1.Analysis of the Rules for Compiling National Standards for Pharmaceutical Excipients
Meifang LI ; Lei CHEN ; Yan WU ; Zili XIE ; Luxia ZHENG ; Yanming LIU ; Hong DAI
Drug Standards of China 2025;26(2):117-121
Asthe standard for drafting standards,the Rules for Compiling National Standards for Pharmaceutical Excipients was first issued in the 2020 edition and then revised and re-issued in 2025.It has become an important technical specification for the pharmaceutical excipients standards in the Chinese Pharmacopoeia and for the phar-maceutical excipients standards formulated by pharmaceutical companies for associated review and approval.This article focuses on introducing the working background,main framework and main characteristics of the Rules for Compiling National Standards for Pharmaceutical Excipients,aiming to help the drafters,reviewers and implement-ers of pharmaceutical excipients standards better understand and master them,so as to further improve the standard-ization of writing pharmaceutical excipients standards and enhance the level of standards formulation and revision of pharmaceutical excipients.
2.Analysis of the Rules for Compiling National Standards for Pharmaceutical Excipients
Meifang LI ; Lei CHEN ; Yan WU ; Zili XIE ; Luxia ZHENG ; Yanming LIU ; Hong DAI
Drug Standards of China 2025;26(2):117-121
Asthe standard for drafting standards,the Rules for Compiling National Standards for Pharmaceutical Excipients was first issued in the 2020 edition and then revised and re-issued in 2025.It has become an important technical specification for the pharmaceutical excipients standards in the Chinese Pharmacopoeia and for the phar-maceutical excipients standards formulated by pharmaceutical companies for associated review and approval.This article focuses on introducing the working background,main framework and main characteristics of the Rules for Compiling National Standards for Pharmaceutical Excipients,aiming to help the drafters,reviewers and implement-ers of pharmaceutical excipients standards better understand and master them,so as to further improve the standard-ization of writing pharmaceutical excipients standards and enhance the level of standards formulation and revision of pharmaceutical excipients.
3.Effects of Angelica polysaccharide on differentiation and function in M2 macrophages
Ke ZHANG ; Zhao CUI ; Yahan QIN ; Fan LEI ; Meifang LIU ; Meiyu PENG
Journal of Army Medical University 2024;46(22):2505-2516
Objective To investigate the effect of Angelica polysaccharide(APS)on the differentiation and function of M2 macrophages and underlying molecular mechanism.Methods Mouse bone marrow derived macrophages(BMDM)and M2 macrophages were induced and treated with APS(0,80,160,320 μg/mL);Mouse peritoneal macrophages were isolated and treated with APS(0,160 μg/mL).Flow cytometry(FCM)was used to detect mannose receptor(MR),CD11b,F4/80,CD163,and ARG-1 expression levels,apoptosis,and phagocytic ability of M2 macrophages and peritoneal macrophages.Mice were randomly divided into APS gavage group and control group,APS was intragastrically administered to mice,and macrophage MR expression level in blood and spleen were detected by FCM.Fluorescence microscopy was used to observe the morphology of BMDM-differentiated M2 macrophages.RT-qPCR was employed to detect the mRNA expression levels of MR and ARG-1 in M2 macrophages.Immunofluorescence assay was performed to detect the expression of the proteins related to molecular mechanism of differentiation and function of M2 macrophages.Results Compared with the 0 μg/mL APS group,the MR expression level in the M2 macrophages was decreased with the increase of APS concentration within a certain concentration range(80~320 μg/mL),and the MR expression level in peritoneal macrophages was also decreased in the 160 μg/mL APS treatment group(P<0.01).The expression level of macrophage MR was also significantly decreased in peripheral blood and spleen in the APS gavage mice than the control group(P<0.05).Compared with the 0 μg/mL APS group,the expression levels of CD11b,F4/80,and CD163 in the macrophages were increased in the 80~320 μg/mL APS treatment groups(P<0.01).The morphology of macrophage had changed,from mostly spindle-shaped and pseudopodia to mostly round or irregular,and even a few cells with pseudopodia.APS induced apoptosis in M2 macrophages(P<0.05).Compared with the 0 μg/mL APS group,M2 macrophages treated with 160 μg/mL APS had an increased ability to phagocytose fluorescent microspheres(P<0.01),but the expression level of ARG-1 was decreased(P<0.01).The mRNA expression of MR and ARG-1 in M2 macrophages was decreased(P<0.05).The mean fluorescence intensity of phosphate acidified-signal transducers and activators of transcription 6(p-STAT6)-positive signals in M2 macrophages was significantly reduced in the 160 μg/mL APS-treated group(P<0.05).Conclusion APS has bidirectional regulation on the differentiation and function of M2 macrophages,which may be associated with its downregulation of signal transducers and activators of transcription 6(STAT6)signaling pathway.
