1.Clinical application of KASP-based RHCE genotyping in RhD-positive patients
Xiaoyu LIAN ; Mengdan LI ; Xiaoyu GUAN ; Li TIAN ; Chenying WANG ; Di WU ; Tianqiong LUO ; Xiaolin DU ; Xin JI ; Haixia XU ; Jue WANG ; Ling LI ; Zhong LIU
Chinese Journal of Blood Transfusion 2026;39(5):596-602
Objective: To develop a RHCE genotyping assay based on kompetitive allele-specific PCR (KASP) and assess its clinical accuracy for RhCE blood group determination. Methods: KASP primers were designed to interrogate three RHCE loci: the 109 bp insertion/deletion in intron 2, c. 307T>C, and c. 676C>G. A total of 1 194 RhD-positive inpatients from Chengdu were typed by both KASP genotyping and manual tube serology. Discordant samples (n=10) were retested by both methods and further resolved by Sanger sequencing. An additional 377 cases were tested for the c. 48C>G locus to evaluate the predictive accuracy of individual loci and combined locus testing for RhC antigen. Results: Genotyping concordance with serology was 100.0% for both the c. 676C>G locus (RhE/Rhe) and the c. 307T>C locus (Rhc). For RhC prediction using the 109 bp insertion, overall accuracy was 99.7% (1 191/1 194); the 3 discordant cases were confirmed by Sanger sequencing to be false negatives attributable to 109 bp deletion in intron 2. Testing the c. 48C>G allele for RhC prediction yielded 7 false positives, with an accuracy of 98.1% (370/377). RhC antigen status was determined by combining the 109 bp insertion and the c. 48C allele. After excluding 10 samples with inconsistent results between the two loci, the accuracy reached 100% in the remaining 367 samples. When both loci were applied in combination, accuracy reached 100% in the 367 cases with concordant results. Among the 1 194 patients, CCee (45.8%) and CcEe (31.7%) were the most common RhCE phenotypes. The e antigen had the highest positivity rate (92.2%), and the Ce haplotype was the most frequent (66.9%). Conclusion: The KASP-based RHCE genotyping method achieves high accuracy for clinical RhCE typing. Combining the 109 bp insertion/deletion with the c. 48C allele significantly improves RhC antigen prediction compared with either locus alone. This method was applied to RhCE genotyping of 1 194 RhD-positive inpatients in Chengdu, providing local RhCE phenotype and haplotype distribution data to support RhCE-matched transfusion practice.
2.Genetic analysis of a Chinese pedigree affected with complex chromosomal structural variants.
Yabing ZHANG ; Jiao LIU ; Tingting JI ; Yawen GUAN ; Bin MAO ; Xiaoling MA
Chinese Journal of Medical Genetics 2025;42(10):1252-1258
OBJECTIVE:
To explore the mechanism and clinical manifestations of a case with complex structural variations involving chromosomes 5, 7, and 14, and assess the value of Chromosome conformation-based karyotyping (C-MoKa) for its diagnosis.
METHODS:
Two half-sibs by the same father presented at the First Hospital of Lanzhou University in December 2024 for severe multi-system abnormalities were selected as study subjects. Peripheral blood samples from the their parents were subjected to conventional chromosomal karyotyping analysis. The father was further analyzed using C-MoKa, while both siblings underwent copy number variation sequencing (CNV-seq). This study was approved by the Medical Ethics Committee of the Hospital (Ethics No.: LDYYSZLLKH2025-05).
RESULTS:
Conventional karyotype analysis indicated that the father has a karyotype of 46,XY,add(5)(p15.3). CNV-seq identified multiple chromosomal abnormalities in both siblings, including duplications and deletions of chromosomes 14 and 5. C-MoKa analysis further revealed a complex chromosomal structural variation involving chromosomes 5, 7, and 14 in the father. These variations were closely associated with the severe phenotypes noted in both children.
CONCLUSION
Complex chromosomal structural variations can lead to multi-system abnormalities and significantly impact reproductive health. Compared to conventional karyotyping, the C-MoKa technique has shown significant advantage in identifying such complex rearrangements. The combined application of multiple techniques can improve the accuracy of diagnosis, enabling genetic counseling for carriers to reduce their risk for producing further affected offspring.
