1.Salmonella vector induces protective immunity against Lawsonia and Salmonella in murine model using prokaryotic expression system
Sungwoo PARK ; Eunseok CHO ; Amal SENEVIRATHNE ; Hak-Jae CHUNG ; Seungmin HA ; Chae-Hyun KIM ; Seogjin KANG ; John Hwa LEE
Journal of Veterinary Science 2024;25(1):e4-
Background:
Lawsonia intracellularis is the causative agent of proliferative enteropathy and is associated with several outbreaks, causing substantial economic loss to the porcine industry.
Objectives:
In this study, we focused on demonstrating the protective effect in the mouse model through the immunological bases of two vaccine strains against porcine proliferative enteritis.
Methods:
We used live-attenuated Salmonella Typhimurium (ST) secreting two selected immunogenic LI antigens (Lawsonia autotransporter A epitopes and flagellin [FliC]-peptidoglycan-associated lipoprotein-FliC) as the vaccine carrier. The constructs were cloned into a Salmonella expression vector (pJHL65) and transformed into the ST strain (JOL912). The expression of immunogenic proteins within Salmonella was evaluated via immunoblotting.
Results:
Immunizing BALB/c mice orally and subcutaneously induced high levels of LI-specific systemic immunoglobulin G and mucosal secretory immunoglobulin A. In immunized mice, there was significant upregulation of interferon-γ and interleukin-4 cytokine mRNA and an increase in the subpopulations of cluster of differentiation (CD) 4+ and CD 8+ T lymphocytes upon splenocytes re-stimulation with LI antigens. We observed significant protection in C57BL/6 mice against challenge with 106.9 times the median tissue culture infectious dose of LI or 2 × 109 colony-forming units of the virulent ST strain. Immunizing mice with either individual vaccine strains or co-mixture inhibited bacterial proliferation, with a marked reduction in the percentage of mice shedding Lawsonia in their feces.
Conclusions
Salmonella-mediated LI gene delivery induces robust humoral and cellular immune reactions, leading to significant protection against LI and salmonellosis.
2.Contemporary diagnosis and treatment of valvular heart disease in Korea: a nationwide hospital‑based registry study
Hyung Yoon KIM ; Hee Jeong LEE ; In‑Cheol KIM ; Jung‑Woo SON ; Jun‑Bean PARK ; Sahmin LEE ; Eun Kyoung KIM ; Seong‑Mi PARK ; Woo‑Baek CHUNG ; Jung Sun CHO ; Jin‑Sun PARK ; Jeong‑Sook SEO ; Sun Hwa LEE ; Byung Joo SUN ; Chi Young SHIM ; Hyungseop KIM ; Kye Hun KIM ; Duk‑Hyun KANG ; Jong‑Won HA ;
Journal of Cardiovascular Imaging 2024;32(1):37-
Background:
This study was designed to determine the current status of diagnosis and treatment of valvular heart disease (VHD) in Korea.
Methods:
A nationwide registry study was conducted in 45 hospitals in Korea involving adult patients with at least moderate VHD as determined by echocardiography carried out between September and October of 2019. Of a total of 4,094 patients with at least moderate VHD, 1,482 had severe VHD (age, 71.3 ± 13.5 years; 49.1% male). Echocar‑ diographic data used for the diagnosis of each case of VHD were analyzed. Experts from each center determined the diagnosis and treatment strategy for VHD based on current guidelines and institutional policy. The clinical out‑ come was in-hospital mortality.
Results:
Each valve underwent surgical or transcatheter intervention in 19.3% cases of severe mitral stenosis, 31.4% cases of severe primary mitral regurgitation (MR), 7.5% cases of severe secondary MR, 43.7% cases of severe aortic stenosis, 27.5% cases of severe aortic regurgitation, and 7.2% cases of severe tricuspid regurgitation. The overall inhospital mortality rate for patients with severe VHD was 5.4%, and for secondary severe MR and severe tricuspid regur‑ gitation, the rates were 9.0% and 7.5%, respectively, indicating a poor prognosis. In-hospital mortality occurred in 73 of the 1,244 patients (5.9%) who received conservative treatment and in 18 of the 455 patients (4.0%) who received a surgical or transcatheter intervention, which was significantly lower in the intervention group (P = 0.037).
Conclusions
This study provides important information about the current status of VHD diagnosis and treatment through a nationwide registry in Korea and helps to define future changes.
