1.Ginsenoside Rb3 regulates the phosphorrylated extracellular signal-regulated kinase signaling pathway to alleviate inflammatory responses and promote osteogenesis in rats with periodontitis.
Xueying ZHANG ; Xin MENG ; Zhizhen LIU ; Kang ZHANG ; Honghai JI ; Minmin SUN
West China Journal of Stomatology 2025;43(2):236-248
OBJECTIVES:
To explore the promoting effect of ginsenoside Rb3 (Rb3) on osteogenesis in periodontitis environment, and to explain its mechanism.
METHODS:
Human periodontal ligament stem cells (hPDLSCs) were cultured by tissue block method and identified by flow cytometry. Cell counting kit-8 (CCK8) method and calcein acetoxymethyl ester/propidium iodide staining were used to detect the effect of Rb3 on the viability of hPDLSCs cells. In vitro cell experiments were divided into control group, 10 μg/mL lipopolysaccharides (LPS) group, 10 μg/mL LPS+100 μmol/L Rb3 group and 10 μg/mL LPS+200 μmol/L Rb3 group. Alkaline phosphatase (ALP) staining was used to detect the ALP activity of hPDLSCs in each group after osteogenesis induction. The expression of hPDLSCs interleukin-6 (IL-6), interleukin-8 (IL-8), runt-related transcription factor 2 (RUNX2) and transforming growth factor-β (TGF-β)genes in each group after osteogenesis was detected by quantitative reverse transcription polymerase chain reaction (qRT-PCR) method. Western blot was used to detect the protein expression of hPDLSCs phosphorrylated extracellular signal-regulated kinase (p-ERK) in each group. Sprague-Dawley rats were randomly divided into the control group, ligation group and ligation+Rb3 group. The left molar-maxillary tissue was subjected to micro-computed tomography (micro-CT) scanning. After the scanning, the left molar-maxilla was made into periodontal tissue sections. Hematoxylin-eosin (HE) staining was used to detect the infiltration and loss of adhesion of inflammatory cells. Masson staining was used to detect the destruction of gingival collagen fibers. Immunofluorescence staining was used to detect the protein expression of RUNX2 and p-ERK. The expression of TGF-β in rat gingival tissue was detected by qRT-PCR. The protein expression of IL-6 in peripheral serum of rats was detected by enzyme-linked immunosorbent assay (ELISA). Flow cytometry was used to detect the proportion of Treg cells in rat heart blood. The experimental data were statistically analyzed by Graph Pad Prism10.1.2 software.
RESULTS:
Rb3 had no effect on the cell activity of hPDLSCs. The results of qRT-PCR and ALP staining showed that Rb3 could inhibit the gene expression of IL-6 and IL-8 in inflammatory hPDLSCs, promote TGF-β gene and promote the osteogenic differentiation of inflammatory hPDLSCs. Western blot showed that Rb3 inhibited the protein expression of inflammatory hPDLSCs p-ERK. The results from micro-CT, Masson staining, and HE staining demonstrated that Rb3 promotes alveolar bone formation in rats with periodontitis, while simultaneously inhibiting the destruction of periodontal fibrous tissue, reducing attachment loss, and suppressing inflammatory cell infiltration. The results of flow cytometry showed that Rb3 could promote the differentiation of Treg cells in peripheral blood of periodontitis rats. The results of ELISA and qRT-PCR showed that Rb3 could inhibit the protein expression of IL-6 and promote the gene expression of TGF-β in periodontitis rats. Immunofluorescence results showed that Rb3 could promote the protein expression of RUNX2 and inhibit the protein expression of p-ERK in periodontitis rats.
CONCLUSIONS
Rb3 can reduce the inflammatory reaction of periodontal tissues in periodontitis rats, and promote the osteogenic differentiation of hPDLSCs by regulating p-ERK pathways.
