1.Hydrogels:role and problems in the repair of oral and maxillofacial defects
Zhixin WU ; Wenwen JIANG ; Jianhui ZHAN ; Yangshurun LI ; Wenyan REN ; Yiyu WANG
Chinese Journal of Tissue Engineering Research 2025;29(10):2178-2188
BACKGROUND:Hydrogels have become a research hotspot due to their unique advantages in the biomedical field due to their superior mechanical and biological properties.At present,related research involves tissue engineering,wound dressing and so on. OBJECTIVE:To review the advantages and properties of hydrogels and the research progress of their application in the repair of oral and maxillofacial defects,discuss the current limitations and challenges of hydrogels in application and promotion,and provide new ideas for future research directions. METHODS:Relevant literature was searched in PubMed,CNKI,and WanFang database by computer.The search terms were"hydrogel,oral and maxillofacial defects,mechanical properties,tissue engineering,wound dressing"in Chinese and"hydrogel,oral and maxillofacial defects,mechanical properties,guided tissue regeneration,wound dressing"in English.Preliminary screening was carried out by reading titles and abstracts,and articles not related to the topic of the article were excluded.According to the inclusion and exclusion criteria,108 articles were finally included for the result analysis. RESULTS AND CONCLUSION:(1)The hydrogel has good biological activity,mechanical controllability,and stimulation response.(2)Polymer,metal,and ceramic hydrogel composites have appropriate mechanical properties,biodegradability,and controlled release rate,which are suitable for maxillofacial bone tissue engineering.(3)Fibrin-based hydrogel could fill the hollow nerve conduit through the nerve defect area and promote the regeneration and growth of axons to restore the function of maxillofacial nerve.(4)Controlling the interaction between nanomaterials and hydrogels can improve the formation of muscle fiber oriented structure to promote maxillofacial muscle tissue regeneration.(5)Polysaccharide hydrogel has gradually become the first choice for repairing irregular periodontal defects due to its ability to control drug delivery,carry bioactive molecules,and combine with other materials to produce the best scaffold matching the extracellular matrix.(6)Calcium phosphate or calcium carbonate-based hydrogels can be used to fill irregular or fine tissue defects and remineralize hard tissues.The self-assembled hydrogels are simple to prepare and have good biological activity.(7)Salivary gland-derived extracellular matrix-like gel is expected to participate in the treatment of many salivary gland diseases.(8)Hydrogels can be used as wound dressings in combination with biological adhesives,acellular biomaterials,antimicrobials,antioxidants,or stem cells to treat various wounds.(9)Fibrin-based hydrogel has the most potential in the repair of oral and maxillofacial defects.It has excellent biocompatibility,flexibility,and plasticity.It can combine with cells,extracellular matrix proteins,and various growth factors,and promote the osteogenic differentiation of mesenchymal stem cells,axon regeneration and growth,angiogenesis,myotube differentiation,salivary gland tissue regeneration,and periodontal tissue regeneration.It has a broad prospect in the repair of oral and maxillofacial defects.However,its therapeutic effect depends on the function of the substance carried.The complex preparation process,its safety and long-term efficacy,and the special anatomical oral and maxillofacial structure is the problem that hinders its promotion,which also provides directions for future research.
