Publications by authors named "Hye Sung Kim"

Background: Anti-programmed death-1 (PD-1)/cytotoxic T lymphocyte antigen-4 antibodies are efficacious in various malignancies.

Objectives: This study presents the first results of ipilimumab-nivolumab in invasive mucinous or non-mucinous lepidic adenocarcinoma (invasive mucinous adenocarcinoma (IMA) or invasive non-mucinous lepidic adenocarcinomas (INLA), respectively) of the lung.

Design: Dual anti-CTLA-4 and anti-PD-1 blockade in rare tumors (DART) is a prospective, open-label, multicenter (1016 US sites), multi-cohort phase II trial of ipilimumab (1 mg/kg intravenously (IV) every 6 weeks) plus nivolumab (240 mg IV every 2 weeks).

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  • The SWOG S1609 DART trial investigated the effectiveness of dual therapy with ipilimumab and nivolumab in patients with vulvar cancers, showing initial promising results.
  • In this phase II clinical trial involving 16 patients, the objective response rate was 18.8%, with some patients exhibiting durable responses and stable disease.
  • Adverse effects were common, including diarrhea and fatigue, with 25% of patients experiencing severe side effects, highlighting the need for ongoing studies to identify response and resistance markers.
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  • The study assesses the effectiveness of a dual checkpoint inhibition therapy (ipilimumab and nivolumab) on advanced non-epithelial ovarian cancers (NEOCs) in patients who have no other effective treatments available.
  • In a clinical trial involving 17 patients, the therapy showed a 25% overall response rate in those with granulosa cell tumors, with some patients experiencing significant progression-free survival and overall survival benefits.
  • However, the therapy had serious side effects, leading to treatment discontinuation in 18% of participants and no positive responses noted in carcinosarcoma cases.
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Electrical stimulation (ES) through biomaterials and devices has been implicated in activating diverse cell behaviors while facilitating tissue healing process. Despite its significance in modulating biological events, the mechanisms governing ES-activated cellular phenomena remain largely elusive. Here, we demonstrated that millisecond-pulsed temporal ES profoundly impacted a spectrum of cellular events across the membrane-cytosol-nuclear space.

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  • Dual inhibition using ipilimumab (anti-CTLA-4) and nivolumab (anti-PD-1) was tested on patients with desmoid tumors in a phase II clinical trial to assess efficacy and safety in treating these rare solid tumors.
  • The study involved 16 patients, with an overall response rate (ORR) of 18.8%, and a clinical benefit rate (CBR) of 62.5%, indicating decent stability and response to treatment over an average of 19.4 months of progression-free survival (PFS).
  • Adverse events were common, with fatigue, nausea, and hypothyroidism reported, highlighting the need for careful monitoring during treatment.
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Background & Aims: Precise assessment of postoperative volume status is important to administrate optimal fluid management. Bioelectrical impedance analysis (BIA) which measures the body composition using electric character. Extracellular water (ECW) ratio by BIA represented as the ratio of ECW to total body water (TBW) and is known to reflect the hydration status.

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Background: Molecular biomarkers are reshaping patient stratification and treatment decisions, yet their precise use and best implementation remain uncertain. Intratumor heterogeneity (ITH), an area of increasing research interest with prognostic value across various conditions, lacks defined clinical relevance in certain non-small cell lung cancer (NSCLC) subtypes. Exploring the relationship between ITH and tumor mutational burden (TMB) is crucial, as their interplay might reveal distinct patient subgroups.

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  • Quantitative polymerase chain reaction (qPCR) is being refined to more accurately measure bacterial colony-forming units (CFUs) by addressing the variability in DNA fragments across species, thus ensuring precise bacterial cell counts.
  • This new method involved selecting specific primer-probe sets for six oral bacteria and validating accuracy through a spiking study, achieving recovery rates of 95.1% to 106.8% and showing high reliability when compared to shotgun metagenome sequencing.
  • The optimized CFU-based qPCR method has proven to be a highly accurate and reliable technique for quantifying oral pathogenic bacteria, as indicated by strong linear relationships in the data.
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Chronic oral inflammation and biofilm-mediated infections drive diseases such as dental caries and periodontitis. This study investigated the anti-inflammatory and antibacterial potential of an ethanol extract from Astilbe chinensis inflorescence (GA-13-6) as a prominent candidate for natural complex substances (NCS) with therapeutic potential. In LPS-stimulated RAW 264.

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It is remarkable how teeth maintain their healthy condition under exceptionally high levels of mechanical loading. This suggests the presence of inherent mechanical adaptation mechanisms within their structure to counter constant stress. Dentin, situated between enamel and pulp, plays a crucial role in mechanically supporting tooth function.

