1.Traditional Chinese Medicine Alleviates Dry Eye Disease by Regulating Tear Film Homeostasis: A Review
Sainan TIAN ; Bin'an WANG ; Yao CHEN ; Guicheng LIU ; Li TANG ; Pei LIU ; Genyan QIN ; Jun PENG ; Qinghua PENG
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(7):172-181
Dry eye (DE) is a prevalent multifactorial disease of the ocular surface, clinically characterized by tear film homeostasis imbalance accompanied by related ocular surface symptoms. Specifically, the tear film is a thin liquid layer of tears covering the cornea and conjunctiva through blinking, while tear film homeostasis serves as the foundation for maintaining normal ocular surface structure and function. Insufficient tear secretion and excessive tear film evaporation lead to tear hyperosmolarity and the production of inflammatory mediators, disrupting tear film homeostasis and subsequently forming DE. Additionally, cascade reactions are triggered, resulting in a "vicious cycle of DE" that exacerbates the disease severity and prolongs its duration. Therefore, for DE treatment, it is crucial to restore tear film homeostasis and terminate this vicious cycle. Traditional Chinese medicine (TCM), which differentiates and treats DE based on systemic conditions, often achieves favorable therapeutic outcomes, offering additional treatment options for DE. Studies have demonstrated that TCM can alleviate DE by regulating tear film homeostasis and terminating the vicious cycle. This review systematically summarizes recent basic experimental research in China and abroad on TCM in alleviating DE by regulating tear film homeostasis, aiming to provide a theoretical basis for clinical treatment and an insight for research design.
2.Establishment and Evaluation of Mouse Model of Dry Eye with Lung Yin Deficiency Syndrome
Liyuan CAO ; Pei LIU ; Yuhui QIN ; Qinghua PENG
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(7):182-190
ObjectiveTo establish a model of dry eye with lung Yin deficiency syndrome in mice. MethodsA total of 40 SPF C57BL/6J mice were assigned via the random number table method into 5 groups (n=8): Normal control, model control, and high-, medium-, and low-dose (11.7, 5.85, and 2.925 g·kg-1, respectively) Yangyin Qingfeitang. Mice in the normal control group were fed normally without any intervention. Mice in Yangyin Qingfeitang group and model control group were treated with 0.2% benzalkonium chloride eye drops (5 μL) twice a day and fed in a controlled drying system in a dry environment for 28 days. At the same time, the mice were administrated with thyroxine tablet solution by gavage and placed in a glass fumigation tank (SO2 concentration: 0.5 g·m-3) for 14 days. After 4 weeks, mice in Yangyin Qingfeitang groups were treated with Yangyin Qingfeitang by gavage and those in the normal control group and model control group were administrated with deionized water at 0.01 mL·g-1. The body mass, anal temperature, four examination information (claw and nail appearance), basic tear secretion test, tear film rupture time, corneal fluorescein staining, and lacrimal gland HE staining were compared among groups. Compound Yangyin Qingfeitang granules were used to measure the syndrome to verify the success of modeling. ResultsAfter 28 days of continuous modeling, compared with the normal control group, the model group exhibited listless and emaciated status, coughing, drowsiness, dry and dull hair, dry and hard stool, reduced food intake and water intake, red lip circumference, red tongue with reduced fluid, dry nose and teeth, red claws and nails, body mass gain, decreased anal mild tear secretion (P<0.05), and shortened tear film rupture time (P<0.05). After 28 days of modeling, the mice showed large corneal fluorescein staining range, severe corneal injury, and increased content of interleukin (IL)-18, IL-β, and tumor necrosis factor (TNF)-α in lacrimal gland, compared with those in the normal control group (P<0.05). After the treatment with Yangyin Qingfeitang, the mice had good drinking and eating conditions, with lighter redness of the tongue, moist nose, moist and shiny teeth, and the claw and nail color close to that in the normal group. Compared with the model control group, Yangyin Qingfeitang groups showed increases in body mass and anal temperature (P<0.05), tear secretion (P<0.05), and tear film rupture time (P<0.05), narrowed range of corneal fluorescein staining, and declined levels of IL-18, IL-β, and TNF-α in lacrimal glands (P<0.01). The high-dose group had the best effect, with the indicators close to the levels in the normal control group. ConclusionThe animal model of dry eye with lung Yin deficiency syndrome can be established by culture in a controlled drying system, treatment with benzalkonium chloride eye drops for 28 days, and administration of thyroxine tablet solution combined with SO2 fumigation for 14 days.
