1.The Role and Regulatory Mechanisms of FOXO1 in Hepatic Lipid Deposition
Meng JIA ; Fang-Hui LI ; Shi-Zhan YAN ; Ai-Ju LI ; Yi-Le WANG ; Pin-Shi NI ; Jia-Han HE ; Yin-Lu LI
Progress in Biochemistry and Biophysics 2026;53(4):905-919
Metabolic associated fatty liver disease (MAFLD) is fundamentally driven by an imbalance in hepatic fatty-acid flux: the influx of fatty acids exceeds the liver’s capacity for disposal, resulting in excessive hepatic lipid accumulation, predominantly in the form of triglycerides (TGs). The occurrence and progression of MAFLD depend on disordered regulation across multiple metabolic steps, including fatty-acid uptake, de novo lipogenesis (DNL), fatty-acid oxidation (FAO), and very low-density lipoprotein (VLDL) export. Forkhead box protein O1 (FOXO1) is a key transcriptional regulator within the hepatic network coordinating glucose and lipid metabolism. Under metabolic stress and insulin resistance (IR), FOXO1 expression is frequently increased, whereas its inhibitory phosphorylation is reduced. These changes enhance FOXO1 nuclear localization and transcriptional activity, thereby reprogramming the expression of genes related to metabolism in the liver. Because hepatic lipid deposition is the central pathological feature of MAFLD, the functional status of FOXO1 directly influences hepatic lipid homeostasis. Growing evidence suggests that FOXO1 can exert bidirectional, environment-dependent effects on hepatic lipid accumulation; however, the molecular basis for this functional switch remains incompletely understood. This review systematically summarizes the biological functions and regulatory mechanisms of FOXO1 and its roles in hepatic lipid metabolism, with a particular focus on its crosstalk with insulin signaling. FOXO1 expression is shaped by RNA modifications and epigenetic regulation mediated by non-coding RNAs. Its transcriptional output is precisely governed by post-translational modifications—such as phosphorylation and acetylation—as well as by coordinated nucleocytoplasmic shuttling. Notably, these regulatory patterns vary markedly across nutritional states, degrees of insulin resistance, and stages of disease. In the fed state, insulin/IGF-1 signaling activates the PI3K-AKT pathway, promoting the inhibitory phosphorylation of FOXO1 and facilitating additional modifications, including acetylation, methylation, and ubiquitination. Together, these events drive FOXO1 export from the nucleus and dampen its transcriptional activity, suppressing gluconeogenesis and constraining lipogenic programs. Conversely, during fasting or when insulin signaling is weakened, FOXO1 inhibition is relieved. FOXO1 accumulates in the nucleus, binds to DNA, and regulates the transcription of downstream target genes. Mechanistically, FOXO1 can aggravate hepatic lipid accumulation by activating genes involved in TG synthesis while repressing FAO-related pathways, thereby favoring storage over oxidation. However, under specific conditions, FOXO1 may also alleviate the hepatic lipid burden by promoting TG hydrolysis and enhancing VLDL secretion, thereby reducing the net hepatic lipid load. In addition, lipotoxic signals mediated by ceramides and diacylglycerols (Cer/DAG) activate atypical protein kinase C (aPKC), further exacerbating the disruption of the AKT-FOXO1 axis. This vicious cycle ultimately produces a metabolic paradox in which increased hepatic glucose output coexists with persistent, insulin-independent lipogenesis, accelerating MAFLD progression. Importantly, FOXO1 regulation is not uniform: during early metabolic overload, insulin-mediated suppression may remain effective, whereas in advanced insulin resistance, the loss of AKT control permits sustained FOXO1 activity. Such stage-dependent dynamics may help explain why FOXO1 can either promote steatosis or, in certain contexts, support programs that facilitate lipid turnover. Accordingly, interventions should be liver-specific and tuned to the disease stage, aiming to curb maladaptive FOXO1 signaling while preserving its capacity to promote triglyceride hydrolysis and VLDL secretion when advantageous. Overall, this review offers an important perspective on MAFLD pathogenesis, emphasizing FOXO1 as a potential therapeutic target and providing a theoretical basis for developing liver-specific, disease-course-dependent precision interventions.
