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Seung Hun Lee

Publications and source records attributed to Seung Hun Lee.

16 recordsLinked to original sources

Population-level genomic surveillance of human norovirus using wastewater-based whole-genome sequencing.

Wastewater-based surveillance has garnered increasing attention as a valuable approach for capturing community-level infection dynamics that are often difficult to detect through clinical reporting systems alone. In this study, we analyzed human norovirus genotype distributions and whole-genome-level variations in wastewater samples collected in Gwangju, Korea. These results were interpreted in conjunction with a documented foodborne outbreak to evaluate the epidemiological relevance of wastewater-based monitoring. Human norovirus concentrations were quantified using TaqMan Array Card-based RT-qPCR, and whole-genome next-generation sequencing (NGS) was performed to obtain viral read counts and reads per kilobase per million filtered reads values. Overall, strong correlations were observed between RT-qPCR-based concentrations and NGS-derived metrics. Genotype dynamics varied among wastewater treatment plants, reflecting differences in catchment size and local population characteristics. In particular, the relative abundance of GII.17[P17] increased during epidemiological week 50, temporally coinciding with a documented local foodborne outbreak. Variant analysis revealed that wastewater samples exhibited mixed nucleotide patterns, with multiple alleles coexisting at varying relative frequencies rather than fixed substitutions. Notably, some nonsynonymous variants detected in clinical samples were also observed in wastewater samples collected surrounding the outbreak period. Together, these findings demonstrate that wastewater-based whole-genome surveillance can capture both genotype-level shifts and nucleotide-level dynamics at the population scale, highlighting its potential as a complementary tool for monitoring community-level norovirus circulation and outbreak-associated genotype dynamics.IMPORTANCEWastewater-based surveillance is increasingly recognized as a promising approach for capturing community-level infection dynamics that are often missed by clinical surveillance. In this study, we applied whole-genome sequencing to wastewater samples collected in Gwangju, South Korea, to comprehensively characterize human norovirus genotype distributions and genetic variation. Distinct genotype patterns were observed across wastewater treatment plants, reflecting differences in catchment population size and local characteristics. Notably, an increase in the GII.17[P17] genotype detected in wastewater coincided with a foodborne outbreak investigated in Gwangju, demonstrating the potential of wastewater surveillance to reflect ongoing community transmission and emerging outbreak-associated genotypes. In addition, wastewater samples contained diverse and coexisting genetic variants, capturing population-level viral diversity and evolutionary dynamics that are not readily detected through clinical surveillance alone. These findings highlight the value of wastewater-based whole-genome surveillance for monitoring community-level viral circulation and support its integration as a complementary strategy to existing clinical surveillance systems.

genotype dynamics↗

An update of the defensive barrier function of skin.

Skin, as the outermost organ in the human body, continuously confronts the external environment and serves as a primary defense system. The protective functions of skin include UV-protection, anti-oxidant and antimicrobial functions. In addition to these protections, skin also acts as a sensory organ and the primary regulator of body temperature. Within these important functions, the epidermal permeability barrier, which controls the transcutaneous movement of water and other electrolytes, is probably the most important. This permeability barrier resides in the stratum corneum, a resilient layer composed of corneocytes and stratum corneum intercellular lipids. Since the first realization of the structural and biochemical diversities involved in the stratum corneum, a tremendous amount of work has been performed to elucidate its roles and functions in the skin, and in humans in general. The perturbation of the epidermal permeability barrier, previously speculated to be just a symptom involved in skin diseases, is currently considered to be a primary pathophysiologic factor for many skin diseases. In addition, much of the evidence provides support for the idea that various protective functions in the skin are closely related or even co-regulated. In this review, the recent achievements of skin researchers focusing on the functions of the epidermal permeability barrier and their importance in skin disease, such as atopic dermatitis and psoriasis, are introduced.

Animals↗

An unusual case with membranous lipodystrophy in a hypertensive patient with transepidermal elimination.