3.Effect of Runmu Dihuang Decoction on Perimenopausal Dry Eye in Rats with Liver-kidney Yin Deficiency Syndrome Based on SIRT3/HIF-1α/NF-κB Signaling Pathway
Sainan TIAN ; Wei MA ; Yao CHEN ; Yu CAO ; Guicheng LIU ; Pei LIU ; Junxian LEI ; Qinghua PENG ; Jun PENG
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(7):201-210
ObjectiveTo investigate the mechanisms of Runmu Dihuang decoction (RMDHD) in treating perimenopausal dry eye with liver-kidney Yin deficiency syndrome based on the silent information regulator 3 (SIRT3)/hypoxia-inducible factor-1α (HIF-1α)/nuclear factor-κB (NF-κB) signaling pathway. MethodsSixty female Sprague-Dawley rats were randomly divided into six groups (n=10 per group): Sham operation group, model group, sodium hyaluronate eye drop group, and low-, medium-, and high-dose RMDHD groups (5.625, 11.25, 22.50 g·kg-1). Except for the sham operation group, all rats underwent bilateral ovariectomy and were administered 0.1% benzalkonium chloride eye drops combined with long-term chronic irritation to establish a perimenopausal dry eye model with liver-kidney Yin deficiency syndrome. Drug administration began in the 11th week after modeling and continued for 21 days. General conditions, screen-grip test scores, tear secretion volume, tear film breakup time (TFBUT), and corneal fluorescein staining were recorded. Serum levels of reactive oxygen species (ROS), follicle-stimulating hormone (FSH), estradiol (E2), and progesterone (PROG) were measured by enzyme-linked immunosorbent assay (ELISA). Pathological changes in the lacrimal glands, corneas, and uteri were observed using hematoxylin-eosin (HE) staining. Protein expression levels of SIRT3, HIF-1α, phosphorylated NF-κB p65 (p-NF-κB p65), and total NF-κB p65 in the lacrimal glands were detected by Western blot. The expression of inflammatory cytokines interleukin-1β (IL-1β) and tumor necrosis factor-α (TNF-α) in the lacrimal glands was assessed by immunohistochemistry (IHC). ResultsAfter model establishment, no significant differences were observed among the groups except the sham operation group. Compared with the sham operation group, the other groups exhibited slowed movement, dull responses, increased irritability, reduced body weight, elevated rectal temperature, decreased screen-grip test scores, reduced tear secretion, and significantly shortened TFBUT (P<0.05). After treatment, compared with the model group, the sodium hyaluronate eye drop group and all RMDHD groups showed improved general conditions, significantly increased tear secretion (P<0.05), prolonged TFBUT (P<0.05), and elevated screen-grip test scores (P<0.05). Serum ROS and FSH levels were significantly decreased, while E2 and PROG levels were significantly increased (P<0.05). Pathological damage to the cornea, lacrimal glands, and uterus was ameliorated. In addition, protein expression levels of SIRT3 and HIF-1α in the lacrimal glands were significantly upregulated (P<0.05), whereas the expression of p-NF-κB p65, IL-1β, and TNF-α was significantly downregulated (P<0.05). ConclusionRMDHD increases tear secretion and TFBUT, improves lacrimal gland and corneal injury, and alleviates dry eye symptoms in a perimenopausal dry eye rat model with liver-kidney Yin deficiency syndrome. The underlying mechanism may be related to regulation of the SIRT3/HIF-1α/NF-κB signaling pathway, inhibition of oxidative stress and inflammatory responses, and reduction of ocular surface tissue damage.