2.The development process, research status, and prospect of physical ablation in the treatment of chronic obstructive pulmonary disease
Xiaoyu ZHOU ; Yirong AN ; Ran JU ; Haoze LENG ; Shiran TAO ; Jiawei TIAN ; Ming' ; e WU ; Haoyang ZHU ; Yi LÜ ; ; Nana ZHANG
Chinese Journal of Clinical Thoracic and Cardiovascular Surgery 2026;33(04):646-651
Chronic obstructive pulmonary disease (COPD) is the most common chronic respiratory disease around the world, and pharmacotherapy is the foremost treatment method currently. In recent decades, with the rapid development of bronchoscopic interventional therapy, endoscopic physical ablation technology presents a therapeutic effect in treating COPD, with few treatment-related side effects, showing excellent application prospects in treating COPD. Since ablation techniques in this field are emerging technologies with low patient acceptance, they are not widely used in the clinical treatment of COPD. This article reviews the development process of physical ablation techniques. Moreover, their current application status and the prospects in the field of COPD treatment are also summarized and analyzed. We hope to promote the application of physical ablation in the clinical treatment of COPD and provide practical references and a theoretical basis for the clinical treatment of COPD.
3.Application research of linear calibration using two reference substances in the establishment of qualitative standards for multi-component analysis of Saposhnikovia divaricata
YAN Jingyi ; ZHOU Hongxu ; TAO Muke ; XIE LinJuan ; JU Miao ; ZHANG Yi
Drug Standards of China 2026;27(1):0092-0099
Objective: Establishment of a HPLC method for six chemical components in Saposhnikovia divaricata (prim-O-glucosylcimifugin, cimifugin, 5-O-methylvisamminoside, sec-O-glucosylhamaudol, psoralen, and imperatorin), comparison of the advantages and disadvantages of the dual-standard linear calibration method and the relative retention time method, and investigation of the feasibility of the linear calibration using two reference substances for qualitative analysis of multiple components in Saposhnikovia divaricata.
Methods: A HPLC method was employed, using 21 different brands and models of C18 columns. The mobile phase consisted of acetonitrile (A) and 0.02% phosphoric acid aqueous solution (B), with gradient elution (0-20 min, 18%A; 20-45 min, 18%A-50%A; 45-60 min, 50%A). The column temperature was set at 30 ℃, the flow rate was 1 mL·min-1, and the detection wavelength was 254 nm.
Results: The results predicted by the linear calibration using two reference substances were accurate and superior to those of the relative retention time method, and the six components exhibited good linear relationships within their respective ranges.
Conclusion: The established linear calibration using two reference substances accurately predicts the retention times of the target components. This method is stable and reliable, providing a reference for the establishment of digital standards in traditional Chinese medicine.
4.Morphometric Analysis of the Condylar Part of the Occiput Using 3D Computed Tomography Models for Sex Estimation in a Korean Population
Korean Journal of Legal Medicine 2026;50(2):53-62
This study aimed to analyze the 3D morphology of the condylar part of the occiput in a Korean population and evaluate its applicability for sex estimation. A total of 87 individuals (44 males and 43 females) were included, and measurements of the occipital condyle and foramen magnum were obtained using computed tomography–based 3D reconstructions. Intra-observer reliability was assessed, and univariate and multivariate discriminant analyses were performed to evaluate the discriminative power of each variable. Most measurements showed significant sexual dimorphism, with males generally exhibiting higher values than females. Particularly, variables related to the occipital condyle, including length, width, and area, demonstrated relatively high discriminative performance, whereas those related to the foramen magnum showed comparatively lower discriminative ability. Multivariate analysis further improved the classification accuracy, indicating that the combined use of multiple variables enhanced the ability to distinguish between sexes. These findings suggest that this approach may be particularly valuable in forensic contexts where skeletal remains are incomplete and offer a reliable alternative when more commonly used elements are unavailable.
