1.Effects and mechanisms of action of Yiqi wenyang huwei decoction in improving bronchial asthma in rats
Yunqing YANG ; Jianyu XIE ; Wei TANG ; Chao YE ; Qiangqiang YU ; Peng SUN ; Yuping YANG ; Jianwei YU
China Pharmacy 2026;37(10):1264-1271
OBJECTIVE To investigate the effects and potential mechanism of Yiqi wenyang huwei decoction (YQWY) in improving airway inflammation and remodeling in rats with bronchial asthma (BA) based on the Toll-like receptor 4 (TLR4)/myeloid differentiation primary response protein 88 (MyD88)/nuclear factor-κB (NF-κB) signaling pathway. METHODS Male SD rats were randomly divided into the normal group, the model group, the dexamethasone group (positive control, 0.5 mg/kg), and YQWY low-, medium- and high-dose groups (5, 10, 20 g/kg, calculated by the crude drug), with 8 rats in each group. Except for the normal group, rats in all other groups were sensitized twice with ovalbumin combined with aerosol challenge to establish a BA model. From day 14 to day 34 of the experiment, the rats in each group were administered the corresponding drug solution or normal saline intragastrically, once a day, 1 hour before aerosol challenge. At 24 hours after the final aerosol challenge, asthma symptom scores were assessed, serum levels of immunoglobulin E (IgE) were measured, and the levels of inflammatory cytokines (interleukin-4, interleukin-5, interleukin-13 and tumor necrosis factor-α) and the numbers of inflammatory cells (white blood cell, eosinophil, neutrophil, lymphocyte, monocyte and basophil) in bronchoalveolar lavage fluid were determined. Pathological changes in lung tissue were observed. The mRNA expressions of TLR4, MyD88 and NF-κB, as well as the protein expressions of TLR4, MyD88, NF-κB p65 and phosphorylated NF-κB p65 in lung tissue, were detected. RESULTS Compared with the model group, the pathological changes, such as inflammatory cell infiltration, abnormal deposition of collagen fibers, and goblet cell hyperplasia in the lung tissue of rats in each drug group, were alleviated to varying degrees. The asthma symptom scores (except for the YQWY low-dose group), the levels of IgE and inflammatory cytokines (except for interleukin-5 in the YQWY medium-dose group), the number of inflammatory cells (except for monocyte and basophil in the YQWY low-dose group), the mRNA expression of TLR4, MyD88 and NF-κB, as well as the protein expressions of TLR4, MyD88, NF-κB p65 and phosphorylated NF-κB p65 (except for MyD88 and NF-κB p65 proteins in the YQWY low-dose group as detected by Western blo t) were all significantly reduced or down-regulated ( P <0.05 or P <0.01). CONCLUSIONS YQWY can alleviate asthma-like manifestations in BA rats and improve their airway inflammation and remodeling; these effects may be related to the formula’s inhibition of the abnormal activation of the TLR4/MyD88/NF-κB signaling pathway.
2.The SMAD-Pathway Mediates HMGB1-Induced Proliferation and Metastatic Progression in Cutaneous Squamous Cell Carcinoma Cells
De-De LIAN ; Xue Mei LI ; Yu-Xi JIA ; Ming-Wei ZHOU ; Xiang-Ru CHEN ; Yang-Yang TIAN ; Min LI ; Ming-Hui SUN ; Ye ZHAO ; Hong-Jun LI ; Qing-Ling ZHANG
Annals of Dermatology 2026;38(1):51-58
Background:
High-mobility group box protein 1 (HMGB1) is a chromatin-binding protein involved in arthritis, ischemia, sepsis, atherosclerosis, neurodegenerative disorders, meningitis, and cancer. HMGB1 exhibits dual roles in cancer, acting as either a tumor suppressor or oncoprotein depending on context.
Objective:
This research aimed to elucidate HMGB1’s functional significance in cutaneous squamous cell carcinoma (cSCC).
Methods:
We overexpressed HMGB1 in cSCC cell lines using recombinant adenovirus and examined its effects on cell proliferation, colony formation, and cell migration.
