1.Combined Transarterial Chemoembolization and External Beam Radiotherapy for Identifying Surgical Candidates for Hepatocellular Carcinoma with Macroscopic Vascular Invasion: A Propensity Score–Weighted Analysis
Sumin LEE ; Jinhong JUNG ; Jonggi CHOI ; So Yeon KIM ; Jin Hyoung KIM ; Danbi LEE ; Ju Hyun SHIM ; Kang Mo KIM ; Young-Suk LIM ; Han Chu LEE ; Gi-Won SONG ; Jin-hong PARK ; Sang Min YOON
Cancer Research and Treatment 2026;58(1):275-283
Purpose:
This study aimed to evaluate the role of hepatic resection in patients with objective responses after combined transarterial chemoembolization (TACE) and radiotherapy (RT) for hepatocellular carcinoma (HCC) with macroscopic vascular invasion (MVI).
Materials and Methods:
We retrospectively reviewed the patients treated with combined TACE and RT for HCC with MVI between 2010 and 2015. Some of the patients with objective responses underwent hepatic resection or liver transplantation; to investigate the impact of surgery, patients with objective responses who did not undergo surgery were selected as the control group. Survival outcomes were compared using a propensity score–based stabilized inverse probability of treatment weighting method.
Results:
Out of the 170 patients with objective responses after combined TACE and RT, 41 patients underwent surgery, including eight liver transplantations. The unweighted surgery group was younger and had a higher proportion of solitary tumors and unilateral vascular involvement. After adjustment, the 3-year overall survival (OS) rates were 61.0% and 28.6% in the surgery and non-surgery groups, respectively. The most important prognostic factor for OS was surgery (adjusted Cox hazard ratio [HR], 0.28; 95% confidence interval [CI], 0.17 to 0.46; p < 0.001). Complete response after TACE and RT (vs. partial response) was also a significant prognostic factor for OS (adjusted HR, 0.41; 95% CI, 0.27 to 0.61; p < 0.001). There was no surgical mortality. Four patients (9.8%) required additional surgery due to bleeding or graft failure.
Conclusion
Hepatic resection was significantly associated with improved OS in patients who showed objective responses after receiving combined TACE and RT for HCC with MVI.
2.Impact of COVID-19 lockdown on blood glucose levels in pediatric patients with type 1 diabetes mellitus
Min Hyung CHO ; Young Suk SHIM ; Hae Sang LEE
Annals of Pediatric Endocrinology & Metabolism 2025;30(1):25-30
Purpose:
The coronavirus disease 2019 (COVID-19) pandemic brought stringent social distancing measures, resulting in changes to daily routines such as increased time at home, remote learning, altered meal schedules, and reduced physical activity. Therefore, we aimed to investigate the impact of the COVID-19 lockdown on glycemic control among pediatric patients with type 1 diabetes.
Methods:
This study retrospectively analyzed the medical records of 47 pediatric patients with type 1 diabetes who visited Ajou University Hospital before and after the lockdown. To analyze the effects of the lockdown on glycemic control, we examined the change in glycated hemoglobin (HbA1c) levels before and after the lockdown.
Results:
Among 47 patients, 23 (49%) were female and the average age before the lockdown as of March 2020 was 11.65±3.03 years. The mean HbA1c levels were 8.22%±1.69% and 7.86%±1.57% before and after the lockdown, respectively, showing better glycemic control during the lockdown (P=0.001). The decrease in HbA1c was more significant in subjects with higher pre-lockdown HbA1c levels, older patients, and individuals not using continuous glucose monitoring or continuous subcutaneous insulin infusion. However, from a long-term perspective, HbA1c levels at 3 years and 1 year before and after the lockdown were not significantly different.
Conclusion
This study demonstrated the beneficial effect of intensive social distancing for COVID-19 on blood glucose control in pediatric patients with type 1 diabetes mellitus. Furthermore, changes due to the lockdown had a more pronounced effect on patients with existing poor glycemic control.