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Background: Neonates are at risk of nosocomial tuberculosis (TB) infection from health care workers (HCWs) in neonatal care facilities, which can progress to severe TB diseases. Tuberculin skin test (TST) is commonly used for TB diagnosis, but its accuracy in neonates is influenced by various factors, including bacilli Calmette-Guérin (BCG) vaccination. This study aimed to identify predictors of positive TSTs in neonates exposed to HCWs with pulmonary TB.

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Articular cartilage defects are a global challenge, causing substantial disability. Repairing large defects is problematic, often exceeding cartilage's self-healing capacity and damaging bone structures. To tackle this problem, a scaffold-mediated therapeutic ion delivery system is developed.

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  • Long-term opioid exposure, particularly among pregnant mothers, negatively affects the embryonic brain, but researching this has been challenging due to limited access to human brains and differences in animal models.
  • Researchers developed a human midbrain model using stem cells to study the effects of acute and chronic fentanyl treatment and withdrawal on brain development.
  • Findings show that chronic exposure hinders proper neuronal development, while acute exposure temporarily boosts dopamine release without major changes in gene expression regarding cell development, marking a first-of-its-kind analysis at the single-cell level for human midbrain development.
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Purpose: In septic shock patients, pathogens and excessive endotoxins continuously overstimulate the host's immune system with a cytokine storm that can lead to multi-organ failure and even mortality. Various types of extracorporeal blood purification treatments have recently been introduced to remove excessive endotoxins and cytokines. Herein, we compared the clinical efficacy of two blood purification methods, PMX-HP and AN69-oXiris, and discussed their detailed indications according to disease severity.

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Pathological dermal scars such as keloids present significant clinical challenges lacking effective treatment options. Given the distinctive feature of highly stiffened scar tissues, deciphering how matrix mechanics regulate pathological progression can inform new therapeutic strategies. Here, it is shown that pathological dermal scar keloid fibroblasts display unique metamorphoses to stiffened matrix.

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Purpose: Change in venous-to-arterial carbon dioxide partial pressure difference[P(v-a)CO] could be a useful marker to assess tissue perfusion status. Herein, we assessed the predictive values of postoperative P(v-a)CO measurements for mortality in critically ill patients after major surgery. The correlation between P(v-a)CO values and other conventional parameters of patient prognosis was also evaluated.

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The sacrococcygeal area supports the lower body and endures mechanical forces during movement. However, current treatment methods for deep caudal sacrococcygeal defects have limitations, resulting in insufficient tissue for deep pocket obliteration and considering only the two-dimensional advancement plane in a three-dimensional defect topology. Our study proposes using a rotational V-Y fasciocutaneous advancement island flap to reconstruct deep caudal sacrococcygeal defects.

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Advancements in materials-driven mechanobiology have yielded significant progress. Mechanobiology explores how cellular and tissue mechanics impact development, physiology, and disease, where extracellular matrix (ECM) dynamically interacts with cells. Biomaterial-based platforms emulate synthetic ECMs, offering precise control over cellular behaviors by adjusting mechanical properties.

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Although the association between post-transplant malignancy (PTM) and immunosuppressive therapy after organ transplantation has been studied, an integrated review of PTM after lung transplantation is lacking. We investigated the incidence and types of PTM and its impact on survival following double lung transplantation (DLT). The incidence and type of PTM as well as the annual and cumulative risks of each malignancy after DLT were analyzed.

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Standard-of-care treatment options provide an excellent prognosis for papillary thyroid cancers (PTCs); however, approximately 10% of cases are advanced PTCs, resulting in less than 50% 5-year survival rates. Understanding the tumor microenvironment is essential for understanding cancer progression and investigating potential biomarkers for treatment, such as immunotherapy. Our study focused on tumor-infiltrating lymphocytes (TILs), which are the main effectors of antitumor immunity and related to the mechanism of immunotherapy.

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Oral probiotics have been recently gaining much attention owing to their potential to inhibit the progression of dental caries by controlling the cariogenic effects of Streptococcus mutans. We isolated and genotypically identified 77 lactic acid bacteria including 12 Limosilactobacillus fermentum probiotic candidates from the oral cavity of healthy volunteers. Among the 12 L.

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Since two major criteria for melting were proposed by Lindemann and Born in the early 1900s, many simulations and observations have been carried out to elucidate the premelting phenomena largely at the crystal surfaces and grain boundaries below the bulk melting point. Although dislocations and clusters of vacancies and interstitials were predicted as possible origins to trigger the melting, experimental direct observations demonstrating the correlation of premelting with lattice defects inside a crystal remain elusive. Using atomic-column-resolved imaging with scanning transmission electron microscopy in polycrystalline BaCeO, here we clarify the initiation of melting at two-dimensional faults inside the crystals below the melting temperature.

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