5.Role of Adenosine Receptors in Sleep Deprivation-Induced Depression-Like Behaviors
Biomolecules & Therapeutics 2026;34(2):356-364
Sleep deprivation (SD) disrupts homeostatic regulation and increases vulnerability to stress and mood disorders. This study investigated the duration-dependent effects of SD and elucidated the distinct roles of adenosine A1 receptors (A1R) and A2A receptors (A2AR) in behavioral and molecular alterations induced by 24, 48, and 72 h of SD in mice. SD for 48 h and 72 h, but not 24 h, significantly increased immobility time in the tail suspension test (TST) and forced swim test (FST), accompanied by elevated plasma corticosterone (CORT) levels, indicating a duration-dependent stress response. Hippocampal A1R mRNA expression was significantly reduced, whereas A2AR mRNA expression was markedly increased at 48 h and 72 h of SD. Pharmacological blockade of either A1R (DPCPX) or A2AR (SCH 58261) significantly attenuated SD-induced depression-like behaviors and CORT elevation, whereas activation of A1R with the agonist CPA exacerbated depression-like behavior at 24 h and 48 h of SD. These findings suggest that A2AR upregulation may represent a pathological response to prolonged SD, whereas A1R downregulation may reflect compensatory adaptation to sustained receptor activation. Taken together, our results demonstrate that A1R and A2AR play distinct roles in SD-induced depression-like behaviors.
6.Muscle Loss Driven by Extracellular Signal-Regulated Kinase Suppression via β-Adrenergic Activation in High-Normal Catecholamine Status
Jieun LEE ; Ju Yeon KWAK ; Ho Yeop LEE ; Ji Sun MOON ; Hyo Ju JANG ; Ha Thi NGA ; Thi Linh NGUYEN ; Alfin Mohammad ABDILLAH ; Junglyun KIM ; Sihwan KIM ; Yong Ryoul YANG ; Jeong Eun LEE ; Hyon-Seung YI
Endocrinology and Metabolism 2026;41(2):319-332
Background:
Catecholamines play a crucial role in muscle biogenesis, but their persistent elevation is linked to muscle wasting, which is poorly understood. This study aimed to investigate the association between catecholamine levels and age-related muscle loss.
Methods:
This retrospective study evaluated the plasma levels of two catecholamines, metanephrine and normetanephrine, and the clinical characteristics of 830 patients with adrenal incidentaloma on computed tomography (CT). Cross-sectional CT data at the L3 lumbar vertebrae were used to measure muscle areas. In vitro studies on C2C12 myotubes were conducted to examine β-adrenergic receptor signaling pathways and their role in myogenesis.
Results:
Men had significantly higher mean metanephrine levels of 0.17 nmol/L and normetanephrine levels of 0.63 nmol/L than women (P<0.05). Total abdominal muscle area was negatively correlated with catecholamine levels in both men and women, with the strongest negative correlation between normetanephrine levels and total abdominal muscle area in men (r=–0.31, P<0.001). Similarly, the strongest negative correlation between visceral fat area and metanephrine was observed in men (r=–0.25, P=0.004). Clenbuterol, a β-adrenergic receptor agonist, inhibited myogenesis, including myotube formation by extracellular signal-regulated kinase (ERK) suppression in C2C12 myoblasts. Conversely, β-blockers increased myogenesis via increasing ERK phosphorylation in C2C12 cells. These findings suggest that β-adrenergic modulation influences skeletal muscle differentiation, with ERK phosphorylation.
Conclusion
Catecholamine levels are associated with age, sex, muscle mass, and fat mass. Monitoring catecholamine levels, particularly in older men and in individuals with reduced muscle mass, may help manage age-related muscle loss and lead to individualized treatment strategies.
