1.Circadian mechanisms underlying cardiometabolic dysfunction induced by chronic PM2.5 exposure
Wenqing ZHANG ; Biao WU ; Jianshu GUO ; Dongxia FAN ; Ge WANG ; Lu YU ; Chihang ZHANG ; Xianying LIAO ; Xihao DU ; Yuquan XIE ; Jinzhuo ZHAO
Journal of Environmental and Occupational Medicine 2026;43(8):926-935
Background Long-term exposure to ambient fine particulate matter (PM2.5) is a significant risk factor for cardiometabolic disorders. However, the mechanisms of its interaction with the endogenous circadian system remain incompletely understood. Objective To investigate whether chronic PM2.5 exposure interferes with the rhythmic expression of the cardiac circadian clock, thereby disrupting downstream antioxidant defenses and metabolic homeostasis, and ultimately driving cardiometabolic dysfunction. Methods Seventy-two male C57BL/6 mice were randomly divided into a PM2.5 exposure group (PM group) and a filtered air control group (FA group). Whole-body exposure was conducted for 8 weeks in a meteorological environmental animal exposure system. Samples were collected at six distinct zeitgeber time (ZT) points post-exposure. The 24 h ambulatory blood pressure and serum lipid profiles were monitored. Rhythm parameters were derived via cosinor analysis to compare differences in Midline statistic of rhythm (Mesor), amplitude, and phase between the two groups. The rhythmic expression of core circadian clock genes and antioxidant genes in the myocardium was detected by quantitative polymerase chain reaction (qPCR). Myocardial reactive oxygen species (ROS) levels and downstream pathway protein expression were analyzed by immunofluorescence and Western blot (WB), respectively. The expression changes of the clock gene retinoic acid receptor-related orphan receptor α (RORα) were assessed at both the mRNA and protein levels. Finally, Spearman correlation analysis was used to explore the relationships among myocardial RORα expression, lipid profiles, and oxidative stress indicators. Results Compared to the FA group, mice in the PM group exhibited a blunted circadian rhythm in blood pressure, characterized by sustained elevation throughout the day. Chronic PM2.5 exposure showed a significant interaction with ZT on systolic blood pressure (SBP), diastolic blood pressure (DBP), and mean arterial pressure (MAP) (F-interaction=9.11, 5.70, and 6.02, respectively; P<0.05), as well as on serum triglycerides (TG), total cholesterol (T-CHO), low-density lipoprotein cholesterol (LDL-C), and high-density lipoprotein cholesterol (HDL-C) (F-interaction=16.32, 11.12, 15.39, and 28.09, respectively; P<0.05). Cosinor analysis further revealed that the Mesor values of T-CHO, TG, and LDL-C were significantly increased (P<0.05), while that of HDL-C was significantly decreased in the PM group (P<0.05). The oscillation amplitudes of SBP, DBP, and MAP showed a decreasing trend, whereas those of TG and LDL-C were significantly increased (P<0.05). Furthermore, SBP, T-CHO, and HDL-C all exhibited a significant phase delay (P<0.05). Mechanistically, PM2.5 exposure significantly suppressed the expression of the positive circadian regulator RORα in the myocardium, leading to disordered rhythmic expression of core clock genes (Bmal1, Clock, Per1/2, and Cry1/2). This exposure also inhibited the rhythmic expression of antioxidant genes (GPX1, SOD2, and CAT), resulting in increased ROS generation and elevated expression of calcium/calmodulin-dependent protein kinase II (CaMKII) and reduced nicotinamide adenine dinucleotide phosphate (NADPH) proteins. Correlation analysis further revealed that myocardial RORα expression level was negatively correlated with T-CHO, TG, and LDL-C (r=−0.55, −0.63, and −0.51, respectively; P<0.001), and positively correlated with HDL-C (r=0.37, P=0.010), and antioxidant genes GPX1, SOD2, and CAT expression (r=0.34, 0.35, and 0.56, respectively; P < 0.001). Conclusion Chronic PM2.5 exposure induces cardiometabolic dysfunction by suppressing myocardial RORα expression. This suppression disrupts the cardiac circadian clock and the diurnal balance of oxidative stress, triggering oxidative damage and elevating expression of CaMKII/NADPH pathway proteins. Collectively, these alterations precipitate the loss of cardiac metabolic rhythms and subsequent functional impairment.
