1.Diagnostic value of serum Mac-2 binding protein for the severity of schistosomiasis-induced liver fibrosis
Jun WU ; Meiqun LUO ; Shuying XIE ; Ronghua ZHU ; Hui XU ; Long TANG ; Fei HU ; Sheng DING
Chinese Journal of Schistosomiasis Control 2026;38(1):38-43
Objective To evaluate the value of serum Mac-2 binding protein (M2BP) for assessment of the severity of schisto somiasis-induced liver fibrosis, so as to provide insights into non-invasive diagnosis and disease surveillance of liver fibrosis caused by schistosomiasis. Methods A total of 234 individuals with a history of Schistosoma japonicum infection were sampled from Xinhua Village, Lushan City, Jiangxi Province from 2019 to 2020, and 234 serum samples were collected from all participants. All participants received B-ultrasound examinations of the liver. Serum samples were categorized into four groups (grades 0, Ⅰ, Ⅱ and Ⅲ schistosomiasis-induced liver fibrosis groups) according to B-ultrasound examination results, and then, each group was randomly divided into a receiver operating characteristic (ROC) curve group and an efficacy assessment group at a ratio of 7∶3. Serum M2BP concentration was measured in four groups using the enzyme-linked immunosorbent assay (ELISA), and differences in serum M2BP concentrations were compared with analysis of variance and Spearman correlation analysis. Serum M2BP concentration was subjected to ROC curve analysis among individuals with different grades of schistosomiasis-induced liver fibrosis in the ROC curve group to determine the optimal diagnostic threshold of M2BP concentration at different fibrosis grades, and the area under the ROC curve (AUC) was calculated to evaluate the diagnostic performance. The diagnostic accuracy was verified by comparing the accordance rate and Kappa consistency test in the efficacy assessment group. Results Among 234 serum samples, there were 79 samples with grade 0 schistosomiasis-induced liver fibrosis, 87 samples with Grade Ⅰ, 46 samples with Grade Ⅱ and 22 samples with Grade Ⅲ according to the B-ultrasound examinations. The mean serum M2BP concentrations were (0.40 ± 0.31) [95% confidence interval (CI): (0.33, 0.47)], (0.64 ± 0.48) [95% CI: (0.53, 0.74)], (1.76 ± 0.58) [95% CI: (1.59, 1.93)] μg/mL and (2.56 ± 0.93) [95% CI: (2.14, 2.97)] μg/mL in the four groups, respectively (F = 150.796, P < 0.001), and the severity of schistosomiasis-induced liver fibrosis significantly positively correlated with serum M2BP concentration (rs = 0.715, P < 0. 001). The sample sizes of grades 0, Ⅰ, Ⅱ and Ⅲ schistosomiasis-induced liver fibrosis sera were randomly allocated as follows: 55 versus 24, 61 versus 26, 32 versus 14, and 15 versus 7 in the ROC curve and efficacy assessment groups, respectively, and the serum M2BP concentrations were (0.39 ± 0.29) μg/mL and (0.42 ± 0.36) μg/mL (F = 0.196, P > 0.05), (0.59 ± 0.47) μg/mL and (0.75 ± 0.51) μg/mL (F = 1.967, P > 0.05), (1.73 ± 0.59) μg/mL and (1.85 ± 0.57) μg/mL (F = 0.417, P > 0.05), and (2.46 ± 0.64) μg/mL and (2.76 ± 1.41) μg/mL (F = 0.491, P > 0.05), respectively. ROC curve analysis showed that the optimal diagnostic thresholds of serum M2BP concentration were 0.347 86 μg/mL (AUC = 0.635, P < 0.05), 1.188 83 μg/mL (AUC = 0.938, P < 0.000 1) and 2.021 21 μg/mL (AUC = 0.821, P < 0.000 1) for grade Ⅰ, Ⅱ and Ⅲ schistosomiasis-induced liver fibrosis. In addition, the accordance rates between the optimal diagnostic threshold of serum M2BP and B-ultrasound examinations for predicting grade Ⅰ, Ⅱ and Ⅲ schistosomiasis-induceed liver fibrosis were 69.23%, 85.71% and 71.43% (χ2 = 1.340, P > 0.05), and the overall Kappa consistency test showed moderate consistency [Kappa = 0.608, 95% CI: (0.428, 0.788); Z = 6.609, P < 0.000 1]. Conclusions Serum M2BP may serve as a potential biomarker for assessing moderate to advanced schistosomiasis-induced liver fibrosis; however, its diagnostic value for early-stage schistosomiasis-induced liver fibrosis remains limited.
