1.Label-free electrochemical aptasensing of cardiac cell secretomes in cell culture media for the evaluation of drug-induced myocardial injury.
Zelin YANG ; Xilin CHEN ; Mingang LIAO ; Feng LIAO ; Wen CHEN ; Qian SHAO ; Bing LIU ; Duanping SUN
Journal of Pharmaceutical Analysis 2025;15(10):101234-101234
Cardiac troponin I (cTnI), a widely used biomarker for assessing cardiovascular risk, can provide a window for the evaluation of drug-induced myocardial injury. Label-free biosensors are promising candidates for detecting cell secretomes, since they do not require labor-intensive processes. In this work, a label-free electrochemical aptasensor is developed for in situ monitoring of cardiac cell secretomes in cell culture media based on target-induced strand displacement. The aptasensing system contains an aptamer-functionalized signal nanoprobe facing trimetallic metal-organic framework nanosheets and a gold nanoparticle-based detection working electrode modified with DNA nanotetrahedron-based complementary DNA for indirect target detection. The signal nanoprobes (termed CAHA) consisted of copper-based metal-organic frameworks, AuPt nanoparticles, horseradish peroxidase, and an aptamer. When the aptasensor is exposed to cardiac cell secretomes, cTnI competitively binds to the aptamer, resulting in the release of signal nanoprobes from the biorecognition interface and electrochemical signal changes. The aptasensor exhibited rapid response times, a low detection limit of 0.31 pg/mL, and a wide linear range of 0.001-100 ng/mL. We successfully used this aptasensor to measure cTnI concentrations among secreted cardiac markers during antitumor drug treatment. In general, aptasensors can be used to monitor a variety of cardiac biomarkers in the evaluation of cardiotoxicity.
2.Autologous hematopoietic stem cell transplantation with TBE conditioning in patients with primary central nervous system lymphoma
Junli CHEN ; Yi MA ; Ruiqing ZHAO ; Xiubin XIAO ; Xilin CHEN ; Shunzong YUAN ; Shihua ZHAO ; Yun LU ; Honghao GAO ; Yueqi WANG ; Hua YIN ; Nana CHENG ; Pan FENG ; Xiaoran BAI ; Wenrong HUANG
Chinese Journal of Hematology 2025;46(11):1038-1043
Objective:To assess the safety and efficacy of thiotepa, busulfan, and etoposide (TBE) conditioning followed by autologous hematopoietic stem-cell transplantation (TBE auto-HSCT) in primary central nervous system lymphoma (PCNSL) patients.Methods:Clinical data from 27 PCNSL patients who received TBE auto-HSCT at the Fifth Medical Center of PLA General Hospital between November 1, 2021, and April 30, 2024, were retrospectively analyzed.Results:Twenty-seven patients [16 males, 11 females; median age 57 (23–72) years] were included, with 12 (44.4%, 12/27) over 60. Twenty-five had newly diagnosed PCNSL and 2 were relapsed. Median time from diagnosis to transplantation was 6.9 (5.0–10.0) months. TBE auto-HSCT increased complete remission (CR) rate from 63.0 to 96.3% ( P= 0.005), and 9 of 10 patients in partial remission achieving CR post-transplant. Median follow-up was 24.5 months (range 2.0–36.0). Two-year progress-free and OS rates were (87.2±6.9) % and (88.6±6.2) %, respectively. Common grade 3 nonhematologic adverse events were diarrhea (18.5%, 5/27) and bacterial infections (14.8%, 4/27). One patient (64 years old) died from carbapenem-resistant Enterobacteriaceae infection within 2 months post-transplant, yielding a 100-day treatment-related mortality of 3.7% (1/27) . Conclusion:TBE-conditioned high-dose chemotherapy with auto-HSCT is effective, safe, and well-tolerated in PCNSL patients, including the elderly.