Membranous lipodystrophy represents a peculiar type of fat necrosis that is present in patients with various types of skin disease. It is characterized by the presence of microcysts and macrocysts and is lined by amorphous eosinophilic material with a crenelated arabesque appearance. These findings have been associated with lupus erythematosus, diabetes mellitus, erythema nodosum, trauma, etc. We report a case of a 43-year-old woman who had a red to purple asymptomatic indurated plaque, approximately seven cm in diameter and on the left arm. She was a chronic hepatitis B antigen carrier and had hypertension for four years. Histopathology of the biopsied lesion showed transepidermal elimination of altered collagen and elastic fibers, as well as membranous lipodystrophy changes. There were hypertensive vascular changes including lymphohistiocytic infiltration around the vascular wall, swelling of endothelial cells, increased thickness of the vascular walls, and narrowing of the lumen. We report a case showing transepidermal elimination with membranous lipodystrophy. We carefully suggest that the secondary phenomenon of transepidermal elimination was associated with membranous lipodystrophy and degenerate connective tissues.

Adult↗

Phytocomponents of triterpenoids, oleanolic acid and ursolic acid, regulated differently the processing of epidermal keratinocytes via PPAR-alpha pathway.

Naturally occurring triterpenoids such as oleanolic acid (OA) and ursolic acid (UA) are known to have anti-inflammatory and anticarcinogenic activities in some types of cells. Although it has been reported that UA increases the amount of ceramide in keratinocytes, there is little study on the mechanism of triterpenoids involved in the differentiation of keratinocytes as well as their effects on epidermal permeability barrier. A study was therefore conducted to determine whether OA and UA could stimulate the differentiation of epidermal keratinocytes through peroxisome proliferator-activated receptor (PPAR)-alpha activation. This work was then extended to investigate the rate of formation of cornified envelope as a marker in the terminal differentiation of keratinocytes and the amount of transglutaminase in human keratinocytes treated with OA and UA. It was shown that OA induced the differentiation of keratinocytes, whereas UA had little effect. In addition, reporter gene assay using PPAR response element activity demonstrated that OA might be related to the increase of PPAR-alpha activity in CV-1 cells. Moreover, it enhanced the recovery of epidermal permeability barrier function as well as increased ceramides in epidermis after topical application. We therefore propose that the effect of OA on the stimulation of differentiation in epidermal keratinocytes seems to be highly related to activation of PPAR-alpha.

Animals↗

Persistent elevation of C-reactive protein may predict cardiac hypertrophy and dysfunction in patients maintained on hemodialysis.

BACKGROUND: C-reactive protein (CRP), which reflects chronic inflammation, is a strong predictor of cardiovascular mortality in hemodialysis patients. We investigated whether persistent elevation of CRP is associated with cardiac function and morphology in patients maintained on hemodialysis. METHODS: Predialysis high-sensitivity CRP (hs-CRP) was measured twice at an interval of 3 weeks in 52 stable hemodialysis patients, and echocardiographic studies were performed. RESULTS: 25 patients showed persistent elevation of predialysis hs-CRP (>3 mg/l, high CRP group). Patients in the high CRP group had a lower dialysis dose (p < 0.01), higher troponin T (p < 0.01), and higher fibrinogen (p < 0.01). Echocardiographic studies showed that left atrial diameter (LA, p < 0.05), interventricular septal thickness (IVST, p < 0.05), left ventricular end-diastolic volume (LVEDV, p < 0.05), and left ventricular mass index (LVMI, p < 0.05) were higher in the high CRP group. However the ejection fraction (EF) was lower in the high CRP group (p < 0.05), which also contained more patients with low EF (<40%) (p < 0.01). There was no difference in diabetes mellitus, acute infection and type of vascular access between the groups. hs-CRP level was positively correlated with troponin T (r = 0.416, p < 0.01) and fibrinogen (r = 0.560, p < 0.001), and IVST with hs-CRP level (r = 0.291, p < 0.05), whereas the EF was negatively correlated with hs-CRP (r = -0.301, p < 0.05). In addition, the high CRP group correlated positively with IVST (r = 0.281, p < 0.05), LVEDV (r = 0.322, p < 0.05), and LVMI (r = 0.312, p < 0.05) and negatively with EF (r = -0.311, p < 0.05). On multivariate analysis, the high CRP group (beta = -0.312, beta = 0.238, and beta = 0.318, respectively) was a significant predictor of EF (R = 0.62, p = 0.025), LVMI (R = 0.928, p = 0.02) and IVST (R = 0.64, p = 0.01). CONCLUSIONS: Persistent elevation of CRP, which is an independent risk factor for EF, LVMI and IVST, may predict cardiac hypertrophy and dysfunction in patients maintained on hemodialysis.

