1.Effect of icariin-containing serum on lipopolysaccharide-induced inflammatory damage in human chondrocytes
Linzhen LI ; Hongzhuo JIAO ; Weinan CHEN ; Mingzhe ZHANG ; Jianlong WANG ; Juntao ZHANG
Chinese Journal of Tissue Engineering Research 2026;30(6):1368-1374
BACKGROUND:Previous studies of the research group have found that icariin-containing serum can delay the progression of knee osteoarthritis,promote chondrocyte proliferation and stem cell cartilage differentiation in rats,but there is still a lack of sufficient basis for clinical application.OBJECTIVE:To investigate the repair effect of icariin-containing serum on lipopolysaccharide-induced inflammatory damage of human chondrocytes.METHODS:The effect of icariin-containing serum on chondrocyte viability was detected by cell counting kit-8 method,and the optimal volume fraction and time of icariin-containing serum were screened.The cells were then divided into blank group,lipopolysaccharide group,icariin-containing serum group and lipopolysaccharide+icariin-containing serum group.After grouping,immunofluorescence was used to detect the secretion of type Ⅱ collagen in chondrocytes in each group.Real-time PCR was used to detect the expression of related genes.RESULTS AND CONCLUSION:(1)Icariin-containing serum showed good biosafety characteristics for human chondrocytes,and the cell viability reached the highest level after 48 hours of intervention when the icariin-containing serum volume fraction was 15%,and the follow-up experiments were carried out according to the conditions.(2)Compared with the blank group,lipopolysaccharide significantly inhibited the expression of type Ⅱ collagen in chondrocytes,while icariin-containing serum showed a positive mobilization effect,which could effectively promote the secretion of type Ⅱ collagen in chondrocytes under normal and inflammatory conditions.(3)The mRNA expression of type Ⅱ collagen and Aggrecan in chondrocytes decreased significantly under lipopolysaccharide stimulation,and the mRNA expression levels of matrix metalloproteinase 13 and a disintegrin-like and metalloproteinase with thrombospondin motifs-5 increased significantly.Icariin-containing serum promoted the mRNA expression of type Ⅱ collagen in human chondrocytes under inflammatory conditions and reduced the mRNA expression of matrix metalloproteinase 13 and a disintegrin-like and metalloproteinase with thrombospondin motifs-5 in chondrocytes after lipopolysaccharide intervention.Therefore,these findings indicate that the icariin-containing serum has good safety for human chondrocytes and plays an important role in maintaining the normal physiological functions of chondrocytes,promoting the synthesis of extracellular matrix,and inhibiting the secretion of inflammatory factors.
2.Effect of icariin-containing serum on lipopolysaccharide-induced inflammatory damage in human chondrocytes
Linzhen LI ; Hongzhuo JIAO ; Weinan CHEN ; Mingzhe ZHANG ; Jianlong WANG ; Juntao ZHANG
Chinese Journal of Tissue Engineering Research 2026;30(6):1368-1374
BACKGROUND:Previous studies of the research group have found that icariin-containing serum can delay the progression of knee osteoarthritis,promote chondrocyte proliferation and stem cell cartilage differentiation in rats,but there is still a lack of sufficient basis for clinical application.OBJECTIVE:To investigate the repair effect of icariin-containing serum on lipopolysaccharide-induced inflammatory damage of human chondrocytes.METHODS:The effect of icariin-containing serum on chondrocyte viability was detected by cell counting kit-8 method,and the optimal volume fraction and time of icariin-containing serum were screened.The cells were then divided into blank group,lipopolysaccharide group,icariin-containing serum group and lipopolysaccharide+icariin-containing serum group.After grouping,immunofluorescence was used to detect the secretion of type Ⅱ collagen in chondrocytes in each group.Real-time PCR was used to detect the expression of related genes.RESULTS AND CONCLUSION:(1)Icariin-containing serum showed good biosafety characteristics for human chondrocytes,and the cell viability reached the highest level after 48 hours of intervention when the icariin-containing serum volume fraction was 15%,and the follow-up experiments were carried out according to the conditions.(2)Compared with the blank group,lipopolysaccharide significantly inhibited the expression of type Ⅱ collagen in chondrocytes,while icariin-containing serum showed a positive mobilization effect,which could effectively promote the secretion of type Ⅱ collagen in chondrocytes under normal and inflammatory conditions.(3)The mRNA expression of type Ⅱ collagen and Aggrecan in chondrocytes decreased significantly under lipopolysaccharide stimulation,and the mRNA expression levels of matrix metalloproteinase 13 and a disintegrin-like and metalloproteinase with thrombospondin motifs-5 increased significantly.Icariin-containing serum promoted the mRNA expression of type Ⅱ collagen in human chondrocytes under inflammatory conditions and reduced the mRNA expression of matrix metalloproteinase 13 and a disintegrin-like and metalloproteinase with thrombospondin motifs-5 in chondrocytes after lipopolysaccharide intervention.Therefore,these findings indicate that the icariin-containing serum has good safety for human chondrocytes and plays an important role in maintaining the normal physiological functions of chondrocytes,promoting the synthesis of extracellular matrix,and inhibiting the secretion of inflammatory factors.