3.Erratum to: Corrigendum: 2023 Korean Society of Menopause -Osteoporosis Guidelines Part I
Dong Ock LEE ; Yeon Hee HONG ; Moon Kyoung CHO ; Young Sik CHOI ; Sungwook CHUN ; Youn-Jee CHUNG ; Seung Hwa HONG ; Kyu Ri HWANG ; Jinju KIM ; Hoon KIM ; Dong-Yun LEE ; Sa Ra LEE ; Hyun-Tae PARK ; Seok Kyo SEO ; Jung-Ho SHIN ; Jae Yen SONG ; Kyong Wook YI ; Haerin PAIK ; Ji Young LEE
Journal of Menopausal Medicine 2024;30(3):179-179
4.Protecting our future: environmental hazards and children’s health in the face of environmental threats: a comprehensive overview
Jungha LEE ; Hyo-Bin KIM ; Hun-Jong JUNG ; Myunghee CHUNG ; So Eun PARK ; Kon-Hee LEE ; Won Seop KIM ; Jin-Hwa MOON ; Jung Won LEE ; Jae Won SHIM ; Sang Soo LEE ; Yunkoo KANG ; Young YOO ;
Clinical and Experimental Pediatrics 2024;67(11):589-598
Children face the excitement of a changing world but also encounter environmental threats to their health that were neither known nor suspected several decades ago. Children are at particular risk of exposure to pollutants that are widely dispersed in the air, water, and food. Children and adolescents are exposed to chemical, physical, and biological risks at home, in school, and elsewhere. Actions are needed to reduce these risks for children exposed to a series of environmental hazards. Exposure to a number of persistent environmental pollutants including air pollutants, endocrine disruptors, noise, electromagnetic waves (EMWs), tobacco and other noxious substances, heavy metals, and microplastics, is linked to damage to the nervous and immune systems and affects reproductive function and development. Exposure to environmental hazards is responsible for several acute and chronic diseases that have replaced infectious diseases as the principal cause of illnesses and death during childhood. Children are disproportionately exposed to environmental toxicities. Children drink more water, eat more food, and breathe more frequently than adults. As a result, children have a substantially heavier exposure to toxins present in water, food, or air than adults. In addition, their hand-to-mouth behaviors and the fact that they live and play close to the ground make them more vulnerable than adults. Children undergo rapid growth and development processes that are easily disrupted. These systems are very delicate and cannot adequately repair thetional development in children’s environmental health was the Declaration of the Environment Leaders of the Eight on Children’s Environmental Health by the Group of Eight. In 2002, the World Health Organization launched an initiative to improve children’s environmental protection effort. Here, we review major environmental pollutants and related hazards among children and adolescents.
5.Protecting our future: environmental hazards and children’s health in the face of environmental threats: a comprehensive overview
Jungha LEE ; Hyo-Bin KIM ; Hun-Jong JUNG ; Myunghee CHUNG ; So Eun PARK ; Kon-Hee LEE ; Won Seop KIM ; Jin-Hwa MOON ; Jung Won LEE ; Jae Won SHIM ; Sang Soo LEE ; Yunkoo KANG ; Young YOO ;
Clinical and Experimental Pediatrics 2024;67(11):589-598
Children face the excitement of a changing world but also encounter environmental threats to their health that were neither known nor suspected several decades ago. Children are at particular risk of exposure to pollutants that are widely dispersed in the air, water, and food. Children and adolescents are exposed to chemical, physical, and biological risks at home, in school, and elsewhere. Actions are needed to reduce these risks for children exposed to a series of environmental hazards. Exposure to a number of persistent environmental pollutants including air pollutants, endocrine disruptors, noise, electromagnetic waves (EMWs), tobacco and other noxious substances, heavy metals, and microplastics, is linked to damage to the nervous and immune systems and affects reproductive function and development. Exposure to environmental hazards is responsible for several acute and chronic diseases that have replaced infectious diseases as the principal cause of illnesses and death during childhood. Children are disproportionately exposed to environmental toxicities. Children drink more water, eat more food, and breathe more frequently than adults. As a result, children have a substantially heavier exposure to toxins present in water, food, or air than adults. In addition, their hand-to-mouth behaviors and the fact that they live and play close to the ground make them more vulnerable than adults. Children undergo rapid growth and development processes that are easily disrupted. These systems are very delicate and cannot adequately repair thetional development in children’s environmental health was the Declaration of the Environment Leaders of the Eight on Children’s Environmental Health by the Group of Eight. In 2002, the World Health Organization launched an initiative to improve children’s environmental protection effort. Here, we review major environmental pollutants and related hazards among children and adolescents.