Adult↗

Attenuation of interstitial inflammation and fibrosis by recombinant human erythropoietin in chronic cyclosporine nephropathy.

BACKGROUND: Evidence suggests that recombinant human erythropoietin (rHuEPO) protects neurons and cardiomyocytes from acute insults. We investigated the protective effect of rHuEPO on cyclosporine (CsA)-induced renal injury. METHODS: CsA (15 mg/kg/day) was given to rats for 1 or 4 weeks, and rHuEPO was concurrently administered at a dose of 100 units/kg (thrice weekly). Effects of rHuEPO on CsA-induced renal injury were evaluated with tubulointerstitial fibrosis (TIF) score, macrophage infiltration, expression of proinflammatory and profibrotic cytokines, and apoptotic cell death. RESULTS: Administration of rHuEPO decreased TIF score and the number of macrophages, which increased significantly in CsA-treated rat kidneys. At the molecular level, rHuEPO treatment decreased proinflammatory mediators (osteopontin and C-reactive protein) and profibrotic mediators (transforming growth factor-beta1 and transforming growth factor-beta1-inducible gene-h3). Increased apoptotic cell death in CsA-treated rat kidneys was significantly decreased with rHuEPO cotreatment, and apoptosis-related genes were regulated in favor of cell survival (increased Bcl-2 and suppressed caspase-3). CONCLUSION: rHuEPO has a renoprotective effect against chronic CsA-induced renal injury.

Animals↗

Stimulation of epidermal calcium gradient loss and increase in TNF-alpha and IL-1alpha expressions by glycolic acid in murine epidermis.

In a previous study, we reported that alpha-hydroxy acids (AHA), such as glycolic acid and lactic acid, did not induce any significant changes in transepidermal water loss for normal murine skin. The ultrastructural observations, however, showed that the extent of lamellar body exocytosis significantly increased. Because AHA can theoretically decrease the calcium ion concentration by chelation, topical AHA may induce the loss of epidermal calcium gradient by lowering the calcium ion concentration in the granulocytes and, subsequently, induce lamellar body secretion. The aim of this study is to verify that glycolic acid could modulate the epidermal calcium gradient and increase lamellar body exocytosis. Seventy per cent of glycolic acid aqueous solution was applied to the normal skin of hairless mice and biochemical and morphological studies were performed. The loss of epidermal calcium gradient was observed in glycolic-acid-applied skin of hairless mice and subsequent barrier function recovery processes, such as an increase in lamellar body secretion, were observed. The extracellular glycolic acid was found to inhibit the change in intracellular calcium ion concentration in response to extracellular calcium ion concentration changes in the cultured mouse keratinocyte in vitro. The protein and mRNA expressions of tumour necrosis factor-alpha and interleukin-1alpha in the murine epidermis were significantly increased after glycolic acid application. An in vitro study using cultured keratinocytes suggested that glycolic acid could lower the calcium ion concentration, at least in part, through the chelating effects of the glycolic acid on the cationic ions.

Animals↗

Iontophoresis and sonophoresis stimulate epidermal cytokine expression at energies that do not provoke a barrier abnormality: lamellar body secretion and cytokine expression are linked to altered epidermal calcium levels.

We performed this study to identify whether the expression of epidermal cytokines is altered by changes in epidermal calcium content, independent of skin barrier disruption. Iontophoresis and sonophoresis with the energies that do not disrupt the skin barrier, but induce changes in the epidermal calcium gradient, were applied to the skin of hairless mice. Immediately after iontophoresis and sonophoresis, immersion in a solution containing calcium was carried out, and iontophoresis in either high- or low-calcium solutions was performed. The biopsy specimens were taken for real-time quantitative RT-PCR to detect changes in mRNA level of interleukin-1alpha (IL-1alpha), tumor necrosis factor-alpha (TNF-alpha), and transforming growth factor-beta in the epidermis and for immunohistochemical stain with primary antibodies to IL-1alpha and TNF-alpha. The expression of each cytokine mRNA increased in the epidermis treated with iontophoresis and sonophoresis compared to a nontreated control as well as in tape-stripped skin used as a positive control and was lower after immersion in a high-calcium solution than in low-calcium solution. IL-1alpha and TNF-alpha immunohistochemical protein staining increased with iontophoresis at low calcium. These studies suggest that changes in epidermal calcium can directly signal expression of epidermal cytokines in vivo, independent of changes in barrier function.

