1.Clinical characteristics of 1126 cases of malignant lymphoma
Lei YANG ; Yuping GONG ; Xi YANG ; Ruiqing ZHUO ; Bohui ZHENG ; Hongyun XING ; Guangcui HE
Journal of Leukemia & Lymphoma 2010;19(5):290-292
Objective To analyze the clinical characteristics of 1126 cases of malignant lymphoma in our hospital from 2005 to 2009. Methods Age, sex, pathological classification, onset locus and clinical staging of the malignant lymphoma were analyzed and summed up, based on the data of the malignant lymphoma patient information in hospital case database from 2005 to 2009 and excluded the cases as pathology was not sure and the repeated cases. Results A male:female ratio of malignant lymphoma in inpatient was 1.94:1. The majority of Hodgkin lymphoma (HL) manifested in 20-40 years old, mixed cellularity (64.16 %) and nodular sclerosis (29.48%) was most common. The majority of non-Hodgkin lymphoma (NHL) manifested in 50-70 years old, the most common pathological classifications were diffuse large B-cell lymphoma (53.31 %), extranode nasal-type NK/T cell lymphoma (7.35 %), mantle cell lymphoma (6.40 %), B chronic lymphocytic leukemia/small B-cell lymphoma (4.30 %), anaplastic large cell lymphoma (4.09 %), precursor T cell lymphoblastic leukemia/lymphoma (3.88 %), peripheral T cell lymphoma but not otherwise specified (3.46 %), angioimmunoblastic lymphoma(3.04 %), follicular lymphoma(2.94 %), Burkitt lymphoma (2.52 %). The onset locus of both HL and NHL most often involved lymph nodes of the cervical region. Conclusion The gender, age, pathological classification, onset locus and clinical staging of malignant lymphoma were different between HL and NHL.
2.Feasibility study of expectant management of different degrees of vaginal fluid in pregnant women with premature rupture of membranes in the second trimester
Yimin GAO ; Suhui WU ; Haixia SHANG ; Yanlin YANG ; Bohui ZHOU ; Xi YANG
Chinese Journal of Obstetrics and Gynecology 2024;59(2):121-129
Objective:To investigate the feasibility of expectant management of different degrees of vaginal fluid in pregnant women with premature rupture of membranes in the second trimester.Methods:A retrospective cohort study was conducted to collect 103 pregnant women who were diagnosed with premature rupture of membranes in the second trimester of pregnancy and insisted on continuing the pregnancy in Shanxi Bethune Hospital from July 2012 to July 2022. According to the degree of vaginal fluid, pregnant women were divided into rupture group (with typical vaginal fluid, 48 cases) and leakage group (without typical vaginal fluid, 55 cases). The rupture latency (the time from rupture of membranes to termination of pregnancy), gestational weeks of termination, indications and methods of termination of pregnancy, maternal infection related indicators and perinatal outcomes were compared between the two groups. Univariate regression model was used to analyze the correlation between different degrees of vaginal fluid in pregnant women with premature rupture of membranes and maternal and neonatal outcomes.Results:(1) Obstetric indicators: there was no significant difference in the gestational age of rupture of membranes between the two groups ( P>0.05). However, the proportion of rupture latency >28 days in the leakage group was significantly higher than that in the rupture group [42% (23/55) vs 13% (6/48); χ2=33.673, P<0.001], and the incidence of pregnancy termination ≥28 weeks was significantly higher [47% (26/55) vs 19% (9/48); χ2=9.295, P=0.002]. (2) Indications and methods of termination: the incidence of progressive reduction of amniotic fluid as the indication for termination in the leakage group was significantly lower than that in the rupture group [22% (12/55) vs 42% (20/48); χ2=4.715, P=0.030], and the incidence of full-term termination in the leakage group was significantly higher than that in the rupture group [31% (17/55) vs 12% (6/48); χ2=5.008, P=0.025], while there were no significant differences in the indications of termination of pregnancy, including amniotic cavity infection, uterine contraction failure and fetal distress between the two groups (all P>0.05). The incidence of induced labor or spontaneous contraction in the leakage group was significantly lower than that in the rupture group [53% (29/55) vs 81% (39/48); χ2=9.295, P=0.002], while the cesarean section rate and vaginal delivery rate were similar between the two groups (both P>0.05). (3) Infection related indicators: the incidence of amniotic cavity infection in the leakage group was significantly higher than that in the rupture group [31% (17/55) vs 13% (6/48); χ2=4.003, P=0.045]. However, there were no significant differences in the elevation of inflammatory indicators, the positive rate of cervical secretion bacterial culture and the incidence of tissue chorioamnionitis between the two groups (all P>0.05). (4) Perinatal outcomes: the live birth rate in the leakage group was significantly higher than that in the rupture group [51% (28/55) vs 27% (13/48); χ2=5.119, P=0.024]. The proportion of live births with 1-minute Apgar score >7 in the leakage group was significantly higher than that in the rupture group [38% (21/55) vs 17% (8/48); χ2=4.850, P=0.028]. However, there were no significant differences in the birth weight of live births and the incidence of neonatal complications between the two groups (all P>0.05). (5) Univariate regression analysis showed that compared with the rupture group, the leakage group had a higher risk of pregnancy termination at ≥28 gestational weeks ( RR=2.521, 95% CI: 1.314-4.838; P=0.002), amniotic infection ( RR=2.473, 95% CI: 1.061-5.764; P=0.025), perinatal survival ( RR=1.880, 95% CI: 1.104-3.199; P=0.014). Conclusion:Compared with pregnant women with typical vaginal fluid in the second trimester of premature rupture of membranes, expectant treatment for pregnant women with atypical vaginal fluid is more feasible, which could effectively prolong the gestational weeks and improve the perinatal live birth rate.