2.Reactive and Enzyme-activated Probe Strategies for Imaging Acute Kidney Injury
Ru-Long CHEN ; Ting-Fei XIE ; Jin-Xin ZHANG ; Jia-Ting CHEN ; Jie LI ; Peng-Fei ZHANG ; Ji-Hong CHEN ; Lin-Tao CAI
Progress in Biochemistry and Biophysics 2026;53(6):1622-1637
Acute kidney injury (AKI) is a prevalent and life-threatening clinical syndrome characterised by a rapid decline in renal function and diverse pathological etiologies. The condition has been demonstrated to be associated with elevated mortality rates and an increased risk of progression to chronic kidney disease. At present, clinicians depend heavily on conventional functional markers, such as serum creatinine and urine output, for the diagnosis and staging of the disease. It is evident that these conventional indicators characteristically manifest a considerable temporal delay and only undergo modification subsequent to considerable tissue damage. This severely restricts the timeframe for early detection and timely therapeutic intervention. Furthermore, standard markers fail to provide specific biological information regarding the underlying cellular injury mechanisms. The utilisation of advanced probe technologies in molecular imaging offers a robust alternative to overcome these inherent diagnostic limitations.This comprehensive review systematically evaluates recent progress in the design and application of two primary categories of molecular imaging tools for acute kidney disease, specifically reactive probes and enzyme-activated probes. Reactive probes are engineered to specifically interact with redox-active chemical species, including hydrogen peroxide, peroxynitrite, hypochlorous acid, and sulfur dioxide. Because oxidative stress constitutes a primary early event in acute renal tubular damage, these probes enable researchers and clinicians to visualize early cellular injury and radical accumulation well before global renal functional decline becomes evident. We discuss the application of these reactive probes across multiple imaging modalities including fluorescence imaging, magnetic resonance imaging (MRI), positron emission tomography (PET), and photoacoustic techniques. Photoacoustic imaging combines high spatial resolution with deep tissue penetration and has successfully demonstrated the ability to provide diagnostic alerts up to 12 h before any detectable rise in serum creatinine levels. Additionally, specific reactive probes have shown promising translational potential when tested by high-throughput screening in clinical human urine samples. Enzyme-activated probes target the specific catalytic activity of disease-relevant enzymes. These include well-documented renal tubular structural biomarkers such as NAG, GGT, and ALP, along with apoptosis-related caspases and specific nitroreductases. By responding only to enzymatic cleavage, these tools provide highly specific and pathology-directed imaging readouts. Recent structural design strategies in this field have advanced significantly beyond single-enzyme detection. Researchers are now focusing on sophisticated dual-target recognition to minimize background noise, multimodal integration to cross-validate imaging signals, and theranostic applications where probes simultaneously deliver diagnostic feedback and therapeutic agents to injured tissues. Nanotechnology serves as a fundamental enabler for realizing these advanced probe functions. By precisely optimizing nanoparticle parameters such as hydrodynamic size, surface charge, and targeting ligands, researchers can achieve amplified signal output, highly precise kidney delivery, and protection against premature degradation in the systemic circulation. For example, modifying surface charges can significantly enhance the active uptake of nanoprobes by damaged renal tubular epithelial cells.While preclinical probe development has progressed rapidly, moving these technologies into routine clinical practice remains a major challenge. We analyze the translational feasibility and current obstacles from biological, technological, and regulatory perspectives. Although biological targets such as KIM-1, FAP, and ALP have been validated in extensive patient cohorts, practical barriers severely limit their immediate clinical application. These obstacles involve complex changes in in vivo pharmacokinetics. During an acute injury episode, the extreme drop in the glomerular filtration rate alters probe clearance and can cause unwanted systemic accumulation or confusing background imaging signals. Other major hurdles include a lack of comprehensive long-term toxicity data and the absence of standardized manufacturing protocols to ensure batch-to-batch consistency. Future successful translation will require rigorous multi-center clinical studies to confirm the true diagnostic value of these probes over traditional markers. Researchers must also establish strict standardization of imaging procedures and comprehensive safety evaluations. Ultimately, this review provides a thorough reference framework for designing clinically translatable molecular probes and building a precision diagnostic imaging system for acute kidney injury.