6.Protecting our future: environmental hazards and children’s health in the face of environmental threats: a comprehensive overview
Jungha LEE ; Hyo-Bin KIM ; Hun-Jong JUNG ; Myunghee CHUNG ; So Eun PARK ; Kon-Hee LEE ; Won Seop KIM ; Jin-Hwa MOON ; Jung Won LEE ; Jae Won SHIM ; Sang Soo LEE ; Yunkoo KANG ; Young YOO ;
Clinical and Experimental Pediatrics 2024;67(11):589-598
Children face the excitement of a changing world but also encounter environmental threats to their health that were neither known nor suspected several decades ago. Children are at particular risk of exposure to pollutants that are widely dispersed in the air, water, and food. Children and adolescents are exposed to chemical, physical, and biological risks at home, in school, and elsewhere. Actions are needed to reduce these risks for children exposed to a series of environmental hazards. Exposure to a number of persistent environmental pollutants including air pollutants, endocrine disruptors, noise, electromagnetic waves (EMWs), tobacco and other noxious substances, heavy metals, and microplastics, is linked to damage to the nervous and immune systems and affects reproductive function and development. Exposure to environmental hazards is responsible for several acute and chronic diseases that have replaced infectious diseases as the principal cause of illnesses and death during childhood. Children are disproportionately exposed to environmental toxicities. Children drink more water, eat more food, and breathe more frequently than adults. As a result, children have a substantially heavier exposure to toxins present in water, food, or air than adults. In addition, their hand-to-mouth behaviors and the fact that they live and play close to the ground make them more vulnerable than adults. Children undergo rapid growth and development processes that are easily disrupted. These systems are very delicate and cannot adequately repair thetional development in children’s environmental health was the Declaration of the Environment Leaders of the Eight on Children’s Environmental Health by the Group of Eight. In 2002, the World Health Organization launched an initiative to improve children’s environmental protection effort. Here, we review major environmental pollutants and related hazards among children and adolescents.
7.Protecting our future: environmental hazards and children’s health in the face of environmental threats: a comprehensive overview
Jungha LEE ; Hyo-Bin KIM ; Hun-Jong JUNG ; Myunghee CHUNG ; So Eun PARK ; Kon-Hee LEE ; Won Seop KIM ; Jin-Hwa MOON ; Jung Won LEE ; Jae Won SHIM ; Sang Soo LEE ; Yunkoo KANG ; Young YOO ;
Clinical and Experimental Pediatrics 2024;67(11):589-598
Children face the excitement of a changing world but also encounter environmental threats to their health that were neither known nor suspected several decades ago. Children are at particular risk of exposure to pollutants that are widely dispersed in the air, water, and food. Children and adolescents are exposed to chemical, physical, and biological risks at home, in school, and elsewhere. Actions are needed to reduce these risks for children exposed to a series of environmental hazards. Exposure to a number of persistent environmental pollutants including air pollutants, endocrine disruptors, noise, electromagnetic waves (EMWs), tobacco and other noxious substances, heavy metals, and microplastics, is linked to damage to the nervous and immune systems and affects reproductive function and development. Exposure to environmental hazards is responsible for several acute and chronic diseases that have replaced infectious diseases as the principal cause of illnesses and death during childhood. Children are disproportionately exposed to environmental toxicities. Children drink more water, eat more food, and breathe more frequently than adults. As a result, children have a substantially heavier exposure to toxins present in water, food, or air than adults. In addition, their hand-to-mouth behaviors and the fact that they live and play close to the ground make them more vulnerable than adults. Children undergo rapid growth and development processes that are easily disrupted. These systems are very delicate and cannot adequately repair thetional development in children’s environmental health was the Declaration of the Environment Leaders of the Eight on Children’s Environmental Health by the Group of Eight. In 2002, the World Health Organization launched an initiative to improve children’s environmental protection effort. Here, we review major environmental pollutants and related hazards among children and adolescents.
8.Single System Cutaneous Langerhans Cell Histiocytosis Mimicking Prurigo Nodularis
Juhyun CHUNG ; Kyujin YEOM ; Dongho KIM ; Myung Hwa KIM ; Byung Cheol PARK ; Mi Soo CHOI
Korean Journal of Dermatology 2024;62(2):110-113
Langerhans cell histiocytosis (LCH) is a rare inflammatory neoplasia of the dendritic cells that can affect the whole body and commonly affect the pediatric age. Adult onset LCH is relatively rare, and the cutaneous form without any other organ involvement is much more uncommon. A 62-year-old woman visited the clinic presenting pruritic erythematous papule and nodules on the whole body, from which she suffered for several years. Skin biopsy showed hyperkeratosis, mild acanthosis, intra-epidermal tumor cell infiltration, and band-like tumor cell infiltration. Cells infiltrating the epidermis and dermis showed characteristics consistent with Langerhans cells. Immunohistochemical analysis revealed tumor cells highlighted with CD1a and S-100, but not with CD68, and therefore, diagnosed as LCH. The patient showed no evidence of any other organ manifestation, which led the final diagnosis of single-system LCH. This case highlights a rare adult-onset cutaneous form of single-system LCH with skin manifestations very similar to prurigo nodularis.