2.Mechanism by which exogenous basic fibroblast growth factor promotes wound healing in rats
Zhenchao LI ; Xiling DU ; Zhixin HAN ; Dawei NIU ; Changwei FAN
Chinese Journal of Tissue Engineering Research 2025;29(11):2243-2251
BACKGROUND:This study provided insight into the molecular mechanisms by which exogenous basic fibroblast growth factor(bFGF)promotes wound healing. OBJECTIVE:To investigate the effect of exogenous bFGF on macrophage phenotype transition and granulation regeneration during wound repair in rats. METHODS:(1)In vitro experiment:Cells were divided into normal control group,low-dose bFGF group,high-dose bFGF group,and bFGF+valproic acid group.100 and 200 μg/L bFGF was added into the cell culture medium of low-dose bFGF group and high-dose bFGF group,respectively,while 200 μg/L bFGF and 20 mmol/L valproic acid were added into the cell culture medium of valproic acid group.EdU test,scratch test and tubule formation test were used to detect the effects of bFGF on proliferation,migration and angiogenesis of human umbilical vein endothelial cells.(2)In vivo experiment:Sprague-Dawley rats were randomly divided into model group,low-dose bFGF group,high-dose bFGF group and bFGF+valproic acid group.The open wound model of full-thickness skin defect was established in low-dose bFGF group,high-dose bFGF group and bFGF+valproic acid group.Rats in the low-and high-dose bFGF groups were given 100 and 200 μg/L bFGF through subcutaneous injection,while those in the bFGF+valproic acid group received subcutaneous injection of 200 μg/L bFGF and intraperitoneal injection of 10 mg/kg valproic acid.The wound healing rate of rats was detected at 7 and 14 days of administration.TUNEL was used to detect the apoptosis of cells in wound tissue.Enzyme linked immunosorbent assay was used to detect the serum levels of malondialdehyde,superoxide dismutase,tumor necrosis factor-α and interleukin-10.Immunofluorescence detection was conducted to detect the phenotypic transformation of macrophages in wound tissue.Immunohistochemistry was used to detect the expression of proliferating cell nuclear antigen,platelet endothelial cell adhesion molecule-1(CD31)and vascular endothelial growth factor in wound tissue.Western blot was used to detect the expression of Notch1 and Jagged1 in wound tissue. RESULTS AND CONCLUSION:(1)Compared with the normal control group,bFGF could significantly promote the proliferation,migration and angiogenesis of human umbilical vein endothelial cells in a dose-dependent manner.(2)Compared with the model group,bFGF could significantly promote wound healing,downregulate the rate of apoptosis in wound tissue,decrease the levels of malondialdehyde and tumor necrosis factor-α in serum,increase the levels of superoxide dismutase and interleukin-10,promote the conversion of macrophages to type M2 in wound tissue,upregulate the expression of proliferating cell nuclear antigen,CD31 and vascular endothelial growth factor in wound tissue,and inhibit the expression of Notch1 and Jagged1 in a dose-dependent manner.Valproic acid could partially reverse the promoting effect of bFGF on wound healing.To conclude,bFGF can significantly promote wound healing and granulation regeneration and induce the conversion of macrophages to M2,which may be related to the regulation of Notch1/Jagged1 signaling pathway.
3.Inhibitory Effects of the Slit Guidance Ligand 1-3’ Untranslated Region on the Fibrotic Phenotype of Cardiac Fibroblasts
Ya WANG ; Huayan WU ; Yuan GAO ; Rushi WU ; Peiying GUAN ; Hui LI ; Juntao FANG ; Zhixin SHAN
Journal of Sun Yat-sen University(Medical Sciences) 2025;46(3):466-474
ObjectiveTo study the regulatory effect of the partial sequence within the 3’ untranslated region (3’UTR) of slit guidance ligand 1 (Slit1) (Slit1-3’UTR) on the fibrotic phenotypes of cardiac fibroblasts (CFs) and its potential mechanism. MethodsThe adenovirus vector was used to overexpress the 1526nt sequence of Slit1-3’UTR in ICR neonatal mouse CFs (mCFs). The expression of fibrosis-related genes in mCFs, such as collagen type 1 alpha1(COL1A1), collagen type 3 alpha3 (COL3A1) and alpha smooth muscle actin (α-SMA) were detected by Western blot assay. The effect of Slit1-3’UTR 1526nt on the proliferation and migration of mCFs was assessed by EdU staining and Trans-well assays. Angiotensin Ⅱ (Ang Ⅱ) was used to treat mCFs, and the impact of Slit1-3’UTR 1526nt on the fibrotic phenotypes of Ang Ⅱ-induced mCFs was evaluated. After overexpression of Slit1-3’UTR 1526nt, miR-34a-5p mimic was transfected into mCFs, followed by actinomycin D treatment to detect the mRNA stability of Slit1-3’UTR 1526nt, and the levels of miR-34a-5p and its target gene SIRT1(si-SIRT1) in mCFs were determined. The effects of miR-34a-5p and small interfering RNA targeting SIRT1 on the Slit1-3’UTR 1526nt-mediated