1.Molecular mechanism of Ael blood group caused by ABO B.01-O.01.02 gene recombination
Xiaoyun BU ; Jing HAI ; Jiancheng LIU
Chinese Journal of Blood Transfusion 2026;39(4):534-539
Objective: To analyze the serological and molecular biological characteristics of one case with Ael subtype. Methods: ABO serological typing was performed using the tube method. ABO genotyping was conducted by sequence-specific primer polymerase chain reaction (PCR-SSP). The genotype was identified by Oxford Nanopore third-generation sequencing (TGS). Pymol, Polyphen-2, PROVEAN, and DUET were used to predict the effects of mutations on protein structure and function. Results: Serological testing identified an Ael subtype. PCR-SSP genotyping showed an A/O2 profile. TGS obtained two full-length ABO haplotype sequences: the first was ABO
O.01.02, and the second was a recombinant haplotype of ABO
B.01-O.01.02, with the recombination breakpoint mapped between c. 357-39 and c. 526G>C. Mutations on this recombinant allele included c. 297A>G, c. 646T>A, c. 681G>A, c. 771C>T, and c. 829G>A, among which c. 646T>A (p. Phe216Ile) and c. 829G>A (p. Val277Met) were two functional amino acid substitution sites. Protein structure modeling revealed alterations in local conformation and hydrogen bond network, and functional prediction indicated decreased protein stability. Conclusion: A recombination between ABO alleles B.01 and O.01.02 was identified in the region spanning intron 6 to exon 7, resulting in a B.01-O.01.02 recombinant gene. This recombinant leads to key amino acid substitutions in the B glycosyltransferase, causing local structural changes and decreased stability of the enzyme protein, ultimately manifesting as the Ael blood group phenotype.
2.Construction of PD-L1hitol-DC derived from bone marrow of DA rats and identification of its immunological function
Zhiqi YANG ; Peibo HOU ; Lang WU ; Jing LIU ; Yang DING ; Minghao LI
Organ Transplantation 2025;16(1):83-90
Objective To construct programmed cell death protein-ligand 1(PD-LI)hi tolerogenic dendritic cell (tol-DC) derived from bone marrow of DA rats and identify its immunological function. Methods DA rat bone marrow cells were extracted, combined with recombinant mouse granulocyte macrophage colony-stimulating factor and recombinant mouse interleukin (IL)-4, and cultured for 6 days in vitro to induce the differentiation of bone marrow cells into immature dendritic cells (imDC). Lipopolysaccharide was used to stimulate cell maturation and cultured for 2 days to collect mature dendritic cells (mDC). PD-L1 lentiviral vector virus stock solution or equivalent dose lentiviral stock solution was added, and PD-L1hitol-DC and Lv-imDC were collected after culture for 2 days. The morphology of PD-L1hitol-DC was observed by inverted phase contrast microscope and transmission electron microscope. Real-time fluorescence quantitative reverse transcription polymerase chain reaction, Western blotting and flow cytometry were used to detect the expression level of specific markers on cell surface. CD8+T cells derived from Lewis rat spleen were co-cultured with imDC, mDC, Lv-imDC and PD-L1hitol-DC, respectively. The levels of inflammatory factors in the supernatant of each group were detected by enzyme-linked immunosorbent assay. The apoptosis of T cells and the differentiation of regulatory T cells (Treg) in each group were analyzed by flow cytometry. Results The morphology of PD-L1hitol-DC modified by PD-L1 gene was consistent with tol-DC characteristics, and the expression levels of CD80, CD86 and major histocompatibility complex (MHC) on the surface were low. After mixed culture with CD8+ T cells, the levels of IL-10 and transforming growth factor (TGF) -β1 in the supernatant of PD-L1hitol-DC group were higher, the levels of tumor necrosis factor (TNF) -α and IL-17A were lower, and the apoptosis of T cells and Treg differentiation were increased. Conclusions Overexpression of PD-L1 through lentiviral vectors may successfully induce the construction of bone-marrow derived PD-L1hitol-DC in DA rats, promote the secretion of anti-inflammatory factors and T cell apoptosis, induce the differentiation of Treg, and inhibit the immune response of allogeneic CD8+T cells, which provides experimental basis for the next organ transplantation immune tolerance study.