Results:
Immunohistochemical analysis revealed elevated HMGB1 expression levels in cSCC tissue relative to normal epidermis. To assess the influence of HMGB1, we employed recombinant adenoviruses expressing HMGB1 to transduce SCC cell lines (SCC12 and SCC13). Enhanced HMGB1 expression significantly promoted cellular proliferation and colony formation capacity.Notably, HMGB1 overexpression elevated the levels of proliferation regulators, including P63, SOX2, CDK4 and CDK6. Furthermore, HMGB1 overexpression substantially enhanced tumor invasiveness, accompanied by upregulation of epithelial-mesenchymal transition (EMT) biomarkers. Mechanistically, overexpression of HMGB1 enhanced transforming growth factor-β signaling by increasing phosphorylation of SMAD2/3, the key mediators of EMT.
Conclusion
These data imply that HMGB1 acts as a tumor-promoting factor in cSCC.
3.Exploring Oncologists’ Perspectives on the Early Integration of Specialty Palliative Care in Korea: Challenges, Needs, and Clinical Implications
Shin Hye YOO ; Yu Jung KIM ; Ye Sul JEUNG ; Jung Sun KIM ; Kwonoh PARK ; Eun Mi NAM ; Si Won LEE ; Jun Ho JI ; Jwa Hoon KIM ; Joon Young HUR ; Song Ee PARK ; Jung Lim LEE ; Su-Jin KOH
Cancer Research and Treatment 2026;58(1):339-348
Purpose:
This study aimed to explore the practices, perceptions, and barriers related to specialty palliative care (SPC) referrals among oncologists in Korea, highlighting the clinical implications of early integration.
Materials and Methods:
A cross-sectional online survey targeting board-certified hemato-oncology specialists was conducted between August 1-25, 2024. The survey assessed referral practices, attitudes toward early SPC integration, referral criteria, barriers, and institutional characteristics.
Results:
A total of 227 oncologists participated (response rate, 36.7%). Among them, 68.7% reported frequent SPC referrals, with higher referral rates observed among younger physicians, those in tertiary hospitals, and institutions with in-house SPC teams (p < 0.001). Although 74.9% supported early SPC integration, referrals were often inconsistently timed, frequently occurring after disease progression or at the discontinuation of chemotherapy. For time-based referrals, the most commonly endorsed triggers were disease progression despite palliative second-line treatment and a prognosis of expected mortality within 6-12 months. Need-based referral triggers such as patient or family requests (96.5%), psychological distress (89.9%), or uncontrolled symptoms (83.3%), were also widely endorsed. The major barriers to early SPC integration included patient and family resistance (70.0%) and limited availability of SPC teams (34.4%).
Conclusion
This study emphasizes the importance of systematic efforts to promote timely SPC integration in Korea, including education to raise patient awareness, improved referral systems, and enhanced infrastructure. The positive attitudes toward early SPC among oncologists reflect a growing recognition of its value, highlighting the need for strategies that align with international standards.
4.SIRT5 Potentiates Hepatocarcinogenesis by Modulating Protein Acylation in Mice
Yu ZHANG ; Feng-Rui REN ; Jia-Yun LI ; Xiang-Yu CHEN ; Zi-Yi WANG ; Qi SUN ; Jun-Cheng ZHAO ; Ye ZHANG ; Zhen HUANG ; Hao HU ; Tao-Tao WEI ; Min XIAO
Progress in Biochemistry and Biophysics 2026;53(6):1712-1722
ObjectiveHepatocellular carcinoma (HCC) represents 90% of all primary liver cancers. The main risk factors associated with HCC include viral hepatitis (B and/or C), alcohol abuse, and metabolic dysfunction-associated steatotic liver disease (MASLD), which progressively advance to liver fibrosis, cirrhosis, and ultimately evolve into HCC. Surgical resection represents the most effective treatment for HCC, while recent advances in immunotherapy, including immune checkpoint inhibitors and adoptive cell therapies, have provided improved treatment prospects for patients with unresectable HCC. However, the complex metabolic heterogeneity of HCC limits the therapeutic efficacy. Metabolic