Animals↗

Use of internal mammary vessel perforator as a recipient vessel for free TRAM breast reconstruction.

Breast reconstruction is a cosmetically critical procedure for women and it must be undertaken to balance the shape, size, and position of the breast with the other breast. Since the first introduction of the free abdominoplasty flap in 1979, the transverse rectus abdominis musculocutaneous (TRAM) flap technique has been a widely accepted method of breast reconstruction after mastectomy. In breast reconstruction with a free flap, the selection of suitable recipient vessels is the critical decision to be made by the surgeon. The most common recipient vessel for free flap breast reconstruction is the axillary system. However, when used as a recipient, the axillary system may limit flap movement and flexibility in breast shaping. The use of the internal mammary vessels as a recipient site attains ideal breast symmetry. However, the technique requires partial rib resection and eliminates the opportunity for a potential coronary artery bypass graft, which requires the internal mammary artery. Based on these considerations, the selection of suitable recipient vessels constitutes an important requirement for successful free tissue transfer. The authors have performed breast reconstruction with the TRAM flap anastomosed to the internal mammary perforator vessel and conclude that these perforators could be useful as recipient vessels, especially in the case of immediate breast reconstruction with the free TRAM flap.

Adult↗

Comparisons of clinicopathological correlations between immediate and slow graft function in renal transplant recipients.

The functional recovery state of renal transplants can be divided into three types: immediate graft function (IGF), slow graft function (SGF) and delayed graft function (DGF). In contrast to the well-known clinical outcomes for IGF and DGF, the pathological findings and clinical outcomes of SGF are undetermined. This study evaluated possible clinicopathological correlations in 237 patients with SGF compared with patients with IGF. IGF and SGF were defined by serum creatinine levels (IGF < 1.2 mg/day l; SGF: >/=1.2 mg/dL) at day 14 after renal transplantation. Graft biopsy was performed on this day, and pathological classification was performed using the Banff schema. The SGF group of patients (n = 121) showed higher rates of cadaver donors and male recipients than the IGF group (n = 116), but there were no significant differences in recipient or donor age, numbers of HLA mismatches, types of immunosuppressant or follow-up periods between two groups. The SGF group showed higher serum creatinine levels at discharge, and a higher incidence of acute rejection than the IGF group (24.8% vs. 8.6%, P < 0.05) and lower graft survival rates (1 year, 93.3% vs. 100%; 5 years, 85.4% vs. 98.6%, respectively; P < 0.05). The presence of acute rejection in the SGF patients indicated a significantly decreased 5-year survival rate compared with the IGF group. The SGF group of patients with borderline pathology had a higher incidence of acute rejection than the IGF group, and significant increases in the expression of mRNA for pro-apoptotic genes (Fas-ligand, granzyme B and perforin) compared with the IGF group. In conclusion, SGF represents the activated immune state and is associated with poor graft outcome. Anti-rejection treatment or modified immunosuppressive regimen may thus be indicated for patients with SGF.

Adult↗

Dermatofibroma with sclerotic areas resembling a sclerotic fibroma of the skin.

BACKGROUND: Dermatofibromas are common benign tumors that occur as single or multiple nodules on the extremities in adults. Sclerotic fibroma of the skin (SFS) is a benign tumor characterized histopathologically by a well-demarcated, non-encapsulated dermal nodule composed of hypocellular, sclerotic collagen bundles with prominent clefts. The pathogenesis of these two conditions is still in dispute. METHODS: We present a case of dermatofibroma with sclerotic areas resembling a sclerotic fibroma of the skin and a review of the literature. RESULTS: The tumor showed a well-demarcated dermal, fibrocollagenous tumor with three different histopathological features. One-fourth of the lesion was consistent with dermatofibroma. Another area adjacent to dermatofibroma revealed hyalinized eosinophilic collagen bundles arranged in the characteristic interwoven pattern with prominent clefts, as is described in sclerotic fibroma of the skin. One-half of the lesion between the dermatofibroma and sclerotic fibroma showed transitional changes from dermatofibroma to sclerotic fibroma. CONCLUSION: According to these findings, the possibility that sclerotic fibroma is an ancient or degenerated stage of dermatofibroma cannot be completely ruled out, but some authors still consider that dermatofibroma and sclerotic fibroma of the skin are completely different neoplasms.

Adult↗

Intratumoral fat in neurofibroma.