3.Cushing Disease Masquerading as Polycystic Ovary Syndrome: A Diagnostic Pitfall in Severe Hyperandrogenism
Jean Mun Cheah ; Fei Bing Yong ; K.J. Lingeswary ; Jen Hoong Oon ; Sharifah Noor Adrilla binti Long Mohd Noor Affendi ; Gayathri Devi A/P Krishnan ; Shazatul Reza binti Mohd Redzuan ; Subashini Rajoo Rajoo
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):97-
Introduction:
Polycystic ovary syndrome (PCOS) is the most common
cause of hyperandrogenism in women of reproductive
age. However, several endocrine disorders, particularly
Cushing disease (CD), can closely mimic the clinical, biochemical, and radiological features of PCOS. This overlap
may lead to misdiagnosis and delayed recognition of
hypercortisolism, with significant metabolic and reproductive consequences.
Case:
We report a 24-year-old female with young-onset diabetes
mellitus who was referred for endocrine co-management
during admission for recurrent mons pubis and labial
abscesses with poorly controlled glycemia. She had a 5-year
history of progressive hirsutism, oligomenorrhoea, scalp
hair loss, significant weight gain, and insulin resistance,
and had previously been labelled as having PCOS during
adolescence, with subsequent default of follow-up. On
examination, she was obese (body mass index 33 kg/
m²) with plethoric facies, acanthosis nigricans, proximal
myopathy, and hirsutism (Ferriman–Gallwey score 10),
without overt virilization or acromegalic features.
Biochemical evaluation demonstrated severe hyperandrogenism with markedly elevated total testosterone
(7.05 nmol/L), suppressed gonadotropins, and adrenocorticotropic hormone (ACTH)-dependent hypercortisolism. Cortisol failed to suppress on low-dose dexamethasone testing, and 24-hour urinary free cortisol
was markedly elevated (>4,900 nmol/24 h). Pelvic ultrasonography and computed tomography imaging showed
polycystic ovarian morphology without evidence of an
ovarian mass. Pituitary magnetic resonance imaging
revealed a small right-sided pituitary microadenoma
measuring 2.6 × 3.7 mm. Inferior petrosal sinus sampling
demonstrated a central-to-peripheral ACTH gradient with
adequate prolactin ratios, confirming pituitary CD.
Conclusion
This case highlights how Cushing disease can closely
mimic PCOS, including polycystic ovarian morphology
and hyperandrogenism. Progressive symptoms, severe
biochemical androgen excess, and marked insulin
resistance should prompt evaluation for secondary causes
of hyperandrogenism, particularly hypercortisolism, to
avoid delayed diagnosis and prolonged morbidity.
Female
;
Hyperandrogenism
;
Pituitary ACTH Hypersecretion
;
Polycystic Ovary Syndrome
4.Biochemical Discordance in Acromegaly Complicated by Pituitary Apoplexy and Severe Insulin Resistance
Jean Mun Cheah ; Fei Bing Yong ; K.J. Lingeswary ; Jen Hoong Oon ; Sharifah Noor Adrilla binti Long Mohd Noor Affendi ; Gayathri Devi A/P Krishnan ; Shazatul Reza binti Mohd Redzuan ; Subashini Rajoo
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):100-
Introduction:
Acromegaly is usually diagnosed by elevated age- and
sex-adjusted insulin-like growth factor-1 (IGF-1) levels
reflecting chronic growth hormone (GH) excess. IGF-1 is
preferred as a screening biomarker due to its longer half-life
and reduced pulsatility compared with GH. However, IGF1 levels may be disproportionately low or only modestly
elevated in certain clinical contexts, leading to diagnostic
uncertainty. Pituitary apoplexy is one such condition in
which acute tumor hemorrhage or infarction may disrupt
sustained GH secretion and attenuate IGF-1 production
Case:
A 48-year-old female with hypertension, type 2 diabetes
mellitus, and dyslipidemia presented with a 2-day history
of severe headache, vomiting, and visual disturbance, on a
background of progressive acral enlargement over 2 years.