3.SWOT analysis of the application of artificial intelligence in primary healthcare: using diabetes mellitus as an example
Chengdian LAN ; Xilin CHEN ; Hua YANG
Chinese Journal of General Practitioners 2025;24(7):877-882
With the development and advancement of information technology, the application of artificial intelligence (AI) in the medical field has expanded significantly, and its integration into primary healthcare continues to grow. This paper employs the SWOT analysis framework to systematically examine the strengths, weaknesses, opportunities, and threats of AI technology in primary healthcare, using diabetes mellitus as a case study. The goal is to facilitate broader application and deeper integration of AI in primary healthcare settings. Furthermore, this analysis aims to ensure the robust development of AI technology in the medical field, thereby enhancing the prevention and management of chronic diseases at the primary care level.
4.Interleukin-27 exerts a protective effect against psoriasis by inhibiting the secretion of interleukin-17A from T cells: a mechanistic study
Zhiyi LAN ; Zeyu CHEN ; Zihan ZHAO ; Xilin ZHANG ; Jun GU ; Yuling SHI
Chinese Journal of Dermatology 2025;58(11):1034-1041
Objective:To investigate the specific mechanisms underlying the protective effect of interleukin (IL) -27 in the pathogenesis of psoriasis.Methods:Five skin tissue samples from healthy individuals and 6 lesional skin samples from psoriasis patients were collected, and IL-27 expression was determined by immunohistochemical staining. Il27ra gene knockout (KO) mice were constructed. Psoriasis-like mouse models were established with topical imiquimod in 5 wild-type (WT) mice and 6 KO mice. Mouse skin lesions were evaluated using the modified Psoriasis Area and Severity Index (mPASI), and lesional skin tissues were collected for hematoxylin and eosin (HE) staining to observe changes in epidermal thickness. Single-cell suspensions were prepared with skin lesions and skin-draining lymph nodes of 4 WT mice and 3 KO mice, and changes in immune cells (including T cells, γδ T cells, and neutrophils) were analyzed using flow cytometry. Additionally, skin-draining lymph node cells were isolated from 9 normal WT mice, and IL-17A expression was stimulated using a T-cell receptor agonist (CD3/28 activating antibodies, αCD3/28) or cytokines (IL-23 + IL-1β), followed by the addition of IL-27; peripheral blood mononuclear cells (PBMCs) were isolated from 6 psoriasis patients, and IL-17A expression was stimulated using the T-cell receptor agonist, followed by the addition of IL-27; the effect of IL-27 on IL-17A expression in T cells was analyzed using flow cytometry and enzyme-linked immunosorbent assay (ELISA). Measurement data were compared between two groups using the t test. Results:Immunohistochemical staining revealed a significant reduction in IL-27 expression in psoriatic lesions (mean fluorescence intensity: 9.85 ± 3.07) compared with the normal skin (19.45 ± 2.51, t = 5.60, P < 0.001). Animal experiments demonstrated that the KO mice exhibited significantly aggravated psoriasis-like skin inflammation (mPASI: 4.00 ± 0.89) and significantly increased epidermal thickness (115.50 ± 7.69 μm) compared with the WT mice (mPASI: 2.80 ± 0.84, t = 2.28, P = 0.049; epidermal thickness: 92.26 ± 8.76 μm, t = 4.70, P = 0.001) ; compared with the WT mice, the KO mice showed significantly increased proportions of T cells (11.22% ± 2.76% vs. 7.08% ± 0.85%) and dermal γδ T cells (4.78% ± 0.39% vs. 2.78% ± 0.49%) among live cells in the lesions ( t = 2.91, 2.75, respectively, both P < 0.05), as well as significantly increased proportions of Th17, IL-17 + γδ T, Th22, and IL-22 + γδ T cells in the skin-draining lymph nodes (all P < 0.05), but no significant difference in the proportion of neutrophils in the lesions (WT: 13.57% ± 8.36%, KO: 14.43% ± 9.13%; t = 0.13, P = 0.902). Experiments with different stimuli showed that IL-27 significantly suppressed T-cell receptor agonist-induced IL-17A expression in murine γδ T cells (αCD3/28 group: 1.00 ± 0.11, αCD3/28 + IL-27 group: 0.76 ± 0.13; t = 3.54, P = 0.004), while there was no significant difference in IL-17A expression between cells induced by IL-23 + IL-1β with the IL-27 co-culture and those without ( t = 1.34, P > 0.05). ELISA showed that IL-27 significantly reduced the IL-17A concentration in the culture supernatant of draining lymph node cells stimulated by the T-cell receptor agonist (αCD3/28 group: 1 535.00 ± 97.76 pg/ml, αCD3/28 + IL-27 group: 1 030.00 ± 287.90 pg/ml, t = 3.29, P = 0.031), but did not reduce the IL-17A concentration induced by IL-23 + IL-1β ( t = 0.09, P > 0.05). Flow cytometry indicated that IL-27 significantly inhibited the T-cell receptor agonist-induced IL-17A expression in T cells from psoriasis patients (αCD3/28 group: 4.28 ± 3.25, αCD3/28 + IL-27 group: 3.04 ± 2.65, t = 4.46, P = 0.007) . Conclusion:IL-27 appeared to play a protective role in psoriasis by suppressing IL-17A secretion from T cells.