3.Exploring Mechanism of Action of Tuoli Xiaodu San in Treating Ulcerative Colitis Based on Integrated Pharmacology and Transcriptomics
Longke MA ; Linzhen LI ; Haimei YANG ; Juan WANG ; Xudong WEN ; Yihan MA ; Xiaoxiang WANG ; Fating LU ; Qiaobo YE
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(14):205-215
ObjectiveTo investigate the material basis and mechanism of action of Tuoli Xiaodu San in treating ulcerative colitis (UC) by integrating transcriptomics, network pharmacology, and experimental validation. MethodsNetwork pharmacology was initially employed to screen the active components and potential mechanisms of Tuoli Xiaodu San for treating UC. A UC mouse model was established by dextran sulfate sodium (DSS) induction. The mice were divided into the following groups: normal, model, high-dose (11.3 g·kg-1) Tuoli Xiaodu San, low-dose (5.7 g·kg-1) Tuoli Xiaodu San, and positive control (mesalazine, 0.4 g·kg-1). Intragastric administration commenced on day 1 of modeling and continued for 7 consecutive days. The disease activity index (DAI) was assessed daily. Hematoxylin-eosin (HE) staining was used to observe colonic pathological changes. Serum levels of tumor necrosis factor-alpha (TNF-α), interleukin-1 beta (IL-1β) and interleukin-6 (IL-6) were measured by enzyme-linked immunosorbent assay (ELISA). Transcriptome sequencing was performed on mouse colonic tissues, and the results were integrated with network pharmacology findings for in-depth analysis of Tuoli Xiaodu San's potential mechanisms in treating UC. Finally, the expression of key genes and proteins in the identified signaling pathways were detected using Western blot and Real-time polymerase chain reaction (Real-time PCR). ResultsThe combined analysis of network pharmacology and transcriptomics results showed that the multi-pathway network with phosphatidylinositol 3-kinase/protein kinase B (PI3K/Akt) signaling pathway as its core was the key mechanism of Tuoli Xiaodu San in the treatment of UC. Tuoli Xiaodu San administration significantly ameliorated weight loss, diarrhea, and bloody stools in UC mice, reduced the DAI scores (P<0.05, P<0.01), lowered the colonic histopathological scores (P<0.01), alleviated colon shortening (P<0.01), and downregulated serum levels of TNF-α, IL-1β, and IL-6 (P<0.05, P<0.01). Molecular biology experiments confirmed that Tuoli Xiaodu San significantly inhibited the mRNA and protein expression, as well as the phosphorylation levels, of PI3K, Akt, and p65 in colonic tissues (P<0.05, P<0.01). ConclusionTuoli Xiaodu San can regulate the multi-pathway network with PI3K/Akt as its core through multi-component synergy, thereby reducing colonic inflammatory damage and exerting a therapeutic effect on UC.
