1.Epidemic characteristics and disease burden of brucellosis in Tongliao City in 2018 - 2023
Shanhong LIU ; Tu BA ; Li MA ; Na GUAN ; Lin XI ; Na TA
Journal of Public Health and Preventive Medicine 2026;37(2):74-78
Objective To comprehensively analyze the current epidemic characteristics and disease burden of brucellosis in Tongliao City, and to provide a basis for the prevention and control strategy of brucellosis in Tongliao City. Methods The report data of brucellosis in Tongliao City from 2018 to 2023 were collected. Descriptive methods were used for data analysis, and the disability-adjusted life years and indirect economic losses were calculated. Results From 2018 to 2023, a total of 22 034 cases were reported in Tongliao City, with an average annual incidence of 136.17/100 000. The incidence was statistically different between men and women ( χ2=12.23, P=0.032). The majority of cases were farmers (94.25%), followed by herdsmen (1.67%). The age group was concentrated between 30-60 years old (79.30%), among which the majority of cases were in the 40-50 years group (6 883/22 034). The onset time had seasonal characteristics, and the peak period was from March to August (the seasonal index was between 115.40%-151.29%). In terms of regional distribution, cases were reported in all counties (banners). The average annual incidence was highest in Kulun Banner (233.85/100 000) and Zalut Banner (210.13/100 000), and lowest in Keerqin District (42.28/100 000) and Holingol City (31.87/100 000). The analysis of disease burden showed that a total of 677.55 person-years (YLD) were lost from 2018 to 2023, with an average annual loss of 112.92 person-years. The total indirect economic loss was 59.3576 million yuan, with an average annual loss of 9.892 9 million yuan, and the people over 60 years old had the lowest annual loss. Conclusion The overall brucellosis epidemic in Tongliao City has shown a fluctuating downward trend. The epidemic prevention and control should be strengthened in farmers, people aged 40-50 years old, and areas such as Zalut Banner and Kulun Banner to further control the epidemic of brucellosis.
2.Fluorescence Suppression Method of Raman Spectroscopy and Its Application in Skin and Cosmetics Analysis
Yun-Xia CHEN ; Jia-Rong WANG ; Jian-Yu ZHU ; Shi-Wen LIN ; Ya-Nan LIU ; Xiao-Yue MA ; Guang-Cheng XI ; Juan LIU
Progress in Biochemistry and Biophysics 2026;53(7):1914-1926
Owing to its inherent advantages—such as being non-destructive, rapid, highly molecule-specific, and minimally interfered with by moisture—Raman spectroscopy has been widely adopted in the fields of skin barrier function assessment, monitoring the transdermal penetration of active cosmetic ingredients, and the identification and quality control of cosmetic products. Despite these strengths, the practical application of this technique faces a significant bottleneck: the strong fluorescence background generated by endogenous skin components and exogenous cosmetic additives. Endogenous skin substances, such as structural proteins (e.g., collagen and elastin), metabolic coenzymes (e.g., nicotinamide adenine dinucleotide), and pigments (e.g., melanin), together with exogenous cosmetic constituents like organic colorants, chemical sunscreens, and fragrances, often possess strong absorption and emission characteristics. When excited by lasers, these components produce a fluorescence background that can be 106 to 108 times stronger than the Raman scattering signals, effectively masking the inherently weak vibrational fingerprint information. In recent years, driven by the rapid development of optoelectronic hardware and artificial intelligence algorithms, fluorescence suppression strategies have evolved from isolated, single-method approaches into comprehensive, multi-level synergistic systems. These systems are categorized into three distinct tiers: sample preparation, signal acquisition, and data processing. At