5.Molecular mechanism of action and drug prediction of hepatic sinusoidal endothelial cells for regulating hepatic fibrosis via mesenchymal transition
Ruizhu JIANG ; Yang ZHENG ; Lei WANG ; Rongwu ZHANG ; Jiahui WANG ; Xilin LIAO ; Qiong CHEN
Chinese Journal of Comparative Medicine 2025;35(7):55-71
Objective To investigate the molecular mechanism of hepatic fibrosis(HF)regulation by liver sinusoidal endothelial cells(LSECs)via endothelial mesenchymal transition(EnMT),and to predict the natural active components using bioinformatics,machine learning,and cellular experiments.Methods HF and EnMT gene matrices were obtained and the intersecting genes were extracted and enriched using Limma difference analysis and weighted gene co-expression network analysis(WGCNA).The diagnostic genes were screened using a combination of random forest method,support vector machine-recursive feature elimination and network topology analysis,and immune infiltration analysis and prediction of natural active ingredients were performed.The expression of diagnostic genes and the pharmacological effects of the predicted ingredients were finally verified by cellular experiments.Results Differential analysis yielded 3034 EnMT-associated and 4133 HF-associated differential genes.WGCNA analysis yielded 4589 EnMT-associated Hub genes and 763 HF-associated Hub genes.Thirty-eight intersecting genes were extracted,which were mainly enriched in the pathways of basement membrane and extracellular matrix receptor interaction.Four diagnostic genes,CFP,COL4A2,ITGA1,and GRPEL1,were screened by multidimensional analysis.Immune infiltration analysis showed that the diagnostic genes were closely associated with mast cell resting state,memory B cells,and memory CD4+T cells.Reverse transcription-polymerase chain reaction analysis showed significantly increased mRNA expression levels of the four diagnostic genes in the Jagged1-induced model group(P<0.05).The predicted components,sterol,kaempferol,and quercetin,all had good binding activities with the diagnostic genes.Enzyme-linked immunosorbent assay result confirmed that all three active components significantly reduced the expression of collagen type Ⅳ α2 chain protein in Jagged1-induced LSECs,with quercetin having the most significant effect(P<0.01).Conclusions This study elucidated the molecular mechanism of hepatic sinusoidal endothelial cells involved in the pathological process of HF through mesenchymal transition.We also propose a diagnostic marker system including CFP,COL4A2,ITGA1,and GRPEL1 as core genes.The result also suggest that natural active ingredients,such as quercetin,may exert anti-HF pharmacological effects by targeting these diagnostic genes.