3.Regenerative Capacity of Alveolar Type 2 Cells Is Proportionally Reduced Following Disease Progression in Idiopathic Pulmonary Fibrosis-Derived Organoid Cultures
Hyeon Kyu CHOI ; Gaeul BANG ; Ju Hye SHIN ; Mi Hwa SHIN ; Ala WOO ; Song Yee KIM ; Sang Hoon LEE ; Eun Young KIM ; Hyo Sup SHIM ; Young Joo SUH ; Ha Eun KIM ; Jin Gu LEE ; Jinwook CHOI ; Ju Hyeon LEE ; Chul Hoon KIM ; Moo Suk PARK
Tuberculosis and Respiratory Diseases 2025;88(1):130-137
Background:
Idiopathic pulmonary fibrosis (IPF) is a chronic, progressive lung disease that culminates in respiratory failure and death due to irreversible scarring of the distal lung. While initially considered a chronic inflammatory disorder, the aberrant function of the alveolar epithelium is now acknowledged as playing a central role in the pathophysiology of IPF. This study aimed to investigate the regenerative capacity of alveolar type 2 (AT2) cells using IPF-derived alveolar organoids and to examine the effects of disease progression on this capacity.
Methods:
Lung tissues from three pneumothorax patients and six IPF patients (early and advanced stages) were obtained through video-assisted thoracoscopic surgery and lung transplantation. HTII-280+ cells were isolated from CD31-CD45-epithelial cell adhesion molecule (EpCAM)+ cells in the distal lungs of IPF and pneumothorax patients using fluorescence-activated cell sorting (FACS) and resuspended in 48-well plates to establish IPF-derived alveolar organoids. Immunostaining was used to verify the presence of AT2 cells.
Results:
FACS sorting yielded approximately 1% of AT2 cells in early IPF tissue, and the number decreased as the disease progressed, in contrast to 2.7% in pneumothorax. Additionally, the cultured organoids in the IPF groups were smaller and less numerous compared to those from pneumothorax patients. The colony forming efficiency decreased as the disease advanced. Immunostaining results showed that the IPF organoids expressed less surfactant protein C (SFTPC) compared to the pneumothorax group and contained keratin 5+ (KRT5+) cells.
Conclusion
This study confirmed that the regenerative capacity of AT2 cells in IPF decreases as the disease progresses, with IPF-derived AT2 cells inherently exhibiting functional abnormalities and altered differentiation plasticity.
4.Impact of COVID-19 lockdown on blood glucose levels in pediatric patients with type 1 diabetes mellitus
Min Hyung CHO ; Young Suk SHIM ; Hae Sang LEE
Annals of Pediatric Endocrinology & Metabolism 2025;30(1):25-30
Purpose:
The coronavirus disease 2019 (COVID-19) pandemic brought stringent social distancing measures, resulting in changes to daily routines such as increased time at home, remote learning, altered meal schedules, and reduced physical activity. Therefore, we aimed to investigate the impact of the COVID-19 lockdown on glycemic control among pediatric patients with type 1 diabetes.
Methods:
This study retrospectively analyzed the medical records of 47 pediatric patients with type 1 diabetes who visited Ajou University Hospital before and after the lockdown. To analyze the effects of the lockdown on glycemic control, we examined the change in glycated hemoglobin (HbA1c) levels before and after the lockdown.
Results:
Among 47 patients, 23 (49%) were female and the average age before the lockdown as of March 2020 was 11.65±3.03 years. The mean HbA1c levels were 8.22%±1.69% and 7.86%±1.57% before and after the lockdown, respectively, showing better glycemic control during the lockdown (P=0.001). The decrease in HbA1c was more significant in subjects with higher pre-lockdown HbA1c levels, older patients, and individuals not using continuous glucose monitoring or continuous subcutaneous insulin infusion. However, from a long-term perspective, HbA1c levels at 3 years and 1 year before and after the lockdown were not significantly different.
Conclusion
This study demonstrated the beneficial effect of intensive social distancing for COVID-19 on blood glucose control in pediatric patients with type 1 diabetes mellitus. Furthermore, changes due to the lockdown had a more pronounced effect on patients with existing poor glycemic control.