regulation of fibrotic phenotypes were also determined. ResultsAdenovirus-mediated overexpression of Slit 1-3’UTR 1526nt was achieved in mCFs. Overexpression of Slit 1-3’UTR 1526nt markedly inhibited the expression of the fibrosis-related genes, proliferation and migration of mCFs and fibrotic phenotypes of Ang Ⅱ. The results of actinomycin D assay showed that miR-34a-5p inhibited the stability of Slit1-3’UTR 1526nt in mCFs, while the level of miR-34a-5p was reduced in mCFs with overexpression of Slit1-3’UTR 1526nt. Transfection of miR-34a-5p promoted the fibrotic phenotypes, and reversed the inhibitory effect of Slit1-3’UTR 1526nt on the fibrotic phenotypes of mCFs. Overexpression of Slit1-3’UTR 1526nt significantly increased the level of miR-34a-5p target gene SIRT1 in mCFs. Transfection of miR-34a-5p and si-SIRT1 consistently reversed the inhibitory effects of Slit1-3’UTR 1526nt on the fibrotic phenotypes of mCFs. ConclusionSlit1-3’UTR1526nt inhibits the fibrotic phenotypes of mCFs by binding to miR-34a-5p and increasing the expression of its target gene of SIRT1.
4.Metabolic characteristics of vitreous fluid in patients with proliferative dia-betic retinopathy with abnormal vitreoretinal adhesion
Xiaofeng HUANG ; Yuman LI ; Tai GUO ; Zhixin MO ; Mingsi CHI ; Yue LIU ; Qianli MENG ; Ying CUI ; Zhongning HUANG
Recent Advances in Ophthalmology 2025;45(10):799-804
Objective A non-targeted metabolomics analysis of vitreous fluid from patients with proliferative diabetic retinopathy(PDR)is conducted to explore the"metabolic map"of PDR.This approach aims to deepen the understanding of the disease,identify potential biomarkers.Methods From 35 PDR patients and 30 fresh rhegmatogenous retinal de-tachment(RRD)patients,10 PDR patients with vitreoretinal abnormal adhesions were selected as the experimental group(PDR group),and 10 fresh RRD patients were chosen as the control group(RRD group).Using ultra-high-performance liq-uid chromatography-mass spectrometry non-targeted metabolomics technology,the metabolic profiles of vitreous fluid were analyzed to obtain metabolic spectra.One-dimensional and multidimensional statistical methods were used to analyze the differences in metabolites and metabolic pathways between the PDR and RRD groups.Results A total of 165 differential metabolites were identified in the vitreous humor samples of patients in the PDR and RRD groups,these differential metab-olites were significantly enriched in 21 metabolic pathways(P<0.05),Among these pathways,those with at least 5 differ-ential metabolites include:methionine and cysteine metabolism;glycine,serine,and threonine metabolism;ascorbic acid and aldose metabolism;amino acid biosynthesis;and central carbon metabolism in cancer.Pyruvate,serine,D-2-phospho-glycerate,threonine,phosphoserine,and high serine are present in multiple metabolic pathways,the areas under the curve are 0.96,0.82,0.85,0.78,0.40,and 0.31,respectively.Conclusion There are 21 significantly different metabolic pathways between PDR and RRD patients.Pyruvate stands out in multiple pathways,potentially serving as a biomarker for PDR diagnosis.
5.Research progress of biomarkers in immune thrombocytopenia
Chinese Journal of Laboratory Medicine 2025;48(11):1470-1477
Immune thrombocytopenia (ITP) is a disease characterized by an imbalance between immune-mediated platelet destruction and production. Its clinical management has long been confronted with core challenges such as insufficient diagnostic specificity, significant individual differences in treatment response, and difficulties in prognosis assessment. In recent years, researches have systematically revealed the multi-dimensional pathological mechanisms of this disease: in terms of immunology, autoantibodies mediate platelet clearance, and the imbalance of T cell subsets exacerbates the disorder of immune homeostasis. Proteomic techniques have identified plasma markers such as matrix metallopeptidase 9 and CXCL11. Genomic studies have revealed that miR-199a-5p, lncRNA MALAT1, etc., are involved in the pathogenesis by regulating the immune-thrombopoiesis axis. Metabolism research has shown features such as lipid metabolism disorders, abnormal tryptophan pathways in the bone marrow, and excessive T cell glycolysis. Although multi-omics techniques have promoted the progress of biomarker research, the clinical translation of biomarkers is still limited by high heterogeneity, insufficient validation, and lack of standardization. In the future, it is expected that through the integration of multi-omics data and the development of artificial intelligence algorithms, combined with single-cell technologies to analyze the heterogeneity of the immune microenvironment, and multi-dimensional prediction models can be constructed to optimize precision diagnosis and treatment strategies.