2.Research progress on effect of ambient particulate matters on Alzheimer's disease and potential mechanisms
Lu YU ; Chihang ZHANG ; Jianshu GUO ; Dongxia FAN ; Jinzhuo ZHAO
Journal of Environmental and Occupational Medicine 2025;42(6):748-755
With the accelerating aging of world population, the prevalence and disease burden of dementia such as Alzheimer's disease is increasing annually. As one of the major risk factors for dementia, air pollution is still an urgent global concern. Studies on the association between ambient particulate matter (PM), one of the major air pollutants, and dementia, such as Alzheimer's disease, are gaining attention. This paper reviewed the current evidence of relevant epidemiological and toxicological studies to illustrate the possible mechanisms underlying the effects of PM exposure on Alzheimer's disease through inflammatory responses, oxidative stress, endocrine disruption, excitatory neurotoxicity, glial cell activation, and intestinal flora disruption, which may provide clues for mitigating the health risks of air pollution and preventing Alzheimer's disease.
3.Research progress in animal models of influenza virus/Streptococcus pneumoniae co-infection
Jianshu YANG ; Xuefeng WANG ; Xiuying ZHANG ; Jingwen MU ; Wentao XU
Chinese Journal of Comparative Medicine 2025;35(3):170-178
Bacterial reinfection in the lungs of patients with influenza virus(IV)is a key factor leading to serious illness and death.The adverse consequences caused by co-infection with IV and Streptococcus pneumoniae(SPN)impose a serious burden on patients.However,the specific pathogenesis is complex,how to make better use of the mouse animal model of IV/SPN co-infection for subsequent basic research is of great significance.This article reviews the selection of animals,the selection of pathogen types,the selection of different modeling times,the identification of the co-infection model,and its applications in the IV/SPN co-infection model,so as to provide a reference for the selection of animal models of IV/SPN co-infection in the future.
4.Carbamazepine-associated hemophagocytic lymphohistiocytosis
Guoxiang CHEN ; Youfan FENG ; Jianshu HAO ; Qike ZHANG ; Yanqing SUN
Adverse Drug Reactions Journal 2025;27(8):510-512
A 40-year-old male patient was treated orally with carbamazepine 0.1 g once daily for epilepsy. Twenty days later, the patient developed fever without obvious cause (highest body temperature 39.0 ℃), which showed no improvement after treatments with ribavirin and ibuprofen. Eleven days later, splenomegaly occurred, and serum ferritin was elevated (1 188.18 μg/L). Etiological testing showed positive influenza virus A/B antibody but negative nucleic acid; tests of Epstein-Barr virus, cytomegalovirus, novel coronavirus, respiratory syncytial virus, adenovirus, human rhinovirus, Mycoplasma pneumoniae, Mycobacterium tuberculosis, Leishmania donovani, Brucella, and Toxoplasma gondii all showed negative results. Blood culture and autoantibody profile were both negative. Anti-infective treatments with ceftizoxime, levofloxacin, ganciclovir, and oseltamivir were successively given. Oseltamivir was later changed to peramivir. Eight days later, the patient′s body temperature fluctuated between 38.4 ℃ and 38.6 ℃. Fibrinogen decreased to 1.49 g/L, serum ferritin increased to 1 218.91 μg/L, and soluble CD25 increased to 3 814 kU/L. Bone marrow smear showed hemophagocytosis. Secondary hemophagocytic lymphohistiocytosis was diagnosed, which was considered to be caused by carbamazepine. Carbamazepine and the aforementioned anti-infective drugs were discontinued, and intravenous infusion of dexamethasone 15 mg once daily was administered. The patient′s body temperature decreased to 37.5 ℃. Six days later, intravenous infusion of etoposide 100 mg once was added. The next day, the patient no longer had fever, and laboratory indicators showed significant improvement. The patient′s laboratory indicators returned to normal in re-examination 3 months later.