the sample preparation level, techniques such as photobleaching and surface-enhanced Raman spectroscopy (SERS) are employed to eliminate or bypass the generation of fluorescence at the source. At the signal acquisition level, instrumental improvements—including the use of long-wavelength near-infrared excitation (typically 785 nm or 1 064 nm), confocal spatial filtering, and shifted excitation Raman difference spectroscopy (SERDS)— are utilized to physically isolate Raman signals from the fluorescence background. Furthermore, at the data processing level, numerical baseline correction methods such as polynomial fitting, penalized least squares (e.g., airPLS, arPLS), wavelet transform, and derivative algorithms are increasingly integrated into the analytical pipeline to extract Raman spectral features from mixed signals without increasing hardware costs or acquisition time. This review provides a systematic categorization and critical evaluation of these fluorescence suppression methods, detailing their underlying principles, technical advantages, and inherent limitations in diverse experimental setups. By focusing on critical application scenarios—including skin barrier assessment, percutaneous absorption monitoring, the routine quality control of cosmetics, and the emerging field of portable on-site detection—this paper explores the current state of technique selection and optimization. Finally, the article discusses future development trends, emphasizing the necessity of constructing adaptive, tiered suppression strategies, developing intelligent and automated data processing algorithms, and promoting the integration of portable, multi-modal diagnostic devices. The objective of this review is to provide a comprehensive technical reference to facilitate the transition of Raman spectroscopy from a specialized laboratory tool into a routine, robust analytical platform for advancements in skin science and cosmetic research.
3.Study on the gene mutation of ARVC desmosomal protein in the population of Yunnan sudden unexplained death
Biao PAN ; Huizuo ZHAO ; Lin MA ; Yanmei XI ; Xue TANG ; Meifen SHEN ; Mengyao SUN ; Yongpeng YANG ; Yuebing WANG
Chinese Journal of Endemiology 2025;44(6):445-450
Objective:To study the etiological relationship between Yunnan sudden unexplained death (hereinafter referred to as YNSUD) and the desmosomal protein gene mutation of arrhythmogenic right ventricular cardiomyopathy (ARVC).Methods:From September 2019 to August 2020, a cross-sectional survey method was used to select 9 key counties (cities) of YNSUD in Yunnan Province as survey sites. Autopsy cardiac blood samples of YNSUD cases ( n = 11) were collected, and peripheral venous blood samples of co-occurring case ( n = 1), case relatives ( n = 128), and control population ( n = 60) were collected. Genomic DNA from blood was extracted. After PCR amplification, 97 exons of 5 ARVC desmosomal protein genes, including plakophilin-2 (PKP2), desmoglein-2 (DSG2), desmocollin-2 (DSC2), desmoplakin (DSP), and junction plakoglobin (JUP) were sequenced by Sanger method, and the gene mutation was analyzed. Results:Compared with the control population, YNSUD cases, co-occurring case and case relatives carried 52 gene mutation sites in 36 exons of the ARVC desmosomal protein gene, with a total mutation rate of 37.11% (36/97). Among them, there were 21 in DSP gene, 10 in DSG2 gene, 8 in PKP2 gene, 8 in DSC2 gene, and 5 in JUP gene. YNSUD cases, co-occurring case and case relatives carried two same gene mutation sites: DSG2 gene exon 15 c.3321 T>C synonymous mutation and JUP gene exon 3 c.213 T>C synonymous mutation.Conclusions:The mutation rate of ARVC desmosomal protein gene is relatively high in the population of YNSUD. The two same gene mutation sites (DSG2 gene c.3321 T>C and JUP gene c.213 T>C) carried by YNSUD cases, co-occurring case and case relatives may be associated with the pathogenesis of YNSUD.