6.Esculetin triggers ferroptosis via inhibition of the Nrf2-xCT/GPx4 axis in hepatocellular carcinoma.
Zhixin QU ; Jing ZENG ; Laifeng ZENG ; Xianmei LI ; Fenghua ZHANG
Chinese Journal of Natural Medicines (English Ed.) 2025;23(4):443-456
Esculetin, a natural dihydroxy coumarin derived from the Chinese herbal medicine Cortex Fraxini, has demonstrated significant pharmacological activities, including anticancer properties. Ferroptosis, an iron-dependent form of regulated cell death, has garnered considerable attention due to its lethal effect on tumor cells. However, the exact role of ferroptosis in esculetin-mediated anti-hepatocellular carcinoma (HCC) effects remains poorly understood. This study investigated the impact of esculetin on HCC cells both in vitro and in vivo. The findings indicate that esculetin effectively inhibited the growth of HCC cells. Importantly, esculetin promoted the accumulation of intracellular Fe2+, leading to an increase in ROS production through the Fenton reaction. This event subsequently induced lipid peroxidation (LPO) and triggered ferroptosis within the HCC cells. The occurrence of ferroptosis was confirmed by the elevation of malondialdehyde (MDA) levels, the depletion of glutathione peroxidase (GSH-Px) activity, and the disruption of mitochondrial morphology. Notably, the inhibitor of ferroptosis, ferrostatin-1 (Fer-1), attenuated the anti-tumor effect of esculetin in HCC cells. Furthermore, the findings revealed that esculetin inhibited the Nrf2-xCT/GPx4 axis signaling in HCC cells. Overexpression of Nrf2 upregulated the expression of downstream SLC7A11 and GPX4, consequently alleviating esculetin-induced ferroptosis. In conclusion, this study suggests that esculetin exerts an anti-HCC effect by inhibiting the activity of the Nrf2-xCT/GPx4 axis, thereby triggering ferroptosis in HCC cells. These findings may contribute to the potential clinical use of esculetin as a candidate for HCC treatment.
Umbelliferones/administration & dosage*
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Ferroptosis/drug effects*
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Carcinoma, Hepatocellular/physiopathology*
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NF-E2-Related Factor 2/genetics*
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Humans
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Liver Neoplasms/physiopathology*
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Phospholipid Hydroperoxide Glutathione Peroxidase/genetics*
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Animals
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Cell Line, Tumor
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Mice
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Amino Acid Transport System y+/genetics*
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Mice, Inbred BALB C
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Male
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Signal Transduction/drug effects*
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Lipid Peroxidation/drug effects*
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Reactive Oxygen Species/metabolism*
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Mice, Nude
7.Screening and preliminary evaluation of nanobodies targeting granulocyte-macrophage colony-stimulating factor
Jiao LIU ; Lei CHEN ; Hui QIN ; Qinlin KANG ; Gege LI ; Zhixin YANG ; Peng DU ; Chunyang ZHOU
Chinese Journal of Pharmacology and Toxicology 2025;39(8):591-599