4.Mechanism of MEK/Ras/Raf/ERK Signaling Pathway Modulated by Mimenghua Prescription on Inflammatory Response in Dry Eye Animal Model
Shi TAN ; Pei LIU ; Yuan ZHONG ; Sainan TIAN ; Pengfei JIANG ; Genyan QIN ; Qinghua PENG ; Jun PENG
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(7):211-221
ObjectiveThis paper aims to investigate the effects and mechanism of Mimenghua prescription in modulating the mitogen-activated protein kinase kinase (MEK)/rat sarcoma viral oncogene homolog (Ras)/rapidly accelerated fibrosarcoma kinase (Raf)/extracellular signal-regulated kinase (ERK) signaling pathway to inhibit inflammatory responses in a dry eye animal model. MethodsA total of 60 C57BL/6J mice (eight weeks old, half male and half female) were used in the experiment. Ten mice were randomly selected as the blank control group, while the remaining 50 were exposed to a controlled dry system and received instillation of 0.2% benzalkonium chloride (BAC) into the eyes for four weeks to establish a dry eye mouse model. After successful modeling, the mice were randomly divided into five groups: Model group, sodium hyaluronate group, and Mimenghua prescription groups with low dose (4.83 g·kg-1), medium dose (9.67 g·kg-1), and high dose (19.34 g·kg-1). The mice in the model group received an equal volume of normal saline via gavage for four weeks. The mice in the sodium hyaluronate group received instillation of sodium hyaluronate eye drops twice daily for 14 consecutive days. The tear secretion volume, tear film break-up time (TBUT), and corneal fluorescein staining were evaluated once every two weeks. After four weeks of administration, mice were euthanized, and their lacrimal gland tissues and corneas were harvested. Hematoxylin-eosin (HE) staining was used to assess histopathological morphology. Western blot was performed to detect the protein expression levels of MEK, Ras, Raf, and ERK. Enzyme-linked immunosorbent assay (ELISA) was used to measure the contents and expressions of MEK, Ras, Raf, ERK, and interleukin (IL)-1β in lacrimal gland and corneal tissues of the mice in each group. Quantitative real-time polymerase chain reaction (Real-time PCR) was employed to determine mRNA expression levels of MEK, Ras, Raf, and ERK. ResultsThe Mimenghua prescription groups and the sodium hyaluronate group exhibited significantly increased tear secretion volume (P<0.05) and prolonged TBUT (P<0.05) after treatment. Ocular surface damage of mice was visibly recovered. Western blot results indicated that protein expression levels of MEK, Ras, Raf, and ERK in the lacrimal gland and corneal tissues were significantly downregulated in the sodium hyaluronate group and Mimenghua prescription group with high dose (P<0.05). ELISA results showed that IL-1β levels were highest in the model group but significantly reduced in the sodium hyaluronate group and Mimenghua prescription groups (P<0.05). Both ELISA and Real-time PCR results demonstrated that the expression levels of MEK, Ras, Raf, and ERK in the lacrimal glands and corneal tissues were significantly elevated in the model group (P<0.05), but markedly downregulated in the sodium hyaluronate group and Mimenghua prescription groups (P<0.05), suggesting that Mimenghua prescription can decrease the expressions of MEK, Ras, Raf, and ERK in the lacrimal glands and corneal tissues. ConclusionMimenghua prescription can reduce inflammatory responses, increase tear secretion, prolong TBUT, and promote corneal recovery by inhibiting the MEK, Ras, Raf, and ERK signaling pathways in lacrimal gland and corneal tissues.
5.Application of artificial intelligence-assisted chromosome karyotyping analysis in prenatal diagnosis of chromosomal mosaicism.
Ling ZHAO ; Shiwei SUN ; Qinghua ZHENG ; Qing YU ; Chongyang ZHU ; Ling LIU ; Yueli WU
Chinese Journal of Medical Genetics 2026;43(3):180-187
OBJECTIVE:
To explore the application value of artificial intelligence (AI)-assisted chromosomal karyotype analysis in the diagnosis of prenatal chromosomal mosaicism.