Three cases of a solitary neurofibroma showing focal fatty changes are reported. Fatty changes in a neurofibroma are rarely observed and have not been reported, and also, the pathogenesis of neurofibroma has not been clarified. We postulate that the fatty changes in a neurofibroma may be the result of so-called senescent change or chronic injury. The origin of adipose cells may be attributable to fatty infiltration from abutting tissues or to a metaplasia of tumor cells or resident fibroblasts.

Adipose Tissue↗

Cyclosporine or FK506 decrease mature epidermal growth factor protein expression and renal tubular regeneration in rat kidneys with ischemia/reperfusion injury.

BACKGROUND: Epidermal growth factor (EGF) plays an important role in tubular regeneration in kidneys with ischemia/reperfusion (I/R) injury. This study was undertaken to evaluate the influence of cyclosporine A (CsA) or FK506 on mature EGF expression and tubular regeneration in rat kidneys with I/R injury. METHODS: Two separate studies were performed. First, the expression of EGF and tubular regeneration was observed in rat kidneys with I/R injury on days 1, 2, 3, 5, and 7. Second, the dose-dependent response of EGF expression and tubular regeneration to CsA (5, 10, and 20 mg/kg) or FK506 (0.25, 0.5, and 1.0 mg/kg) was observed in rat kidneys with I/R injury. I/R injury was induced by clamping both renal arteries for 45 min, and CsA or FK506 was injected just after release of vascular clamps. Rats were sacrificed on day 1 for evaluation of EGF expression, and on day 2 for evaluation of BudU-positive cells. Renal function, tubular injury score, EGF expression assessed by immunoblotting, levels of CsA and FK506 in whole blood, and immunostaining for BrdU was studied. RESULTS: EGF expression was maximal on day 1 (cortex, 29-fold; medulla, 31-fold compared with sham-operated controls), and renal tubular regeneration measured with the number of BrdU-positive cells was maximal on days 2 and 3 in kidney with I/R injury, and thereafter the level of EGF and the number of BrdU-positive cells decreased progressively. CsA or FK506 treatment to ischemic rat kidneys reduced the expression of EGF and the number of BrdU-positive cells in a dose-dependent manner. CONCLUSIONS: CsA or FK506 treatment delays recovery from acute tubular necrosis, and this may be associated with decreased EGF expression by CsA or FK506.

Animals↗

Phytosphingosine stimulates the differentiation of human keratinocytes and inhibits TPA-induced inflammatory epidermal hyperplasia in hairless mouse skin.

The binding of sphingoid bases to peroxisome proliferator-activated receptor (PPAR) has been detected in a solid-phase binding assay. However, sphingoid base-induced changes in PPAR transactivation activity have not been examined. In this report, we show by reporter gene analyses that phytosphingosine (PS), a natural sphingoid base, activates the transcriptional activity of PPARs in the immortalized human keratinocyte, HaCaT. Real-time PCR analyses showed that the mRNA level of PPARgamma was increased after PS treatment in HaCaT cells in a dose- and time-dependent manner. Because PPARs play important roles in skin barrier homeostasis by regulating epidermal cell growth, terminal differentiation, and inflammatory response, we examined the effect of PS on normal human epidermal keratinocytes (NHEKs) and mouse skin. PS increased the production of cornified envelope in NHEKs by approximately 1.8-fold compared with controls. Epidermal differentiation marker proteins such as involucrin, loricrin, and keratin1 were also increased in PS-treated NHEKs, by ELISA or Western blotting analysis. A [(3)H]thymidine incorporation assay showed that PS inhibited DNA synthesis in NHEKs to 20% compared with controls. The antiproliferative and anti-inflammatory effects of PS were examined in a mouse model of irritant contact dermatitis produced by topical application of 12-O-tetradecanoylphorbol-13-acetate (TPA). PS blocked epidermal thickening and edema and the infiltration of inflammatory cells into the dermis in the skin of TPA-treated hairless mice. The anti-inflammatory effects of PS were confirmed by the observation that PS blocked the TPA-induced generation of prostaglandin E(2) in peripheral mononuclear leukocytes. Taken together, our results provide an insight into the multiple regulatory roles of PS in epidermal homeostasis, and furthermore point to the potential use of PS as a therapeutic agent in the treatment of inflammatory and proliferative cutaneous diseases.

Animals↗