OBJECTIVE To screen and obtain nanobodies with neutralizing activity against granulo-cyte-macrophage colony stimulating factor(GM-CSF)to contribute to investigations into the mecha-nism of inflammation interventions and the development new drugs.METHODS Recombinant human GM-CSF was subcutaneously injected to immunize camels.Peripheral blood was collected after five immunizations,and mononuclear cells were isolated.Total mRNA was extracted,and the variable domains of the heavy chain of heavy-chain antibody(VHH,also called nanobody)genes were obtained by PCR amplification after reverse transcription.The genes were cloned into the pADSCFV-S phage display vector and electrotransformed into TG1 competent cells to construct a nanobody immune library that was screened with recombinant human GM-CSF immobilized on a solid phase.The VHH genes specifi-cally binding to human GM-CSF were cloned into the pABG eukaryotic expression vector before VHH-Fc samples were prepared by using the human embryonic kidney 293 fibroblast expression system.The binding activity of candidate VHH-Fc molecules to GM-CSF was investigated through ELISA response curves,and binding colorimetric values with different antigens were detected to determine their specificity.The binding affinity between VHH-Fc candidates and GM-CSF was measured using biolayer interferom-etry(BLI).The inhibition rate curve of VHH-Fc candidates on GM-CSF was detected through cell prolif-eration assays to determine its neutralization activity.The Uncle system was used to investigate its thermal stability.100 μg of VHH-Fc was injected into mice via the tail vein,and the serum concentration of VHH-Fc was quantitatively detected by ELISA to examine its pharmacokinetic curve in mice.RESULTS The camel serum titer of anti-human GM-CSF antibodies was higher than 1:800 000 after the fifth immuni-zation,and the capacity of the constructed nanobody library was about 5.55×107.Following the screening process,five candidate VHH-Fc molecules specifically binding to human GM-CSF were obtained.Among these,22N10 effectively neutralized the cell proliferation-promoting activity of GM-CSF(the IC50 value was 17.23 nmol·L-1).Subsequent studies revealed that 22N10 interacted with human GM-CSF with an affinity of 1.97×10-8 mol·L-1,blocked the binding of GM-CSF to its receptor CSF2Rα,exhibited good thermal stability(Tm1=59.2℃),and showed favorable metabolic characteristics in mice.CONCLU-SION A new candidate nanobody molecule 22N10 targeting human GM-CSF is obtained which is expected to facilitate the drug development and mechanism investigations.
8.Establishment of a dual LFD-RPA rapid test for Mycoplasma hyorhinis and My-coplasma hyopneumoniae in swine
Qi JIA ; Li WANG ; Hanzhu WANG ; Jingjing SONG ; Jing SUN ; Hui LI ; Feng LI ; Kai-shun HAN ; Zhixin FENG ; Shuguang LI
Chinese Journal of Veterinary Science 2025;45(11):2380-2386
In order to establish a simple,sensitive and specific diagnostic method for the simultane-ous detection of Mycoplasma hyorhinis(Mhr)and Mycoplasma hyopneumoniae(Mhp)in swine,specific primers and probes were designed using the Mhr p37 and Mhp p36 gene sequences as the target genes,and the dual LFD-RPA rapid test was established by screening the primers and probes,optimizing primer ratios and evaluating its effectiveness through the sensitivity,reproduc-ibility and clinical sample testing.The sensitivity,specificity,reproducibility and clinical samples were evaluated.The results showed that the established dual LFD-RPA assay could complete the amplification in 15 min at 39 ℃,and its optimal primer ratio was 1.6∶0.8,and the lowest detection limits were up to 3.63 and 3.60 copies/μL,respectively;the reproducibility was stable;and there was no cross-reactivity with Pasteurella multocida,Bordetella bronchiseptica,Haemophilus pa-rasuis,Actinobacillus pleuropneumoniae,Escherichia coli.The test successfully established a dual LFD-RPA assay,which can detect Mhr and Mhp simultaneously,and is simple,sensitive and spe-cific without relying on specialized equipment,and is suitable for carrying out on-site rapid diagno-sis of Mhr and Mhp.