3.Role of mitochondrial biogenesis in rat model of coal workers' pneumoconiosis based on PGC-1α-NRF1-TFAM signaling pathway
Mei ZHANG ; Xiaoqiang HAN ; Lulu LIU ; Yan WANG ; Xin MA ; Yu XIONG ; Huifang YANG ; Na ZHANG
Journal of Environmental and Occupational Medicine 2025;42(12):1429-1437
Background Mitochondrial biogenesis is pivotal in coal workers' pneumoconiosis fibrosis, yet the role of the peroxisome proliferator-activated receptor gamma coactivator 1-alpha (PGC-1α)-nuclear respiratory factor 1 (NRF1)-mitochondrial transcription factor A (TFAM) pathway inmitochondrial biogenesis remains elusive, warranting further investigation. Objective To elucidate the role of the PGC-1α-NRF1-TFAM pathway in mitochondrial biogenesis in a rat coal workers' pneumoconiosis model through in vivo and in vitro experiments. Methods (1)n vivo: twelve SPF male SD rats (200-220 g) were randomized into a control group and a coal dust group (n=6 per group). After acclimatization, the coal dust group received 1 mL 50 mg·mL−1 coal dust suspension via intratracheal instillation; the controls received saline. Lung tissues were harvested after two months for histopathology [HE, Masson, and transmission electron microscopy (TEM) ], protein and mRNA analysis, and mitochondrial DNA (mtDNA) quantification by quantitative real-time polymerase chain reaction (qPCR). (2) In vitro: rat lung type II epithelial cells (RLE-6TN) cells were exposed to coal dust (50, 100, 200, and 400 mg·L−1, 24 h). CCK-8 assay determined optimal doses. Ultrastructural changes were analyzed by TEM. Cells were transfected with OE-PGC-1α (PGC-1α overexpression) or shRNA-PGC-1α plasmids (PGC-1α knockdown), and the transfection efficiency was determined by reverse transcription quantitative real-time polymerase chain reaction (RT-qPCR). The expression levels of alpah-smooth muscle actin (α-SMA), citrate synthase (CS), PGC-1α, NRF1, TFAM, and fibronectin (Fn) proteins and their corresponding mRNA were detected using Western blot and RT-qPCR, respectively. The relative content of mtDNA was determined by qPCR. Results In vivo: the control group lung samples exhibited soft, pink parenchyma, while the coal dust-exposed lungs showed blackened surfaces with soft texture. The histopathological evaluation revealed intact alveolar walls in the controls versus structural destruction, micro-nodules, and fibrotic areas in the coal dust group. After Masson staining, coal dust deposits were found surrounded by blue collagen fibers in the exposed lungs, but absent in the controls. The coal dust group displayed significant upregulation of fibrotic marker α-SMA and downregulation of mitochondrial biogenesis markers (CS, PGC-1α, NRF1, TFAM) and mtDNA compared to the controls (P<0.05). In vitro: coal dust exposure reduced cell density and induced morphological alterations. TEM revealed evenly distributed normal mitochondria in controls versus mitochondrial swelling, disrupted cristae, and reduced numbers in exposed cells. The mitochondrial biogenesis markers were elevated in the coal dust + OE-PGC-1α group compared to the coal dust + OE-NC group (P<0.05); in contrast, they were decreased in the coal dust + shRNA-PGC-1α group compared to the coal dust + shRNA-NC group (P<0.05). Compared to the control group, the expression levels of the fibrosis marker α-SMA mRNA and protein were increased in the coal dust group (P<0.05). Overexpression of PGC-1α reduced α-SMA expression, while downregulation of PGC-1α increased its expression (P<0.05). Conclusion Coal dust exposure induces mitochondrial dysfunction and pulmonary fibrosis in vivo and in vitro via the PGC-1α-NRF1-TFAM pathway dysregulation. Targeting this pathway may mitigate coal dust-induced fibrosis by restoring mitochondrial biogenesis.
4.Effects of LncRNA PXN-AS1 on proliferation, apoptosis and invasion of gastric cancer cells
Gang Liu ; Dongtao Liu ; Wei Zhao ; Tao He ; Yuan Zhang
Acta Universitatis Medicinalis Anhui 2025;60(3):430-439
Objective :
To investigate the expression of LncRNA PXN-AS1(abbreviated as PXN-AS1) in gastric cancer tissues and its impact on the proliferation, apoptosis, and invasion of gastric cancer cells, and to explore its potential regulatory mechanisms.