6.Effect of Liangxue Tuizi Formula (凉血退紫方) on RAF/MEK/ERK Pathway in Skin Tissue and Serum NETs Biomarkers in Henoch-Schönlein Purpura Model Rats with Blood Heat Syndrome
Yingying JIANG ; Manxiang YANG ; Zhenhua YUAN ; Leying XI ; Mingyang CAI ; Diya MA ; Yifan LI ; Yuhang NIU ; Runze LIU ; Jiawen CAO ; Xilin CHEN ; Xianqing REN
Journal of Traditional Chinese Medicine 2025;66(23):2475-2483
ObjectiveTo investigate the potential mechanism of Liangxue Tuizi Formula (凉血退紫方, LXTZF) in treating Henoch-Schönlein Purpura (HSP) by examining its regulatory effect on neutrophil extracellular trap (NETs) dysregulation via the rapidly accelerated fibrosarcoma kinase (RAF)/mitogen-activated protein kinase (MEK)/extracellular signal-regulated kinase (ERK) signaling pathway. MethodsSeventy Wistar rats were randomly allocated into a blank control group (n=14) and a modeling group (n=56). Rats in the modelling group underwent an eight-week modelling period to establish HSP rat models with blood-heat syndrome via modified ovalbumin (OVA) induction method combined with oral administration of heat-property Chinese herbal medicine. Fifty successfully modeled rats were subsequently randomly divided into five groups (n=10 per group), model group, compound glycyrrhizin group, LXTZF group, RAF inhibitor group, and LXTZF + RAF agonist group. Additionally, 10 rats were selected from the original blank control group for the final experiment. From the 11th week of modelling, rats in the blank control group and the model group received 1 ml/(100 g·d) ultrapure water via oral administration, in addition to 0.5 ml/(kg·d) 0.9% sodium chloride solution via intraperitoneal injection. The LXTZF group and the compound glycyrrhizin group received 7.5 g/(kg·d) LXTZF granule suspension via gavage, 13.5 mg/(kg·d) compound glycyrrhizin suspension via gavage, respectively. The RAF inhibitor group received 1 mg/(kg·d) GW5074 suspension via intraperitoneal injection and ultrapure water via oral administration; the LXTZF + RAF agonist group received 7.5 g/(kg·d) LXTZF granule suspension via gavage and 1 mg/(kg·d) paclitaxel suspension via intraperitoneal injection. All administrations were performed once daily for 4 weeks. After intervention, skin tissue histopathology was examined by hematoxylin and eosin (H&E) staining, immunoglobulin A (IgA) deposition was assessed via immunofluorescence, serum levels of neutrophil elastase (NE), tumor necrosis factor-α (TNF-α), and vascular cell adhesion molecule-1 (VCAM-1) were measured using enzyme-linked immunosorbent assay (ELISA), serum myeloperoxidase (MPO) level was determined by a colorimetric assay; the mRNA expression levels of RAF, MEK, and ERK in skin tissue were detected by real-time quantitative polymerase chain reaction (RT-qPCR); and the protein expression of RAF, MEK, ERK, as well as phosphorylated MEK (p-MEK) and phosphorylated ERK (p-ERK), were analyzed by Western Blot. ResultsSkin tissue in the blank control group rats remained normal, whereas the model group exhibited neutrophil infiltration and haemorrhage with red blood cell rupture. In all drug intervention groups, neutrophil infiltration and haemorrhagic exudation reduced markedly, with LXTZF group demonstrating the most pronounced improvement. Compared with the blank control group, rats in the model group exhibited enhanced IgA fluorescence intensity in skin tissue, elevated serum levels of NE, MPO, TNF-α and VCAM-1, increased mRNA expression of RAF, MEK, ERK1 and ERK2, as well as heightened RAF protein levels and p-MEK/MEK and p-ERK/ERK ratios (P<0.05). Compared with the model group, the drug intervention groups exhibited reduced IgA fluorescence intensity in skin tissue, along with decreased serum levels of NE, MPO, TNF-α, and VCAM-1 (P<0.05). In LXTZF group and RAF inhibition groups, reduced mRNA expression of RAF, MEK, ERK1, and ERK2 was observed in rat skin tissue, alongside decreased RAF protein levels and reduced p-MEK/MEK and p-ERK/ERK ratios (P<0.05). Compared with LXTZF + RAF agonist group, the compound glycyrrhizin group, LXTZF group, and RAF inhibitior group exhibited reduced IgA fluorescence intensity in skin tissue, decreased serum NE, MPO, TNF-α, and VCAM-1 levels, and decreased MEK mRNA expression and p-MEK/MEK ratio (P<0.05). ConclusionThe potential mechanism by which LXTZF treats Henoch-Schönlein purpura with blood heat syndrome may involve blocking the RAF/MEK/ERK signaling pathway in skin tissue, and suppressing excessive formation of NETs, thereby reducing IgA deposition in dermal microvessels and attenuating systemic inflammatory responses.
