1.HER2 in Metastatic Colorectal Cancer: Diagnostic and Therapeutic Opportunities and Challenges
Zhao-Tao PAN ; Feng-Yu GAI ; Chen CHEN ; Tong LI ; Yan-Ping QING
Progress in Biochemistry and Biophysics 2026;53(4):936-950
Colorectal cancer (CRC) is the third most commonly diagnosed malignancy and the second leading cause of cancer-related mortality worldwide. Despite therapeutic advancements over recent decades, the prognosis for patients with metastatic CRC (mCRC) remains poor. Approximately 2%-4% of mCRC cases exhibit human epidermal growth factor receptor 2 (HER2) amplification or overexpression, defining a distinct molecular subtype. This HER2-positive status is strongly associated with primary resistance to anti-epidermal growth factor receptor (EGFR) therapies, which are the standard of care for patients with RAS wild-type tumors. Beyond its well-established role in breast and gastric cancers, HER2 has emerged as a pivotal biomarker and actionable therapeutic target in mCRC. However, selecting appropriate treatment strategies remains challenging due to patient heterogeneity and diverse molecular subtypes. This review systematically summarizes the molecular biology, diagnostic strategies, and advances in targeted therapies for HER2-positive mCRC. On the diagnostic front, we discuss the applications of immunohistochemistry (IHC), fluorescence in situ hybridization (FISH), next-generation sequencing (NGS), and circulating tumor DNA (ctDNA) detection technologies. We highlight discrepancies in diagnostic criteria across key clinical trials—such as HERACLES, DESTINY, and MOUNTAINEER—underscoring the urgent need for standardized, CRC-specific definitions to ensure consistent patient selection and comparability of efficacy data across studies. Although NGS enables comprehensive genomic profiling, its cost-effectiveness relative to traditional methods must be carefully considered. Therapeutically, we summarize clinical trial data for HER2-directed agents, including tyrosine kinase inhibitors (TKIs) such as tucatinib and lapatinib, monoclonal antibodies like trastuzumab, bispecific antibodies, and antibody-drug conjugates (ADCs) such as trastuzumab deruxtecan. We review dual-targeting strategies and note recent FDA approvals that represent significant milestones in second-line treatment. Additionally, we explore the potential of combining immune checkpoint inhibitors with HER2-targeted therapies to enhance antitumor immunity through mechanisms including antibody-dependent cellular cytotoxicity (ADCC) and modulation of the tumor microenvironment. ADCs enable precise delivery of cytotoxic payloads, reducing off-target toxicity while effectively inhibiting oncogenic pathways. A substantial portion of this review is dedicated to dissecting the molecular mechanisms underlying primary and acquired resistance to HER2-targeted therapies—persistent challenges that limit clinical benefit. These mechanisms include reactivation of downstream signaling pathways such as PI3K/AKT/mTOR and MAPK, concurrent mutations in genes like KRAS or BRAF, and alterations in HER2 expression that compromise treatment efficacy. For instance, specific HER2 mutations (e.g., L755S) can reduce drug binding affinity, while ctDNA monitoring facilitates early detection of emerging resistance clones during disease progression, thereby enabling timely therapeutic adjustments. Tumor heterogeneity and dynamic interactions with the microenvironment further complicate resistance patterns observed in clinical practice. HER2-targeted therapy represents a new frontier in precision oncology for mCRC, offering renewed hope for improving patient outcomes. Realizing this potential will require continued optimization of diagnostic algorithms and treatment workflows. Future efforts must focus on overcoming resistance, validating liquid biopsy approaches for dynamic monitoring, and establishing unified clinical guidelines. HER2 has become an essential biomarker for stratifying mCRC patients beyond traditional RAS and BRAF status, underscoring the shift from empiric treatment to biomarker-driven precision medicine. International, multidisciplinary collaboration will be critical to validate emerging biomarkers and refine treatment algorithms globally.