METHODS:
A retrospective analysis was conducted on 172 pregnant women who underwent amniocentesis at the Department of Medical Genetics and Prenatal Diagnosis, the Third Affiliated Hospital of Zhengzhou University between January 2019 and December 2024. All cases whose fetuses were diagnosed with chromosomal mosaicism via karyotype analysis and stratified into two groups based on the analytical software employed: the conventional analysis group (n = 70), which utilized Leica analysis software for karyotype image recognition and cell counting; and the AI-assisted analysis group (n = 102), which utilized AI-assisted software for the same procedures. The clinical performance of AI-assisted karyotype analysis in diagnosing chromosomal mosaicism was comprehensively evaluated by comparing the types of mosaic karyotypes, distribution of mosaic ratios, and verification outcomes of different detection modalities between the two groups. This study was approved by the Medical Ethics Committee of the Third Affiliated Hospital of Zhengzhou University (Ethics No.: 2024-406-01).
RESULTS:
No statistically significant difference was observed in baseline characteristics (maternal age, gestational week, and indications for prenatal diagnosis) between the two groups. Regarding the detection efficacy for numerical and structural mosaicisms, no significant difference was found in the detection of numerical mosaicism. However, the conventional analysis group exhibited a significantly higher detection rate of autosomal structural mosaicism compared to the AI-assisted group (11.43% vs. 0.98%, P < 0.05). Numerical mosaicism cases were further verified using copy number variation sequencing (CNV-seq) and/or fluorescence in situ hybridization (FISH). The AI-assisted group demonstrated a significantly lower inconsistency rate (5.56% vs. 20.41%, P < 0.05) compared to the conventional group. For low-proportion (< 10%) chromosomal mosaicism, the AI-assisted group had a significantly lower detection rate (13.25% vs. 29.69%, P < 0.05). Subsequent validation of low-proportion mosaicism by CNV-seq and/or FISH showed a higher consistency rate in the AI-assisted group (81.82% vs. 54.55%), though the difference did not reach statistical significance (P = 0.360).
CONCLUSION
For the karyotyping analysis of prenatal chromosomal mosaicism, AI-assisted karyotype analysis shows high accuracy and consistency in identifying numerical chromosomal mosaicism, particularly in reducing the detection of low-proportion (< 10%) mosaicism while improving verification accuracy. AI-assisted analysis can significantly improve the detection accuracy of numerical mosaicism and mitigate the risk of misclassification for low-proportion (< 10%) mosaicism, thereby providing more precise clinical evidence for the prenatal diagnosis of chromosomal mosaicisms.
Humans
;
Female
;
Mosaicism
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Pregnancy
;
Karyotyping/methods*
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Artificial Intelligence
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Prenatal Diagnosis/methods*
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Adult
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Retrospective Studies
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Chromosome Disorders/genetics*
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Amniocentesis
6.The Potential Role of β-Asarone inCalcium Imbalance and Mitochondrial Dysfunction in Melanoma Cells
Yuze LIU ; Wei TANG ; Biao YU ; Qinghua YANG ; Wenbing LAI
Annals of Dermatology 2026;38(1):75-83
Background:
The treatment landscape for melanoma, a particularly malignant skin cancer, is constrained by notable drug resistance and toxicity. β-Asarone, a natural compound from Acorus tatarinowii, has shown anticancer potential. Disruption of calcium homeostasis and mitochondrial dysfunction are key regulators of tumor cell survival and death.
Objective:
This research was conducted to investigate the impact of β-Asarone on B16F10 melanoma cells, focusing on its potential to induce apoptosis by modulating calcium signaling and mitochondrial function.
