahedral coordination geometry. The O2S2-donors from the macrocyclic ring define the equatorial plane while the axial positions are occupied by the ring nitrogen as well as by an oxygen from a monodentate perchlorato ion. Reaction of Cd(NO3)(2).4H2O with L1 afforded [Cd(L1)(NO3)2](.)0.5CH2Cl2 9 in which L1 acts as a tridentate ligand, binding exo-fashion via its S2N donors. The remaining coordination positions are filled by two bidentate nitrate ions such that, overall, the cadmium is seven-coordinate. Reactions of HgX2(X = Br or I) with L2 yielded the isostructural 2 : 1 (metal : ligand) complexes, [Hg2(L2)Br4] 10 and [Hg2(L2)I(4)] 11. Each mercury ion has a distorted tetrahedral environment made up of S and N donors from an exodentate L2 and two coordinated halides. Contrasting with this, the reaction of L2 with Cd(NO3)(2).4H2O yielded a 1-D coordination network, {[Cd2(L2)(NO3)4].2CH2Cl2}n 12 in which each ring of L2 is exo-coordinated via two S atoms and one N atom to a cadmium ion which is also bound to one monodentate and one bidentate nitrate anion. The latter also has one of its oxygen atom attached to a neighboring cadmium via a nitroso (mu2-O) bridge such that the overall coordination geometry about each cadmium is seven-coordinate. The [Cd(L2)0.5(NO3)2] units are linked by an inversion to yield the polymeric arrangement.

Journal Article↗

Corneal endothelial cell change after phacoemulsification relative to the severity of diabetic retinopathy.

PURPOSE: To investigate the differences in corneal endothelial cell morphology between diabetic patients who were divided by the degree of the severity of diabetic retinopathy and normal patients after phacoemulsification with intraocular lens (IOL) implantation. SETTING: Department of Ophthalmology, College of Medicine, Pusan National University, Pusan, Korea. METHODS: Before and 6 months after phacoemulsification, specular microscopy was used to evaluate the number and morphology of endothelial cells in patients with diabetic retinopathy. The patients were divided into 3 groups: group I (n=30 eyes), without diabetes; group II (n=30 eyes), diabetes with severe nonproliferative diabetic retinopathy; group III (n=30 eyes), diabetes with high-risk proliferative diabetic retinopathy (PDR). RESULTS: Postoperative corneal endothelial cell density and hexagonality were significantly decreased and the coefficient of variation in cell size increased in all groups, in contrast to the preoperative state (P<.05). During the postoperative 6 months, the percentage of hexagonal cells showed a tendency to decrease progressively, and this was a significant difference between the 3 groups (P<.05). However, the patterns of change in endothelial cell density and the coefficient of variation in cell size were not different between the groups (P>.05). At the postoperative 6 months, the corneal endothelial cell density and the coefficient of variation in cell size of high-risk PDR patients were statistically changed compared with normal persons (P<.05). However, the percentage of hexagonal cell was not significantly difference between diabetic retinopathy patients and normal patients (P>.05). CONCLUSIONS: Corneal endothelial cell density significantly decreased and the coefficient of variation in cell size significantly increased for high-risk PDR patients undergoing phacoemulsification, in contrast to normal persons at the postoperative 6 months.

Adult↗

A novel mutation (A148V) in the glucose 6-phosphate translocase (SLC37A4) gene in a Korean patient with glycogen storage disease type 1b.

We report a Korean patient with glycogen storage disease type 1b (GSD-1b) whose diagnosis was confirmed by liver biopsy and laboratory results. The patient presented with delay of puberty and short stature on admission and had typical clinical symptoms of GSD as well as chronic neutropenia and inflammatory bowel disease. Mutation analysis of the glucose 6-phosphate translocase 6-phosphate translocase (SLC37A4) gene revealed that the patient was a compound heterozygote of two different mutations including a deletion mutation (c.1042_1043delCT; L348fs) and a missense mutation (A148V). The L348fs mutation was inherited from the patient's father and has been reported in an Italian family with GSD-1b, while the A148V mutation was transmitted from the patient's mother and was a novel mutation. To the best of our knowledge, this is the first report of genetically confirmed case of GSD-1b in Korean.