2.Label-free Fluorescence Probe Based on Primer Exchange Reaction for High Sensitivity Detection of Apurinic/Apyrimidinic Endonuclease 1
Yun-Hua WANG ; Le-Ru WANG ; Li-Gai YANG ; Jia-Zheng CHEN ; Yu-Run DU ; Jia-Hui HOU ; Xiang ZHAI ; Xu-Hua ZHAO ; Bao-Feng YU
Chinese Journal of Analytical Chemistry 2025;53(3):464-471
Apurinic/apyrimidinic endonuclease 1(APE 1)is a multifunctional protein that plays important roles in DNA repair and regulation of gene expression.Because APE 1 is overexpressed in various cancers,it can serve as a cancer biomarker for aiding clinical diagnosis,guiding therapy,and monitoring prognosis.On this basis,a label-free fluorescent probe was designed based on the primer exchange reaction(PER)strategy for highly sensitive detection of APE 1 activity.In the absence of APE 1,the structure of catalytic hairpin(HP)was stable and could not form G-quadruplex.Therefore,the background fluorescence of this sensing system was very low due to the dissociation of thioflavin T(ThT).In the presence of APE 1,the apurinic/apyrimidinic(AP)site of HP was cleaved by APE 1 and a short nucleic acid fragment that acted as a primer to initiate PER was generated.After PER reaction,a large number of G-quadruplex were produced,which could specifically bind with ThT and resulted in significant increase of fluorescence signal.The combination of low background design of HP and PER amplification made this biosensor had high sensitivity with a detection limit(3σ)of 0.0008 U/mL.Furthermore,the primer sequence was directly generated by the cleavage of APE 1 without additional addition,which not only increased the specificity of the reaction,but also simplified the experiment procedure.Moreover,the use of label-free fluorescence signal reduced the cost of the experiment,and realized rapid detection of APE 1.Finally,this sensor was used to detect APE 1 in human serum samples with spiked recoveries of 91%-104%,proving great potential in study of biological enzyme.
3.Effects of exercise load on cardiac function in different bodily positions evaluated with three-dimensional speckle tracking technology
Chongfa ZHONG ; Feng ZANG ; Xiaowen ZUO ; Yue WANG ; Yuqing GAI ; Zemin HUANG ; Bin WU ; Guangdan YU ; Chong XU
Chinese Journal of Aerospace Medicine 2025;36(1):12-17
Objective:To investigate the effects of 10° head up tilt bed rest (HUT) on human cardiac function via 3D speckle tracking echocardiography (3D-STE), and to study the difference in cardiac function under the submaximal exercise load between the horizontal position and 10° HUBR.Methods:Thirty young healthy volunteers were recruited as the subjects, who were randomly divided into an 10° HUT exercise group and horizontal exercise group with 15 subjects in each. Subjects in both groups were asked to ride the bicycle ergometer in the 10° HUBR position and supine position respectively. The load started with 50 W and was increased by 25 W every 3 min until it reached the maximum of 125 W. Before the exercise (resting state), 1 min after the load was increased each time, and 3 min after exercise (recovery period), the following indices were collected: ①basic cardiac function indices: heart rate (HR), systolic blood pressure (SBP) and diastolic blood pressure (DBP), ②conventional cardiac ultrasound indices: left ventricular ejection fraction (LVEF), stroke volume (SV) and cardiac output (CO), ③left ventricular strain indices: global longitudinal strain (GLS), global circumferential strain (GCS), and global area strain (GAS) measured by 3D-SET. The changes of these indices in the 2 groups of subjects under different exercise loads were observed.Results:The differences in the major effect of the basic heart indices (HR, SBP and DBP), conventional cardiac ultrasound indices (LVEF, SV and CO) and left ventricular strain indices (GLS, GCS and GAS) in response to the exercise load were statistically significant ( F=194.90, 113.66, 17.19, P=0.017, 0.018, 0.001). With the increase of the exercise load, the basic heart indices and conventional cardiac ultrasound indices kept rising, the left ventricular strain indices reached the minimum under a moderate exercise load (75 W), HR, SBP and CO were higher than those of the resting state ( P<0.05 or 0.01). Both LVEF under exercise loads of 75, 100, 125 W and during recovery, and SV under exercise loads of 100, 125 W and during recovery were significantly higher than those of the resting state ( P<0.05 or 0.01), while GLS and GCS under exercise loads of 50, 75, 125 W ( P<0.05 or 0.01), and GAS under exercise loads of 50, 75 W ( P<0.01) were significantly lower. There were statistically significant differences not only in GCS across the groups ( F=4.60, P=0.026) but also in DBP due to the interactions between the grouping and exercise loads ( F=3.13, P=0.031). DBP was higher than that of the resting state when the exercise load was 125 W in both groups. Conclusions:During submaximal exercise, myocardial contractility shows sustained enhancement with the increase of the exercise load. The results of GLS, GCS and GAS indicate that myocardial strain reaches its lowest value under a moderate exercise load, suggesting that moderate exercise can be used to evaluate cardiac function via 3D-SET. Under a simulated lunar gravity of 10° HUT, there is less deformation in the short axis direction of the myocardium, indicating that GCS can be used as a sensitive indicator to detect changes in cardiac function under different gravities.