4.Engineered MSCs-EV for repairing cartilage damage with a focus on delivery of curcumin
Xiao-ming DU ; Yu-lin MA ; Xue-qing DUAN ; Zhao-xi YANG ; Xian-zhe ZHANG ; Jin-ming ZHANG ; Yi-mei HU
Chinese Pharmacological Bulletin 2025;41(7):1222-1226
Mesenchymal stem cells(MSCs)play a crucial role in tissue repair and regeneration,and the extracellular vesicle(EV)released by them holds great promise for applications in clinical biomarkers,vaccines,and drug delivery.However,MSCs-derived EV(MSCs-EV)face challenges such as low pro-duction yield,poor retention,and targeted delivery issues.There-fore,engineering MSCs-EV to enhance their performance and en-able visual research has become a hot topic.Curcumin(CUR),an active component in traditional chinese medicine,exhibits pharmacological effects but has limited bioavailability.Using MSCs-EV as a carrier for CUR delivery can address its solubility and bioavailability challenges.This article reviews the drug loading methods,engineering strategies of MSCs-EV,and their important applications in the delivery and treatment of CUR for cartilage injury diseases.It provides a basis for the clinical ap-plication of engineered MSCs-EV in CUR delivery for cartilage repair,offering potential solutions to the challenges in cartilage tissue repair.
5.Effects of amanita caojizong on apoptosis of mouse myocardial cells and expression of related factors Bcl-2 and Bax
Baining QIU ; Yuebing WANG ; Sijie WEI ; Wu LONG ; Rui WANG ; Lin MA ; Yanmei XI ; Xue TANG ; Puping LEI
Chinese Journal of Forensic Medicine 2025;40(2):168-171,180
Objective To investigate the effects of Amanita caojizong on cardiomyocyte apoptosis and the expression of apoptosis-related factors Bcl-2 and Bax,thereby providing experimental evidence for the prevention and treatment of Amanita caojizong poisoning.Methods Mouse cardiomyocytes(HL-1 cells)cultured in vitro were divided into an experimental group(treated with Amanita caojizong extract)and a control group(treated with PBS).After treatment with Amanita caojizong extract,apoptosis of HL-1 cells was observed using TUNEL staining,and the protein expression levels of Bax,Bcl-2,Caspase-3,and Cleaved Caspase-3 in HL-1 cardiomyocytes were detected by Western blot.Results Compared with the control group,the TUNEL staining showed significantly increased apoptotic fluorescence intensity in the Amanita caojizong extract-treated group.The protein expressions of Bax,Caspase-3,and Cleaved Caspase-3 in HL-1 cells in the Amanita caojizong-treated group were upregulated,while the expression of Bcl-2 was downregulated.Conclusion Amanita caojizong can promote apoptosis of mouse cardiomyocytes,and its mechanism may be associated with the Bcl-2/Bax pathway.
6.Engineered MSCs-EV for repairing cartilage damage with a focus on delivery of curcumin
Xiao-ming DU ; Yu-lin MA ; Xue-qing DUAN ; Zhao-xi YANG ; Xian-zhe ZHANG ; Jin-ming ZHANG ; Yi-mei HU
Chinese Pharmacological Bulletin 2025;41(7):1222-1226
Mesenchymal stem cells(MSCs)play a crucial role in tissue repair and regeneration,and the extracellular vesicle(EV)released by them holds great promise for applications in clinical biomarkers,vaccines,and drug delivery.However,MSCs-derived EV(MSCs-EV)face challenges such as low pro-duction yield,poor retention,and targeted delivery issues.There-fore,engineering MSCs-EV to enhance their performance and en-able visual research has become a hot topic.Curcumin(CUR),an active component in traditional chinese medicine,exhibits pharmacological effects but has limited bioavailability.Using MSCs-EV as a carrier for CUR delivery can address its solubility and bioavailability challenges.This article reviews the drug loading methods,engineering strategies of MSCs-EV,and their important applications in the delivery and treatment of CUR for cartilage injury diseases.It provides a basis for the clinical ap-plication of engineered MSCs-EV in CUR delivery for cartilage repair,offering potential solutions to the challenges in cartilage tissue repair.