4.Antimicrobial resistance profile of clinical isolates in hospitals across China:report from the CHINET Antimicrobial Resistance Surveillance Program,2023
Yan GUO ; Fupin HU ; Demei ZHU ; Fu WANG ; Xiaofei JIANG ; Yingchun XU ; Xiaojiang ZHANG ; Fengbo ZHANG ; Ping JI ; Yi XIE ; Yuling XIAO ; Chuanqing WANG ; Pan FU ; Yuanhong XU ; Ying HUANG ; Ziyong SUN ; Zhongju CHEN ; Jingyong SUN ; Qing CHEN ; Yunzhuo CHU ; Sufei TIAN ; Zhidong HU ; Jin LI ; Yunsong YU ; Jie LIN ; Bin SHAN ; Yunmin XU ; Sufang GUO ; Yanyan WANG ; Lianhua WEI ; Keke LI ; Hong ZHANG ; Fen PAN ; Yunjian HU ; Xiaoman AI ; Chao ZHUO ; Danhong SU ; Dawen GUO ; Jinying ZHAO ; Hua YU ; Xiangning HUANG ; Wen'en LIU ; Yanming LI ; Yan JIN ; Chunhong SHAO ; Xuesong XU ; Wei LI ; Shanmei WANG ; Yafei CHU ; Lixia ZHANG ; Juan MA ; Shuping ZHOU ; Yan ZHOU ; Lei ZHU ; Jinhua MENG ; Fang DONG ; Zhiyong LÜ ; Fangfang HU ; Han SHEN ; Wanqing ZHOU ; Wei JIA ; Gang LI ; Jinsong WU ; Yuemei LU ; Jihong LI ; Qian SUN ; Jinju DUAN ; Jianbang KANG ; Xiaobo MA ; Yanqing ZHENG ; Ruyi GUO ; Yan ZHU ; Yunsheng CHEN ; Qing MENG ; Shifu WANG ; Xuefei HU ; Hua FANG ; Penghui ZHANG ; Bixia YU ; Ping GONG ; Haixia SHI ; Kaizhen WEN ; Yirong ZHANG ; Xiuli YANG ; Yiqin ZHAO ; Longfeng LIAO ; Jinhua WU ; Hongqin GU ; Lin JIANG ; Meifang HU ; Wen HE ; Jiao FENG ; Lingling YOU ; Dongmei WANG ; Dong'e WANG ; Yanyan LIU ; Yong AN ; Wenhui HUANG ; Juan LI ; Quangui SHI ; Juan YANG ; Abulimiti REZIWAGULI ; Lili HUANG ; Xuejun SHAO ; Xiaoyan REN ; Dong LI ; Qun ZHANG ; Xue CHEN ; Rihai LI ; Jieli XU ; Kaijie GAO ; Lu XU ; Lin LIN ; Zhuo ZHANG ; Jianlong LIU ; Min FU ; Yinghui GUO ; Wenchao ZHANG ; Zengguo WANG ; Kai JIA ; Yun XIA ; Shan SUN ; Huimin YANG ; Yan MIAO ; Jianping WANG ; Mingming ZHOU ; Shihai ZHANG ; Hongjuan LIU ; Nan CHEN ; Chan LI ; Cunshan KOU ; Shunhong XUE ; Jilu SHEN ; Wanqi MEN ; Peng WANG ; Xiaowei ZHANG ; Xiaoyan ZENG ; Wen LI ; Yan GENG ; Zeshi LIU
Chinese Journal of Infection and Chemotherapy 2024;24(6):627-637
Objective To monitor the susceptibility of clinical isolates to antimicrobial agents in healthcare facilities in major regions of China in 2023.Methods Clinical isolates collected from 73 hospitals across China were tested for antimicrobial susceptibility using a unified protocol based on disc diffusion method or automated testing systems.Results were interpreted using the 2023 Clinical & Laboratory Standards Institute (CLSI) breakpoints.Results A total of 445199 clinical isolates were collected in 2023,of which 29.0% were gram-positive and 71.0% were gram-negative.The prevalence of methicillin-resistant strains in Staphylococcus aureus,Staphylococcus epidermidis and other coagulase-negative Staphylococcus species (excluding Staphylococcus pseudintermedius and Staphylococcus schleiferi) (MRSA,MRSE and MRCNS) was 29.6%,81.9% and 78.5%,respectively.Methicillin-resistant strains showed significantly higher resistance rates to most antimicrobial agents than methicillin-susceptible strains (MSSA,MSSE and MSCNS).Overall,92.9% of