4.Effects of exercise load on cardiac function in different bodily positions evaluated with three-dimensional speckle tracking technology
Chongfa ZHONG ; Feng ZANG ; Xiaowen ZUO ; Yue WANG ; Yuqing GAI ; Zemin HUANG ; Bin WU ; Guangdan YU ; Chong XU
Chinese Journal of Aerospace Medicine 2025;36(1):12-17
Objective:To investigate the effects of 10° head up tilt bed rest (HUT) on human cardiac function via 3D speckle tracking echocardiography (3D-STE), and to study the difference in cardiac function under the submaximal exercise load between the horizontal position and 10° HUBR.Methods:Thirty young healthy volunteers were recruited as the subjects, who were randomly divided into an 10° HUT exercise group and horizontal exercise group with 15 subjects in each. Subjects in both groups were asked to ride the bicycle ergometer in the 10° HUBR position and supine position respectively. The load started with 50 W and was increased by 25 W every 3 min until it reached the maximum of 125 W. Before the exercise (resting state), 1 min after the load was increased each time, and 3 min after exercise (recovery period), the following indices were collected: ①basic cardiac function indices: heart rate (HR), systolic blood pressure (SBP) and diastolic blood pressure (DBP), ②conventional cardiac ultrasound indices: left ventricular ejection fraction (LVEF), stroke volume (SV) and cardiac output (CO), ③left ventricular strain indices: global longitudinal strain (GLS), global circumferential strain (GCS), and global area strain (GAS) measured by 3D-SET. The changes of these indices in the 2 groups of subjects under different exercise loads were observed.Results:The differences in the major effect of the basic heart indices (HR, SBP and DBP), conventional cardiac ultrasound indices (LVEF, SV and CO) and left ventricular strain indices (GLS, GCS and GAS) in response to the exercise load were statistically significant ( F=194.90, 113.66, 17.19, P=0.017, 0.018, 0.001). With the increase of the exercise load, the basic heart indices and conventional cardiac ultrasound indices kept rising, the left ventricular strain indices reached the minimum under a moderate exercise load (75 W), HR, SBP and CO were higher than those of the resting state ( P<0.05 or 0.01). Both LVEF under exercise loads of 75, 100, 125 W and during recovery, and SV under exercise loads of 100, 125 W and during recovery were significantly higher than those of the resting state ( P<0.05 or 0.01), while GLS and GCS under exercise loads of 50, 75, 125 W ( P<0.05 or 0.01), and GAS under exercise loads of 50, 75 W ( P<0.01) were significantly lower. There were statistically significant differences not only in GCS across the groups ( F=4.60, P=0.026) but also in DBP due to the interactions between the grouping and exercise loads ( F=3.13, P=0.031). DBP was higher than that of the resting state when the exercise load was 125 W in both groups. Conclusions:During submaximal exercise, myocardial contractility shows sustained enhancement with the increase of the exercise load. The results of GLS, GCS and GAS indicate that myocardial strain reaches its lowest value under a moderate exercise load, suggesting that moderate exercise can be used to evaluate cardiac function via 3D-SET. Under a simulated lunar gravity of 10° HUT, there is less deformation in the short axis direction of the myocardium, indicating that GCS can be used as a sensitive indicator to detect changes in cardiac function under different gravities.