Methods:
Cell proliferation and apoptosis were evaluated using CCK-8, colony formation, EdU, and TUNEL assays. Intracellular calcium levels and mitochondrial membrane potential were measured using Fluo-4 AM, Rhod-2 AM, and JC-1 staining. Reactive oxygen species (ROS) generation and adenosine triphosphate (ATP) levels were assessed by fluorescent probes and ATP assay. Western blotting was utilized to detect apoptosis-related proteins, AMP-activated protein kinase (AMPK) pathway activation, and mitochondrial dynamics (OPA1, DRP1, FIS1).
Results:
Treatment with β-Asarone notably inhibited the proliferation of B16F10 cells while simultaneously inducing apoptosis. Fluorescent probe analysis revealed that β-Asarone triggered cytosolic and mitochondrial Ca 2+ overloaded in both the cytosol and mitochondria, accompanied by decreased mitochondrial membrane potential, elevated ROS levels, and reduced ATP production. Western blot analysis showed increased expression of DRP1 and FIS1, decreased OPA1, and enhanced AMPK phosphorylation, indicating that β-Asarone promotes mitochondrial fission through AMPK activation, likely driven by intracellular calcium imbalance.
Conclusion
This study demonstrates that β-Asarone induces apoptosis in B16F10 melanoma cells by triggering Ca 2+ overload and mitochondrial dysfunction.
7.Establishment and evaluation of a rat model of perimenopausal dry eye with liver-kidney yin deficiency evidence
Sainan TIAN ; Guicheng LIU ; Yao CHEN ; Pei LIU ; Jun PENG ; Qinghua PENG ; Shujuan HU
Acta Laboratorium Animalis Scientia Sinica 2025;33(9):1270-1279
Objective To establish a rat model of perimenopausal dry eye with liver and kidney yin deficiency from the perspective of"measuring evidence by prescription"in Chinese medicine.Methods Thirty SPF-grade female SD rats were divided randomly into sham-operated,model,and Qiju Dihuang soup groups(n=10).Rats in the latter two groups underwent bilateral ovariectomy and were given 0.1%benzalkonium chloride eye drops combined with provocation for 10 weeks to establish a model of perimenopausal dry eye with liver and kidney yin deficiency.After modeling,rats in the Qiju Dihuang soup group were gavaged with Qiju Dihuang soup at a dose of 8.37 g/(kg·d),rats in the sham-operated and model groups were gavaged with saline at a rate of 1 mL/100(g·d)for 21 d.The general condition,retinal screen test scores,tear secretion,time of tear film rupture,and corneal fluorescein staining were observed and recorded in each group.Serum levels of follicle-stimulating hormone(FSH),estradiol(E2),and progesterone(PROG)were measured by enzyme-linked immunosorbent assay.Pathological damage to the cornea and lacrimal glands were detected by hematoxylin/eosin staining.Expression levels of the inflammatory factors interleukin(IL)-1β and tumor necrosis factor(TNF)-a in the cornea were detected by immunohistochemistry.Results Compared with the sham-operated group,rats in the model group showed behavioral signs of slow action and reaction,irritability,body mass loss,and increased anal temperature(P<0.05),decreased retinal screen test scores(P<0.05),tear secretion(P<0.05),and time of tear film rupture(P<0.05),and pathological damage to the cornea and lacrimal glands.FSH levels increased and E2 and PROG levels decreased(P<0.05)and expression levels of IL-1 and TNF-α increased in the model group compared with the sham group.All the above indexes were significantly improved in the Qiju Dihuang soup group compared with the model group.Conclusions From the perspective of"measuring evidence by formula"in Chinese medicine,we successfully established a rat model of perimenopausal dry eye with liver-kidney yin deficiency syndrome,which provides a theoretical and experimental basis for future systematic and in-depth research on the mechanism of perimenopausal dry eye with formula and evidence.