7.A Rare Diagnosis of Insulin Autoimmune Syndrome Causing Recurrent Hypoglycemia
Ju Vern Ew ; Jia En Chew ; Eunice Lau Yi Chwen
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):54-
Introduction:
Insulin autoimmune syndrome (IAS), or Hirata syndrome,
is characterized by hyperinsulinemic hypoglycemia
resulting from the presence of high titers of insulin
autoantibodies (IAAs) in the absence of exogenous insulin.
We present a rare case of IAS.
Case:
A 75-year-old female with underlying hypertension,
dyslipidemia, and osteoporosis presented with symptoms
suggestive of spontaneous hypoglycemia of 3 months
duration. She was non-diabetic with no history of
antidiabetic agents or exogenous insulin use. Notably, she
had taken traditional medications 1 month prior to onset
of symptoms.
Her fasting blood glucose was 2 mmol/L. Serum insulin
was significantly elevated at >1,000 iui/mL and serum
C peptide was 2,950 pmol/L, consistent with hyperinsulinemic hypoglycemia. Blood sulfonylurea level was
not available. Her complete blood count and renal and
liver function were normal. Thyroid function test was
normal, and a short corticotropin stimulation test showed
adequate cortisol response. Computed tomography (CT)
pancreas, endoscopic ultrasound and PET-CT scan with
Galium-68 DOTATATE showed no evidence of insulinoma.
Serum IAAs were raised at 175 IU/mL, which confirmed
a diagnosis of IAS.
The patient was managed with dietary modifications and
advised for frequent, small meals with low glycemic index,
incorporating oral raw cornstarch. She was also started on
oral diazoxide 100 mg twice daily (3 mg/kg/day) due to
persistent hypoglycemia. She responded well to diazoxide
with no more spontaneous hypoglycemia, however,
developed fluid retention which was managed with oral
diuretics. Subsequently, we managed to taper and stop the
diazoxide after 18 months of treatment. Patient remains
well with no further episodes of hypoglycemia.
Conclusion
IAS may be triggered by medications or viral infections,
occurs more frequently in people with autoimmune
conditions, and shows genetic predisposition. However,
as in our patient, IAS may be idiopathic, and the cause
remains unknown. IAS is frequently self-limiting, and our
patient experienced spontaneous remission with no further
hypoglycemic episodes after discontinuation of treatment.
Hypoglycemia
;
Insulins
8.Subacute Thyroiditis vs Suppurative Thyroiditis: A Diagnostic Challenge
Jia En Chew ; Ju Vern Ew ; Albert Li Ren Chong ; Eunice Yi Chwen Lau
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):121-122
Introduction:
Subacute thyroiditis (SAT) and acute suppurative
thyroiditis (AST) are two distinct inflammatory conditions
but share many overlapping clinical and biochemical
features, which may pose a diagnostic challenge. We report
a case of SAT mimicking AST.
Case:
A 39-year-old female presented with a 3-week history of
painful neck swelling and symptoms of thyrotoxicosis,
including palpitations, heat intolerance, and diaphoresis. She
had no family history of thyroid disease. On examination,
she was febrile and had a smooth and tender goiter. Her
blood tests showed leukocytosis with elevated erythrocyte
sedimentation rate and C-reactive protein. Her thyroid
function test (TFT) showed thyroid-stimulating hormone of
0.023 mIU/L and free thyroxine 4 of 32.15 pmol/L.
An urgent ultrasound revealed a large, ill-defined
heterogeneously hypoechoic lesion predominantly at
the left lobe of the thyroid gland with mild intralesional
vascularity. These were reported as features of thyroiditis
with infective or early suppurative changes. Fine needle
aspiration (FNA) of the lesion was attempted by the
radiologist but was unsuccessful.
She was treated with intravenous antibiotics and nonsteroidal anti-inflammatory drugs (NSAIDs), but symptoms
persisted. Repeated ultrasound and computed tomography
scans about 1 week later confirmed an enlarged thyroid
gland with no obvious lesion or collection within the gland.
The diagnosis was revised to SAT, and prednisolone 15 mg
OD was started. This resulted in rapid improvement in her
symptoms and inflammatory markers.