5.Effect of Fufang Huangbai Fluid Paint on Virulence and Biofilm of Methicillin-resistant Staphylococcus aureus
Jin-ze LI ; Kai-yu CUI ; Dong-ying LI ; Shu-hua MA ; Gai-ying HE ; Ya-nan SUN ; Yi WANG ; Zhong-mei HE ; Wei-feng YANG
Chinese Journal of Experimental Traditional Medical Formulae 2022;28(8):54-62
ObjectiveTo study the virulence and biofilm inhibition effect of Fufang Huangbai Fluid Paint (FFHBFP) on methicillin-resistant Staphylococcus aureus (MRSA), and to explore the antibacterial effect of FFHBFP on MRSA, which provides a theoretical basis and reference for clinical medication. MethodFirstly, the microdilution method and time–growth curve were used to determine the minimum inhibitory concentration (MIC) of FFHBFP and vancomycin (VAN) against MRSA and the effect on bacterial growth. The effects of FFHBFP and VAN on the inhibition of MRSA virulence factor lipase and restoration of hydrogen peroxide (H2O2) sensitivity were detected under sub-minimum inhibitory concentration (sub-MIC). The inhibitory effect of FFHBFP and VAN on MRSA biofilm formation and maturation was detected by the microplate method. The morphological changes of mature biofilms before and after administration were observed under a scanning electron microscope (SEM). Real-time polymerase chain reaction (Real-time PCR) was utilized to detect the effect of 50.600 g·L-1 concentration of FFHBFP on the expression of MRSA virulence gene crtM and biofilm-forming genes fnbA and icaA. Finally, molecular docking technology was used to predict the mechanism of potential antibacterial active ingredients of FFHBFP in inhibiting the virulence and biofilm of MRSA. ResultThe MIC of VAN was 2 mg·L-1, and VAN below 1 mg·L-1 exerted no effect on MRSA growth. The MIC of FFHBFP was not determined, while the 101.200-202.400 g·L-1 original solution inhibited MRSA growth. Compared with the blank group and the VAN group, sub-MIC (25.300-50.600 g·L-1 original solution) inhibited lipase and recovered MRSA sensitivity to H2O2 (P<0.01). The results of the microplate method showed that FFHBFP (25.300-202.400 g·L-1 original solution) inhibited biofilm formation and maturation (P<0.05, P<0.01). The SEM exhibited that FFHBFP made the structure of biofilm loose and the size of the bacteria varied. FFHBFP at 50.600 g·L-1 concentration can inhibit the expression of related virulence genes and biofilm-forming genes (P<0.05, P<0.01), and molecular docking results also showed that the main antibacterial active ingredients in FFHBFP have good binding ability to the target. ConclusionFFHBFP that cannot directly kill MRSA exerts clinical efficacy by impairing virulence expression, biofilm formation, and other pathogenic properties.
6. Research progress on therapeutic strategies for improving pulmonary vascular remodeling in pulmonary hypertension
Xiang-Yun GAI ; En-Qi ZHAO ; Yan-Feng HE ; Yue-Fu ZHAO ; Jin-Yu WANG ; Feng-Run LI ; Xiang-Yun GAI ; En-Qi ZHAO ; Yan-Feng HE ; Yue-Fu ZHAO ; Jin-Yu WANG ; Feng-Run LI ; Zhan-Qiang LI
Chinese Pharmacological Bulletin 2022;38(11):1612-1616
Pulmonary hypertension(PH)is a chronic,progressive,high-mortality disease characterized by a continuous increase in pulmonary vascular pressure. All types of PH have the same characteristics,i.e.,the excessive proliferation,anti-apoptosis and inflammation of pulmonary artery endothelial cells and smooth muscle cells,which leads to progressive thickening of pulmonary small vessels,resulting in pulmonary vascular remodeling and increased pulmonary vascular resistance,ultimately leading to right ventricular hypertrophy,heart failure,and death. The drugs used to treat PH mainly include L-type calcium channel blockers,phosphodiesterase 5 inhibitors,guanosine cyclase activators,endothelin receptor antagonists,and synthetic prostacyclin and its analogues. These drugs reduce pulmonary artery pressure by relaxing pulmonary blood vessels but do not cure the patient,and their prognosis remains poor. Therefore,the development of drugs that can effectively improve or even reverse pulmonary vascular remodeling is the key to treating PH. In recent years,studies on pulmonary vascular remodeling mainly included(1)the synthesis of new small-molecule compounds;(2)the transformation of mature drugs,such as the use of drug combinations and dosage form transformation,etc.;(3)the pharmacodynamic evaluation of traditional Chinese medicines and derived compounds based on the theory of "lung distension";(4)research into monomers of traditional Chinese medicine; and(5)research into new targets.