Methods :
Gastric cancer tissues and adjacent tissues from 43 patients with gastric cancer were collected. The expression levels of PXN-AS1 and miR-125a-5p in gastric cancer tissues were detected using qRT-PCR, and the relationship between the expression level of PXN-AS1 and the clinical pathological parameters of patients with gastric cancer was analyzed. Pearson correlation analysis was conducted to evaluate the correlation between PXN-AS1 and miR-125a-5p in gastric cancer tissues. PXN-AS1 siRNA plasmid(si-PXN-AS1) and negative control plasmid(si-NC), as well as miR-125a-5p inhibitor(inhibitor) and negative control miRNA inhibitor(inhibitor NC), were transfected alone or in combination into HGC-27 cells. The cells were divided into si-NC group, si-PXN-AS1 group, si-PXN-AS1+inhibitor NC group, si-PXN-AS1+inhibitor group, and a blank control group was also established. qRT-PCR was utilized to assess the expression levels of PXN-AS1 and miR-125a-5p in each cell group. CCK-8 assay was employed to evaluate the proliferation levels of cells in each group. EdU experiment was conducted to assess the proliferation status of cells in each group. Transwell assay was performed to examine the migration and invasion capabilities of cells in each group; flow cytometry was employed to measure the apoptosis levels of cells in each group; the dual-luciferase reporter gene system was used to validate the sponge absorption of PXN-AS1 on miR-125a-5p and regulate its expression levels. Bioinformatics analysis was employed to screen downstream target genes of miR-125a-5p and perform GO and KEGG enrichment analysis.
Results :
Compared with adjacent cancerous tissues, the expression level of the PXN-AS1 in gastric cancer tissues significantly increased, while the expression level of miR-125a-5p markedly decreased(bothP<0.05). PXN-AS1 and miR-125a-5p exhibited a negative correlation(r=-0.452,P=0.002). Furthermore, gastric cancer patients with high expression of PXN-AS1 exhibited the proportions of lymph node metastasis positivity and low differentiation were significantly higher(allP<0.05). Compared to the blank group and si-NC group, the si-PXN-AS1 group of HGC-27 cells showed significantly reduced levels of PXN-AS1 expression, cell proliferation capacity, and the number of cell migration and invasion(allP<0.05), while the level of cell apoptosis significantly increased(P<0.05). The dual-luciferase reporter system results demonstrated specific adsorption of miR-125a-5p by PXN-AS1 in HGC-27 cells. Knockdown of miR-125a-5p could reverse the effect of PXN-AS1 silencing on the inhibition of proliferation, migration and invasion of gastric cancer cells, and promote apoptosis. The bioinformatics analysis results indicated that the downstream target genes of miR-125a-5p were involved in various biological processes, including DNA damage, T cell apoptosis and differentiation, RNA metabolism synthesis processes, and signal transduction. Additionally, miR-125a-5p was implicated in signaling pathways such as the HIF-1 pathway, JAK-STAT pathway, and cell apoptosis signaling pathway.
Conclusion
PXN-AS1 is upregulated in gastric cancer. Moreover, acting as a competitive sponge for miR-125a-5p, PXN-AS1 promotes the proliferation, migration, and invasion abilities of gastric cancer cells HGC-27 while inhibiting apoptosis.
5.Real-world efficacy and safety of azvudine in hospitalized older patients with COVID-19 during the omicron wave in China: A retrospective cohort study.