MRSA strains were susceptible to trimethoprim-sulfamethoxazole and 91.4% of MRSE strains were susceptible to rifampicin.No vancomycin-resistant strains were found.Enterococcus faecalis had significantly lower resistance rates to most antimicrobial agents tested than Enterococcus faecium.A few vancomycin-resistant strains were identified in both E.faecalis and E.faecium.The prevalence of penicillin-susceptible Streptococcus pneumoniae was 93.1% in the isolates from children and and 95.9% in the isolates from adults.The resistance rate to carbapenems was lower than 15.0% for most Enterobacterales species except for Klebsiella,22.5% and 23.6% of which were resistant to imipenem and meropenem,respectively .Most Enterobacterales isolates were highly susceptible to tigecycline,colistin and polymyxin B,with resistance rates ranging from 0.6% to 10.0%.The resistance rate to imipenem and meropenem was 21.9% and 17.4% for Pseudomonas aeruginosa,respectively,and 67.5% and 68.1% for Acinetobacter baumannii,respectively.Conclusions Increasing resistance to the commonly used antimicrobial agents is still observed in clinical bacterial isolates.However,the prevalence of important crabapenem-resistant organisms such as crabapenem-resistant K.pneumoniae,P.aeruginosa,and A.baumannii showed a slightly decreasing trend.This finding suggests that strengthening bacterial resistance surveillance and multidisciplinary linkage are important for preventing the occurrence and development of bacterial resistance.
5.Antimicrobial resistance profile of clinical isolates in hospitals across China:report from the CHINET Antimicrobial Resistance Surveillance Program,2023
Yan GUO ; Fupin HU ; Demei ZHU ; Fu WANG ; Xiaofei JIANG ; Yingchun XU ; Xiaojiang ZHANG ; Fengbo ZHANG ; Ping JI ; Yi XIE ; Yuling XIAO ; Chuanqing WANG ; Pan FU ; Yuanhong XU ; Ying HUANG ; Ziyong SUN ; Zhongju CHEN ; Jingyong SUN ; Qing CHEN ; Yunzhuo CHU ; Sufei TIAN ; Zhidong HU ; Jin LI ; Yunsong YU ; Jie LIN ; Bin SHAN ; Yunmin XU ; Sufang GUO ; Yanyan WANG ; Lianhua WEI ; Keke LI ; Hong ZHANG ; Fen PAN ; Yunjian HU ; Xiaoman AI ; Chao ZHUO ; Danhong SU ; Dawen GUO ; Jinying ZHAO ; Hua YU ; Xiangning HUANG ; Wen'en LIU ; Yanming LI ; Yan JIN ; Chunhong SHAO ; Xuesong XU ; Wei LI ; Shanmei WANG ; Yafei CHU ; Lixia ZHANG ; Juan MA ; Shuping ZHOU ; Yan ZHOU ; Lei ZHU ; Jinhua MENG ; Fang DONG ; Zhiyong LÜ ; Fangfang HU ; Han SHEN ; Wanqing ZHOU ; Wei JIA ; Gang LI ; Jinsong WU ; Yuemei LU ; Jihong LI ; Qian SUN ; Jinju DUAN ; Jianbang KANG ; Xiaobo MA ; Yanqing ZHENG ; Ruyi GUO ; Yan ZHU ; Yunsheng CHEN ; Qing MENG ; Shifu WANG ; Xuefei HU ; Hua FANG ; Penghui ZHANG ; Bixia YU ; Ping GONG ; Haixia SHI ; Kaizhen WEN ; Yirong ZHANG ; Xiuli YANG ; Yiqin ZHAO ; Longfeng LIAO ; Jinhua WU ; Hongqin GU ; Lin JIANG ; Meifang HU ; Wen HE ; Jiao FENG ; Lingling YOU ; Dongmei WANG ; Dong'e WANG ; Yanyan LIU ; Yong AN ; Wenhui HUANG ; Juan LI ; Quangui SHI ; Juan YANG ; Abulimiti REZIWAGULI ; Lili HUANG ; Xuejun SHAO ; Xiaoyan REN ; Dong LI ; Qun ZHANG ; Xue CHEN ; Rihai LI ; Jieli XU ; Kaijie GAO ; Lu XU ; Lin LIN ; Zhuo ZHANG ; Jianlong LIU ; Min FU ; Yinghui GUO ; Wenchao ZHANG ; Zengguo WANG ; Kai JIA ; Yun XIA ; Shan SUN ; Huimin YANG ; Yan MIAO ; Jianping WANG ; Mingming ZHOU ; Shihai ZHANG ; Hongjuan LIU ; Nan CHEN ; Chan LI ; Cunshan KOU ; Shunhong XUE ; Jilu SHEN ; Wanqi MEN ; Peng WANG ; Xiaowei ZHANG ; Xiaoyan ZENG ; Wen LI ; Yan GENG ; Zeshi LIU