5.Regenerative Capacity of Alveolar Type 2 Cells Is Proportionally Reduced Following Disease Progression in Idiopathic Pulmonary Fibrosis-Derived Organoid Cultures
Hyeon Kyu CHOI ; Gaeul BANG ; Ju Hye SHIN ; Mi Hwa SHIN ; Ala WOO ; Song Yee KIM ; Sang Hoon LEE ; Eun Young KIM ; Hyo Sup SHIM ; Young Joo SUH ; Ha Eun KIM ; Jin Gu LEE ; Jinwook CHOI ; Ju Hyeon LEE ; Chul Hoon KIM ; Moo Suk PARK
Tuberculosis and Respiratory Diseases 2025;88(1):130-137
Background:
Idiopathic pulmonary fibrosis (IPF) is a chronic, progressive lung disease that culminates in respiratory failure and death due to irreversible scarring of the distal lung. While initially considered a chronic inflammatory disorder, the aberrant function of the alveolar epithelium is now acknowledged as playing a central role in the pathophysiology of IPF. This study aimed to investigate the regenerative capacity of alveolar type 2 (AT2) cells using IPF-derived alveolar organoids and to examine the effects of disease progression on this capacity.
Methods:
Lung tissues from three pneumothorax patients and six IPF patients (early and advanced stages) were obtained through video-assisted thoracoscopic surgery and lung transplantation. HTII-280+ cells were isolated from CD31-CD45-epithelial cell adhesion molecule (EpCAM)+ cells in the distal lungs of IPF and pneumothorax patients using fluorescence-activated cell sorting (FACS) and resuspended in 48-well plates to establish IPF-derived alveolar organoids. Immunostaining was used to verify the presence of AT2 cells.
Results:
FACS sorting yielded approximately 1% of AT2 cells in early IPF tissue, and the number decreased as the disease progressed, in contrast to 2.7% in pneumothorax. Additionally, the cultured organoids in the IPF groups were smaller and less numerous compared to those from pneumothorax patients. The colony forming efficiency decreased as the disease advanced. Immunostaining results showed that the IPF organoids expressed less surfactant protein C (SFTPC) compared to the pneumothorax group and contained keratin 5+ (KRT5+) cells.
Conclusion
This study confirmed that the regenerative capacity of AT2 cells in IPF decreases as the disease progresses, with IPF-derived AT2 cells inherently exhibiting functional abnormalities and altered differentiation plasticity.
6.Impact of COVID-19 lockdown on blood glucose levels in pediatric patients with type 1 diabetes mellitus
Min Hyung CHO ; Young Suk SHIM ; Hae Sang LEE
Annals of Pediatric Endocrinology & Metabolism 2025;30(1):25-30
Purpose:
The coronavirus disease 2019 (COVID-19) pandemic brought stringent social distancing measures, resulting in changes to daily routines such as increased time at home, remote learning, altered meal schedules, and reduced physical activity. Therefore, we aimed to investigate the impact of the COVID-19 lockdown on glycemic control among pediatric patients with type 1 diabetes.
Methods:
This study retrospectively analyzed the medical records of 47 pediatric patients with type 1 diabetes who visited Ajou University Hospital before and after the lockdown. To analyze the effects of the lockdown on glycemic control, we examined the change in glycated hemoglobin (HbA1c) levels before and after the lockdown.
Results:
Among 47 patients, 23 (49%) were female and the average age before the lockdown as of March 2020 was 11.65±3.03 years. The mean HbA1c levels were 8.22%±1.69% and 7.86%±1.57% before and after the lockdown, respectively, showing better glycemic control during the lockdown (P=0.001). The decrease in HbA1c was more significant in subjects with higher pre-lockdown HbA1c levels, older patients, and individuals not using continuous glucose monitoring or continuous subcutaneous insulin infusion. However, from a long-term perspective, HbA1c levels at 3 years and 1 year before and after the lockdown were not significantly different.
Conclusion
This study demonstrated the beneficial effect of intensive social distancing for COVID-19 on blood glucose control in pediatric patients with type 1 diabetes mellitus. Furthermore, changes due to the lockdown had a more pronounced effect on patients with existing poor glycemic control.