7.Jianpi-Huayu decotion combined with gemcitabine induces ferroptosis and inhibits growth of pancreatic cancer cells through Nrf2/SLC7A11/GPX4 axis
Xinqiu CHEN ; Zhengze ZHANG ; Shuwei LIU ; Xiaoyu ZHU ; Yongheng LAI ; Chongkai FANG ; Junhai HUANG ; Xilin ZHAO ; Chong ZHONG
Chinese Journal of Pathophysiology 2025;41(6):1077-1087
AIM:To investigate the effect of Jianpi-Huayu decoction(JPHYD)combined with gemcitabine(GEM)on ferroptosis of pancreatic cancer PANC-1 cells and its mechanism.METHODS:PANC-1 cells were cultured in vitro,and CCK8 method was used to detect the cell viability after different concentrations of JPHYD and GEM,and ap-propriate concentrations were selected for follow-up experiments.EDU assay and clonogenesis assay were used to detect cell proliferation.The apoptosis rate was detected by flow cytometry.Intracellular reactive oxygen species(ROS)were de-tected by DCFH-DA fluorescent probe and lipid peroxidation was detected by BODIPY 581/591C11 staining.The contents of glutathione(GSH),ferrous ion(Fe2+)and malondialdehyde(MDA)in the cells were detected by the kit.The mRNA levels and protein expression levels of Nrf2,HO-1,SLC7A11,GPX4,TFR1 and ACSL4 were detected by RT-qPCR and Western blot.RESULTS:Compared with the control group,the cell viability of PANC-1 treated with JPHYD and GEM was significantly decreased in a concentration-dependent manner.And the combined use of the two can significantly im-prove the cytotoxic effect of GEM and have a synergistic effect;Compared with control group,JPHYD group,GEM group and JPHYD+GEM group can significantly reduce EDU positive efficiency,colony formation numbers and promote cell apoptosis,and the combined group has the most obvious effect.After adding JPHYD+GEM into the cells,the cells be-came rounded and the cell viability decreased.The addition of ferrostatin-1(Fer-1),an inhibitor of ferroptosis,had no significant effect on cell morphology and viability,and the co-treatment with JPHYD+GEM and Fer-1 could reverse the ef-fects of JPHYD+GEM on cell morphology and viability.Compared with control group and GEM group,JPHYD+GEM group can significantly increase the levels of intracellular reactive oxygen species(ROS)and lipid peroxidation,increase the levels of Fe2+and MDA,decrease the levels of GSH,further promote lipid peroxidation and induce ferroptosis.JPHYD+GEM also significantly down-regulated the mRNA and protein expressions of Nrf2,HO-1,SLC7A11 and GPX4,and up-regulated the mRNA and protein expressions of TFR1 and ACSL4.The addition of Fer-1 significantly reversed the activation of iron death in the combined treatment group and reversed its efficacy,and the difference was statistically signif-icant.CONCLUSION:Jianpi Huayu decoction and gemcitabine may induce ferroptosis of PANC-1 cells by inhibiting Nrf2/SLC7A11/GPX4 axis in vitro,thus playing a synergistic anticancer role.