Chinese Journal of Infection and Chemotherapy 2024;24(6):627-637
Objective To monitor the susceptibility of clinical isolates to antimicrobial agents in healthcare facilities in major regions of China in 2023.Methods Clinical isolates collected from 73 hospitals across China were tested for antimicrobial susceptibility using a unified protocol based on disc diffusion method or automated testing systems.Results were interpreted using the 2023 Clinical & Laboratory Standards Institute (CLSI) breakpoints.Results A total of 445199 clinical isolates were collected in 2023,of which 29.0% were gram-positive and 71.0% were gram-negative.The prevalence of methicillin-resistant strains in Staphylococcus aureus,Staphylococcus epidermidis and other coagulase-negative Staphylococcus species (excluding Staphylococcus pseudintermedius and Staphylococcus schleiferi) (MRSA,MRSE and MRCNS) was 29.6%,81.9% and 78.5%,respectively.Methicillin-resistant strains showed significantly higher resistance rates to most antimicrobial agents than methicillin-susceptible strains (MSSA,MSSE and MSCNS).Overall,92.9% of MRSA strains were susceptible to trimethoprim-sulfamethoxazole and 91.4% of MRSE strains were susceptible to rifampicin.No vancomycin-resistant strains were found.Enterococcus faecalis had significantly lower resistance rates to most antimicrobial agents tested than Enterococcus faecium.A few vancomycin-resistant strains were identified in both E.faecalis and E.faecium.The prevalence of penicillin-susceptible Streptococcus pneumoniae was 93.1% in the isolates from children and and 95.9% in the isolates from adults.The resistance rate to carbapenems was lower than 15.0% for most Enterobacterales species except for Klebsiella,22.5% and 23.6% of which were resistant to imipenem and meropenem,respectively .Most Enterobacterales isolates were highly susceptible to tigecycline,colistin and polymyxin B,with resistance rates ranging from 0.6% to 10.0%.The resistance rate to imipenem and meropenem was 21.9% and 17.4% for Pseudomonas aeruginosa,respectively,and 67.5% and 68.1% for Acinetobacter baumannii,respectively.Conclusions Increasing resistance to the commonly used antimicrobial agents is still observed in clinical bacterial isolates.However,the prevalence of important crabapenem-resistant organisms such as crabapenem-resistant K.pneumoniae,P.aeruginosa,and A.baumannii showed a slightly decreasing trend.This finding suggests that strengthening bacterial resistance surveillance and multidisciplinary linkage are important for preventing the occurrence and development of bacterial resistance.