Female
;
Humans
;
Male
;
China
;
Chromosome Aberrations
;
DNA Copy Number Variations/genetics*
;
Karyotyping
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Pedigree
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East Asian People/genetics*
3.Research progress on extracellular vesicles in the treatment of glaucoma
Pengfei CHEN ; Ziyu QIU ; Xi LIU ; Huaijin GUAN ; Tianqiu ZHOU ; Min JI
Recent Advances in Ophthalmology 2025;45(6):500-504
Extracellular vesicles(EVs)are small vesicles secreted by cells,widely present in various body fluids,and they play important biological roles.In recent years,EVs have garnered significant attention as novel diagnostic and thera-peutic tools in multiple ocular diseases.Glaucoma,as a common cause of irreversible blindness,is primarily caused by optic nerve damage associated with pathologically elevated intraocular pressure.Emerging evidence indicates that EVs hold considerable therapeutic potential in glaucoma management,particularly in modulating aqueous humor circulation and pro-viding retinal neuroprotection.This review summarizes the latest research progress on EVs in the treatment of glaucoma.
4.Advances in the role of disease-associated microglia in retinal ganglion cell injury in glaucoma
Ziyu QIU ; Pengfei CHEN ; Xi LIU ; Huaijin GUAN ; Min JI
Recent Advances in Ophthalmology 2025;45(7):578-582
Glaucoma,characterized by optic nerve damage and progressive damage to retinal ganglion cells(RGCs),is the leading cause of irreversible blindness.However,the specific mechanism of RGC damage has not been fully elucida-ted.In recent years,there is increasing evidence that microglia,especially disease-associated microglia(DAM),may play an important role in glaucomatous ganglion cell injury.In this paper,we reviewed the role and mechanism of DAM in RGC damage in glaucoma,aiming to provide new insights for further research on the mechanism of RGC damage and subsequent protection of RGCs.
5.Research progress of mitochondrial unfolded protein response in eye diseases
Liang GU ; Pengfei LI ; Huaijin GUAN ; Min JI
International Eye Science 2025;25(9):1425-1430
The mitochondrial unfolded protein response(UPRmt)represents a crucial intracellular stress response mechanism that plays a fundamental role in maintaining mitochondrial and cellular homeostasis. Growing evidence suggests that dysregulation of UPRmt contributes significantly to the pathogenesis of various systemic disorders, including neurodegenerative diseases such as Parkinson's and Alzheimer's diseases, as well as age-related pathologies. Emerging research has particularly highlighted the involvement of UPRmt in ocular diseases, including cataracts, glaucoma, and diabetic retinopathy. This comprehensive review examines the physiological functions of UPRmt and its regulatory mechanisms in age-related eye diseases. The roles of key UPRmt downstream effector molecules in ocular cell populations such as lens epithelial cells, retinal pigment epithelial cells, and retinal ganglion cells are systematically analyzed. Importantly, the dual regulatory nature of UPRmt in ocular pathophysiology is discussed, that is, its moderate activation promotes mitochondrial homeostasis, mitigates oxidative stress, and suppresses inflammatory responses, its chronic or excessive activation triggers apoptotic pathways, induces metabolic dysfunction, and ultimately accelerates disease progression. By elucidating these mechanisms, our review provides novel insights into ocular disease pathogenesis and proposes potential therapeutic strategies targeting UPRmt modulation for the prevention and treatment of age-related eye disorders.