9.Cutaneous Adverse Reactions after COVID-19 Vaccination
Dea Kwan YUN ; Doyeon KIM ; Juhyun CHUNG ; Kyujin YEOM ; Dongho KIM ; Young LEE ; Mi Soo CHOI ; Byung Cheol PARK ; Myung Hwa KIM
Korean Journal of Dermatology 2024;62(2):69-76
Background:
In the current situation, where severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is rapidly spreading, vaccines for coronavirus are thought to be the most effective approach to containing the situation.However, limited comparative data are available on cutaneous adverse reactions to coronavirus vaccination in Korea.
Objective:
We retrospectively reviewed the clinical and histopathological characteristics of adverse cutaneous reactions following coronavirus vaccination.
Methods:
We retrospectively reviewed the clinical and histopathological characteristics of 95 patients who were vaccinated with Pfizer, Moderna, AstraZeneca, and Janssen vaccines and visited the Dermatology Departments of Dankook University Hospital and Chungnam National University Hospital.
Results:
The mean age was 49.3±17.5 years. Patients who received the AstraZeneca vaccine had an average age of 61.7±10.8 years, significantly higher than those in the Pfizer (44.1±18.7 years) and Moderna (42.5±15.0 years) groups (p<0.001). Of the 95 patients, 36 (37.9%) were diagnosed with urticaria, 24 (25.3%) with morbilliform eruption, 18 (18.9%) with petechiae and purpura, and eight (8.4%) with erythema multiforme. Additionally, there were diagnoses of erythema nodosum, alopecia areata, eczema, generalized pustular psoriasis, acute generalized exanthematous pustulosis, pityriasis rosea, and bullous pemphigoid. In the AstraZeneca-vaccinated group, the proportion of morbilliform eruptions was significantly higher than that in the Pfizer- and Moderna-vaccinated groups (p=0.008). The Pfizer- and Moderna-vaccinated groups had higher rates of urticaria than did the AstraZeneca-vaccinated group. However, this difference was not statistically significant (p=0.083).
Conclusion
This study described the clinical characteristics of cutaneous adverse reactions after coronavirus vaccination.
10.National Surgical Site Infection Surveillance System Results Report: July 2021 through June 2022
Jung Wan PARK ; Young Keun KIM ; Yoon-soo PARK ; Hong Bin KIM ; Jun Yong CHOI ; Hee Jung CHOI ; Chung Jong KIM ; Jeong Su PARK ; Shinwon LEE ; Yong Chan KIM ; Seong Jin CHOI ; Jongtak JUNG ; Sunggyun PARK ; Su Ha HAN ; Su Young KIM ; Su Hyun KIM ; Hee Jung SON ; Min Hee CHO ; Bock-Hui YOUN ; Jeong Hwa YEON ; Kyoung-Ho SONG
Korean Journal of healthcare-associated Infection Control and Prevention 2024;29(1):48-58
Background:
This report presents annual data from the surgical site infection (SSI) module of the Korean National Healthcare-associated Infections Surveillance System (KONIS) from July 2021 to June 2022.
Methods:
Surveillance of 20 surgeries (e.g., stomach, colon, rectal, gallbladder surgery, knee replacement, hip replacement, craniotomy, ventricular shunts, spinal fusion, laminectomy, cardiac artery bypass grafting - incision in the chest site only and incisions both the chest and donor site, cardiac, prostatectomy, abdominal hysterectomy, vaginal hysterectomy, appendectomy, thoracic, cesarean section, and head and neck surgeries) associated with SSI was performed between July 1, 2021, and June 30, 2022, according to the KONIS Manual 2020.
Results:
A total of 133,281 surgical cases were collected and 1,100 SSIs were identified, resulting in a SSI rate of 0.83%. The SSI rates for 30-day surveillance surgeries were 1.9% for stomach, 2.82% for colon, 1.88% for rectal, 0.29% for gallbladder, 0.25% for lumbar laminectomy, 0.33% for cesarean section, 0.67% for abdominal hysterectomy, 0.74% for vaginal hysterectomy, 0.23% for prostatectomy, 1.39% for appendectomy, and 0.06% for thoracic surgeries. Neck surgery could not be analyzed due to no reported cases. The SSI rates for the 90-day surveillance surgeries were 0.16% for knee replacement, 0.54% for hip replacement, 0.89% for spinal fusion, 0.70% for craniotomy, 0.92% for ventricular shunt, 1.13% for cardiac, 1.80% for cardiac artery bypass grafting (chest only incision), and 1.64% for cardiac artery bypass grafting (chest and leg incision) surgeries. In total, 608 strains were isolated and cultured from 1,286 infections.
Conclusion
Compared with the incidence of SSI (1.06%) in 2018, the overall incidence decreased, and most site-specific infection rates decreased or remained the same.

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