6.Establishment of basic tests and extended tests list for clinical laboratories in Shanghai community health service centers
Xiqing WANG ; Wei XIA ; Xuehua SHEN ; Duanqin DIAO ; Liang CHEN ; Jinsong GU ; Lei SHI ; Xiaomin CHEN ; Yonghong WANG ; Meifang SHI ; Shulong GAO ; Yan CHE ; Meifang SHEN
Chinese Journal of General Practitioners 2023;22(10):1017-1024
Objective:To develop a list of basic and expanded medical laboratory tests in community health service centers in Shanghai.Methods:The status quo of human and equipment resource allocation, the test items and quality control currently performed, the perspectives of various stakeholders, the capacity building of community clinical laboratory in community health service centers in Shanghai were investigated by quantitative survey and qualitative interview; and the rating scores of each test item were assessed by expert consultation using Delphi method. The expert focus discussion was conducted, and each test item was rated and classified. Finally a list of the basic tests and expanded tests in clinical laboratories of community health service center was developed.Results:A total of 247 questionnaires were distributed and 192 (77.7%) were answered. A list of 94 laboratory test items was screened out based on the questionnaire survey of the laboratories of the community health centers. Thirty one experts in the relevant areas were invited to rate the test items, the average authority coefficient of experts was 0.90, with which the weighted average of the expert ratings was made. There were 45 (47.9%) items scored 7 or higher, 38 (40.4%) scored between 5 and 7, and 11 (11.7%) scored less than 5. Based on the results of the expert focus discussion, 48 items were recommended as the basic tests and 46 items as the extended tests.Conclusion:In this study a list of tests recommended to clinical laboratories in Shanghai community health service centers has been developed, which contains 48 basic tests and 46 extended tests.
7.Ancient and modern medication laws of aromatic Chinese medicines in treating angina pectoris based on data mining
WANG Chaoping ; LUO Jing ; WAN Qiang ; CAO Meifang ; ZHA Qinglin ; LEI Zhiqiang ; Abid Naeem ; YANG Ming
Digital Chinese Medicine 2022;5(2):123-140
Objective To explore ancient and modern medication laws of aromatic Chinese medicines in treating angina pectoris, and to provide new ideas for the clinical treatment. Methods With “angina pectoris” as the key word, ancient books prescriptions and Chinese patent medicines related to angina pectoris were collected from China National Knowledge Infrastructure (CNKI), Traditional Chinese Medicine Database System, Chinese Medicine Prescription Database, New National Proprietary Chinese Medicine (2nd edition), and Chinese Pharmacopoeia (2020 edition) from January 1, 2015 to December 31, 2021. Core high-frequency aromatic Chinese medicines were defined, and their potential medication rules were analyzed and summarized. Microsoft Access 2010 was used for data management. Data analysis software, including Excel and IBM SPSS Modeler 18.0 were used for drug association rule analysis, and Cytoscape 3.7.2 for visual display. Results There were 67 ancient books prescriptions and 258 Chinese patent medicines containing aromatic Chinese medicines treating angina pectoris collected from relevant databases. In ancient books prescriptions, there were nine aromatic Chinese medicines with the frequency ≥10, and the most commonly used medicine was Danggui (Angelicae Sinensis Radix), followed by Chenpi (Citri Reticulatae Pericarpium). There were 33 aromatic Chinese medicines with the frequency ≥10 in Chinese patent medicines, and the most commonly used medicine was Danshen (Salviae Miltiorrhizae Radix et Rhizoma), followed by Chuanxiong (Chuanxiong Rhizoma) and Sanqi (Notoginseng Radix et Rhizoma). In ancient books prescriptions, the medicines mainly belonged to intenal-warming medicines, Qi-regulating medicines, and blood circulation promoting and blood stasis removing medicines. There were eight medicine pairs with confidence equal to 100% in ancient books prescriptions, the most frequently used pairs were Chuanxiong (Chuanxiong Rhizoma) + Danggui (Angelicae Sinensis Radix), and Xiangfu (Cyperi Rhizoma) + Chenpi (Citri Reticulatae Pericarpium). In Chinese patent medicines, the aromatic Chinese medicine Chuanxiong (Chuanxiong Rhizoma) could be combined with many other Chinese medicines, among which the Confidence and Support of Chuanxiong (Chuanxiong Rhizoma) + Danshen (Salviae Miltiorrhizae Radix et Rhizoma) were at a high level. Conclusion Aromatic Chinese medicines for the treatment of angina pectoris of coronary heart disease are mainly warm, and the flavors are mainly pungent, sweet, and bitter. They mainly access to the liver, gallbladder, and pericardium meridians. The treatment of angina pectoris of coronary heart disease mainly focuses on warming heart pulse, and promoting blood circulation and removing blood stasis.