5.Research progress in animal models of influenza virus/Streptococcus pneumoniae co-infection
Jianshu YANG ; Xuefeng WANG ; Xiuying ZHANG ; Jingwen MU ; Wentao XU
Chinese Journal of Comparative Medicine 2025;35(3):170-178
Bacterial reinfection in the lungs of patients with influenza virus(IV)is a key factor leading to serious illness and death.The adverse consequences caused by co-infection with IV and Streptococcus pneumoniae(SPN)impose a serious burden on patients.However,the specific pathogenesis is complex,how to make better use of the mouse animal model of IV/SPN co-infection for subsequent basic research is of great significance.This article reviews the selection of animals,the selection of pathogen types,the selection of different modeling times,the identification of the co-infection model,and its applications in the IV/SPN co-infection model,so as to provide a reference for the selection of animal models of IV/SPN co-infection in the future.
6.Carbamazepine-associated hemophagocytic lymphohistiocytosis
Guoxiang CHEN ; Youfan FENG ; Jianshu HAO ; Qike ZHANG ; Yanqing SUN
Adverse Drug Reactions Journal 2025;27(8):510-512
A 40-year-old male patient was treated orally with carbamazepine 0.1 g once daily for epilepsy. Twenty days later, the patient developed fever without obvious cause (highest body temperature 39.0 ℃), which showed no improvement after treatments with ribavirin and ibuprofen. Eleven days later, splenomegaly occurred, and serum ferritin was elevated (1 188.18 μg/L). Etiological testing showed positive influenza virus A/B antibody but negative nucleic acid; tests of Epstein-Barr virus, cytomegalovirus, novel coronavirus, respiratory syncytial virus, adenovirus, human rhinovirus, Mycoplasma pneumoniae, Mycobacterium tuberculosis, Leishmania donovani, Brucella, and Toxoplasma gondii all showed negative results. Blood culture and autoantibody profile were both negative. Anti-infective treatments with ceftizoxime, levofloxacin, ganciclovir, and oseltamivir were successively given. Oseltamivir was later changed to peramivir. Eight days later, the patient′s body temperature fluctuated between 38.4 ℃ and 38.6 ℃. Fibrinogen decreased to 1.49 g/L, serum ferritin increased to 1 218.91 μg/L, and soluble CD25 increased to 3 814 kU/L. Bone marrow smear showed hemophagocytosis. Secondary hemophagocytic lymphohistiocytosis was diagnosed, which was considered to be caused by carbamazepine. Carbamazepine and the aforementioned anti-infective drugs were discontinued, and intravenous infusion of dexamethasone 15 mg once daily was administered. The patient′s body temperature decreased to 37.5 ℃. Six days later, intravenous infusion of etoposide 100 mg once was added. The next day, the patient no longer had fever, and laboratory indicators showed significant improvement. The patient′s laboratory indicators returned to normal in re-examination 3 months later.
7.Molecular mechanism of adipose tissue inflammation induced by acute exposure to cooking oil fumes
Ge WANG ; Biao WU ; Jianshu GUO ; Dongxia FAN ; Lu YU ; Chihang ZHANG ; Lan MI ; Lina WANG ; Jinzhuo ZHAO
Journal of Environmental and Occupational Medicine 2024;41(4):349-355
Background Cooking oil fumes are closely related to immune response, and adipose tissue also plays an important role in immune regulation. At present, the biological effect and mechanism of inflammation of adipose tissue induced by oil fume exposure are not clear yet. Objective To investigate the inflammatory effect of different exposure duration of cooking fumes on adipose tissue in mice and explore the role of Nod-like receptor pyrin domain 3 (NLRP3)/cysteinyl aspartate specific proteinase 1 (Caspase 1)/interleukin (IL)-1β signaling pathway. Methods Forty 8-week-old female C57BL/6J mice were randomly divided into 3-day control group (CON3 group), 7-day control group (CON7 group), 3-day oil fume exposure group (COF3 group), and 7-day oil fume exposure group (COF7 group), with 10 mice in each group. The mice were exposed to oil fumes in a cooking oil fume formation and exposure equipment (COFFEE) for 20 min, followed by a 10-min pause, 1 h a day for consecutive 3 d or 7 d. General condition of mice was observed and body weight was measured every day. After exposure, blood was sampled from the eyeball. Serum levels of IL-6, IL-27, and IL-1β were detected by enzyme-linked immunosorbent assay (ELISA). The adipose tissue of mice was collected and observed after hematoxylin-eosin (HE) staining. The percentages of CD4+ and CD8+T cells in adipose tissue were detected by flow cytometry. Real-time quantitative PCR (RT-qPCR) was used to detect the expression levels of nuclear factor-κB (NF-κB), NLRP3, Caspase 1, and IL-1β in adipose