Animals
;
Ginsenosides/pharmacology*
;
Osteogenesis/drug effects*
;
Periodontitis/metabolism*
;
Rats
;
Periodontal Ligament/cytology*
;
Humans
;
Core Binding Factor Alpha 1 Subunit/metabolism*
;
Stem Cells/drug effects*
;
Interleukin-6/metabolism*
;
Rats, Sprague-Dawley
;
Interleukin-8/metabolism*
;
Cells, Cultured
;
MAP Kinase Signaling System/drug effects*
;
Transforming Growth Factor beta/metabolism*
;
Signal Transduction
;
Male
;
Phosphorylation
;
Lipopolysaccharides
;
Extracellular Signal-Regulated MAP Kinases/metabolism*
;
Alkaline Phosphatase/metabolism*
2.Effect of ginsenoside Rb3 on experimental periodontitis in rats.
Hua LI ; Kang ZHANG ; Huijuan QU ; Honghai JI ; Minmin SUN
West China Journal of Stomatology 2025;43(5):711-721
OBJECTIVES:
This study aimed to explore the therapeutic effect and mechanism of ginsenoside Rb3 on experimental periodontitis and bone resorption in rats.
METHODS:
Male SD rats were randomly divided into a control group, a ligation group, an Rb3 group, and a doxycycline (Dox) group for in vivo experiments. A periodontitis model was established by ligating the maxillary second molar, and samples were collected after 3 weeks of drug treatment. Micro-CT assessment of alveolar bone resorption was performed, and hematoxylin-eosin (HE) staining was used to observe pathological changes in periodontal and visceral tissues. Tartrate resistant acid phosphatase (TRAP) staining was applied to detect the formation of osteoclasts in periodontal tissues, and enzyme-linked immunosorbent assay (ELISA) was adopted to detect the serum levels of interleukin (IL)-6, IL-8, immunoglobulin (Ig)M, and IgG. Quantitative polymerase chain reaction (qPCR) was employed to detect the expression of factors related to gingival inflammation and osteoclast formation. Immunofluorescence staining was used to detect phospho-extracellular signal-regulated kinase (p-ERK) expression. In vitro experiments were conducted by pretreating RAW264.7 cells with drugs and adding lipopolysaccharides (LPS) stimulation from Porphyromonas gingivalis (P. gingivalis). IL-1β and IL-6 mRNA expression was detected by qPCR, and Western blot was used to detect the effect of Rb3 on the mitogen-activated protein kinases (MAPKs) signaling pathway.
RESULTS:
Compared with the control group, the ligation group showed significant periodontitis and bone resorption. Compared with the ligation group, the Rb3 group showed a decrease in alveolar bone resorption and osteoclast formation; p-ERK/ERK ratio, IL-1β, IL-6, and nuclear factor of activated T cells (NFATc1) mRNA levels and downstream gene expression in periodontal tissues; serum IL-6, IL-8, IgG, and IgM levels. Rb3 reduced IL-8 and IL-1β mRNA expression levels and p-ERK/ERK and p-p38 MAPK/p38 MAPK ratios in RAW264.7 cells induced by P. gingivalis LPS stimulation.
CONCLUSIONS
Rb3 inhibits inflammation and bone resorption in experimental periodontitis in rats. Compared with Dox, Rb3 has better effects in inhibiting pro-inflammatory factors and osteoclast gene expression and may exert anti-inflammatory effects by activating the MAPK signaling pathway.
Animals
;
Ginsenosides/therapeutic use*
;
Rats, Sprague-Dawley
;
Male
;
Periodontitis/pathology*
;
Rats
;
Osteoclasts/drug effects*
;
Interleukin-1beta/metabolism*
;
Interleukin-6/blood*
;
Mice
;
Alveolar Bone Loss
;
Interleukin-8/blood*
;
Immunoglobulin G/blood*
;
RAW 264.7 Cells
;
Transcription Factors
3.Improvement of catalytic activity and thermostability of glucose oxidase from Aspergillus heteromorphus.