7.Regenerative Capacity of Alveolar Type 2 Cells Is Proportionally Reduced Following Disease Progression in Idiopathic Pulmonary Fibrosis-Derived Organoid Cultures
Hyeon Kyu CHOI ; Gaeul BANG ; Ju Hye SHIN ; Mi Hwa SHIN ; Ala WOO ; Song Yee KIM ; Sang Hoon LEE ; Eun Young KIM ; Hyo Sup SHIM ; Young Joo SUH ; Ha Eun KIM ; Jin Gu LEE ; Jinwook CHOI ; Ju Hyeon LEE ; Chul Hoon KIM ; Moo Suk PARK
Tuberculosis and Respiratory Diseases 2025;88(1):130-137
Background:
Idiopathic pulmonary fibrosis (IPF) is a chronic, progressive lung disease that culminates in respiratory failure and death due to irreversible scarring of the distal lung. While initially considered a chronic inflammatory disorder, the aberrant function of the alveolar epithelium is now acknowledged as playing a central role in the pathophysiology of IPF. This study aimed to investigate the regenerative capacity of alveolar type 2 (AT2) cells using IPF-derived alveolar organoids and to examine the effects of disease progression on this capacity.
Methods:
Lung tissues from three pneumothorax patients and six IPF patients (early and advanced stages) were obtained through video-assisted thoracoscopic surgery and lung transplantation. HTII-280+ cells were isolated from CD31-CD45-epithelial cell adhesion molecule (EpCAM)+ cells in the distal lungs of IPF and pneumothorax patients using fluorescence-activated cell sorting (FACS) and resuspended in 48-well plates to establish IPF-derived alveolar organoids. Immunostaining was used to verify the presence of AT2 cells.
Results:
FACS sorting yielded approximately 1% of AT2 cells in early IPF tissue, and the number decreased as the disease progressed, in contrast to 2.7% in pneumothorax. Additionally, the cultured organoids in the IPF groups were smaller and less numerous compared to those from pneumothorax patients. The colony forming efficiency decreased as the disease advanced. Immunostaining results showed that the IPF organoids expressed less surfactant protein C (SFTPC) compared to the pneumothorax group and contained keratin 5+ (KRT5+) cells.
Conclusion
This study confirmed that the regenerative capacity of AT2 cells in IPF decreases as the disease progresses, with IPF-derived AT2 cells inherently exhibiting functional abnormalities and altered differentiation plasticity.
8.Regenerative Capacity of Alveolar Type 2 Cells Is Proportionally Reduced Following Disease Progression in Idiopathic Pulmonary Fibrosis-Derived Organoid Cultures
Hyeon Kyu CHOI ; Gaeul BANG ; Ju Hye SHIN ; Mi Hwa SHIN ; Ala WOO ; Song Yee KIM ; Sang Hoon LEE ; Eun Young KIM ; Hyo Sup SHIM ; Young Joo SUH ; Ha Eun KIM ; Jin Gu LEE ; Jinwook CHOI ; Ju Hyeon LEE ; Chul Hoon KIM ; Moo Suk PARK
Tuberculosis and Respiratory Diseases 2025;88(1):130-137
Background:
Idiopathic pulmonary fibrosis (IPF) is a chronic, progressive lung disease that culminates in respiratory failure and death due to irreversible scarring of the distal lung. While initially considered a chronic inflammatory disorder, the aberrant function of the alveolar epithelium is now acknowledged as playing a central role in the pathophysiology of IPF. This study aimed to investigate the regenerative capacity of alveolar type 2 (AT2) cells using IPF-derived alveolar organoids and to examine the effects of disease progression on this capacity.
Methods:
Lung tissues from three pneumothorax patients and six IPF patients (early and advanced stages) were obtained through video-assisted thoracoscopic surgery and lung transplantation. HTII-280+ cells were isolated from CD31-CD45-epithelial cell adhesion molecule (EpCAM)+ cells in the distal lungs of IPF and pneumothorax patients using fluorescence-activated cell sorting (FACS) and resuspended in 48-well plates to establish IPF-derived alveolar organoids. Immunostaining was used to verify the presence of AT2 cells.
Results:
FACS sorting yielded approximately 1% of AT2 cells in early IPF tissue, and the number decreased as the disease progressed, in contrast to 2.7% in pneumothorax. Additionally, the cultured organoids in the IPF groups were smaller and less numerous compared to those from pneumothorax patients. The colony forming efficiency decreased as the disease advanced. Immunostaining results showed that the IPF organoids expressed less surfactant protein C (SFTPC) compared to the pneumothorax group and contained keratin 5+ (KRT5+) cells.
Conclusion
This study confirmed that the regenerative capacity of AT2 cells in IPF decreases as the disease progresses, with IPF-derived AT2 cells inherently exhibiting functional abnormalities and altered differentiation plasticity.