Examination revealed coarse facial features, prognathism,
enlarged hands, and cranial nerve involvement. Magnetic
resonance imaging demonstrated an invasive sellar–
suprasellar pituitary macroadenoma with optic chiasmal
compression and cavernous sinus encasement. Intravenous
dexamethasone was initiated pre-operatively due to a
significant mass effect.
Biochemical evaluation showed markedly elevated
random GH levels (>50 ng/mL) with only mildly elevated
IGF-1 at 1.19 times the upper limit of normal, below the
threshold at which confirmatory oral glucose tolerance
testing may be omitted according to current guidelines.
Other pituitary axes suggested evolving hypopituitarism.
During admission, she developed severe hyperglycemia
with marked insulin resistance, requiring high-dose insulin
therapy (approximately 1.5 U/kg/day). She underwent
urgent transsphenoidal surgery, with histopathology
confirming a pituitary neuroendocrine tumor with extensive
hemorrhage and infarction, consistent with pituitary
apoplexy. Postoperatively, GH levels were suppressed to
<5 ng/mL, insulin requirements decreased markedly, and
hormone replacement was initiated for secondary adrenal
insufficiency and central hypothyroidism.
Conclusion
This case highlights that IGF-1 levels below conventional
diagnostic thresholds do not exclude clinically significant
acromegaly, particularly in the setting of pituitary
apoplexy. Integration of clinical phenotype, GH levels, and
imaging findings is essential to avoid diagnostic delay and
ensure timely management.
Acromegaly
;
Insulin Resistance
;
Pituitary Apoplexy
5.Hyperthyroidism and Gestational Trophoblastic Disease: A Case Report
K.J. Lingeswary ; Jean Mun Cheah ; Fei Bing Yong ; Jen Hoong Oon ; Aniqah Shamimi ; Sharifah Noor Adrilla binti Long Mohd Noor Affendi ; Gayathri Devi A/P Krishnan ; Shazatul Reza Binti Mohd Redzuan ; Subashini Rajoo
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):118-119
Introduction:
Gestational trophoblastic disease (GTD) is an uncommon
but important cause of secondary hyperthyroidism,
termed trophoblastic hyperthyroidism, resulting from
the structural similarity between human chorionic
gonadotropin (hCG) and thyroid-stimulating hormone
(TSH). Excessively elevated hCG levels can stimulate
the TSH receptor, leading to increased thyroid hormone
production and clinically significant thyrotoxicosis. Early
recognition is essential as uncontrolled hyperthyroidism
may lead to serious perioperative complications.
Case:
We report a 50-year-old female who presented with
persistent vaginal bleeding following a prior uterine
evacuation. Clinical examination and ultrasonography
revealed a uterine mass corresponding to approximately
14 weeks’ gestation. Serum β-hCG was markedly elevated
at >1,000,000 IU/L. Histopathological evaluation confirmed
choriocarcinoma. Thyroid function tests demonstrated
severe biochemical hyperthyroidism, with suppressed TSH
and elevated free thyroxine levels. Notably, the patient did
not exhibit classic symptoms or signs of hyperthyroidism
such as palpitations, tremor, goiter, or thyroid eye signs.
She was started on beta-blockers and carbimazole for initial control. Given the underlying pathology, early definitive
surgical management was planned with multidisciplinary
input, and she subsequently underwent total abdominal
hysterectomy with bilateral salpingo-oophorectomy
successfully.
Hyperthyroidism in GTD is well described, but patients
may remain clinically asymptomatic despite significant
biochemical derangement, as seen in this case. Markedly
elevated β-hCG can mimic primary thyroid disease and
may lead to misinterpretation if the underlying cause is not
recognized. While antithyroid drugs such as carbimazole
are commonly initiated, they may have limited effect in
this setting, as the hyperthyroidism is driven by hCG rather
than intrinsic thyroid overactivity. Beta-blockers play an
important role in controlling symptoms and reducing
peripheral conversion of T4–T3. Early definitive treatment
of the underlying trophoblastic disease remains the key
to resolution.
Conclusion
Trophoblastic hyperthyroidism is a reversible condition
secondary to the underlying disease process. Treatment
of the trophoblastic tumor results in resolution of the
thyrotoxic state. Early recognition and appropriate
preoperative optimization are essential to ensure safe
patient outcomes.