8.Up-regulation of macrophage inwardly rectifying potassium channel Kir2.1 contributes to macrophage activation and cardiac inflammatory injury
Shi GAO ; Biyao QIAO ; Jiaxin WANG ; Fu LIU ; Qinghua LIU
Chinese Journal of Pathophysiology 2025;41(10):1882-1891
AIM:To investigate the roles of up-regulated inwardly rectifier potassium channel 2.1(Kir2.1)in macrophage activation and cardiac inflammatory injury,in order to clarify the mechanism of Kir2.1 regulation in inflam-matory injury and cardiac repair.METHODS:The RAW264.7 macrophages were activated by lipopolysacharide(LPS)and treated with Kir2.1 agonist zacopride or lentivirus-Kir2.1 overexpression(Kir2.1-OE).Macrophages were randomly divided into control,LPS,LPS+zacopride(or LPS+Kir2.1-OE),and LPS+zacopride+BaCl2 groups.The effects of Kir2.1-OE and AG490[Janus kinase 2(JAK2)inhibitor]on the JAK2/signal transducer and activator of transcription 3(STAT3)signaling pathway in macrophages were also investigated.The expression of CD86,interleukin-6(IL-6)and Kir2.1 in M1 macrophages was detected by RT-qPCR or immunofluorescence staining.The expression of JAK2/STAT3 molecules was detected by Western blot.The RAW264.7 macrophages were incubated with LPS,LPS+zacopride or LPS+zacopride+BaCl2 for 12 h,and then co-cultured with H9C2(2-1)cardiomyocytes for 48 h.The expression of Kir2.1,IL-4,IL-6,IL-1β,B-cell lymphoma-2(Bcl-2),Bcl-2-associated X protein(Bax),caspase-3,cleaved caspase-3,calcium/calmodulin-dependent protein kinase II(CaMKII)and p-CaMKII in cardiomyocytes was detected by Western blot.We fur-ther compared the effects of zacopride and KN-93,a known CaMKII inhibitor,on cardiac CaMKII.After being incubated with LPS for 12 h and changed the medium,RAW264.7 macrophages were co-cultured with H9C2(2-1)cardiomyocytes which was pretreated with KN-93.The cardiomyocytes were divided into control,LPS,and LPS+KN-93 groups.The ex-pression of CaMKII and p-CaMKII were detected by Western blot.RESULTS:Zacopride inhibited LPS-induced M1-type polarization of macrophages in a Kir2.1-dependent manner as showed by a significant decrease in CD86(M1-type marker)and IL-6(P<0.05).Zacopride or Kir2.1-OE inhibited LPS-induced activation of JAK2/STAT3 inflammatory signaling pathway in macrophages,with effects similar to the JAK2 inhibitor AG490.The H9C2(2-1)cardiomyocytes were co-cul-tured with M1-polarized macrophages(P<0.05).Zacopride inhibited M1 macrophage-induced inflammatory injury in car-diomyocytes,which was manifested as decreased expression of IL-1β and IL-6,increased expression of IL-4,and de-creased apoptosis.Zacopride also inhibited activation of CaMKII in a Kir2.1-dependent manner in H9C2(2-1)cells co-cultured with macrophages(P<0.05).CONCLUSION:Up-regulation of Kir2.1 may inhibit LPS-induced M1-type polar-ization of macrophages via inhibiting JAK2/STAT3 signaling pathway.Up-regulation of macrophage Kir2.1 may play a pro-tective role in cardiac repair after myocardial infarction by negative regulation of CaMKII signaling.