7. Research progress on hypoxia-induced imbalance of calcium homeostasis in pulmonary artery smooth muscle cells and its treatment
Xiang-Yun GAI ; En-Qi ZHAO ; Jin-Yu WANG ; Yue-Fu ZHAO ; Yan-Feng HE ; Peng-Cheng LIN ; Xiang-Yun GAI ; En-Qi ZHAO ; Jin-Yu WANG ; Yue-Fu ZHAO ; Yan-Feng HE ; Peng-Cheng LIN
Chinese Pharmacological Bulletin 2022;38(4):492-496
Chronic hypoxic lung diseases are major causes of disability and mortality worldwide, which are typically aggravated by hypoxic pulmonary hypertension.The pathogenesis of hypoxic pulmonary hypertension is complex, and its mechanism has not been fully elucidated.The previous studies have shown abnormally elevated levels of free Ca + in the cytoplasm of pulmonary artery smooth muscle cells to be the predominant drivers of pulmonary hypertension , causing continuous contraction and remodeling of the pulmonary vessels.This article briefly summarizes the mechanism of hypoxia-induced imbalance in calcium homeostasis in pulmonary artery smooth muscle cells, together with its related drug research, based on the existing literature.Hypoxia induces an imbalance in calcium homeostasis in pulmonary artery smooth muscle cells by regulating hypoxia-inducible factor-1, K+ , store-operated calcium channel, receptor-operated calcium channel, the Ca +-sensing myosin contractile mechanism by binding to calmodulin, leading to pulmonary vasoconstriction.Ca + can also activate PKC/ MAPKs and PI3K/Akt/mTOR pathways, leading to pulmonary vascular remodeling.
8. Anther Transcriptomics and Expression Analysis of Genes Related to Anthocyanin Synthesis in Blue Labeled Genic Male Sterile Wheat
Xiao-Yu FENG ; Na NIU ; Yu-Long SONG ; Shou-Cai MA ; Peng-Ke WANG ; Gai-Sheng ZHANG ; Jun-Wei WANG ; Jian DONG ; Jian-Chao ZHANG
Chinese Journal of Biochemistry and Molecular Biology 2021;37(4):504-515
In order to reveal the molecular mechanism of blue labeled genic male sterility (BM-type GMS) and utilize the heterosis of BM-type GMS, we used the anthers of white-seed plants WS (sterile) and light blue seed plants WF (normal fertility) as experimental materials to analyze the differences in gene expression between them by transcriptome technology. And we also verified the genes expressed in anthocyanin synthesis in this study. Compared with WF, a total of 2352 differentially expressed genes were detected in WS. According to GO functional annotation, these genes could be divided into 3 categories and 43 subgroups. They are mainly involved in biosynthesis, phenylpropane metabolism, L-phenylalanine catabolism, membrane components, plasma membrane, cytoplasm, ATP binding, protein serine/threonine kinase activity, etc. KEGG pathway analysis showed that there were 159 genes enriched in the phenylpropanoid biosynthesis pathway, followed by the phenylalanine pathway, including 136 differentially expressed genes. Other genes are also involved a variety of amino acid metabolism, purine metabolism, pyrimidine metabolism and sugar metabolism pathway. Related to anthocyanin metabolism, several structural genes of key enzymes were differentially expressed, and most of them were up-regulated in WF, while only Flavanone 3-hydroxylase (F3H) and colorless anthocyanin dioxygenase (ANS) were down-regulated. Quantitative real-time PCR showed that the expression of 10 genes related to anthocyanin metabolism had the same trend as that in transcriptome sequencing data. Sequence homology analysis showed that the two selected transcription factors (DN48762c2g1 and DN25944c0g1) are clustered into the same cluster as the transcription factors regulating anthocyanin biosynthesis in maize, rice and Arabidopsis thaliana, which might be candidate genes for the blue aleurone layer of light blue seed plants in wheat. And fluorescence quantitative analysis showed that the expression level of DN48762c2g1 and DN25944c0g1 in WF was significantly higher than that in WS. In conclusion, the genes related to the anthocyanin biosynthesis pathway are not only related to the blue grain trait, but also may be involved in the anther abortion of BM-type GMS.
9.The usage of comprehensive geriatric assessment in elderly patients with acute myeloid leukemia: a multicenter, prospective study.