9.Clinical-epidemiological characteristics of connective tissue diseases complicated with pulmonary hypertension in Shanxi province, 2018-2021
Lizhi WANG ; Xuebin HAN ; Li LI ; Zhixin WANG ; Yanqing GUO
Chinese Journal of General Practitioners 2025;24(2):156-161
Objective:To investigate the clinical-epidemiological characteristics of connective tissue diseases (CTD) complicated with pulmonary hypertension in Shanxi province from 2018 to 2021.Methods:This was a cross-sectional study. Data of CTD patients with pulmonary hypertension from 2018 to 2021 were collected from the Shanxi Provincial Health Statistics Direct Reporting System based on inpatient medical records. The demographic and clinical data of patients with different CTD types were analyzed.Results:A total of 1 697 CTD patients with pulmonary hypertension were included, among whom there were 451 cases (26.58%) of Sj?gren′s syndrome, 392 cases (23.10%) of systemic lupus erythematosus, 289 cases(17.03%) of systemic sclerosis, 109 cases (6.42%) of mixed CTD, 69 cases (4.07%) of Takayasu arteritis, and 387 cases (22.80%) of other CTD. The majority of patients were female (1 410 (83.09%)), and 783 cases (46.14%) were aged between 41 and 65 years, and 6 cases (0.35%) were performed right heart catheterization. The prevalence of CTD with pulmonary hypertension increased from 0.06/10 4 in 2018 to 0.20/10 4 in 2021. There were significant differences in the severity of pulmonary hypertension, New York Heart Association (NYHA) functional class, length of hospital stay, medical costs, and clinical outcomes among patients with different CTD subtypes (all P<0.001). Patients with systemic sclerosis had the highest proportion of NYHA functional class Ⅲ/Ⅳ(65.1%(188/289)), the longest length of hospital stays (13 (9, 18) days), the highest average medical costs (13 622.67 (8 636.38, 20 597.75) ¥(RMB)), and the lowest rate of improvement and discharge (51.90%(150/289)). Conclusions:Between 2018 and 2021, Shanxi province, where CTD is more common in Sj?gren′s syndrome, has a high proportion of women, a high proportion of people aged 41-65 years, and a low prevalence of right ventricular catheterization in patients with CTD complicated with pulmonary hypertension. The prevalence of CTD complicated with pulmonary hypertension shows a rising trend in Shanxi province from 2018 to 2021, while patients with systemic sclerosis exhibit the most severe cardiac impairment and poorer clinical outcomes compared to other subtypes.
10.Impacts of the frequency of orthogonal image guided-verification on set-up error correction and PTV margins in postoperative radiotherapy for breast cancer
Fangfen DONG ; Bing WU ; Zhixin WANG ; Jiaming LI ; Miaoyun HUANG ; Yong YANG ; Benhua XU ; Xiaobo LI
Chinese Journal of Radiological Medicine and Protection 2025;45(1):37-42
Objective:To explore the impacts of different frequencies of orthogonal image-guided verification on set-up error correction and the reference values of planning target volume (PTV) margins in postoperative radiotherapy for breast cancer, in order to provide recommendations of the verification frequency in clinical practice.Methods:A total of 80 breast cancer patients who received postoperative intensity-modulated radiotherapy for breast cancer at the Affiliated Union Hospital of Fujian Medical University from January 2021 to January 2022 were enrolled. Orthogonal image-guided verification was conducted before each radiation treatment to determine initial and residual set-up errors. The error data were statistically analyzed by categorizing patients into groups A, B, C, D, E, and F, based on assumed verification frequencies (daily, every 2, 3, 4, and 5 d, and no correction). The magnitude, distribution, and differences of set-up errors of various groups were analyzed, and the PTV margins were calculated using a reference formula.Results:The collected initial set-up errors of the 80 patients were (3.49±3.43), (2.87±2.88), and (2.75±2.35) mm, in x, y, and z directions, respectively. The residual set-up errors decreased gradually with increasing verification frequency. In the case of daily image-guided verification, the residual set-up errors in x, y, and z directions decreased to (1.63±0.90), (1.63±0.93), and (1.55±0.90)mm, respectively. The reference values of PTV margins calculated under different verification frequencies decreased with an increase in the verification frequency. Under daily verification, the reference values of PTV margins calculated based on set-up errors decreased from initial 6.60, 6.29, and 4.22 mm (without correction) to 1.27, 1.37, and 1.28 mm, respectively. Differences in the reference values under verification frequencies every 3, 4, and 5 d were less than 0.81 mm. Conclusions:Daily image-guided verification (including correction) can effectively reduce set-up errors in image-guided radiotherapy for breast cancer. The set-up errors differ under varying verification frequencies, with a higher frequency corresponding to better correction effects and smaller PTV margins required.

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