Shanglin YU ; Qiao ZHOU ; Honghai ZHANG ; Yingguo BAI ; Huiying LUO ; Xiaojun YANG ; Bin YAO
Chinese Journal of Biotechnology 2025;41(1):296-307
Glucose oxidase (GOD) is an oxygen-consuming dehydrogenase that can catalyze the production of gluconic acid hydrogen peroxide from glucose, and its specific mechanism of action makes it promising for applications, while the low catalytic activity and poor thermostability have become the main factors limiting the industrial application of this enzyme. In this study, we used the glucose oxidase AtGOD reported with the best thermostability as the source sequence for phylogenetic analysis to obtain the GOD with excellent performance. Six genes were screened and successfully synthesized for functional validation. Among them, the glucose oxidase AhGODB derived from Aspergillus heteromorphus was expressed in Pichia pastoris and showed better thermostability and catalytic activity, with an optimal temperature of 40 ℃, a specific activity of 112.2 U/mg, and a relative activity of 47% after 5 min of treatment at 70 ℃. To improve its activity and thermal stability, we constructed several mutants by directed evolution combined with rational design. Compared with the original enzyme, the mutant T72R/A153P showcased the optimum temperature increasing from 40 to 50 ℃, the specific activity increasing from 112.2 U/mg to 166.1 U/mg, and the relative activity after treatment at 70 ℃ for 30 min increasing from 0% to 33%. In conclusion, the glucose oxidase mutants obtained in this study have improved catalytic activity and thermostability, and have potential for application.
Glucose Oxidase/chemistry*
;
Enzyme Stability
;
Aspergillus/genetics*
;
Pichia/metabolism*
;
Temperature
;
Catalysis
;
Fungal Proteins/metabolism*
;
Hot Temperature
4.Effect Evaluation of Responsible Segmental Decompression Combined with Orthopedic Fixation of Short-Segment Fusion Surgery for Treating Degenerative Lumbar Scoliosis
Hui ZENG ; Gangqiang WU ; Can HUANG ; Xiaojun HAN ; Bo LIU ; Cheng CHEN ; Long MA ; Bowen ZHANG ; Honghai WANG
Journal of Medical Biomechanics 2024;39(5):896-902
Objective To investigate the therapeutic effect of segmental decompression combined with corrective short-segment fusion surgery for the treatment of degenerative lumbar scoliosis.Methods In total,124 patients with degenerative lumbar scoliosis were selected and divided into short-and long-segment fusion groups using the random number table method,with 62 patients in each group.Posterior short-segment decompression,fixation,and fusion were performed in the short-segment fusion group;the fusion segment was the adjacent lumbar vertebra.Posterior long-segment decompression,fixation,and fusion were performed in the long-segment fusion group;the fusion segments included multiple adjacent lumbar vertebrae.At the 6th month after surgery,the coronal Cobb angle of lumbar convexity,sagittal Cobb angle of lumbar lordosis,intervertebral foramen height,intervertebral space height,intervertebral foramen area,spinal canal area,spinal canal diameter,Japanese Orthopedic Association(JOA)score,Oswestry Disability Index(ODI),degree of pain in the lower back and lower limbs,and postoperative complications were compared between the groups.Results The Cobb angle of the coronal lumbar scoliosis in the short-and long-segment fusion groups was significantly higher than that before surgery(P<0.05).At the 6th month after surgery,the intervertebral foramen height,intervertebral space height,intervertebral foramen area,spinal canal area,and spinal canal diameter in both groups increased,and those in the short-segment fusion group were higher than those in the long-segment fusion group(P<0.05);at the 6th month after the operation,the JOA scores of the short-segment and long-segment fusion groups were higher than those before surgery,and the JOA score of the short-segment fusion group was higher than that of the long-segment fusion group(P<0.05).The ODI score was lower than that before surgery in the short-and long-segment fusion groups,and the ODI score in the short-segment fusion group was lower than that in the long-segment fusion group(P<0.05).At the 6th month after surgery,the pain scores of the lower back and lower limbs in the short-and long-segment fusion groups were significantly higher than those before surgery(P<0.05).There were two cases of dural tears during decompression caused by lamina dura adhesion in the long-segment fusion group,and no serious complications were observed in the short-segment fusion group.Conclusions Both short-and long-segment decompression fixation fusion using a posterior approach can achieve good therapeutic effects for treating degenerative lumbar scoliosis.However,compared to the long-segment fusion group,the short-segment fusion group undergoing short-segment decompression fixation fusion through a posterior approach had a shorter surgical period,lower intraoperative blood loss,better recovery of lumbar function,and a lower risk of postoperative complications.