9.Regenerative Capacity of Alveolar Type 2 Cells Is Proportionally Reduced Following Disease Progression in Idiopathic Pulmonary Fibrosis-Derived Organoid Cultures
Hyeon Kyu CHOI ; Gaeul BANG ; Ju Hye SHIN ; Mi Hwa SHIN ; Ala WOO ; Song Yee KIM ; Sang Hoon LEE ; Eun Young KIM ; Hyo Sup SHIM ; Young Joo SUH ; Ha Eun KIM ; Jin Gu LEE ; Jinwook CHOI ; Ju Hyeon LEE ; Chul Hoon KIM ; Moo Suk PARK
Tuberculosis and Respiratory Diseases 2025;88(1):130-137
Background:
Idiopathic pulmonary fibrosis (IPF) is a chronic, progressive lung disease that culminates in respiratory failure and death due to irreversible scarring of the distal lung. While initially considered a chronic inflammatory disorder, the aberrant function of the alveolar epithelium is now acknowledged as playing a central role in the pathophysiology of IPF. This study aimed to investigate the regenerative capacity of alveolar type 2 (AT2) cells using IPF-derived alveolar organoids and to examine the effects of disease progression on this capacity.
Methods:
Lung tissues from three pneumothorax patients and six IPF patients (early and advanced stages) were obtained through video-assisted thoracoscopic surgery and lung transplantation. HTII-280+ cells were isolated from CD31-CD45-epithelial cell adhesion molecule (EpCAM)+ cells in the distal lungs of IPF and pneumothorax patients using fluorescence-activated cell sorting (FACS) and resuspended in 48-well plates to establish IPF-derived alveolar organoids. Immunostaining was used to verify the presence of AT2 cells.
Results:
FACS sorting yielded approximately 1% of AT2 cells in early IPF tissue, and the number decreased as the disease progressed, in contrast to 2.7% in pneumothorax. Additionally, the cultured organoids in the IPF groups were smaller and less numerous compared to those from pneumothorax patients. The colony forming efficiency decreased as the disease advanced. Immunostaining results showed that the IPF organoids expressed less surfactant protein C (SFTPC) compared to the pneumothorax group and contained keratin 5+ (KRT5+) cells.
Conclusion
This study confirmed that the regenerative capacity of AT2 cells in IPF decreases as the disease progresses, with IPF-derived AT2 cells inherently exhibiting functional abnormalities and altered differentiation plasticity.
10.Trunk-to-limb fat ratio and its relationship with cardiometabolic risk factors in Korean children and adolescents
Jong Han KIM ; Jun Hong PARK ; Hae Sang LEE ; Young Suk SHIM
Annals of Pediatric Endocrinology & Metabolism 2025;30(6):320-329
Purpose:
Childhood obesity is a growing global health concern associated with various cardiometabolic risk factors. The aim of this study was to examine the relationships between the trunk-to-limb fat ratio on dual-energy x-ray absorptiometry (DXA) and cardiometabolic risk factors in Korean children and adolescents.
Methods:
Data for 891 boys and 770 girls aged 10-18 years from the 2009–2011 Korean National Health and Nutrition Examination Survey were analyzed. The trunk-to-limb fat ratio was calculated using DXA measurements. Cardiometabolic risk factors including waist circumference, blood pressure, lipid profiles, and fasting glucose were assessed. The Lambda-Mu-Sigma method was used to evaluate the distribution of the trunk-to-limb fat ratio by sex and age. Correlations between the trunk-to-limb fat ratio and metabolic syndrome risk factors were analyzed using adjusted mean values and odds ratios (ORs).
Results:
Trunk-to-limb fat ratio was significantly correlated with various cardiometabolic risk factors, including waist circumference, body mass index, and lipid profiles. The group with the highest trunk-to-limb fat ratio (≥95th percentile) demonstrated significantly increased odds of metabolic syndrome, particularly in girls (adjusted OR, 8.66). Sex-specific patterns in trunk-to-limb fat ratio with age were observed, with boys showing an increasing trend and girls maintaining a relatively stable ratio.
Conclusion
Trunk-to-limb fat ratio on DXA is significantly associated with cardiometabolic risk factors and metabolic syndrome in Korean children and adolescents. This measure provides valuable information beyond traditional anthropometric measurements and may be particularly useful in assessing metabolic health in young populations.

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