6.Correlations of degree of myopia in adolescents with axial length, corneal curvature, and axial ratio
Hengjing JI ; Liang LYU ; Like GUAN ; Tianqi HUO ; Chunyu ZHOU ; Lixiao ZHOU
International Eye Science 2025;25(10):1678-1682
AIM: To investigate the correlation of degree of myopia in adolescents with axial length, corneal curvature and axial ratio.METHODS: Cross-sectional study. A total of 246 adolescents(492 eyes)aged 8-18 years consecutively enrolled for orthokeratology lens fitting at the Fifth Affiliated Hospital of Zhengzhou University between 2021 and 2023 were included based on random sampling method, with 447 eyes finally included due to the elimination of 45 eyes that did not meet the inclusion criteria. Biometric measurements under scotopic conditions assessed axial length(AL), corneal radius of curvature(CR), and AL/CR ratio. Cycloplegic refraction determined spherical equivalent(SE), classifying eyes into mild(216 eyes)or moderate(231 eyes)myopia groups. Furthermore, the correlation of degree of myopia with AL, CR and AL/CR was analyzed by multiple linear regression analysis.RESULTS: A statistically significant difference in myopia severity was observed between the 8-12-year-old and 13-18-year-old age groups(all P<0.001). There were statistically significant differences between mild and moderate groups in SE, AL and AL/CR(all P<0.001). Linear regression analysis revealed significant negative correlations of SE with AL and AL/CR(r=-0.531, -0.598, all P<0.001). The areas under the ROC curve(AUC)for predicting moderate myopia were 0.812(95% CI: 0.773-0.852)for AL/CR combined with gender and age, 0.800(95% CI: 0.759-0.841)for AL/CR alone, 0.726(95% CI: 0.680-0.773)for AL alone, and 0.548(95% CI: 0.494-0.601)for CR alone. The optimal AL/CR cut-off value for predicting moderate myopia was 3.189(sensitivity: 0.632, specificity: 0.852), suggesting its potential as a clinical threshold.CONCLUSION: In adolescents with mild-to-moderate myopia, AL/CR, AL, and SE showed significant negative correlations. The combination of AL/CR with gender and age demonstrated the highest diagnostic accuracy for SE. AL/CR shows independent predictive value for myopia degree in adolescents, irrespective of refractive status.
7.Impact of flow diverter malapposition at the aneurysm neck on clinical outcomes and complications of intracranial aneurysms
Jie YANG ; Shuhai LONG ; Shuailong SHI ; Yukun HOU ; Ji MA ; Ye WANG ; Sheng GUAN ; Tengfei LI
Chinese Journal of Neuromedicine 2025;24(6):599-608
Objective:To investigate the impact of flow diverter (FD) malapposition at the aneurysm neck on clinical outcomes and complications of intracranial aneurysms, and identify the influencing factors for intraoperative FD malapposition.Methods:A retrospective study was performed; 153 patients with unruptured saccular aneurysms at the C4-C7 segments of the internal carotid artery accepted single FD implantation at Department of Interventional Radiology, First Affiliated Hospital of Zhengzhou University from June 2022 to March 2024 were chosen. Intraoperative high-resolution C-arm CT was utilized to assess FD apposition at the aneurysm neck. (1) Based on FD apposition at the aneurysm neck as shown, these 153 patients were divided into a malapposition group ( n=23, including 16 patients with malapposition being identified as residual malapposition after intraoperative corrective measures such as microwire massage and 7 patients with malapposition being newly detected in this study) and a complete apposition group ( n=130). Perioperative and follow-up complications were recorded. Clinical outcomes were assessed using modified Rankin Scale (mRS) at the final follow-up (mRS score of 0-2 as favorable outcome), and angiographic outcomes were evaluated by DSA at the final follow-up. Differences in clinical and angiographic outcomes and complication rate were compared between the malapposition group and complete apposition group. (2) Based on FD apposition at the aneurysm neck as shown, these 153 patients were divided into an intraoperative malapposition group ( n=74, including 67 patients with malapposition being detected during surgery and 7 patients with malapposition being newly detected in this study) and an intraoperative complete apposition group ( n=79). Univariate analysis was performed to compare the clinical variables between the