8.Donor-derived cell-free DNA can discriminate acute rejection types after kidney transplantation
Yamei CHENG ; Luying GUO ; Wenhua LEI ; Junhao LYU ; Pengpeng YAN ; Jia SHEN ; Meifang WANG ; Qin ZHOU ; Huiping WANG ; Jianghua CHEN ; Rending WANG
Chinese Journal of Nephrology 2022;38(1):32-38
Objective:To explore the value of detecting plasma donor-derived free DNA (dd-cfDNA) fraction in distinguishing antibody mediated-rejection (ABMR) and T cell-mediated rejection (TCMR) of renal allografts.Methods:Patients with acute rejection confirmed by allograft biopsy in the First Affiliated Hospital of Medical College of Zhejiang University from December 1, 2017 to July 18, 2019 were retrospectively included. Based on pathological classification of Banff renal allograft rejection in 2017, the patients were divided into ABMR group and TCMR group, and the latter was subdivided into TCMR Ⅰ subgroup and TCMR Ⅱ subgroup. The second generation sequencing and target region capture were used to detect candidates' peripheral blood dd-cfDNA. The demographic and clinicopathological data of the two groups were compared. The receiver operating characteristic curve (ROC) was used to evaluate the differential value of plasma dd-cfDNA and serum creatinine levels in two kinds of acute renal allograft rejection.Results:A total of 60 patients with acute rejection of renal transplantation were enrolled in this study, including 42 patients in TCMR group and 18 patients in ABMR group. The plasma dd-cfDNA percentage (%) in the ABMR group was significantly higher than that in the TCMR group [2.33(1.19, 4.30)% vs 0.98(0.50, 1.82)%, P=0.001]. The absolute value of dd-cfDNA in ABMR group was obviously higher than that in TCMR group [0.94(0.60, 2.27) ng/ml vs 0.43(0.20, 0.96) ng/ml, P=0.003]. ROC analysis to discriminate TCMR from ABMR showed that, the area under the curve ( AUC) of dd-cfDNA% was 0.76(95% CI 0.64-0.88), when the threshold was 1.11%, the sensitivity and specificity were 88.89% and 59.52%, respectively; the AUC of absolute value of dd-cfDNA was 0.74(95% CI 0.61-0.86), when the threshold was 0.53 ng/ml, the sensitivity was 88.89% and the specificity was 54.76%. TCMR subgroups were further analyzed, there was no significant difference between TCMR subgroups on the absolute value and percentage of dd-cfDNA (both P>0.05); dd-cfDNA% in ABMR group was apparently higher than that in TCMRⅠ subgroups ( P=0.008) and TCMRⅡsubgroup ( P=0.030). The absolute value of dd-cfDNA in ABMR group was significantly higher than that in TCMRⅠsubgroups ( P=0.003). Conclusion:Plasma dd-cfDNA level may help to distinguish between ABMR and TCMR rejection.
9.Research progress of dihydropyrimidinase deficiency
Meifang LEI ; Hong LI ; Yuqin ZHANG
Chinese Journal of Applied Clinical Pediatrics 2021;36(1):70-73
Characterized by dihydropyrimidinuria, dihydropyrimidinase (DHP) deficiency refers to a rare disorder of pyrimidine degradation, with high phenotypic heterogeneity.The disease-causing gene is DPYS, and less than 40 cases were reported worldwide.Urinary gas chromatography/mass spectrometer (GC/MS) can screen clinically suspected patients, and gene sequencing is the main means of the diagnosis of the disease.This article reviews the pathogenesis, clinical manifestation, genotype and recent research progress of the disease.
10.Analysis of DPYS gene variants in a child with dihydropyrimidase deficiency.
Meifang LEI ; Hong LI ; Yuqin ZHANG ; Jianbo SHU ; Qianqian ZHANG ; Qing LI
Chinese Journal of Medical Genetics 2020;37(6):650-652
OBJECTIVE:
To explore the genetic basis for a child with dihydropyrimidase (DHP) deficiency.
METHODS:
High-throughput sequencing was carried out for the child. Suspected variants were verified by using Sanger sequencing.
RESULTS:
The proband was found to carry compound heterozygous variants of the DPYS gene, namely c.1468C>T (a missense variant) and c.1339-1363del (a frameshifting variant).
CONCLUSION
The compound heterozygous variants of the DPYS gene probably underlie the DHP in this child. Above result has enabled genetic counseling and prenatal diagnosis for his parents.

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