intermediates acyl-CoA not only provide energy and substrates for numerous biochemical reactions but also serve as donors for protein lysine acylation, a major class of post-translational modification (PTM). Therefore, a deeper understanding of the molecular mechanisms underlying protein lysine acylation and hepatocarcinogenesis is urgently needed. MethodsThe levels of protein lysine acylation and silence information regulator 5 (SIRT5) expression levels in clinical HCC samples were analyzed by Western blot. Quantitative malonylome and succinylome of HCC samples were analyzed by antibody-based affinity enrichment coupled with tandem mass spectrometry. The proliferation of HCC cells was analyzed with Cell Counting Kit-8 (CCK-8) assays, the apoptosis was quantified by Annexin V-FITC/propidium iodide (PI) staining coupled with flow cytometry, and the ability of cells to migrate was assayed by Transwell assays. The enzymatic activity of glutathione S-transferase Mu 1 (GSTM1) was quantified. Transgenic mice with hepatic overexpression of SIRT5 were constructed using CRISPR-Cas9, and primary hepatocarcinogenesis was induced by administration of diethylnitrosamine. ResultsWestern blot analysis indicated that the expression level of SIRT5 was elevated in clinical samples from HCC patients, and the levels of lysine malonylation, glutarylation, and succinylation were significantly reduced in HCC tissues. Knockout of SIRT5 in MHCC-97H and MHCC-97L hepatoma cells suppressed cell proliferation, and increased the percentage of apoptotic cells significantly. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analyses of the differentially malonylome and succinylome of HCC samples revealed significant enrichment in two major classes of biological processes: core energy metabolism (e.g., glycolysis/gluconeogenesis, tricarboxylic acid metabolic process, fatty acid beta oxidation) and detoxification and oxidative stress response (e.g., response to toxic substance, chemical carcinogenesis, reactive oxygen species (ROS)). SIRT5 removes malonylation from lysine residues in GSTM1 and restores its detoxification activity, which is crucial for the survival of hepatocytes under stressed conditions. More importantly, in vivo experiment indicated that hepatic-specific overexpression of SIRT5 in mice accelerated diethylnitrosamine-induced liver fibrosis and hepatocarcinogenesis, indicating the critical role of SIRT5 in HCC progression. ConclusionThis study highlights the previously unrecognized SIRT5-GSTM1 axis as a key regulator in hepatocarcinogenesis, and suggests a potential target for the treatment of patients with HCC.
5.Study on the Mechanism of Xijiao Dihuang Decoction Regulating Histone H3K36 Trimethylation to Inhibit Inflammatory Re-sponse in Sepsis
Yeyan ZHU ; Fang TIAN ; Fan GE ; Qixiang YAN ; Qimeng SUN ; Leyao YE ; Chengtao YU ; Jiang ZHOU ; Jun LU
Journal of Nanjing University of Traditional Chinese Medicine 2025;41(6):777-793
OBJECTIVE To explore the molecular mechanism of Xijiao Dihuang Decoction(XJDHT)in inhibiting inflammatory response in sepsis based on network pharmacology,molecular docking and in vitro and in vivo experiments.METHODS Active com-ponents of XJDHT were screened using the TCMSP and HERB databases.Sepsis-related targets and histone H3K36 trimethylation(H3K36me3)-associated targets were retrieved from GeneCard,OMIM,and DisGeNet databases.A protein-protein interaction(PPI)network was constructed using the STRING database,and core targets were identified via Cytoscape 3.9.1.Gene Ontology(GO)and Kyoto Encyclopedia of Genes and Genomes(KEGG)pathway enrichment analyses were performed to predict potential mechanisms.Mo-lecular docking validated ligand-receptor binding affinity.A cecal ligation and puncture(CLP)model was established in mice to evalu-ate 24-hour sepsis scores(MSS)and survival rates.Blood routine parameters were analyzed using an automated hematology analyzer.Serum IL-1β and TNF-α levels were measured by ELISA.Liver histopathology was assessed via HE staining,and H3K36me3 expression in