4.Exploring Mechanism of Glucose Metabolic Reprogramming-driven Macrophage Polarization in Regulating Metabolic Syndrome Based on Theory of "Spleen Qi Dispersing Essence"
Jinshun YOU ; Shijie QIAO ; Linzhen LI ; Lingfang ZHENG ; Shujie XIA
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(20):221-229
Metabolic syndrome (MS) is a clinical syndrome characterized by obesity, insulin resistance, and dyslipidemia, and chronic inflammation is closely associated with its pathogenesis. The imbalance between pro-inflammatory and anti-inflammatory macrophage polarization, as one of the core pathological mechanisms of chronic inflammation, is a crucial driver of MS progression. According to Essential Questions in Yellow Emperor's Inner Canon: Distinctive Theory on Meridians and Diseased Pulses, "the spleen Qi dispersing essence... along all the meridians and collaterals". When the spleen fails in transportation and transformation, the distribution of refined essence becomes disordered, leading to internal accumulation of phlegm-dampness, forming a dynamic pathological state of "root deficiency with branch excess". Accordingly, the core traditional Chinese medicine (TCM) pathogenesis of MS is closely related to "spleen failing in transportation and transformation coupled with the internal accumulation of phlegm-dampness"; however, its modern biological basis remains elusive. Therefore, based on the theory of "spleen Qi dispersing essence" and recent advances in immunometabolism, this paper explored the modern scientific connotation of the TCM pathogenesis of MS from the perspective of macrophage polarization driven by glucose metabolic reprogramming. Through theoretical analysis and literature integration, it was proposed that mitochondrial oxidative phosphorylation participates in the energy metabolism process of "spleen Qi dispersing essence". The dysfunction of the spleen's transportation and transformation prompts macrophage metabolism to shift toward glycolysis, resulting in the accumulation of lactate and succinate, which represents the microscopic manifestation of "refined essence deviating from proper transformation" and can be defined as "microscopic phlegm-dampness". These metabolites subsequently drive M1 macrophage polarization via the hypoxia-inducible factor-1α (HIF-1α)/nuclear factor-κB (NF-κB) signaling pathway, triggering the release of pro-inflammatory cytokines and inducing systemic chronic low-grade inflammation, ultimately manifesting as insulin resistance, lipid metabolic disorders, and other core components of MS, thus achieving immune amplification from local "microscopic phlegm-dampness" to systemic "internal accumulation of phlegm-dampness". Therefore, macrophage polarization driven by glucose metabolic reprogramming constitutes an important biological link connecting the TCM concept of "spleen failing to disperse essence" with the pathology of MS. Furthermore, this paper reviewed the potential mechanisms by which TCM herbal formulas and their monomeric components that "restore spleen transportation and resolve phlegm-dampness" ameliorate MS by modulating macrophage metabolic remodeling, thereby providing novel biological connotations for the modern interpretation of the theory of "spleen Qi dispersing essence". Future research should integrate multi-omics technologies with disease-syndrome animal models to elucidate the regulatory network of formulas that "restore spleen transportation and resolve phlegm-dampness". Additionally, the feasibility of utilizing macrophage metabolic phenotypes as objective diagnostic biomarkers for the phlegm-dampness syndrome in MS warrants further investigation.
5.Exploring Mechanism of Glucose Metabolic Reprogramming-driven Macrophage Polarization in Regulating Metabolic Syndrome Based on Theory of "Spleen Qi Dispersing Essence"
Jinshun YOU ; Shijie QIAO ; Linzhen LI ; Lingfang ZHENG ; Shujie XIA
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(20):221-229
Metabolic syndrome (MS) is a clinical syndrome characterized by obesity, insulin resistance, and dyslipidemia, and chronic inflammation is closely associated with its pathogenesis. The imbalance between pro-inflammatory and anti-inflammatory macrophage polarization, as one of the core pathological mechanisms of chronic inflammation, is a crucial driver of MS progression. According to Essential Questions in Yellow Emperor's Inner Canon: Distinctive Theory on Meridians and Diseased Pulses, "the spleen Qi dispersing essence... along all the meridians and collaterals". When the spleen fails in transportation and transformation, the distribution of refined essence becomes disordered, leading to internal accumulation of phlegm-dampness, forming a dynamic pathological state of "root deficiency with branch excess". Accordingly, the core traditional Chinese medicine (TCM) pathogenesis of MS is closely related to "spleen failing in transportation and transformation coupled with the internal accumulation of phlegm-dampness"; however, its modern biological basis remains elusive. Therefore, based on the theory of "spleen Qi dispersing essence" and recent advances in immunometabolism, this paper explored the modern scientific connotation of the TCM pathogenesis of MS from the perspective of macrophage polarization driven by glucose metabolic reprogramming. Through theoretical analysis and literature integration, it was proposed that mitochondrial oxidative phosphorylation participates in the energy metabolism process of "spleen Qi dispersing essence". The dysfunction of the spleen's transportation and transformation prompts macrophage metabolism to shift toward glycolysis, resulting in the accumulation of lactate and succinate, which represents the microscopic manifestation of "refined essence deviating from proper transformation" and can be defined as "microscopic phlegm-dampness". These metabolites subsequently drive M1 macrophage polarization via the hypoxia-inducible factor-1α (HIF-1α)/nuclear factor-κB (NF-κB) signaling pathway, triggering the release of pro-inflammatory cytokines and inducing systemic chronic low-grade inflammation, ultimately manifesting as insulin resistance, lipid metabolic disorders, and other core components of MS, thus achieving immune amplification from local "microscopic phlegm-dampness" to systemic "internal accumulation of phlegm-dampness". Therefore, macrophage polarization driven by glucose metabolic reprogramming constitutes an important biological link connecting the TCM concept of "spleen failing to disperse essence" with the pathology of MS. Furthermore, this paper reviewed the potential mechanisms by which TCM herbal formulas and their monomeric components that "restore spleen transportation and resolve phlegm-dampness" ameliorate MS by modulating macrophage metabolic remodeling, thereby providing novel biological connotations for the modern interpretation of the theory of "spleen Qi dispersing essence". Future research should integrate multi-omics technologies with disease-syndrome animal models to elucidate the regulatory network of formulas that "restore spleen transportation and resolve phlegm-dampness". Additionally, the feasibility of utilizing macrophage metabolic phenotypes as objective diagnostic biomarkers for the phlegm-dampness syndrome in MS warrants further investigation.