intraoperative malapposition group and intraoperative complete apposition group; multivariate Logistic regression was further employed to identify the independent influencing factors for FD malapposition at the aneurysm neck. Results:(1) Four patients (all from the malapposition group) developed perioperative acute in-stent thrombosis. Nine patients experienced ischemic or hemorrhagic stroke during the follow-up, including 6 from the malapposition group and 3 from the complete apposition group; the complication rate in the malapposition group (6/23, 26.1%) was significantly higher than that in the complete apposition group (3/130, 2.3%) during the follow-up ( P<0.05). At the final follow-up, 2 patients (both from the malapposition group) had poor clinical outcome, while the remaining 151 patients had favorable outcome. Proportion of patients with favorable outcome between the two groups was statistically different (91.3%[21/23] vs. 100.0%[130/130], P<0.05). Delayed occlusion was detected in 46 patients (12 from the malapposition group and 34 from the complete apposition group) at the final angiographic follow-up. FD restenosis/re-occlusion was noted in 10 patients, including 6 from the malapposition group and 4 from the complete apposition group. Significant difference in delayed occlusion rate (52.2%[12/23] vs. 26.2%[34/130]) and long-term in-stent stenosis/occlusion rate (26.1%[6/23] vs. 3.1%[4/130]) was observed between the two groups ( P<0.05). (2) Significant difference in aneurysm neck diameter, FD angulation, parent artery stenosis, parent artery diameter ratio>1.2, and presence of branching vessels at the FD implantation site was noted between the intraoperative complete apposition group and intraoperative malapposition group ( P<0.05). Multivariate Logistic regression indicated that aneurysm neck diameter ( OR=1.431, 95% CI: 1.096-1.868, P=0.008), parent artery diameter ratio>1.2 ( OR=2.199, 95% CI: 1.083-4.463, P=0.029), and FD angulation ( OR=1.019, 95% CI: 1.002-1.036, P=0.027) were independent influencing factors for FD malapposition at the aneurysm neck. Conclusion:In FD implantation for intracranial aneurysms, FD malapposition at the aneurysm neck adversely affects delayed occlusion rate and complication rate; aneurysms with wider aneurysm neck diameter, parent artery diameter ratio>1.2, and greater FD angulation are trend to have FD malapposition at the aneurysm neck.
8.Optimized lipid nanoparticles enable effective CRISPR/Cas9-mediated gene editing in dendritic cells for enhanced immunotherapy.
Kuirong MAO ; Huizhu TAN ; Xiuxiu CONG ; Ji LIU ; Yanbao XIN ; Jialiang WANG ; Meng GUAN ; Jiaxuan LI ; Ge ZHU ; Xiandi MENG ; Guojiao LIN ; Haorui WANG ; Jing HAN ; Ming WANG ; Yong-Guang YANG ; Tianmeng SUN
Acta Pharmaceutica Sinica B 2025;15(1):642-656
Immunotherapy has emerged as a revolutionary approach to treat immune-related diseases. Dendritic cells (DCs) play a pivotal role in orchestrating immune responses, making them an attractive target for immunotherapeutic interventions. Modulation of gene expression in DCs using genome editing techniques, such as the CRISPR-Cas system, is important for regulating DC functions. However, the precise delivery of CRISPR-based therapies to DCs has posed a significant challenge. While lipid nanoparticles (LNPs) have been extensively studied for gene editing in tumor cells, their potential application in DCs has remained relatively unexplored. This study investigates the important role of cholesterol in regulating the efficiency of BAMEA-O16B lipid-assisted nanoparticles (BLANs) as carriers of CRISPR/Cas9 for gene editing in DCs. Remarkably, BLANs with low cholesterol density exhibit exceptional mRNA uptake, improved endosomal escape, and efficient single-guide RNA release capabilities. Administration of BLANmCas9/gPD-L1 results in substantial PD-L1 gene knockout in conventional dendritic cells (cDCs), accompanied by heightened cDC1 activation, T cell stimulation, and significant suppression of tumor growth. The study underscores the pivotal role of cholesterol density within LNPs, revealing potent influence on gene editing efficacy within DCs. This strategy holds immense promise for the field of cancer immunotherapy, offering a novel avenue for treating immune-related diseases.
9.A novel feedback loop: CELF1/circ-CELF1/BRPF3/KAT7 in cardiac fibrosis.