Gestational Trophoblastic Disease
;
Hyperthyroidism
6.Different Exercise Modalities for Type 2 Diabetes Mellitus Complicated With Metabolic-associated Fatty Liver Disease
Bo-Zong YI ; Lei LÜ ; Yu-Xiao GUO ; Bei-Bei QIE ; Fei-Long CHEN
Progress in Biochemistry and Biophysics 2026;53(8):2053-2070
Both type 2 diabetes mellitus (T2DM) and metabolic associated fatty liver disease (MAFLD) fall within the spectrum of metabolic diseases, and they exhibit a bi-directional causal relationship and robust reciprocal association. Their shared pathological cornerstone is insulin resistance (IR), which involves the interplay of mitochondrial dysfunction and chronic inflammation, forming a cascading pathological process of “IR-mitochondrial dysfunction-inflammation”. This largely explains the notable upward trend in T2DM-MAFLD co-occurrence observed over recent years. Exercise intervention, as a safe and effective non-pharmacological approach, can improve the pathological progression of these patients at multiple levels. Following the logical framework of “pathogenesis-efficacy comparison-molecular mechanisms-clinical translation”, this article systematically compares the efficacy and molecular mechanisms of moderate-intensity continuous training (MICT), resistance exercise, high-intensity interval training (HIIT), and combined training. MICT reduces intrahepatic triglycerides by promoting lipolysis and improving cardiorespiratory fitness; resistance exercise increases muscle mass and basal metabolic rate, offering unique advantages in preserving muscle while reducing fat and improving insulin sensitivity; HIIT is a time-efficient exercise modality that enhances patients’ cardiorespiratory fitness and insulin sensitivity by alternating brief periods of vigorous exertion with recovery periods, with a prominent short-term triglyceride-lowering effect; combined training produces synergistic effects, comprehensively improving glucolipid metabolism and showing the best long-term adherence. Mechanistically, exercise exerts its beneficial effects through three common pathways: (1) AMPK-mediated lipid oxidation and mitochondrial biogenesis; (2) IRS/PI3K/Akt-mediated insulin signaling sensitization; and (3) Nrf2/ARE anti-oxidation and TGF-β/Smads anti-fibrosis regulation. Different exercise modalities activate these pathways with distinct emphases: MICT most directly and persistently activates the AMPK pathway; resistance exercise uniquely improves IRS/PI3K/Akt signaling through muscle mass gain; HIIT induces the highest AMPK activation intensity and triggers unique lactate-mediated signaling regulation; combined training integrates the above multiple mechanistic advantages. For clinical translation, multidisciplinary team collaboration is essential to ensure safety and adherence. Individualized prescriptions should be formulated according to the FITT-VP principle and patient phenotypes—frequency of 3-5 sessions/week of aerobic exercise combined with 2-3 sessions/week of resistance exercise; intensity of moderate-intensity (40%-60% heart rate reserve (HRR))aerobic exercise and 60%-80% of one-repetition maximum (1-RM) for resistance exercise; time of at least 150 min/week of moderate-intensity aerobic exercise, 30-60 min per session; type of combined training as the preferred modality; total volume of≥500-1 000 MET-min/week; and progression adjusted every 4-6 weeks—with real-time adjustments supported by wearable devices, ultimately forming a closed-loop management system from initial assessment to long-term follow-up. Notably, current studies have limitations such as small sample sizes and short intervention periods. Future research should focus on long-term follow-up, multi-omics biomarkers, and combined exercise-drug strategies. In conclusion, the systematic integration of structured, individualized, and sustainable exercise interventions into the multidisciplinary management pathway for patients with T2DM complicated by MAFLD is an urgent need in current clinical practice.