Kupffer cells was detected by immunofluorescence.In vitro,LPS-induced THP-1 cells were used as an in-flammatory model.ChIP-qPCR evaluated H3K36me3 enrichment at IL-1β and TNF-α gene loci.Western blot analyzed HIF-1α,EGFR,and AKT1 pathway proteins.RESULTS A total of 28 active components of XJDHT were identified,corresponding to 987 gene targets,with 189 overlapping sepsis-related targets.Core targets included TNF,IL1B,and GAPDH.Enriched pathways includ-ed EGFR tyrosine kinase inhibitor resistance.Molecular docking confirmed strong binding between core components and key targets.In vivo,compared to the sham group,the CLP group exhibited significantly reduced 24-hour survival(P<0.01),elevated MSS(P<0.01),immune imbalance,and increased serum IL-1β and TNF-α levels(P<0.01).High-and low-dose XJDHT intervention im-proved survival(P<0.01),reduced MSS(P<0.01),restored immune homeostasis,and dose-dependently suppressed IL-1β and TNF-α(P<0.01).CLP mice showed elevated H3K36me3 in Kupffer cells and severe hepatic inflammation,while XJDHT dose-de-pendently reduced H3K36me3(P<0.05)and attenuated liver injury.In peritoneal macrophages,CLP upregulated H3K36me3,IL-1β,TNF-α,HIF-1α,p-AKT1/AKT1,and EGFR(P<0.01),which were reversed by XJDHT(P<0.05,P<0.01).In vitro,LPS increased H3K36me3 and IL-1β and TNF-α expression(P<0.01),with ChIP-qPCR confirming H3K36me3 enrichment at IL-1β lo-ci(P<0.01).Treatment with 15%XJDHT-containing serum for 24 h reduced H3K36me3(P<0.01),diminished its recruitment to IL-1β loci(P<0.01),and inhibited LPS-induced activation of EGFR,HIF-1α,and p-AKT1/AKT1(P<0.05,P<0.01).HIF-1α agonist Dimethyloxallyl Glycine(DMOG)further validated that XJDHT suppressed H3K36me3-mediated epigenetic remodeling via HIF-1α-related pathways.CONCLUSION XJDHT inhibits inflammatory responses,regulates immune homeostasis,and improves sepsis prognosis,potentially by modulating H3K36me3 epigenetic modifications at IL-1β loci.
6.Multi-omics analysis of methylmalonic acidemia caused by a non-coding region variant in MMAA gene combined with uniparental disomy
Xiaoyan HUO ; Xiaomei LUO ; Xiantao YE ; Yu SUN ; Yongguo YU ; Lili LIANG ; Yanjie FAN
Journal of Shanghai Jiaotong University(Medical Science) 2025;45(6):800-806
Objective·To investigate the genetic etiology of a rare and complex case clinically suspected to be methylmalonic acidemia(MMA),but with negative whole exome sequencing(WES)results,using a multi-omics sequencing approach.Methods·DNA and RNA samples were extracted from the peripheral blood of the proband and both parents.Targeted MMA-related gene Panel sequencing and WES were first performed.Subsequently,RNA sequencing(RNA-seq)and whole genome sequencing(WGS)were conducted to comprehensively analyze the child's genetic variants,their origins and potential inheritance patterns.Results·No pathogenic variants associated with the patient's phenotype were identified through the MMA Panel or standard WES analysis.Extended analysis of WES suggested the possibility of uniparental disomy(UPD)of chromosome 4.WGS revealed a homozygous splice-site variant(c.-66+2T>C)in the non-coding region of the metabolism of cobalamin associated A(MMAA)gene.The variant was located in the 5'untranslated region(5'UTR),specifically at the second base downstream of the splice donor site of exon 1(reference sequence:NM_172250).In genomic coordinates(hg19),the variant was located at base 146540561 on chromosome 4(chr4:146540561).Sanger sequencing confirmed that the mother was heterozygous for this variant,while the father did not carry it.RNA-seq showed no detectable expression of the MMAA gene on chromosome 4 in the patient.This was further confirmed by reverse transcription real time quantitative PCR,indicating nearly absent mRNA expression,suggesting that the non-coding splice-site variant affected transcriptional expression.Conclusion·A homozygous splice-site variant(c.-66+2T>C)in the non-coding region of the MMAA gene—outside the coverage of WES—is likely the pathogenic cause in this case,presumably resulting from maternal UPD of chromosome 4.