Yuanchao ZHU ; Fei ZHAO ; Yubing ZHU ; Xingang LI ; Deshi DONG ; Bolin ZHU ; Jianchun LI ; Xin HU ; Zinan ZHAO ; Wenfeng XU ; Yang JV ; Dandan WANG ; Yingming ZHENG ; Yiwen DONG ; Lu LI ; Shilei YANG ; Zhiyuan TENG ; Ling LU ; Jingwei ZHU ; Linzhe DU ; Yunxin LIU ; Lechuan JIA ; Qiujv ZHANG ; Hui MA ; Ana ZHAO ; Hongliu JIANG ; Xin XU ; Jinli WANG ; Xuping QIAN ; Wei ZHANG ; Tingting ZHENG ; Chunxia YANG ; Xuguang CHEN ; Kun LIU ; Huanhuan JIANG ; Dongxiang QU ; Jia SONG ; Hua CHENG ; Wenfang SUN ; Hanqiu ZHAN ; Xiao LI ; Yafeng WANG ; Aixia WANG ; Li LIU ; Lihua YANG ; Nan ZHANG ; Shumin CHEN ; Jingjing MA ; Wei LIU ; Xiaoxiang DU ; Meiqin ZHENG ; Liyan WAN ; Guangqing DU ; Hangmei LIU ; Pengfei JIN
Acta Pharmaceutica Sinica B 2025;15(1):123-132
Debates persist regarding the efficacy and safety of azvudine, particularly its real-world outcomes. This study involved patients aged ≥60 years who were admitted to 25 hospitals in mainland China with confirmed SARS-CoV-2 infection between December 1, 2022, and February 28, 2023. Efficacy outcomes were all-cause mortality during hospitalization, the proportion of patients discharged with recovery, time to nucleic acid-negative conversion (T NANC), time to symptom improvement (T SI), and time of hospital stay (T HS). Safety was also assessed. Among the 5884 participants identified, 1999 received azvudine, and 1999 matched controls were included after exclusion and propensity score matching. Azvudine recipients exhibited lower all-cause mortality compared with controls in the overall population (13.3% vs. 17.1%, RR, 0.78; 95% CI, 0.67-0.90; P = 0.001) and in the severe subgroup (25.7% vs. 33.7%; RR, 0.76; 95% CI, 0.66-0.88; P < 0.001). A higher proportion of patients discharged with recovery, and a shorter T NANC were associated with azvudine recipients, especially in the severe subgroup. The incidence of adverse events in azvudine recipients was comparable to that in the control group (2.3% vs. 1.7%, P = 0.170). In conclusion, azvudine showed efficacy and safety in older patients hospitalized with COVID-19 during the SARS-CoV-2 omicron wave in China.
6.Self-degradable "gemini-like" ionizable lipid-mediated delivery of siRNA for subcellular-specific gene therapy of hepatic diseases.
Qiu WANG ; Bin WAN ; Yao FENG ; Zimeng YANG ; Dan LI ; Fan LIU ; Ya GAO ; Chang LI ; Yanhua LIU ; Yongbing SUN ; Zhonggui HE ; Cong LUO ; Jin SUN ; Qikun JIANG
Acta Pharmaceutica Sinica B 2025;15(6):2867-2883
Tailored lipid nanoparticles (LNPs)-mediated small interfering RNA (siRNA) nanomedicines show promise in treating liver disease, such as acute liver injury (ALI) and non-alcoholic steatohepatitis (NASH). However, constructing LNPs that address biosafety concerns, ensure efficient delivery, and target specific hepatic subcellular fractions has been challenging. To evade above obstacles, we develop three novel self-degradable "gemini-like" ionizable lipids (SS-MA, SS-DC, SS-MH) by incorporating disulfide bonds and modifying the length of ester bond and tertiary amino head. Our findings reveal that the disulfide-bond-bridged LNPs exhibit reduction-responsive drug release, improving both biosafety and siRNA delivery efficiency. Furthermore, the distance of ester bond and tertiary amino head significantly influences the LNPs' pK a, thereby affecting endosomal escape, hemolytic efficiency, absorption capacity of ApoE, uptake efficiency of hepatocytes and liver accumulation. We also develop the modified-mannose LNPs (M-LNP) to target liver macrophages specifically. The optimized M-MH_LNP@TNFα exhibits potential in preventing ALI by decreasing tumor necrosis factor α (TNFα) levels in the macrophages, while MH_LNP@DGAT2 could treat NASH by selectively degrading diacylglycerol O-acyltransferase 2 (DGAT2) in the hepatocytes. Our findings provide new insights into developing novel highly effective and low-toxic "gemini-like" ionizable lipids for constructing LNPs, potentially achieving more effective treatment for hepatic diseases.
7.A self-cascade nanoCRISPR prompts transcellular penetration to potentiate gene editing and tumor killing.