7.Aerobic Exercise and MOTS-c Ameliorate Hepatic Oxidative Stress and Metabolic Disorder in Type 2 Diabetes via The NRF2/PPARγ Axis
Fei-Long CHEN ; Zhi-Yu LI ; Tu-Tu WANG ; Yu FU ; Lei LÜ ; Cheng-Yuan XING ; Shun-Chang LI
Progress in Biochemistry and Biophysics 2026;53(8):2071-2090
ObjectiveType 2 diabetes mellitus (T2DM) often causes severe hepatic metabolic complications, dominated by metabolic associated fatty liver disease (MAFLD). Persistent hepatic steatosis and oxidative stress further trigger steatohepatitis and progressive liver damage, increasing the mortality risk of diabetic patients. Aerobic exercise effectively improves hepatic lipid metabolism and antioxidant capacity, but poor patient adherence restricts its long-term clinical application. Mitochondrial-derived mitochondrial open reading frame of the 12S rRNA type-c (MOTS-c) is a key peptide regulating insulin sensitivity and hepatic redox homeostasis. This study aimed to explore the protective mechanism of MOTS-c against T2DM-related liver injury and its combined beneficial effect with aerobic exercise via the NRF2/PPARγ signaling axis. This study aimed to investigate whether MOTS-c cooperates with aerobic exercise to alleviate T2DM-associated hepatic oxidative stress and metabolic dysfunction by activating the NRF2/PPARγ axis, and to clarify the molecular and transcriptomic characteristics of their combined intervention. MethodsStable MOTS-c overexpression and knockdown HepG2 cell lines were constructed using lentiviral transfection. An oleic acid-induced cellular lipid accumulation model and NRF2-knockout cell model were applied to verify the NRF2-dependent mechanism ofMOTS-c. Intracellular lipid deposition, triglyceride levels, antioxidant enzyme activities, and the expression of NRF2/PPARγ pathway-related genes and proteins were detected. In vivo, a T2DM rat model with obvious hepatic steatosis was established via a high-fat and high-sucrose diet combined with streptozotocin injection. Model rats received aerobic exercise, MOTS-c intraperitoneal injection, or combined intervention. We detected systemic glycolipid metabolic indicators, hepatic histopathological changes, and the expression of core proteins in the hepatic NRF2/PPARγ axis. Hepatic transcriptomic sequencing was performed to screen differentially expressed genes (DEGs) and enrich key pathways co-regulated by MOTS-c and aerobic exercise. ResultsCellular results showed that MOTS-c overexpression significantly reduced oleic acid-induced lipid deposition, enhanced antioxidant enzyme activity, and upregulated NRF2 and PPARγ expression. Conversely, MOTS-c knockdown aggravated hepatic lipid accumulation and oxidative damage and inhibited NRF2/PPARγ pathway activation. NRF2 knockout completely eliminated the protective effects of MOTS-c on lipid metabolism and redox balance, confirming its NRF2-dependent regulatory mechanism. In T2DM rats, both MOTS-c supplementation and aerobic exercise effectively improved insulin resistance, corrected glycolipid metabolic disorders, and alleviated hepatic steatosis, while consistently activating the hepatic NRF2/PPARγ axis. Compared with single intervention, the combined treatment showed a better improvement trend in hepatic metabolic and oxidative injury, without definitive synergistic effects. Transcriptomic analysis revealed that the co-regulated DEGs of MOTS-c and aerobic exercise were primarily enriched in lipid metabolism and PPAR signaling pathways, with multiple antioxidant and lipid-regulating genes significantly modulated by combined intervention. ConclusionMOTS-c exhibits obvious exercise-mimetic hepatoprotective effects in T2DM. It activates the hepatic NRF2/PPARγ axis to strengthen antioxidant defense, stabilize lipid metabolism, and relieve T2DM-associated hepatic steatosis and oxidative damage. Furthermore, MOTS-c produces additive beneficial effects with aerobic exercise, showing a superior intervention trend on diabetic liver dysfunction. This study identifies the NRF2/PPARγ axis as the core mechanism of MOTS-c-regulated hepatic protection, elucidates the transcriptomic basis of combined intervention, and provides a reliable theoretical basis and potential therapeutic target for clinical intervention in T2DM-complicated MAFLD.
