1.Insomnia, Pain, and Pain-Related Dysfunctional Beliefs about Sleep among Patients with Cancer
Seockhoon CHUNG ; Soobeen LEE ; Mohd. Ashik SHAHRIER ; Saebom JEON
Cancer Research and Treatment 2026;58(2):686-693
Purpose:
We explored the reliability and validity of the Pain-related Beliefs and Attitudes about Sleep (PBAS) scale among patients with cancer. Further, we compared the usability of the PBAS scale with that of the Cancer-related Dysfunctional Beliefs and Attitudes about Sleep-14 (C-DBAS-14) among patients with cancer.
Materials and Methods:
The medical records of 252 patients with cancer who visited the sleep clinic from August 1, 2023 to June 30, 2024 were retrospectively analyzed. The responses of the enrolled patients to the PBAS, C-DBAS-14, Insomnia Severity Index (ISI), and Numeric Rating Scale of pain were collected.
Results:
The internal consistency reliability of the PBAS scale was excellent (Cronbach’s alpha of 0.96). Confirmatory factor analysis showed that the two-factor structure of the PBAS for patients with cancer is a good fit for the model (Comparative Fit Index, 0.99; Tucker-Lewis Index, 0.99; root mean square error of approximation, 0.14; standardized root mean square residual, 0.05). The convergent validity of the Korean version of the PBAS in patients with cancer was good, as indicated by its significant association with pain severity (r=0.63, p < 0.001), C-DBAS-14 (r=0.33, p < 0.001), and ISI (r=0.21, p < 0.01). The PBAS adequately reflected an increase in pain severity and was more effective and appropriate for capturing pain-related dysfunctional sleep beliefs than the C-DBAS-14.
Conclusion
The Korean version of the PBAS showed high reliability and validity in patients with cancer, and applicability across cancer types and cancer-related beliefs.
2.Nervonic Acid Inhibits Replicative Senescence of Human Wharton’s Jelly-Derived Mesenchymal Stem Cells
Sun Jeong KIM ; Soojin KWON ; Soobeen CHUNG ; Eun Joo LEE ; Sang Eon PARK ; Suk-Joo CHOI ; Soo-Young OH ; Gyu Ha RYU ; Hong Bae JEON ; Jong Wook CHANG
International Journal of Stem Cells 2024;17(1):80-90
Cellular senescence causes cell cycle arrest and promotes permanent cessation of proliferation. Since the senescence of mesenchymal stem cells (MSCs) reduces proliferation and multipotency and increases immunogenicity, aged MSCs are not suitable for cell therapy. Therefore, it is important to inhibit cellular senescence in MSCs. It has recently been reported that metabolites can control aging diseases. Therefore, we aimed to identify novel metabolites that regulate the replicative senescence in MSCs. Using a fecal metabolites library, we identified nervonic acid (NA) as a candidate metabolite for replicative senescence regulation. In replicative senescent MSCs, NA reduced senescence-associated β-galactosidase positive cells, the expression of senescence-related genes, as well as increased stemness and adipogenesis. Moreover, in non-senescent MSCs, NA treatment delayed senescence caused by sequential subculture and promoted proliferation. We confirmed, for the first time, that NA delayed and inhibited cellular senescence.Considering optimal concentration, duration, and timing of drug treatment, NA is a novel potential metabolite that can be used in the development of technologies that regulate cellular senescence.
3.Perioperative adverse cardiac events and mortality after non-cardiac surgery: a multicenter study
Byungjin CHOI ; Ah Ran OH ; Jungchan PARK ; Jong-Hwan LEE ; Kwangmo YANG ; Dong Yun LEE ; Sang Youl RHEE ; Sang-Soo KANG ; Seung Do LEE ; Sun Hack LEE ; Chang Won JEONG ; Bumhee PARK ; Soobeen SEOL ; Rae Woong PARK ; Seunghwa LEE
Korean Journal of Anesthesiology 2024;77(1):66-76
Background:
Perioperative adverse cardiac events (PACE), a composite of myocardial infarction, coronary revascularization, congestive heart failure, arrhythmic attack, acute pulmonary embolism, cardiac arrest, and stroke during 30-day postoperative period, is associated with long-term mortality, but with limited clinical evidence. We compared long-term mortality with PACE using data from nationwide multicenter electronic health records.
Methods:
Data from 7 hospitals, converted to Observational Medical Outcomes Partnership Common Data Model, were used. We extracted records of 277,787 adult patients over 18 years old undergoing non-cardiac surgery for the first time at the hospital and had medical records for more than 180 days before surgery. We performed propensity score matching and then an aggregated meta‑analysis.
Results:
After 1:4 propensity score matching, 7,970 patients with PACE and 28,807 patients without PACE were matched. The meta‑analysis showed that PACE was associated with higher one-year mortality risk (hazard ratio [HR]: 1.33, 95% CI [1.10, 1.60], P = 0.005) and higher three-year mortality (HR: 1.18, 95% CI [1.01, 1.38], P = 0.038). In subgroup analysis, the risk of one-year mortality by PACE became greater with higher-risk surgical procedures (HR: 1.20, 95% CI [1.04, 1.39], P = 0.020 for low-risk surgery; HR: 1.69, 95% CI [1.45, 1.96], P < 0.001 for intermediate-risk; and HR: 2.38, 95% CI [1.47, 3.86], P = 0.034 for high-risk).
Conclusions
A nationwide multicenter study showed that PACE was significantly associated with increased one-year mortality. This association was stronger in high-risk surgery, older, male, and chronic kidney disease subgroups. Further studies to improve mortality associated with PACE are needed.
4.3,3′,4,4′-tetrachlorobiphenyl (PCB77) enhances human Kv1.3 channel currents and alters cytokine production
Jong-Hui KIM ; Soobeen HWANG ; Seo-In PARK ; Hyo-Ji LEE ; Yu-Jin JUNG ; Su-Hyun JO
The Korean Journal of Physiology and Pharmacology 2024;28(4):323-333
Polychlorinated biphenyls (PCBs) were once used throughout various industries; however, because of their persistence in the environment, exposure remains a global threat to the environment and human health. The Kv1.3 and Kv1.5 channels have been implicated in the immunotoxicity and cardiotoxicity of PCBs, respectively. We determined whether 3,3′,4,4′-tetrachlorobiphenyl (PCB77), a dioxin-like PCB, alters human Kv1.3 and Kv1.5 currents using the Xenopus oocyte expression system. Exposure to 10 nM PCB77 for 15 min enhanced the Kv1.3 current by approximately 30.6%, whereas PCB77 did not affect the Kv1.5 current at concentrations up to 10 nM. This increase in the Kv1.3 current was associated with slower activation and inactivation kinetics as well as right-shifting of the steady-state activation curve. Pretreatment with PCB77 significantly suppressed tumor necrosis factor-α and interleukin-10 production in lipopolysaccharide-stimulated Raw264.7 macrophages. Overall, these data suggest that acute exposure to trace concentrations of PCB77 impairs immune function, possibly by enhancing Kv1.3 currents.

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