5.Analysis of clinical and pathological characteristics of drug-induced live injury based on hepatotoxicity injury patterns
Honghai XU ; Shiwei ZHU ; Hui ZHANG ; Yufeng GAO ; Hua WANG
Chinese Journal of Clinical and Experimental Pathology 2024;40(2):172-178
Purpose To explore the clinical and pathologi-cal features and the relationships between pathological features and drugs of patients with drug-induced liver injury(DILI)based on the hepatotoxicity injury patterns.Methods The clin-ical data,laboratory indicators,drugs,and liver biopsy of 50 cases of DILI were collected,the expression of CK19 was detec-ted by immunohistochemistry EnVision two-step method,and the reticular scaffold of liver tissue was displayed by Reticular fiber staining.Results Among the 50 patients with DILI,there were 29 cases of hepatocellular DILI,11 cases of cholestatic DILI,and 10 cases of mixed DILI,respectively,with the hepatocellu-lar DILI accounting for the highest proportion(58%).7 catego-ries of drugs induced DILI,with herbal ranking first(52%).Different types of drugs could cause different types of DILI,with herbal induced 17 cases hepatocellular DILI(58.62%)and an-ti-infectious and anticancer drugs induced all 3 cases cholestatic DILI(27.27%).Different types of DILI displayed various pathological characteristics.Hepatocellular congestion,feathery degeneration,and small bile duct thrombosis primarily occur in cholestasis and mixed DILI,while bridging necrosis,sub-large and large necrosis were mainly seen in hepatocellular DILI.Conclusion Based on hepatotoxicity injury patterns,DILI ex-hibits a variety of clinical and pathological characteristics,and there is some relationship between pathological characteristics and drugs.Liver puncture pathological biopsy plays an important role in improving the diagnosis and treatment of DILI.
6.Research progress in animal models of liver regeneration based on the different injury modalities
Qian QIU ; Hui ZHANG ; Hehe YIN ; Honghai XU
Chinese Journal of Hepatobiliary Surgery 2024;30(7):552-556
The liver is a solid organ with excellent regenerative potential. Its regenerative ability is closely related to liver disease. In-depth study of the mechanism of liver regeneration is of great significance for understanding liver biology and developing regenerative medicine. The mouse has been the most widely used animal model of liver regeneration for its technical, economic and anatomical advantages. The current mouse models of liver regeneration include partial liver resection, chemical drug injury, and genetic engineering models. In this review, we compared their advantages, shortcomings and application prospects to provide reference for future research.
7.The value of CEA, CYFRA21-1 and CA125 tests in opportunistic screening for non-small cell lung cancer: a meta-analysis
Honghai HE ; Huihui ZHANG ; Hua WU ; Hongli WANG ; Wei ZHAO ; Ping SUN ; Peng WANG
Chinese Journal of Health Management 2024;18(4):254-262
Objective:To evaluate the value of CEA, CYFRA21-1 and CA125 tests in opportunistic screening of non-small cell lung cancer (NSCLC) based on meta-analysis.Methods:The original research literatures on the diagnostic value of CEA, CYFRA21-1 and CA125 in Chinese NSCLC patients were searched from databases of PubMed, Embase, The Cochrane Library, CNKI, VIP, Database and Wanfang database from establishment to June 2023. The literature screening, data extraction and quality evaluation were carried out independently by two researchers. The quality evaluation tool of diagnostic accuracy studies was used to evaluate the quality of the literature. A summary receiver operating characteristic (SROC) curve was used to assess the overall effectiveness of the tests. The outcome stability and publication bias were detected by using sensitivity analysis and Deeks′ test.Results:A total of 23 studies met the inclusion and exclusion criteria were included. The results of meta-analysis showed that the overall sensitivity of CEA, CYFRA21-1 and CA125 alone in the diagnosis of NSCLC was relatively low, it was 0.49(95% CI: 0.43-0.55), 0.56(95% CI: 0.49-0.63) and 0.41(95% CI: 0.33-0.49), respectively. The overall sensitivity of the combined detection of the three markers for the diagnosis of NSCLC increased to 0.83(95% CI: 0.69-0.91), but the overall specificity decreased to 0.76(95% CI: 0.69-0.83). Conclusions:The single detection of CEA, CYFRA21-1 and CA125 is not recommended for screening NSCLC in population receiving physical examination. Although the sensitivity of the combined detection of CEA, CYFRA21-1 and CA125 for screening NSCLC is improved, but the specificity is decreased, the misdiagnosis rate is increased, so the screening effect is limited.