Yuan JIANG ; Bowen ZHANG ; Bo ZHANG ; Xinhua SONG ; Xiangyu WANG ; Wei ZENG ; Liyang ZUO ; Xinqi LIU ; Zheng DONG ; Wenzheng CHENG ; Yang QIAO ; Saidi JIN ; Dongni JI ; Xiaofei GUO ; Rong ZHANG ; Xieyang GONG ; Lihua SUN ; Lina XUAN ; Berezhnova Tatjana ALEXANDROVNA ; Xiaoxiang GUAN ; Mingyu ZHANG ; Baofeng YANG ; Chaoqian XU
Acta Pharmaceutica Sinica B 2025;15(10):5192-5211
Cardiac fibrosis is characterized by an elevated amount of extracellular matrix (ECM) within the heart. However, the persistence of cardiac fibrosis ultimately diminishes contractility and precipitates cardiac dysfunction. Circular RNAs (circRNAs) are emerging as important regulators of cardiac fibrosis. Here, we elucidate the functional role of a specific circular RNA CELF1 in cardiac fibrosis and delineate a novel feedback loop mechanism. Functionally, circ-CELF1 was involved in enhancing fibrosis-related markers' expression and promoting the proliferation of cardiac fibroblasts (CFs), thereby exacerbating cardiac fibrosis. Mechanistically, circ-CELF1 reduced the ubiquitination-degradation rate of BRPF3, leading to an elevation of BRPF3 protein levels. Additionally, BRPF3 acted as a modular scaffold for the recruitment of histone acetyltransferase KAT7 to facilitate the induction of H3K14 acetylation within the promoters of the Celf1 gene. Thus, the transcription of Celf1 was dramatically activated, thereby inhibiting the subsequent response of their downstream target gene Smad7 expression to promote cardiac fibrosis. Moreover, Celf1 further promoted Celf1 pre-mRNA transcription and back-splicing, thereby establishing a feedback loop for circ-CELF1 production. Consequently, a novel feedback loop involving CELF1/circ-CELF1/BRPF3/KAT7 was established, suggesting that circ-CELF1 may serve as a potential novel therapeutic target for cardiac fibrosis.
10.SUBCELLULAR LOCALIZATION AND ENZYMATIC PARAMETERS OF CYCLOPHILIN PROTEIN-1 FROM CRYPTOSPORIDIUM PARVUM
Xi-Meng JIN ; Peng JIANG ; Dong-Qiang WANG ; Zong-Zhen ZHAI ; Ji-Gang YIN ; Guan ZHU
Acta Parasitologica et Medica Entomologica Sinica 2025;32(3):129-137,173
Objective The aim of this study was to characterize the basic molecular and biochemical parameters for a cyclophilin protein in Cryptosporidium parvum called CpCyP1.Methods CpCyP1 expression patterns during the parasite life cycle were evaluated using qRT-PCR with total RNA isolated from different developmental stages of C.parvum.Native CpCyP1 protein in sporozoites was detected using western blot.The localization of CpCyP1 was performed using the immunofluorescence assay,with an affinity-purified rabbit polyclonal antibody against a synthetic peptide.The peptidyl-prolyl cis-trans isomerase(PPIase)activity of His-tagged recombinant CpCyP1 was evaluated using absorbance colorimetry,and the effect of cyclosporin A(CsA)on the activity of CpCyP1 was determined.Results CpCyP1 was expressed in all parasite developmental stages,whereas CpCyP1 was present mainly in the cytosol of sporozoites,meronts,and gamonts.CpCyP1 displayed Michaelis-Menten kinetics towards N-succinyl-Ala-Ala-Pro-Phe-p-nitroanilide for its PPIase activity(Km=456.4 μmol/L;Vmax=1.981 U).CsA inhibited PPIase activity,showing lower micromolar inhibitory activity and binding affinity(Kd=5.122 μmol/L;IC50=1.004 μmol/L).Conclusions These results imply that CpCyP1 in the parasite may be the target for the previously reported anti-cryptosporidial efficacy of CsA and suggest that C.parvum cyclophilins could be evaluated as candidate drug targets.

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