3.Identification, expression and DNA variation analysis of high affinity nitrate transporter NRT2/3 gene family in Sorghum bicolor.
Shanshan ZHAO ; Zhiqiang GUO ; Lixun ZHU ; Jiali FAN ; Bohui YANG ; Wenting CHAI ; Huiqiong SUN ; Fan FENG ; Yuexiu LIANG ; Chunlei ZOU ; Xiaodong JIANG ; Weijun ZHAO ; Jinhui LÜ ; Chunlai ZHANG
Chinese Journal of Biotechnology 2023;39(7):2743-2761
Nitrate is the main form of inorganic nitrogen that crop absorbs, and nitrate transporter 2 (NRT2) is a high affinity transporter using nitrate as a specific substrate. When the available nitrate is limited, the high affinity transport systems are activated and play an important role in the process of nitrate absorption and transport. Most NRT2 cannot transport nitrates alone and require the assistance of a helper protein belonging to nitrate assimilation related family (NAR2) to complete the absorption or transport of nitrates. Crop nitrogen utilization efficiency is affected by environmental conditions, and there are differences between varieties, so it is of great significance to develop varieties with high nitrogen utilization efficiency. Sorghum bicolor has high stress tolerance and is more efficient in soil nitrogen uptake and utilization. The S. bicolor genome database was scanned to systematically analyze the gene structure, chromosomal localization, physicochemical properties, secondary structure and transmembrane domain, signal peptide and subcellular localization, promoter region cis-acting elements, phylogenetic evolution, single nucleotide polymorphism (SNP) recognition and annotation, and selection pressure of the gene family members. Through bioinformatics analysis, 5 NRT2 gene members (designated as SbNRT2-1a, SbNRT2-1b, SbNRT2-2, SbNRT2-3, and SbNRT2-4) and 2 NAR2 gene members (designated as SbNRT3-1 and SbNRT3-2) were identified, the number of which was less than that of foxtail millet. SbNRT2/3 were distributed on 3 chromosomes, and could be divided into four subfamilies. The genetic structure of the same subfamilies was highly similar. The average value of SbNRT2/3 hydrophilicity was positive, indicating that they were all hydrophobic proteins, whereas α-helix and random coil accounted for more than 70% of the total secondary structure. Subcellular localization occurred on plasma membrane, where SbNRT2 proteins did not contain signal peptides, but SbNRT3 proteins contained signal peptides. Further analysis revealed that the number of transmembrane domains of the SbNRT2s family members was greater than 10, while that of the SbNRT3s were 2. There was a close collinearity between NRT2/3s of S. bicolor and Zea mays. Protein domains analysis showed the presence of MFS_1 and NAR2 protein domains, which supported executing high affinity nitrate transport. Phylogenetic tree analysis showed that SbNRT2/3 were more closely related to those of Z. mays and Setaria italic. Analysis of gene promoter cis-acting elements indicated that the promoter region of SbNRT2/3 had several plant hormones and stress response elements, which might respond to growth and environmental cues. Gene expression heat map showed that SbNRT2-3 and SbNRT3-1 were induced by nitrate in the root and stem, respectively, and SbNRT2-4 and SbNRT2-3 were induced by low nitrogen in the root and stem. Non-synonymous SNP variants were found in SbNRT2-4 and SbNRT2-1a. Selection pressure analysis showed that the SbNRT2/3 were subject to purification and selection during evolution. The expression of SbNRT2/3 gene and the effect of aphid infection were consistent with the expression analysis results of genes in different tissues, and SbNRT2-1b and SbNRT3-1 were significantly expressed in the roots of aphid lines 5-27sug, and the expression levels of SbNRT2-3, SbNRT2-4 and SbNRT3-2 were significantly reduced in sorghum aphid infested leaves. Overall, genome-wide identification, expression and DNA variation analysis of NRT2/3 gene family of Sorghum bicolor provided a basis for elucidating the high efficiency of sorghum in nitrogen utilization.
Nitrate Transporters
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Nitrates/metabolism*
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Sorghum/metabolism*
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Anion Transport Proteins/metabolism*
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Phylogeny
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Protein Sorting Signals/genetics*
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Nitrogen/metabolism*
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DNA
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Gene Expression Regulation, Plant
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Plant Proteins/metabolism*