Chao LIU ; Yangsong XU ; Ning WANG ; Hongyu LIU ; Xi YANG ; Shiyao ZHOU ; Dongxue HUANG ; Yingjie LI ; Yanjie YOU ; Qinjie WU ; Changyang GONG
Acta Pharmaceutica Sinica B 2025;15(11):5933-5944
CRISPR/Cas9-based therapeutics face significant challenges in penetrating the dense microenvironment of solid tumors, resulting in insufficient gene editing and compromised treatment efficacy. Current nanostrategies, which mainly focus on the paracellular pathway attempted to improve gene editing performance, whereas their efficiency remains uneven in the heterogenous extracellular matrix. Here, the nanoCRISPR system is prepared with self-cascading mechanisms for gene editing-mediated robust apoptosis and transcellular penetration. NanoCRISPR unlocks its self-cascade capability within the matrix metallopeptidase 2-enriched tumor microenvironment, initiating the transcellular penetration. By facilitating cellular uptake, nanoCRISPR triggers robust apoptosis in edited malignancies, promoting further transcellular penetration and amplifying gene editing in neighboring tumor cells. Benefiting from self-cascade between robust apoptosis and transcellular penetration, nanoCRISPR demonstrates continuous gene transfection/tumor killing performance (transfection/apoptosis efficiency: 1st round: 85%/84.2%; 2nd round: 48%/27%) and homogeneous penetration. In xenograft tumor-bearing mice, nanoCRISPR treatment achieves remarkable anti-tumor efficacy (∼83%) and significant survival benefits with minimal toxicity. This strategy presents a promising paradigm emphasizing transcellular penetration to enhance the effectiveness of CRISPR-based antitumor therapeutics.
8.Study on the mechanism of Compound lizard powder on reversing cisplatin resistance in gastric cancer by inducing apoptosis and autophagic death
Caiyue LIU ; Zheng LI ; Weiqiang LI
China Pharmacy 2025;36(23):2924-2929
OBJECTIVE To study the mechanism of Compound lizard powder on reversing cisplatin(DDP) resistance in resistant gastric cancer cell MKN45/DDP through nuclear factor-κB (NF-κB)/SNAIL signaling pathway. METHODS MKN45/DDP cells were divided into model group (20% normal rat serum), DDP group (1.3 μg/mL DDP+20% fetal bovine serum) and Compound lizard powder low- and high-dose drug-containing serum+DDP groups (17.2, 68.8 g/kg Compound lizard powder 20% drug-containing serum+1.3 μg/mL DDP). The viability, apoptosis and intracellular autophagosome of MKN45/DDP cells were detected. The content of microtubule-associated protein 1 light chain 3 (LC3) in the cell supernatant was detected. The expressions of B-cell lymphoma 2 (Bcl-2), Bcl-2-related X protein (Bax), as well as the protein expression levels of phosphorylated NF-κB p65 (p-NF-κB p65) and SNAIL were detected. The molecular mechanism of Compound lizard powder in improving DDP resistance was further clarified by using NF-κB pathway agonist tumor necrosis factor-α (TNF-α). RESULTS Compared with model group and DDP group, the cell survival rates of Compound lizard powder low- and high-dose drug-containing serum+DDP groups were significantly decreased (P<0.05), while the levels of apoptosis and autophagic death were significantly increased (P<0.05). The expression levels of Bcl-2 (except for the compound lizard powder low-dose drug-containing serum+DDP group), p-NF-κB p65 and SNAIL protein in MKN45/DDP cells were significantly decreased (P<0.05). The content of LC3 and expression of Bax protein were significantly increased (P<0.05). High-dose Compound lizard powder drug-containing serum+DDP could effectively reverse the down-regulation of LC3 Ⅱ/LC3 Ⅰ and Bax protein expression induced by TNF- α (P<0.05). CONCLUSIONS Compound lizard powder drug-containing serum combined with DDP can induce apoptosis and autophagic death of MKN45/DDP cells by inhibiting NF-κB/SNAIL signaling pathway, thus reversing DDP resistance of cells.
9.ALKBH5 exacerbates psoriatic dermatitis in mice by promoting angiogenesis.
Chengfang ZHANG ; Fei LI ; Bao CHAI ; Jian JIANG ; Yinlian ZHANG ; Xuemei LI ; Jingyu ZHANG ; Yuqiong HUANG ; Zilin JIN ; Yixuan Wang WAN ; Suwen LIU ; Nan YU ; Hongxiang CHEN
Frontiers of Medicine 2025;19(4):653-664
Psoriasis is a chronic inflammatory skin disease, and its pathogenesis is largely modulated by abnormal angiogenesis. Previous research has indicated that AlkB homolog 5 (ALKBH5), an important demethylase affecting N6-methyladenosine (m6A) modification, plays a role in regulating angiogenesis in cardiovascular and eye diseases. Our present study found that ALKBH5 was upregulated and co-localized with cluster of differentiation 31 (CD31) in the skin of IMQ group compared with control group. ALKBH5-deficient mice decreased IMQ-induced psoriatic dermatitis and exhibited histological improvements, including decreased epidermal thickness, hyperkeratosis, numbers of dermal capillary vessels and inflammatory cell infiltration. ALKBH5-KO mice alleviated angiogenesis in psoriatic lesions by downregulating the protein kinase B (AKT)/mammalian target of rapamycin (mTOR) pathway. Additionally, the expression of ALKBH5 was significantly upregulated in IL-17A-induced human umbilical vein endothelial cells (HUVECs), which further promoted the expression of angiogenesis-related cytokines and endothelial cell proliferation. Cell proliferation and angiogenesis were suppressed in ALKBH5 knockdown group, whereas ALKBH5 overexpression promoted these processes. The regulation of angiogenesis in HUVECs by ALKBH5 was facilitated through the AKT-mTOR pathway. Collectively, ALKBH5 plays a pivotal role in psoriatic dermatitis and angiogenesis, which may offer a new potential targets for treating psoriasis.