6.Icariin-containing serum promotes chondrocyte proliferation and chondrogenic differentiation of stem cells in the co-culture system of three kinds of cells
Qi LIU ; Linzhen LI ; Yusheng LI ; Hongzhuo JIAO ; Cheng YANG ; Juntao ZHANG
Chinese Journal of Tissue Engineering Research 2025;29(7):1371-1379
BACKGROUND:The capability of repairing articular cartilage damage is very limited,and tissue engineering technology provides new therapeutic options for repairing damaged cartilage,in which the interaction and induction between chondrocytes,bone marrow mesenchymal stem cells,and synovial mesenchymal stem cells is the basis of autologous healing of cartilage damage. OBJECTIVE:To construct the chondrocyte-bone marrow mesenchymal stem cell-synovial mesenchymal stem cell co-culture system to simulate the in vitro microenvironment of chondrocytes,and to explore the optimal cell inoculation ratio,meanwhile to observe the effects of icariin-containing serum on the proliferation of chondrocytes and the chondrogenic differentiation of stem cells in the system. METHODS:Rat knee chondrocytes,bone marrow mesenchymal stem cells and synovial mesenchymal stem cells were extracted,cultured and identified,and a chondrocyte-bone marrow mesenchymal stem cell-synovial mesenchymal stem cell non-contact co-culture system was constructed according to different cell inoculation ratios.After 72 hours of co-culturing,the chondrocyte proliferative activity and phenotypic ability were observed,and the co-culture system with the best overall effect was selected.New Zealand white rabbits were gavaged with icariin solution(0.25 mg/mL)to prepare icariin-containing serum,and cultured in conventional complete medium(high sugar DMEM culture medium containing 10%fetal bovine serum and 1%double antibody by volume)as the control group,while the experimental group was intervened by adding 10%icariin-containing serum by volume on the basis of above.The proliferative activity of chondrocytes and the expression of collagen type II were tested for the two groups after 24 and 48 hours.The differentiation of bone marrow mesenchymal stem cells and synovial mesenchymal stem cells into chondrocytes in the co-culture system was tested by immunofluorescence staining after 14 days. RESULTS AND CONCLUSION:(1)The three kinds of cells grew normally adherently to the wall in different ratios of co-culture,where chondrocytes showed the best proliferative activity and phenotypic ability in the co-culture system when chondrocytes:bone marrow mesenchymal stem cells:synovial mesenchymal stem cells=2:1:1.(2)Compared with the control group,the proliferative activity and type II collagen expression of chondrocytes in the experimental group were significantly increased after 24 hours(P<0.01),and the two groups still had difference after 48 hours(P<0.05).The two groups showed obvious chondrogenic differentiation of bone marrow mesenchymal stem cells and synovial mesenchymal stem cells after 14 days(P<0.01),and some of the cells appeared round or oval,and the cytoplasmic type II collagen immunofluorescence staining was positive.The fluorescence intensity of the experimental group was significantly higher than that of the control group(P<0.01).(3)The results showed that the chondrocyte-bone marrow mesenchymal stem cell-synovial mesenchymal stem cell co-culture system could be successfully established by the non-contact co-culture method,and the best chondrocyte proliferative activity and phenotypic ability could be obtained when the cell ratio was 2:1:1.Icariin-containing serum had the promoting effect on chondrocyte proliferation,and chondrogenic differentiation of bone marrow mesenchymal stem cells and synovial mesenchymal stem cells in the system.