tissue. Western blot was used to detect the expression levels of NLRP3, Caspase 1, and IL-1β in adipose. Results Compared with the corresponding control group, serum IL-6, IL-27, and IL-1β contents in the COF3 group and the COF7 group were significantly increased (P<0.05) except IL-6 in the COF3 group, and the levels in the COF7 group were significantly higher than those in the COF3 group (P<0.05). Vacuolar lipid droplets in adipocytes decreased, cytoplasm shrank, and inflammatory cells infiltrated in the COF7 group after HE staining. The flow cytometry results showed that the proportions of CD4+ and CD8+T cells in adipocytes of the COF3 group and the COF7 group were increased compared to the corresponding control group, with a significant increase in the COF7 group (P<0.05), and the CD4+/CD8+T ratio also significantly increased progressively in the two groups (P<0.05). The results of RT-qPCR showed that compared with the corresponding control group, the mRNA expression levels of NF-κB, NLRP3, Caspase 1, and IL-1β in adipose tissue of mice in the COF3 group and the COF7 group were significantly increased (P<0.05, P<0.01). The mRNA expression levels of mice in each exposure group gradually increased over time. The Western blot results showed that compared with the corresponding control group, the protein expressions of NLRP3 and Caspase 1 in the COF3 group were significantly increased (P<0.01), and the expression of IL-1β protein also increased but without statistical significance. The protein expressions of NLRP3, Caspase 1, and IL-1β in the COF7 group were significantly higher than those in the CON7 group (P<0.05, P<0.01). Conclusion Acute exposure to cooking oil fumes can induce significant inflammatory response in adipose tissue, and the effect gradually increases with the extension of exposure time. The mechanism of action may be related to the activation of NLRP3 inflammasome signaling pathway.
8.Effects of PM2.5 and heat/cold exposure on AKT/GLUT4 pathway in mouse skeletal muscle and white adipose tissue
Biao WU ; Dongxia FAN ; Jia ZHANG ; Jianshu GUO ; Ge WANG ; Lu YU ; Chihang ZHANG ; Jinzhuo ZHAO
Journal of Environmental and Occupational Medicine 2024;41(4):356-361
Background It is unclear if there is any combined effect of air pollutants and non-optimal temperature on metabolic syndrome, or any molecular mechanisms of related signaling pathways in the process, which requires urgent systematic research. Objective To observe the effects of combined exposure to PM2.5 and non-optimal temperature on metabolic damage at gene and protein levels in mice, and elucidate the role of related signaling pathway in crucial organs. Methods A total of 60 six-week-old male C57BL/6J mice were randomly divided into six groups: a normal temperature-filter air group (TN-FA), a normal temperature-concentrated PM2.5 group (TN-PM), a heat-filter air group (TH-FA), a heat-concentrated PM2.5 group (TH-PM), a cold-filter air group (TC-FA), and a cold-concentrated PM2.5 group (TC-PM). The Shanghai Meteorological and Environmental Animal Exposure System (Shanghai-METAS) was used to provide combined exposure settings of air types [concentrated PM2.5 and filter air (FA)] and temperatures [normal (22°C), cold (4°C), and heat (30°C)] for 4 weeks. Skeletal muscle and white adipose tissue (WAT) of the mice were sampled at the end of exposure, and transcriptomics and Western blot (WB) assay were adopted to observe selected gene and protein expression levels in the samples respectively. Results The transcriptomics results indicated that the PM2.5 exposure enhanced the number of differentially expressed genes. Specifically, 4820 genes were differentially expressed in the TN-PM mice compared to the TN-FA mice at normal temperature, and 1143 genes were differentially expressed in the Tc-PM mice compared to the Tc-FA mice in the cold environment. The phosphatidylinositol 3-kinase/protein kinase B (PI3K/AKT) signaling pathway and the endoplasmic reticulum protein processing pathway were identified as the most significant pathways in metabolic injury resulting from combined exposure to PM2.5 and non-optimal temperature exposure. The WB results showed that exposure to PM2.5 in the normal temperature and the cold environments led to a significant increase in the expression of p-AKT in WAT (P<0.01, P<0.05) and a significant decrease in the expression of GLUT4 (P<0.05, P<0.01). In skeletal muscle, exposure to PM2.5 led to a significant decrease in GLUT4 (P<0.05) in all environments, with a consistent trend of change as observed in WAT. Conclusion Cold/heat exposure might promote PM2.5-induced metabolic disorder through suppression of the AKT/GLUT4 pathway, aggravating metabolic damage.