7.Serotyping,virulence factors and drug resistance analysis of Pasteurella multocida of porcine origin of Zhejiang Province
Yizhen XU ; Xiufang YUAN ; Lihua XU ; Bin YU ; Fei SU ; Shiyi YE ; Hongchao SUN ; Yijie CHEN ; Qiaodan CHEN ; Hui ZHANG ; Junxing LI
Chinese Journal of Veterinary Science 2025;45(7):1378-1387
The aim of this paper was to investigate the serotypes,virulence factors and drug resist-ance of clinical isolates of Pasteurella rnultocida of porcine origin in recent years.Morphological screening and polymerase chain reaction(PCR)were used to isolate and identify 119 isolates from nasal swabs and lung tissue samples sent from swine farms in Zhejiang Province from 2010 to 2024.The isolates of Pasteurella multocida were subjected to capsular polysaccharide serotyping,lipopolysaccharide serotyping,virulence factor detection and drug resistance analysis by PCR and Kirby-Bauer disc agar diffusion method(K-B).The results showed that there were 64 strains(53.7%)of A-type,54 strains(45.3%)of D-type and 1 strain(0.9%)of F-type among the capsu-lar polysaccharide serotypes,and 10 strains(8.4%)of L1-type,20 strains(16.8%)of L3-type,86 strains(72.2%)of L6-type,and 3 strains(2.6%)of undetermined type among the lipopolysaccha-ride serotypes.The amplification results of 10 virulence genes showed that the detection rate of virulence genes hgbA,higbB and fimA was over 86.0%,the detection rate of toxA was 8.4%,while the virulence gene tbpA was not detected.There were also differences in the distribution vir-ulence genes in different capsular polysaccharide serotypes.Virulence factor pfhA was detected in type A and F but not in type D.The detection rate of adhesin gene tadD in serotype A(92.2%)was significantly higher than that of type D(9.3%),and,on the contrary,the detection rate of ad-hesin gene hsf-l in serotype D(90.7%)was significantly higher than that of type A(20.3%).Drug resistance analysis revealed that Pasteurella multocida showed high susceptibility to antimi-crobial drugs such as amoxicillin,ampicillin,cephalosporins,doxycycline,fosfenicol and ciprofloxa-cin,and showed strong resistance to antimicrobial drugs such as lincomycin,cotrimoxazole,genta-micin and amikacin,and there were 54 multi-drug resistant strains(78.3%).In summary,capsular polysaccharide serotypes were dominated by type A and D,lipopolysaccharide serotypes were dom-inated by L6,the distribution of some virulence genes varied greatly among different serotypes,and the proportion of multi-resistant strains was high,which provide reference for the prevention and control of this disease.
8.Multi-omics analysis of methylmalonic acidemia caused by a non-coding region variant in MMAA gene combined with uniparental disomy
Xiaoyan HUO ; Xiaomei LUO ; Xiantao YE ; Yu SUN ; Yongguo YU ; Lili LIANG ; Yanjie FAN
Journal of Shanghai Jiaotong University(Medical Science) 2025;45(6):800-806
Objective·To investigate the genetic etiology of a rare and complex case clinically suspected to be methylmalonic acidemia(MMA),but with negative whole exome sequencing(WES)results,using a multi-omics sequencing approach.Methods·DNA and RNA samples were extracted from the peripheral blood of the proband and both parents.Targeted MMA-related gene Panel sequencing and WES were first performed.Subsequently,RNA sequencing(RNA-seq)and whole genome sequencing(WGS)were conducted to comprehensively analyze the child's genetic variants,their origins and potential inheritance patterns.Results·No pathogenic variants associated with the patient's phenotype were identified through the MMA Panel or standard WES analysis.Extended analysis of WES suggested the possibility of uniparental disomy(UPD)of chromosome 4.WGS revealed a homozygous splice-site variant(c.-66+2T>C)in the non-coding region of the metabolism of cobalamin associated A(MMAA)gene.The variant was located in the 5'untranslated region(5'UTR),specifically at the second base downstream of the splice donor site of exon 1(reference sequence:NM_172250).In genomic coordinates(hg19),the variant was located at base 146540561 on chromosome 4(chr4:146540561).Sanger sequencing confirmed that the mother was heterozygous for this variant,while the father did not carry it.RNA-seq showed no detectable expression of the MMAA gene on chromosome 4 in the patient.This was further confirmed by reverse transcription real time quantitative PCR,indicating nearly absent mRNA expression,suggesting that the non-coding splice-site variant affected transcriptional expression.Conclusion·A homozygous splice-site variant(c.-66+2T>C)in the non-coding region of the MMAA gene—outside the coverage of WES—is likely the pathogenic cause in this case,presumably resulting from maternal UPD of chromosome 4.