Qi WU ; Rong FU ; Ming Feng ZHAO ; Yi Gai MA ; Hao JIANG ; Liang ding HU ; Yu JING ; Hui LIU ; Li Ru WANG ; Li SU ; Yong Qing ZHANG ; Chun Lin ZHOU ; Yan ZHANG ; Han Yun REN ; Bin JIANG ; He Bing ZHOU ; Lin KANG ; Lu ZHANG ; Dao Bin ZHOU ; Jian LI
Chinese Journal of Hematology 2019;40(1):35-39
Objective: To evaluate the feasibility and potential value of comprehensive geriatric assessment (CGA) in elderly (≥60 years) patients with newly diagnosed acute myeloid leukemia (AML) in China. Methods: The CGA results of 83 newly diagnosed AML (non-APL) patients from 16 hospitals in Beijing and Tianjin between March 2016 and December 2017 were prospectively collected and analyzed. The clinical data, treatment and follow-up information were also collected. Results: Of 83 newly diagnosed elderly AML patients, 81 patients (97.6%) completed all designated CGA assessment. The median number of impaired scales of the CGA assessment in the studied population was 2(0-6). Sixteen patients (19.3%) showed no impairments according to the geriatric assessment scales implem ented by this study. The distributions of impaired scales were as follows: impairment in ADL, 55.4%; IADL impairment, 42.2%; MNA-SF impairment, 48.2%; cognitive impairment, 15.7%; GDS impairment, 31.7%; HCT-CI impairment, 19.5%, respectively. In patients with "good" ECOG (n=46), the proportion of impairment for each CGA scale ranged from 6.5% to 37.0% and 32 patients (68.9%) had at least one impaired CGA scale. Survival analysis showed that the number of impaired scales of the CGA was significantly correlated with median overall survival (P=0.050). Conclusions: CGA was a tool with feasibility for the comprehensive evaluation in elderly AML patients in China. Combined with age and ECOG, CGA may be more comprehensive in assessing patients' physical condition.
Activities of Daily Living
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China
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Geriatric Assessment
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Humans
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Leukemia, Myeloid, Acute
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Prospective Studies
10.Analysis of common etiology of fatty liver in recent ten years in China
Yong-Yong ZHANG ; San-Qiang LI ; Ying SONG ; Shan-Long WANG ; Wen-Feng ZHU ; Xiao-Gai SONG ; Chen-Yang MAI ; Zhang-Yu TIAN ; Fei-Yu BAI
The Chinese Journal of Clinical Pharmacology 2018;34(20):2445-2448
Objective To analyze the common causes of fatty liver in Chinese adults.Methods The CNKI, WANFANG database and VIP database were searched by computer , and the etiology of fatty liver was published from January 2008 to December 2017.Meta-analysis of pre-valence, influencing factors, and blood biochemical indicators were per-formed using R software and Stata software .Results Twenty-four stu-dies were finally included,with a total of 49,275 cases.Meta-analysis showed that the prevalence of fatty liver in the population were : total prevalence 19.31%, male prevalence 26.44%, female prevalence 15.31%.The prevalence rates at different ages were :<30 years old 13.20%, 31-40 years old 16.73%, 41-50 years old 20.98%, 51-60 years old 21.85%,>60 years old 17.46%.The risk ratio of influen-cing factors in patients with fatty liver compared with normal population was: high cholesterol 2.03, high triglyceride 3.02, aspartate transaminas increased 3.70, alanine transaminase increased 4.55, hyperglycemia 2.54, obesity 10.73 , greasy food 3.93, alcohol consumption 2.85, hy-pertension 2.06, quality index fat 2.52.The differences in mean blood biochemical results between patients with and without fatty liver were as follows: total cholestero 1.23,triglyceride 1.18,high-density lipoprotein -0.55,low-density lipoprotein 0.28, aspartate transaminase 1.09, alanine transaminase 1.45,total bilirubin 1.09, fasting blood glucose 1.16.Conclusion The preva-lence of fatty liver in Chinese men is higher than that in females ; common factors are high cholesterol , high triglycerides, elevated aspartate transaminase, elevated alanine transaminase, hyperglycemia, obesity, greasy food, hypertension, body mass index; patients with fatty liver fatty biochemical indicators than the normal population were abnormal.

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