7.Analysis of Coxsackievirus B group infection in Yunnan unexplained sudden death endemic areas
Xue TANG ; Yanmei XI ; Lin MA ; Mengyao SUN ; Yongpeng YANG ; Yi DONG ; Mingfang QIN ; Yuebing WANG
Chinese Journal of Endemiology 2025;44(6):496-500
Objective:To analyze the infection status of Coxsackievirus B group (CVB) in regions affected by sudden unexplained death in Yunnan (referred to as sudden death in Yunnan), and to provide a scientific basis for formulating effective prevention and control strategies.Methods:A cross-sectional survey method was employed. The population from 16 counties (cities, districts, referred to as counties) affected by sudden death in Yunnan Province from 2002 to 2022 and the population from one non-affected county in 2021 and 2022 (control population) were classified into cases of sudden death in Yunnan (7 cases), co-occurring cases (29 cases), high-risk population (1 303 cases), and control population (270 cases). Blood samples were collected from these populations. By using enzyme-linked immunosorbent assay (ELISA), CVB immunoglobulin M (CVB-IgM) antibodies in the acute-phase serum samples of the population in the affected areas were detected, and CVB immunoglobulin G (CVB-IgG) antibodies in the convalescent-phase serum samples were detected. Both types of detections were carried out on the control population, and the test results were analyzed.Results:A total of 1 609 serum samples were tested, including 1 339 samples from the population in the affected areas (923 acute-phase samples and 416 convalescent-phase samples) and 270 samples from the control population. Among the 16 affected counties, positive CVB-IgM antibody results were detected in 9 counties. The overall positive rate of the population in the affected areas was higher than that of the control population [7.80% (72/923) vs. 4.44% (12/270), χ 2 = 40.78, P < 0.001]. The positive rates of the high-risk population in Dayao County and Lufeng City were both higher than that of the control population [(22.22% (22/99), 10.92% (25/229) vs. 4.44% (12/270), χ 2 = 27.37, 7.56, P < 0.05]. Positive CVB-IgG antibody results were detected in 7 counties. The overall positive rate of the population in the affected areas was higher than that of the control population [(4.09% (17/416) vs. 0.74% (2/270), χ 2 = 6.81, P = 0.009]. The positive rates of CVB-IgM and CVB-IgG antibodies in the population of the affected areas in Dayao County [22.22% (22/99), 9.80% (5/51)] were both higher than those of the control population ( P < 0.05). Among the five affected villages in Dayao County, the positive rates of CVB-IgM and CVB-IgG antibodies in the population of Aji Ju Village were the highest [25.49% (13/51), 3/13]. Conclusions:The positive rates of both CVB-IgM and CVB-IgG antibodies in the population of the areas affected by sudden death in Yunnan were higher than those of the control population, indicating that CVB infection occurred during the sudden death events in the above-mentioned affected areas.
8.Analysis of Coxsackievirus B group infection in Yunnan unexplained sudden death endemic areas
Xue TANG ; Yanmei XI ; Lin MA ; Mengyao SUN ; Yongpeng YANG ; Yi DONG ; Mingfang QIN ; Yuebing WANG
Chinese Journal of Endemiology 2025;44(6):496-500
Objective:To analyze the infection status of Coxsackievirus B group (CVB) in regions affected by sudden unexplained death in Yunnan (referred to as sudden death in Yunnan), and to provide a scientific basis for formulating effective prevention and control strategies.Methods:A cross-sectional survey method was employed. The population from 16 counties (cities, districts, referred to as counties) affected by sudden death in Yunnan Province from 2002 to 2022 and the population from one non-affected county in 2021 and 2022 (control population) were classified into cases of sudden death in Yunnan (7 cases), co-occurring cases (29 cases), high-risk population (1 303 cases), and control population (270 cases). Blood samples were collected from these populations. By using enzyme-linked immunosorbent assay (ELISA), CVB immunoglobulin M (CVB-IgM) antibodies in the acute-phase serum samples of the population in the affected areas were detected, and CVB immunoglobulin G (CVB-IgG) antibodies in the convalescent-phase serum samples were