Antiporters↗

Developmental immunotoxicology of lead.

The heavy metal, lead, is a known developmental immunotoxicant that has been shown to produce immune alterations in humans as well as other species. Unlike many compounds that exert adverse immune effects, lead exposure at low to moderate levels does not produce widespread loss of immune cells. In contrast, changes resulting from lead exposure are subtle at the immune cell population level but, nevertheless, can be functionally dramatic. A hallmark of lead-induced immunotoxicity is a pronounced shift in the balance in T helper cell function toward T helper 2 responses at the expense of T helper 1 functions. This bias alters the nature and range of immune responses that can be produced thereby influencing host susceptibility to various diseases. Immunotoxic responses to lead appear to differ across life stages not only quantitatively with regard to dose response, but also qualitatively in terms of the spectrum of immune alterations. Experimental studies in several lab animal species suggest the latter stages of gestation are a period of considerable sensitivity for lead-induced immunotoxicity. This review describes the basic characteristics of lead-induced immunotoxicity emphasizing experimental animal results. It also provides a framework for the consideration of toxicant exposure effects across life stages. The existence of and probable basis for developmental windows of immune hyper-susceptibility are presented. Finally, the potential for lead to serve as a perinatal risk factor for childhood asthma as well as other diseases is considered.

Aging↗

Induction of cell proliferation and beta-catenin expression in rat utricles in vitro.

Limited regenerative response occurs in mammalian vestibular epithelia, although vestibular hair cell regeneration in mammals has been demonstrated under a variety of experimental conditions. Beta-catenin is known to play an important role in both cell-cell adhesion and signal transduction associated with cell proliferation. This study evaluated cell proliferation activity in mammalian vestibular epithelia in organotypic culture and examined the involvement of beta-catenin in cell proliferation in vestibular epithelia. After 72 h of culture, utricles with or without induction of cell proliferation were examined. Cell proliferation was induced by brief exposure to forskolin and supplementation with fetal bovine serum. Cell proliferation activity was assessed by bromodeoxyuridine (BrdU) labeling. Immunohistochemistry was employed for analysis of cellular distribution of beta-catenin. In utricles cultured without induction of cell proliferation. BrdU labeling was not found in vestibular epithelia. Expression of beta-catenin was found in the area corresponding to the distribution of adherens junctions in vestibular epithelia. However, BrdU labeling was identified in sensory epithelia of utricles following induction of cell proliferation, although the number of BrdU-positive cells in sensory epithelia was very limited. Accumulation of beta-catenin was occasionally found in proliferating cells in sensory epithelia; however, it was not always found in BrdU-positive cells. The present findings suggest that beta-catenin may play a role in the induction of cell proliferation in mammal vestibular epithelia.

Animals↗

Expression of calretinin by fetal otocyst cells after transplantation into damaged rat utricle explants.

Severe damage by acoustic overstimulation or ototoxins induces inner ear hair cell loss, resulting in permanent hearing loss and balance disorders because hair cell regeneration scarcely occurs in the inner ear sensory organs of mammals. In this study, to evaluate the possibilities of cell transplantation therapy for damaged inner ear sensory organs, dissociated cell cultures of fetal otocyst cells (FOCs) were established from embryonic day 12.5 (E12.5) rat inner ears, and transplanted into gentamicin-treated explants of vestibular sensory epithelia. Two weeks after transplantation, immunohistochemical analysis demonstrated that some of the grafted FOCs survived within the vestibular sensory epithelia and expressed epitopes of calretinin. one of the hair cell marker proteins. These findings indicate that FOCs have the potential to migrate into damaged vestibular epithelia and differentiate into hair cell immunophenotypes. Cell transplantation therapy may be available for functional regeneration in inner ear diseases.