9.Research progress in oral frailty and cognitive function impairment in elderly people
Wei JIANG ; Jianshu ZHANG ; Qing MA ; Xia LI
Chongqing Medicine 2024;53(20):3168-3172
Oral frailty and cognitive impairment are the common geriatric syndromes.There may be similar correlation mechanism between them,which are related with polypharmacy,malnutrition,inflammato-ry responses and psychosocial factors.The occurrence of oral frailty could potentially increase the risk of cog-nitive impairments,in which tooth loss,reduced chewing function,swallowing difficulties,low tongue pres-sure,and diminished oral motor function are closely correlated with cognitive impairments.Understanding the correlation between the two is conducive to prevent and interfere the healthy status in elderly people,thus in-crease their quality of life and health level.
10.Allergens can induce up-regulation of TLR7 expression in blood neutrophils of patients with airway allergic diseases
Jianshu WANG ; Junling WANG ; Huiyun ZHANG ; Shaoheng HE
Chinese Journal of Immunology 2024;40(9):1919-1924
Objective:To detect the expression of Toll-like receptor 7(TLR7)in blood neutrophils of patients with allergic rhi-nitis(AR),allergic asthma(AA)and allergic rhinitis combined with allergic asthma(ARA)before and after allergen challenge.Methods:A total of 44 AR,36 AA,19 ARA patients and 19 healthy control(HC)were recruited,the extracts of Artemisia siever-siana wild allergen(ASWE),house dust mite allergen(HDME)and Platanus pollen allergen(PPAE)were used to challenge periph-eral blood of HC as well as the patients,the expression of TLR7 in neutrophils was detected by flow cytometry.Results:In a resting state,compared with HC,upregulated expression of TLR7 in neutrophils in patients with airway allergy:the percentage of TLR7+neu-trophils in AR,AA,ARA patients increased 6 times,3.18 times and 6.15 times,respectively,and the mean fluorescence intensity(MFI)of TLR7 expression in neutrophil in ARA was enhanced by 24%.The results of allergen challenge tests showed that the expres-sion of neutrophils TLR7 did not change in HC subjects after the allergen challenge,whereas the expression of TLR7 in neutrophils of patients with airway allergy was upregulated after the allergens challenge.After HDME and PPAE challenge,the percentage of TLR7+neutrophils in peripheral of AR patients increased by 8.40%and 33.03%,respectively,and the MFI of TLR7 enhanced by 29.62%and 35.72%,respectively.After ASWE and PPAE challenge.The percentage of TLR7+neutrophils in peripheral of AA pa-tients increased by 59.18%and 1.06 times,respectively,and the MFI of TLR7 enhanced by 68.93%and 47.33%,respectively.How-ever,after HDME stimulation only enhanced the MFI of neutrophil TLR7 in AA patients by 66.14%;after HDME challenge,the per-centage of TLR7 and MFI in peripheral blood neutrophils of patients with ARA increased by 21.05%and 35.61%,respectively,while after PPAE challenge,the percentage of TLR7+cells in patients with ARA increased by 20.07%.Conclusion:The expression of TLR7 in blood neutrophils is increased in patients with allergic airway diseases after allergen stimulation,suggesting that allergens may be involved in the occurrence and development of allergic airway diseases by inducing TLR7 expression changes in neutrophils.

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