7.Evaluation of Safety of Compound Kushen Injection and Efficacy in Treatment of Inflammatory Bowel Disease Based on Zebrafish Model
Xiaolu CHEN ; Jiaqi LI ; Linzhen CHEN ; Qi CHEN ; Zhiqiang MA ; Chongjun ZHAO
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(4):71-78
ObjectiveTo evaluate the safety/efficacy of compound Kushen injection (CKI) by zebrafish model and explore the possible mechanism. MethodsZebrafish were exposed to different concentrations of CKI solution, and the mortality rate after 24 h was calculated. After exposure to sublethal concentration (
8.Current status of macrolide-resistant Mycoplasma pneumoniae infections and research progress on drug resis-tance mechanisms
Li LI ; Ming LIANG ; Hong ZHEN ; Linzhen HUANG
Chinese Journal of Applied Clinical Pediatrics 2025;40(7):557-560
Mycoplasma pneumoniae (MP) is one of the major pathogens of community-acquired pneumonia in children, and macrolide antibiotics are the first choice for treating MP infections.However, since the discovery of macrolide-resistant Mycoplasma pneumoniae (MRMP) by Japanese scholars at the beginning of the 21st century, the detection rate of MRMP strains has been increasing globally, and there have been numerous reports of MP resistance around the world.Studies on the mechanism of drug resistance have been conducted both at home and abroad.Meanwhile, the global infection status shows that there are significant regional differences in the proportion of MRMP infections, especially in the Western Pacific region, including China and Japan, where the proportion of infections is the highest.In order to improve the understanding of the current status of MRMP infections and drug resistance mechanisms, the latest progress in the study of the global infection status and drug resistance mechanisms of MRMP is reviewed, aiming to provide a scientific basis for clinical treatment and a reference for future research directions.
9.Current status of macrolide-resistant Mycoplasma pneumoniae infections and research progress on drug resis-tance mechanisms
Li LI ; Ming LIANG ; Hong ZHEN ; Linzhen HUANG
Chinese Journal of Applied Clinical Pediatrics 2025;40(7):557-560
Mycoplasma pneumoniae (MP) is one of the major pathogens of community-acquired pneumonia in children, and macrolide antibiotics are the first choice for treating MP infections.However, since the discovery of macrolide-resistant Mycoplasma pneumoniae (MRMP) by Japanese scholars at the beginning of the 21st century, the detection rate of MRMP strains has been increasing globally, and there have been numerous reports of MP resistance around the world.Studies on the mechanism of drug resistance have been conducted both at home and abroad.Meanwhile, the global infection status shows that there are significant regional differences in the proportion of MRMP infections, especially in the Western Pacific region, including China and Japan, where the proportion of infections is the highest.In order to improve the understanding of the current status of MRMP infections and drug resistance mechanisms, the latest progress in the study of the global infection status and drug resistance mechanisms of MRMP is reviewed, aiming to provide a scientific basis for clinical treatment and a reference for future research directions.
10.Exploring new horizons: angiotensin II, angiotensin II type 1 receptor, and renal outer medullary potassium channel interaction in distal convoluted tubule
Kun ZHAO ; Tiantian HAN ; Linzhen JIA ; Libo WEN ; Renjun GAO ; Xue LI
Kidney Research and Clinical Practice 2025;44(3):461-480
This study investigates angiotensin II (Ang II)’s regulatory mechanism on renal outer medullary potassium channel (ROMK) activity in the distal convoluted tubule (DCT) during low potassium intake, focusing on the janus kinase 2 (JAK2) pathway activation mediated by the Ang II type 1 receptor (AT1R). Methods: Utilizing a low potassium diet mouse model, various methods including patch clamping, reverse transcription-quantitative polymerase chain reaction, Western blotting, and immunohistochemical staining were applied to analyze ROMK channel activity and the expression of related proteins. Results: The findings reveal that Ang II inhibits ROMK activity in the DCT2 membrane through AT1R activation, with the JAK2 pathway playing a central role. Further, inhibiting JAK2 reverses this effect, indicating its potential in hypertension treatment. Conclusion: This study provides novel insights into the role of Ang II in renal potassium excretion and hypertension pathophysiology.

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