Animals
;
Psoriasis/chemically induced*
;
Mice
;
Humans
;
Neovascularization, Pathologic/genetics*
;
Human Umbilical Vein Endothelial Cells/metabolism*
;
AlkB Homolog 5, RNA Demethylase/genetics*
;
Proto-Oncogene Proteins c-akt/metabolism*
;
TOR Serine-Threonine Kinases/metabolism*
;
Cell Proliferation
;
Mice, Knockout
;
Disease Models, Animal
;
Signal Transduction
;
Male
;
Skin/blood supply*
;
Mice, Inbred C57BL
;
Angiogenesis
10.Analysis of clinical characteristics and related risk factors of patients with Clostridioides difficile infection in the intensive care unit.
Hongming YU ; Qinfu LIU ; Shenglin SU ; Gang LI ; Xiaojun YANG
Chinese Critical Care Medicine 2025;37(3):251-254
OBJECTIVE:
To investigate the clinical characteristics and related risk factors of Clostridium difficile infection (CDI) in intensive care unit (ICU).
METHODS:
A retrospective study was conducted. Patients with diarrhea admitted to the ICU of the General Hospital of Ningxia Medical University from May 1 to August 30, 2023 were selected. Patients were divided into CDI group and non-CDI group based on the presence or absence of CDI. Clinical data from two groups of patients meeting the criteria were collected and compared, including gender, age, acute physiology and chronic health evaluation II (APACHE II), length of hospital stay, serum lactic acid, parenteral nutrition time, white blood cell count (WBC), procalcitonin (PCT), C-reactive protein (CRP), coagulation indicators, albumin, antibiotic exposure, etc. Multivariate Logistic regression analysis was performed to analyze the risk factors for CDI in ICU diarrhea patients. Receiver operator characteristic curve (ROC curve) was drawn to analyze the predictive value of each index for CDI in diarrhea patients.
RESULTS:
A total of 24 patients with diarrhea were enrolled, including 9 patients in the CDI group and 15 patients in the non-CDI group. The time of parenteral nutrition in the CDI group was significantly longer than that in the non-CDI group [days: 18.0 (13.5, 19.5) vs. 10.0 (4.0, 18.0)], the serum lactic acid level [mmol/L: 4.40 (3.00, 15.25) vs. 2.50 (1.90, 3.20)] and the ratio of serum lactic acid > 3.9 mmol/L [66.67% (6/9) vs. 6.67% (1/15)] were significantly higher than those in the non-CDI group, with statistical significance (all P < 0.05). Multivariate binary Logistic regression analysis showed that the serum lactic acid level of the patients was an independent risk factor for CDI [odds ratio (OR) = 3.193, 95% confidence interval (95%CI) was 1.011-10.080, P = 0.048]. ROC curve showed that serum lactic acid level had a high predictive value for CDI in ICU patients with diarrhea, and the area under the curve (AUC) was 0.815, respectively. When the cut-off value of serum lactic acid was 3.9 mmol/L, the sensitivity was 66.7% and the specificity was 93.3%.
CONCLUSION
Patients with diarrhea who have higher serum lactate levels (> 3.9 mmol/L) on admission are at increased risk of developing CDI.
Humans
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Retrospective Studies
;
Risk Factors
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Intensive Care Units
;
Clostridium Infections
;
Clostridioides difficile
;
Male
;
Female
;
Middle Aged
;
Aged
;
Diarrhea/microbiology*
;
Logistic Models
;
ROC Curve
;
Adult


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