9.Construction and biological characteristics study of RuvB gene deletion strain of Glaesserella parasuis
Jiancheng ZHAO ; Ling HUAGN ; Lihua XU ; Xiufang YUAN ; Bin YU ; Fei SU ; Shiyi YE ; Hongchao SUN ; Hui ZHANG ; Junxing LI
Chinese Journal of Veterinary Science 2025;45(11):2358-2364
Glaesserella parasuis is the causative agent of Gl?sser's disease in pigs.However,the pathogenic mechanisms underlying its virulence is not yet fully understood.The RuvB protein,a member of the AAA+superfamily,is implicated in various cellular processes,yet its specific role in the virulence of Glaesserella parasuis has not been fully characterized.In this study,we con-structed a RuvB gene deletion mutant,designated ΔRuvB,using the serotype 13 Glaesserella pa-rasuis strain ZJ1208 and a suicide plasmid-mediated natural transformation approach.To elucidate the functional role of the RuvB gene,we comprehensively evaluated the biological characteristics of the ΔRuvB strain through a series of assays,including growth kinetics,colony morphology,bac-terial staining,transmission electron microscopy(TEM),osmotic stress tolerance,high-tempera-ture tolerance,heat shock resistance,UV resistance,capsular polysaccharide quantification,serum bactericidal assays,and murine virulence experiments.Our findings revealed that the growth rate of ΔRuvB showed no significant difference compared to the parental strain.TEM revealed a notable increase in bacterial cell length;however,the number of outer membrane vesicles(OMVs)on the surface of ΔRuvB did not significantly increase.Notably,the ΔRuvB strain displayed a significant reduction in capsular polysaccharide production and serum resistance,as well as diminished toler-ance to UV radiation and high temperatures.Significant alterations were observed in its resistance to osmotic stress or oxidative stress.In the mouse toxicity challenge experiment,in com-parison with the parental strain ZJ1208,the mortality rate dropped by 20 percentage points,suggesting that the virulence of ΔRuvB has been weakened to some extent.Collectively,these results underscore the critical role of the RuvB gene in enhancing the environmental adaptability of Glaesserella parasuis.
10.Construction and biological characteristics study of RuvB gene deletion strain of Glaesserella parasuis
Jiancheng ZHAO ; Ling HUAGN ; Lihua XU ; Xiufang YUAN ; Bin YU ; Fei SU ; Shiyi YE ; Hongchao SUN ; Hui ZHANG ; Junxing LI
Chinese Journal of Veterinary Science 2025;45(11):2358-2364
Glaesserella parasuis is the causative agent of Gl?sser's disease in pigs.However,the pathogenic mechanisms underlying its virulence is not yet fully understood.The RuvB protein,a member of the AAA+superfamily,is implicated in various cellular processes,yet its specific role in the virulence of Glaesserella parasuis has not been fully characterized.In this study,we con-structed a RuvB gene deletion mutant,designated ΔRuvB,using the serotype 13 Glaesserella pa-rasuis strain ZJ1208 and a suicide plasmid-mediated natural transformation approach.To elucidate the functional role of the RuvB gene,we comprehensively evaluated the biological characteristics of the ΔRuvB strain through a series of assays,including growth kinetics,colony morphology,bac-terial staining,transmission electron microscopy(TEM),osmotic stress tolerance,high-tempera-ture tolerance,heat shock resistance,UV resistance,capsular polysaccharide quantification,serum bactericidal assays,and murine virulence experiments.Our findings revealed that the growth rate of ΔRuvB showed no significant difference compared to the parental strain.TEM revealed a notable increase in bacterial cell length;however,the number of outer membrane vesicles(OMVs)on the surface of ΔRuvB did not significantly increase.Notably,the ΔRuvB strain displayed a significant reduction in capsular polysaccharide production and serum resistance,as well as diminished toler-ance to UV radiation and high temperatures.Significant alterations were observed in its resistance to osmotic stress or oxidative stress.In the mouse toxicity challenge experiment,in com-parison with the parental strain ZJ1208,the mortality rate dropped by 20 percentage points,suggesting that the virulence of ΔRuvB has been weakened to some extent.Collectively,these results underscore the critical role of the RuvB gene in enhancing the environmental adaptability of Glaesserella parasuis.

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