8.Exploring mechanism of occurrence and treatment of acute lung injury in mice based on GEO database and in vivo experiments
Yonghu CHEN ; Xilin WU ; Zhe JIANG ; Xuezheng LI
Chinese Journal of Immunology 2025;41(11):2561-2566
Objective:To identify key genes involved in LPS-induced acute lung injury(ALI)using GEO database,to eluci-date its pathogenesis and discover potential therapeutic drugs.Methods:Gene expression data from LPS-induced ALI was collected by GEO database,and microbiotics online analysis platform was employed to identify differential expression genes,from which core genes were obtained.Metascape and DAVID were used for GO and KEGG enrichment analysis of these core genes to identify pathways associated with ALI.GSEA and protein interaction analysis were performed for these pathways for identification of core targets.Poten-tial therapeutic drug,kaempferol-3-O-α-L-(4″-E-p-coumaroyl)-rhamnoside(KAE)was validated by animal experiments.Results:Two GEO datasets were incorporated and 261 core genes with differential expression were identified.Data visualization indicated that LPS-induced ALI predominantly involved inflammatory pathways,such as TNF and NF-κB.In vivo validation was conducted in mice on two core targets within this pathway:NF-κB and NLRP3,potential therapeutic drug KAE was administered,which was found to mitigate LPS-induced lung tissue damage.Further investigations demonstrated that KAE could effectively improve ALI by reducing expressions of p-NF-κB,NLRP3 and other proteins.Conclusion:This study markes screening of LPS-induced ALI model within GEO database.Above findings reveal predominant involvement of NF-κB and NLRP3 within TNF and NF-κB signaling pathways in LPS-in-duced ALI.KAE has potential for ALI treatment by down-regulating expressions of p-NF-κB,NLRP3 and other proteins,expecting to be a candidate drug for ALI treatment.
9.Molecular mechanism of action and drug prediction of hepatic sinusoidal endothelial cells for regulating hepatic fibrosis via mesenchymal transition
Ruizhu JIANG ; Yang ZHENG ; Lei WANG ; Rongwu ZHANG ; Jiahui WANG ; Xilin LIAO ; Qiong CHEN
Chinese Journal of Comparative Medicine 2025;35(7):55-71
Objective To investigate the molecular mechanism of hepatic fibrosis(HF)regulation by liver sinusoidal endothelial cells(LSECs)via endothelial mesenchymal transition(EnMT),and to predict the natural active components using bioinformatics,machine learning,and cellular experiments.Methods HF and EnMT gene matrices were obtained and the intersecting genes were extracted and enriched using Limma difference analysis and weighted gene co-expression network analysis(WGCNA).The diagnostic genes were screened using a combination of random forest method,support vector machine-recursive feature elimination and network topology analysis,and immune infiltration analysis and prediction of natural active ingredients were performed.The expression of diagnostic genes and the pharmacological effects of the predicted ingredients were finally verified by cellular experiments.Results Differential analysis yielded 3034 EnMT-associated and 4133 HF-associated differential genes.WGCNA analysis yielded 4589 EnMT-associated Hub genes and 763 HF-associated Hub genes.Thirty-eight intersecting genes were extracted,which were mainly enriched in the pathways of basement membrane and extracellular matrix receptor interaction.Four diagnostic genes,CFP,COL4A2,ITGA1,and GRPEL1,were screened by multidimensional analysis.Immune infiltration analysis showed that the diagnostic genes were closely associated with mast cell resting state,memory B cells,and memory CD4+T cells.Reverse transcription-polymerase chain reaction analysis showed significantly increased mRNA expression levels of the four diagnostic genes in the Jagged1-induced model group(P<0.05).The predicted components,sterol,kaempferol,and quercetin,all had good binding activities with the diagnostic genes.Enzyme-linked immunosorbent assay result confirmed that all three active components significantly reduced the expression of collagen type Ⅳ α2 chain protein in Jagged1-induced LSECs,with quercetin having the most significant effect(P<0.01).Conclusions This study elucidated the molecular mechanism of hepatic sinusoidal endothelial cells involved in the pathological process of HF through mesenchymal transition.We also propose a diagnostic marker system including CFP,COL4A2,ITGA1,and GRPEL1 as core genes.The result also suggest that natural active ingredients,such as quercetin,may exert anti-HF pharmacological effects by targeting these diagnostic genes.