Animals↗

Corneal endothelial changes as a clinical diagnostic indicator of dentatorubropallidoluysian atrophy.

OBJECTIVE: To present a rare case of patient diagnosed with dentatorubropallidoluysian atrophy (DRPLA) accompanied by corneal endothelial cell loss. METHODS: A 37-year-old man with choreoathetoid movement and cerebellar ataxia was diagnosed with DRPLA based on a DNA analysis compared with that of healthy control subjects. We examined the best corrected visual acuity, color vision, light reflex, topography, corneal thickness, fundus, fluorescein angiograpic findings, the visual field, ERG, specular microscopy as well as MRI and serologic tests. RESULTS: The best corrected visual acuity was 20/20 in both eyes by Snellen chart, and the other ocular findings were within normal limits except for a significantly decreased corneal endothelial cell density, 876 cells/mm in the right eye and 941 cells/mm in the left eye. CONCLUSIONS: A patient with neurodegenerative disorders such as choreathetoid movement, myoclonic seizure, cerebellar ataxia, and dementia should be examined specifically by specular microscopy because corneal endothelial cell loss is the only clinical diagnostic indicator of DRPLA.

Adult↗

Developmental immunotoxicity of dexamethasone: comparison of fetal versus adult exposures.

Dexamethasone-21 phosphate was administered (s.c.) to pregnant CD rats at days 6-21 of gestation (0, 0.0625, 0.125, 0.25, and 0.5 mg/kg/day) with identical exposure of non-pregnant adult females. Some reproductive (anogenital distance) and growth (body weight) measures of pups were altered. In the juvenile (5 weeks), the delayed type hypersensitivity response to KLH was significantly reduced at all doses examined and this pattern continued into adulthood (13 weeks). In contrast, the DTH response of adults exposed to DEX was unaltered even at the highest dose. Few DEX-induced changes were seen in offspring or adult blood parameters or in splenocytes analyzed for cell surface makers (by flow cytometry). The thymus of both exposed pups (both ages) and adults showed a marked reduction in the medulla/lobe area beginning with the 0.125 mg/kg/day DEX exposure level. Macrophage production of TNF and NO was only marginally affected as was splenocyte production of IL-4 and IFN-gamma. In contrast, pups assessed as juveniles were significantly depressed in splenic IL-2 and IL-10 production. DEX exposure altered serum antibody levels across age groups with an increase of KLH-specific IgG (beginning with the 0.0125 mg/kg/day dose) while total IgE was reduced. These results suggest that while DEX exposure produces some common alterations following in utero versus adult exposure, fetal exposure (even at the lowest doses tested) produces marked and persistent functional loss (DTH) not evident in exposed adults. Furthermore, there was no apparent advantage in delaying immune assessment until the offspring reached adulthood.

Animals↗

Menin, a tumor suppressor, represses JunD-mediated transcriptional activity by association with an mSin3A-histone deacetylase complex.

Menin, a gene product of multiple endocrine neoplasia type I (MEN1), is known to act as a tumor suppressor to repress JunD transcription factor. However, the mechanism by which Menin represses JunD transcriptional activity was still unclear. In this study, we found that Menin is a corepressor against JunD transcriptional activity via recruitment of histone deacetylases in an mSin3A-dependent manner. The amino acid search revealed that central domain of Menin includes a alpha-helical mSin3-interacting domain [SID (371-387)]. The SID mutation of Menin (L381P/A385P) abolished the interaction between mSin3A and paired amphipathic helix 2 domain of Menin and reduced its ability to repress JunD transcriptional activity, implicating that SID of Menin is important for recruiting an mSin3A-histone deacetylase complex to repress JunD transcriptional activity.

Amino Acid Sequence↗