9.Effect of"Astragalus-Chinese yam"on cancer-induced fatigue in mice based on network pharmacology and behavior
Chen LIU ; Shiyi LI ; Xiaoxiao YIN ; Zihan KONG ; Qinghua LIU ; Hongli LI ; Chonggao YIN
Acta Laboratorium Animalis Scientia Sinica 2025;33(3):374-387
Objective To investigate the mechanism of action of the Astragalus-Chinese yam combination in treating cancer-related fatigue(CRF)in mice.Methods The active components and related targets of Astragalus-Chinese yam were obtained from the traditional Chinese medicine systems pharmacology database and analysis platform.CRF-associated targets were identified using the GeneCards database.Intersecting targets were analyzed using the DAVID database for gene ontology and kyoto encyclopedia of genes and genomes enrichment analyses.A network diagram depicting"drug-active component-intersecting targets-disease"was constructed using Cytoscape software,and a protein-protein interaction network was created to identify the top five core target proteins based on degree values.Molecular docking simulations were performed using Autodock Vina software.Twenty-five mice were divided randomly into a blank group and a modeling group in a 1∶4 ratio.After successfully establishing the CRF model using Lewis lung cancer cells,mice in the modeling group were further divided into model,Chinese yam(0.2 g/kg),Astragalus(0.6 g/kg),and Astragalus-Chinese yam combination groups(0.3+0.1 g/kg)(n=5 mice per group).The treatments were administered by gavage twice daily for 14 consecutive days.Grip-strength and forced-swimming tests were conducted.The mice were then euthanized and tissues were collected.The gastrocnemius muscles were weighed and stained with hematoxylin and eosin to reveal the muscle fiber morphology.Results A total of 23 effective active components of Astragalus-Chinese yam were identified through network pharmacology analysis,with 199 intersecting drug-disease targets.These targets mainly participated in biological processes such as protein phosphorylation through cellular components(cytoplasm,membrane,nucleus)and performed molecular functions such as protein binding.A total of 155 signaling pathways,including pathway in cancer and the phosphatidylinositol 3-kinase-protein kinase B signaling pathway,were involved in CRF.The critical targets of Astragalus-Chinese yam for CRF included serine/threonine kinase,tumor necrosis factor,epidermal growth factor receptor,B-cell lymphoma 2,and caspase 3.The active components quercetin and diosgenin interacted with the highest number of targets and demonstrated binding energies<-5.0 kJ/mol with the five core targets,indicating strong ligand-receptor binding affinity.Mice in the Chinese yam and Astragalus groups exhibited increased grip strength and prolonged swimming times compared with the model group.Gastrocnemius muscle volume and mass were increased,with well-organized muscle fibers and clear boundaries,and the effects were even more pronounced in the Astragalus-Chinese yam combination group.Conclusions Astragalus-Chinese yam treats CRF via a multi-target,multi-pathway approach,enhancing muscle strength and endurance in mice,improving gastrocnemius muscle volume and mass,and alleviating muscle atrophy,thereby mitigating the associated symptoms of CRF in mice.
10.Development and reliability and validity test of the Ego Depletion Scale for Type 2 Diabetes Patients
Jiaxin YOU ; Rong XU ; Tian XIA ; Haishan HUANG ; Xiao LU ; Hong LIU ; Yan HUANG ; Qinghua LIU ; Xuna BIAN
Chinese Journal of Nursing 2025;60(19):2371-2377
Objective To develop the Ego Depletion Scale for Type 2 Diabetes Patients and evaluate its reliability and validity,and to provide a specific assessment tool for evaluating ego-depletion in self-management.Methods Guided by the self-control strength model,the initial scale was constructed through literature review,semi-structured interviews,2 rounds of expert consultation,and a pilot survey.A convenience sampling method was employed to recruit 460 patients with Type 2 Diabetes from the endocrinology department of a tertiary hospital in Wuhan,Hubei Province,between April and July 2024.They were randomly divided into 2 subsets for exploratory factor analysis and confirmatory factor analysis.Results A total of 451 valid questionnaires were collected.Exploratory factor analysis extracted 6 common factors,with a cumulative variance contribution of 73.231%.In confirmatory factor analysis,an item was deleted due to failing to meet the standardized loading value criterion.The revised Ego Depletion Scale for Type 2 Diabetes Patients comprised 6 dimensions and 22 items.The total Cronbach's α coefficient was 0.911;split-half reliability was 0.744;the content validity index was 0.860.Correlation coefficients between the total score and scores of each dimension of the scale and the total score of the Self-Regulatory Fatigue Scale ranged from 0.558 to 0.946(P<0.001).Conclusion The scale exhibits robust reliability and validity,serving as a scientifically instrument for assessing ego depletion in patients with Type 2 Diabetes.

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