10.Interleukin-27 exerts a protective effect against psoriasis by inhibiting the secretion of interleukin-17A from T cells: a mechanistic study
Zhiyi LAN ; Zeyu CHEN ; Zihan ZHAO ; Xilin ZHANG ; Jun GU ; Yuling SHI
Chinese Journal of Dermatology 2025;58(11):1034-1041
Objective:To investigate the specific mechanisms underlying the protective effect of interleukin (IL) -27 in the pathogenesis of psoriasis.Methods:Five skin tissue samples from healthy individuals and 6 lesional skin samples from psoriasis patients were collected, and IL-27 expression was determined by immunohistochemical staining. Il27ra gene knockout (KO) mice were constructed. Psoriasis-like mouse models were established with topical imiquimod in 5 wild-type (WT) mice and 6 KO mice. Mouse skin lesions were evaluated using the modified Psoriasis Area and Severity Index (mPASI), and lesional skin tissues were collected for hematoxylin and eosin (HE) staining to observe changes in epidermal thickness. Single-cell suspensions were prepared with skin lesions and skin-draining lymph nodes of 4 WT mice and 3 KO mice, and changes in immune cells (including T cells, γδ T cells, and neutrophils) were analyzed using flow cytometry. Additionally, skin-draining lymph node cells were isolated from 9 normal WT mice, and IL-17A expression was stimulated using a T-cell receptor agonist (CD3/28 activating antibodies, αCD3/28) or cytokines (IL-23 + IL-1β), followed by the addition of IL-27; peripheral blood mononuclear cells (PBMCs) were isolated from 6 psoriasis patients, and IL-17A expression was stimulated using the T-cell receptor agonist, followed by the addition of IL-27; the effect of IL-27 on IL-17A expression in T cells was analyzed using flow cytometry and enzyme-linked immunosorbent assay (ELISA). Measurement data were compared between two groups using the t test. Results:Immunohistochemical staining revealed a significant reduction in IL-27 expression in psoriatic lesions (mean fluorescence intensity: 9.85 ± 3.07) compared with the normal skin (19.45 ± 2.51, t = 5.60, P < 0.001). Animal experiments demonstrated that the KO mice exhibited significantly aggravated psoriasis-like skin inflammation (mPASI: 4.00 ± 0.89) and significantly increased epidermal thickness (115.50 ± 7.69 μm) compared with the WT mice (mPASI: 2.80 ± 0.84, t = 2.28, P = 0.049; epidermal thickness: 92.26 ± 8.76 μm, t = 4.70, P = 0.001) ; compared with the WT mice, the KO mice showed significantly increased proportions of T cells (11.22% ± 2.76% vs. 7.08% ± 0.85%) and dermal γδ T cells (4.78% ± 0.39% vs. 2.78% ± 0.49%) among live cells in the lesions ( t = 2.91, 2.75, respectively, both P < 0.05), as well as significantly increased proportions of Th17, IL-17 + γδ T, Th22, and IL-22 + γδ T cells in the skin-draining lymph nodes (all P < 0.05), but no significant difference in the proportion of neutrophils in the lesions (WT: 13.57% ± 8.36%, KO: 14.43% ± 9.13%; t = 0.13, P = 0.902). Experiments with different stimuli showed that IL-27 significantly suppressed T-cell receptor agonist-induced IL-17A expression in murine γδ T cells (αCD3/28 group: 1.00 ± 0.11, αCD3/28 + IL-27 group: 0.76 ± 0.13; t = 3.54, P = 0.004), while there was no significant difference in IL-17A expression between cells induced by IL-23 + IL-1β with the IL-27 co-culture and those without ( t = 1.34, P > 0.05). ELISA showed that IL-27 significantly reduced the IL-17A concentration in the culture supernatant of draining lymph node cells stimulated by the T-cell receptor agonist (αCD3/28 group: 1 535.00 ± 97.76 pg/ml, αCD3/28 + IL-27 group: 1 030.00 ± 287.90 pg/ml, t = 3.29, P = 0.031), but did not reduce the IL-17A concentration induced by IL-23 + IL-1β ( t = 0.09, P > 0.05). Flow cytometry indicated that IL-27 significantly inhibited the T-cell receptor agonist-induced IL-17A expression in T cells from psoriasis patients (αCD3/28 group: 4.28 ± 3.25, αCD3/28 + IL-27 group: 3.04 ± 2.65, t = 4.46, P = 0.007) . Conclusion:IL-27 appeared to play a protective role in psoriasis by suppressing IL-17A secretion from T cells.

Result Analysis
Print
Save
E-mail