Four weeks later, she remained asymptomatic, and
prednisolone was gradually tapered off. Serial TFT
monitoring showed a classic triphasic pattern with an initial
hyperthyroid phase, followed by hypothyroidism before
returning to euthyroidism.
Conclusion
SAT can present with a focal lesion on the ultrasound
during the early stage of the disease, making it difficult
to distinguish from a thyroid abscess due to overlapping
features. Good clinical judgement guided by FNA
and appropriate follow-up imaging may be helpful in
differentiating between the two conditions.
Thyroiditis, Subacute
;
Thyroiditis, Suppurative
9.Geriatric health changes during the COVID-19 pandemic: impacts on body composition and vascular aging.
Bo Min KIM ; Young Jin TAK ; Jeong Gyu LEE ; Yu Hyeon YI ; Seung-Hun LEE ; Gyu Lee KIM ; Young Jin RA ; Sang Yeoup LEE ; Young Hye CHO ; Eun Ju PARK ; Young In LEE ; Jung In CHOI ; Sae Rom LEE ; Ryuk Jun KWON ; Soo Min SON
Journal of Geriatric Cardiology 2025;22(8):753-756
10.Qingda Granule Attenuates Hypertension-Induced Cardiac Damage via Regulating Renin-Angiotensin System Pathway.
Lin-Zi LONG ; Ling TAN ; Feng-Qin XU ; Wen-Wen YANG ; Hong-Zheng LI ; Jian-Gang LIU ; Ke WANG ; Zhi-Ru ZHAO ; Yue-Qi WANG ; Chao-Ju WANG ; Yi-Chao WEN ; Ming-Yan HUANG ; Hua QU ; Chang-Geng FU ; Ke-Ji CHEN
Chinese journal of integrative medicine 2025;31(5):402-411
OBJECTIVE:
To assess the efficacy of Qingda Granule (QDG) in ameliorating hypertension-induced cardiac damage and investigate the underlying mechanisms involved.
METHODS:
Twenty spontaneously hypertensive rats (SHRs) were used to develope a hypertension-induced cardiac damage model. Another 10 Wistar Kyoto (WKY) rats were used as normotension group. Rats were administrated intragastrically QDG [0.9 g/(kg•d)] or an equivalent volume of pure water for 8 weeks. Blood pressure, histopathological changes, cardiac function, levels of oxidative stress and inflammatory response markers were measured. Furthermore, to gain insights into the potential mechanisms underlying the protective effects of QDG against hypertension-induced cardiac injury, a network pharmacology study was conducted. Predicted results were validated by Western blot, radioimmunoassay immunohistochemistry and quantitative polymerase chain reaction, respectively.
RESULTS:
The administration of QDG resulted in a significant decrease in blood pressure levels in SHRs (P<0.01). Histological examinations, including hematoxylin-eosin staining and Masson trichrome staining revealed that QDG effectively attenuated hypertension-induced cardiac damage. Furthermore, echocardiography demonstrated that QDG improved hypertension-associated cardiac dysfunction. Enzyme-linked immunosorbent assay and colorimetric method indicated that QDG significantly reduced oxidative stress and inflammatory response levels in both myocardial tissue and serum (P<0.01).
CONCLUSIONS
Both network pharmacology and experimental investigations confirmed that QDG exerted its beneficial effects in decreasing hypertension-induced cardiac damage by regulating the angiotensin converting enzyme (ACE)/angiotensin II (Ang II)/Ang II receptor type 1 axis and ACE/Ang II/Ang II receptor type 2 axis.
Animals
;
Drugs, Chinese Herbal/therapeutic use*
;
Hypertension/pathology*
;
Renin-Angiotensin System/drug effects*
;
Rats, Inbred SHR
;
Oxidative Stress/drug effects*
;
Male
;
Rats, Inbred WKY
;
Blood Pressure/drug effects*
;
Myocardium/pathology*
;
Rats
;
Inflammation/pathology*


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