8.Interventional treatment of portal vein thrombosis via hepatic circular ligament approach during liver transplantation: a report of 3 cases
Chiyi CHEN ; Hao WANG ; Li ZHANG ; Qingjun GUO ; Honghai WANG ; Jisan SUN ; Guang CHEN ; Wentao JIANG
Chinese Journal of Organ Transplantation 2024;45(11):811-814
Three recipients with portal vein thrombosis experienced insufficient blood flow to transplanted liver due to residual thrombus after thrombectomy during liver transplantation. Alternative measures posed significant risks or technical challenges. To promptly restore blood flow, intraoperative intervention was performed via round ligament of donor liver for managing residual portal vein thrombus. Balloon dilation and vascular stenting effectively relieved local stenosis. After intervention, portal vein flow rate and volume fulfilled the standards and function of transplanted liver recovered smoothly. Follow-ups revealed unobstructed stents and no new thrombus formation. This simple, safe and efficacious technique has not been previously reported in the literature.
9.Erratum: Author correction to 'Mevalonate improves anti-PD-1/PD-L1 efficacy by stabilizing CD274 mRNA' Acta Pharmaceutica Sinica B 13 (2023) 2585-2600.
Wenxin ZHANG ; Xiaohui PAN ; Yanjun XU ; Hongjie GUO ; Mingming ZHENG ; Xi CHEN ; Honghai WU ; Fengming LUAN ; Qiaojun HE ; Ling DING ; Bo YANG
Acta Pharmaceutica Sinica B 2023;13(10):4337-4337
[This corrects the article DOI: 10.1016/j.apsb.2023.04.002.].
10.The impact of lipids on the cancer-immunity cycle and strategies for modulating lipid metabolism to improve cancer immunotherapy.
Mingming ZHENG ; Wenxin ZHANG ; Xi CHEN ; Hongjie GUO ; Honghai WU ; Yanjun XU ; Qiaojun HE ; Ling DING ; Bo YANG
Acta Pharmaceutica Sinica B 2023;13(4):1488-1497
Lipids have been found to modulate tumor biology, including proliferation, survival, and metastasis. With the new understanding of tumor immune escape that has developed in recent years, the influence of lipids on the cancer-immunity cycle has also been gradually discovered. First, regarding antigen presentation, cholesterol prevents tumor antigens from being identified by antigen presenting cells. Fatty acids reduce the expression of major histocompatibility complex class I and costimulatory factors in dendritic cells, impairing antigen presentation to T cells. Prostaglandin E2 (PGE2) reduce the accumulation of tumor-infiltrating dendritic cells. Regarding T-cell priming and activation, cholesterol destroys the structure of the T-cell receptor and reduces immunodetection. In contrast, cholesterol also promotes T-cell receptor clustering and relative signal transduction. PGE2 represses T-cell proliferation. Finally, regarding T-cell killing of cancer cells, PGE2 and cholesterol weaken granule-dependent cytotoxicity. Moreover, fatty acids, cholesterol, and PGE2 can improve the activity of immunosuppressive cells, increase the expression of immune checkpoints and promote the secretion of immunosuppressive cytokines. Given the regulatory role of lipids in the cancer-immunity cycle, drugs that modulate fatty acids, cholesterol and PGE2 have been envisioned as effective way in restoring antitumor immunity and synergizing with immunotherapy. These strategies have been studied in both preclinical and clinical studies.

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