detected. Both types of detections were carried out on the control population, and the test results were analyzed.Results:A total of 1 609 serum samples were tested, including 1 339 samples from the population in the affected areas (923 acute-phase samples and 416 convalescent-phase samples) and 270 samples from the control population. Among the 16 affected counties, positive CVB-IgM antibody results were detected in 9 counties. The overall positive rate of the population in the affected areas was higher than that of the control population [7.80% (72/923) vs. 4.44% (12/270), χ 2 = 40.78, P < 0.001]. The positive rates of the high-risk population in Dayao County and Lufeng City were both higher than that of the control population [(22.22% (22/99), 10.92% (25/229) vs. 4.44% (12/270), χ 2 = 27.37, 7.56, P < 0.05]. Positive CVB-IgG antibody results were detected in 7 counties. The overall positive rate of the population in the affected areas was higher than that of the control population [(4.09% (17/416) vs. 0.74% (2/270), χ 2 = 6.81, P = 0.009]. The positive rates of CVB-IgM and CVB-IgG antibodies in the population of the affected areas in Dayao County [22.22% (22/99), 9.80% (5/51)] were both higher than those of the control population ( P < 0.05). Among the five affected villages in Dayao County, the positive rates of CVB-IgM and CVB-IgG antibodies in the population of Aji Ju Village were the highest [25.49% (13/51), 3/13]. Conclusions:The positive rates of both CVB-IgM and CVB-IgG antibodies in the population of the areas affected by sudden death in Yunnan were higher than those of the control population, indicating that CVB infection occurred during the sudden death events in the above-mentioned affected areas.
9.Effects of amanita caojizong on apoptosis of mouse myocardial cells and expression of related factors Bcl-2 and Bax
Baining QIU ; Yuebing WANG ; Sijie WEI ; Wu LONG ; Rui WANG ; Lin MA ; Yanmei XI ; Xue TANG ; Puping LEI
Chinese Journal of Forensic Medicine 2025;40(2):168-171,180
Objective To investigate the effects of Amanita caojizong on cardiomyocyte apoptosis and the expression of apoptosis-related factors Bcl-2 and Bax,thereby providing experimental evidence for the prevention and treatment of Amanita caojizong poisoning.Methods Mouse cardiomyocytes(HL-1 cells)cultured in vitro were divided into an experimental group(treated with Amanita caojizong extract)and a control group(treated with PBS).After treatment with Amanita caojizong extract,apoptosis of HL-1 cells was observed using TUNEL staining,and the protein expression levels of Bax,Bcl-2,Caspase-3,and Cleaved Caspase-3 in HL-1 cardiomyocytes were detected by Western blot.Results Compared with the control group,the TUNEL staining showed significantly increased apoptotic fluorescence intensity in the Amanita caojizong extract-treated group.The protein expressions of Bax,Caspase-3,and Cleaved Caspase-3 in HL-1 cells in the Amanita caojizong-treated group were upregulated,while the expression of Bcl-2 was downregulated.Conclusion Amanita caojizong can promote apoptosis of mouse cardiomyocytes,and its mechanism may be associated with the Bcl-2/Bax pathway.
10.Low-titer group O whole blood: challenges to blood stations
Hong LIN ; Xi YU ; Wenjia HU ; Ling MA
Chinese Journal of Blood Transfusion 2025;38(2):297-302
Whole blood transfusion for the resuscitation of trauma patients is not a new concept, with its history dating back to World War I. Due to the significant survival benefits of early intervention with whole blood, an increasing number of countries and regions are using whole blood for pre-hospital resuscitation of patients with traumatic haemorrhage. Whole blood containing low-titer anti-A and anti-B antibodies is known as low-titer group O whole blood. The safety of transfusion of low-titer group O whole blood has been proven in military and local trauma centers in some countries. The use of low-titer group O whole blood for pre-hospital trauma care in China will pose new challenges to blood stations that provide whole blood. This paper reviews the selection of group O donors, the setting of anti-A and anti-B titers threshold and their detection, as well as the collection, preparation and storage of whole blood.


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