8.Molecular Characteristics and Prognostic Analysis of Low-Risk Acute Myeloid Leukemia with Relapse
Yun-Fei GAO ; Ye-Hui TAN ; Long SU ; Hai LIN ; Su-Jun GAO ; Xiao-Liang LIU
Journal of Experimental Hematology 2025;33(6):1551-1557
Objective:To investigate the molecular characteristics of low-risk acute myeloid leukemia(AML)at recurrence,and analyze the factors affecting retreatment efficacy and prognosis.Methods:A retrospective analysis was conducted on the clinical and laboratory data of 31 patients with newly diagnosed low-risk AML who relapsed during consolidation treatment or follow-up after treatment in our hospital from April 2017 to January 2023.Gene mutations before and after relapse were compared,retreatment efficacy following relapse was evaluated,and univariate and multivariate analyses were performed to identify factors influencing treatment efficacy and prognosis.Results:Gene sequencing results after relapse showed that the most common newly acquired mutation was FLT3-ITD,while RAS mutation detected at initial diagnosis were predisposed to loss of expression during relapse.The median overall survival(OS)after relapse for the entire cohort was 349(170-528)days,with non-hematopoietic stem cell transplantation(HSCT)group and HSCT group demonstrating median survival times of 210(106-314)days and not reached,respectively(P=0.001).Multivariate analysis revealed that age ≥60 years was a significant risk factor for achieving remission after retreatment in initially diagnosed low-risk AML patients who experienced relapse(OR=18.222,95%CI:1.188-279.597,P=0.037).Additionally,DNMT3A mutation was identified as an independent risk factor for OS(HR=13.165,95%CI:2.018-85.877,P=0.007),while HSCT post-relapse demonstrated significant survival benefits(HR=0.133,95%CI:0.025-0.698,P=0.017)and served as an independent protective factor for OS.Conclusion:Relapsed low-risk AML is often associated with loss of RAS and novel mutations in FLT3-ITD.Age ≥ 60 years and DNMT3A mutations were identified as independent adverse factors for achieving subsequent remission and post-relapse survival,respectively,while HSCT significantly improved patient outcomes.
9.Troubleshooting of YLY-020Y acidic oxidation potential water generator:Three case reports
Jing-jing LU ; Jing WU ; Zhen-le FEI ; Xiao-long LI ; Yu ZHANG ; Min HE
Chinese Medical Equipment Journal 2025;46(10):118-120
Three failures of YLY-020Y acidic oxidation potential water generator were introduced,and the causes and specific troubleshooting measures were explored.References were provided for engineers to treat similar failures.[Chinese Medical Equipment Journal,2025,46(10):118-120]
10.Application research of radiomics based on enhanced CT venous phase for preoperatively predicting poorly differentiated esophageal squamous cell carcinoma
Meng LIU ; Zeqiang GAO ; Chunyue YAN ; Weili LONG ; Ming YANG ; Fei WANG
Journal of Practical Radiology 2025;41(9):1477-1481
Objective To explore a nomogram of intratumor and peritumor radiomics based on enhanced CT venous phase to pre-operatively predict the pathological grade of poorly differentiated esophageal squamous cell carcinoma(ESCC).Methods A retro-spective selection was made of 266 ESCC patients confirmed by pathology(76 cases of poorly differentiated;190 cases of non-poorly differentiated),and all patients were randomly divided into training set(n=186),validation set(n=80),and full data set(n=266).Tumors were segmented on the enhanced CT venous phase to create three-dimensional region of interest(ROI)of intratumor,peritu-mor 0.3 cm,and intratumor+peritumor 0.3 cm.A total of 2 553 radiomics features were extracted.After feature dimensionality reduc-tion,XGboost machine learning algorithm was utilized to rank the top fifteen features.Stepwise forward multiple logistic regression was employed to identify the most significant features.The radiomics scores of the intratumor,peritumor 0.3 cm,and intratumor+peritu-mor 0.3 cm were calculated.The diagnostic efficacy of the model was evaluated using the area under the curve(AUC)of the receiver operating characteristic(ROC)curve,calibration curve and decision curve analysis(DCA).Results The nomogram constructed based on radiomics scores of intratumor,peritumor 0.3 cm,intratumor+peritumor 0.3 cm in the training set for preoperative prediction of poorly differentiated ESCC had an AUC of 0.899[95%confidence interval(CI)0.846-0.938],and it was well validated in the vali-dation set(AUC 0.869,95%CI 0.775-0.934)and the full data set(AUC 0.889,95%CI 0.845-0.924).Additionally,calibration curves and DCA indicated that the nomogram achieved good calibration ability in the three cohorts and offered greater clinical net benefit.Conclusion The nomogram based on enhanced CT venous phase intratumor and peritumor radiomics achieves a high and stable diagnostic efficacy for preoperatively predicting poorly differentiated ESCC,which may help with individualized surgical selec-tion and management before surgery.


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