1.Investigation of nutrition status and nursing intervention of 98 pregnant women with abnormal glucose metabolism
Xiao-Yun YANG ; La-Bian YI ; Yan-Hi CHENG
Chinese Journal of Modern Nursing 2009;15(25):2487-2489
mothers and babies.
2.Clinical effect of 3D-guided percutaneous hollow screw fixation for patients with Herbert Ⅰb-type scaphoid fractures
Ming LUO ; Cheng-La YI ; Zhen-Zhong FENG ; Xian-Yi YANG
Journal of Regional Anatomy and Operative Surgery 2018;27(4):280-283
Objective To investigate the clinical value of individual design combined with 3D-guided percutaneous hollow screw fixation for patients with Herbert Ⅰb-type scaphoid fractures.Methods Totally 93 cases of Herbert Ⅰb-type scaphoid fractures patients who were admitted into our hospital from November 2015 to April 2017 were divided into the external fixation group(31 cases),the internal fixation group(29 cases)and the minimal invasion group(33 cases).The external fixation group was treated with cast immobilization;the internal fixation group was treated with open reduction and internal fixation;the minimal invasion group was treated with individual design combined with 3D-guided percutaneous hollow screw fixation.The time of bone union,return-to-work time,rateof bone union,wrist range of motion (ROM)and Mayo function score of the three groups were compared.Results The time of bone union,return-to-work time and wrist range of motion in the minimal invasion group were(6.7 ±0.9)weeks,(7.3 ±0.9)weeks and(103.8 ±5.9)°respectively,which were better than the other two groups with statistically significant difference(P<0.05).The bone union rate of the external fixation group,the internal fixation group,and the minimal invasion group were 83%,86.2%and 100%respectively.The difference between the minimal invasion group and the other two groups were statistically significant(P<0.05).The Mayo function score of the external fixation group,the internal fixation group, and the minimal invasion group were 71.0%,82.8% and 97.0% respectively.The difference between the minimal invasion group and the other two groups were statistically significant(P<0.05).Conclusion Individual design combined with 3D-guided percutaneous hollow screw fixation treatment has exact effect for Herbert Ⅰb-type scaphoid fractures with fast recovery,and it's worthy of wildly use.
3.Modified lumbopelvic fixation for sacral and L5 fractures associated with spinopelvic instability: a case report and introduction of the surgical technique.
Cheng-la YI ; Xiang-Jun BAI ; Xian-Zhou SONG ; Zhan-Fei LI ; Dan HU
Chinese Journal of Traumatology 2011;14(5):304-308
Posterior lumbopelvic fixation with iliac screws is the most commonly used method for unstable spinopelvic injuries. It has certain limitations including inability to use distraction along the spinopelvic rod as an indirect reduction maneuver, need for complex 3-dimensional rod contouring and complications such as hardware prominence and soft tissue coverage. In the present case report, we described a surgical technique of lumbopelvic fixation with sacral alar screws for traumatic spinopelvic instability resulted from a unilateral Denis-III comminuted sacral fracture and the L5 burst fracture. On the opposite side of the sacral fracture, caudal screws were implanted into the pedicle of the S1, whereas on the side of sacral fracture, two sacral alar screws were placed parallel to the superior sacral endplate as well as the plane of sacroiliac joint. In addition, horizontal stabilization was conducted with cross-link connections to maintain the longitudinal traction. For sacral fracture associated with traumatic spinopelvic instability, this modified lumbopelvic fixation technique using sacral alar screws makes longitudinal reduction easier, requires less rod contouring, and reduces hardware prominence without compromising the stability.
Bone Screws
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Fracture Fixation, Internal
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Fractures, Bone
;
surgery
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Fractures, Comminuted
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Humans
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Sacrum
;
surgery
;
Spinal Fractures
;
surgery
4.Phase 1 trial of the safety, pharmacokinetics, and antiviral activity of EDP-514 in untreated viremic chronic hepatitis B patients
Man-Fung YUEN ; Wan-Long CHUANG ; Cheng-Yuan PENG ; Wen-Juei JENG ; Wei-Wen SU ; Ting-Tsung CHANG ; Chi-Yi CHEN ; Yao-Chun HSU ; Guy DE LA ROSA ; Alaa AHMAD ; Ed LUO ; Annie L. CONERY
Clinical and Molecular Hepatology 2024;30(3):375-387
Background/Aims:
Oral EDP-514 is a potent core protein inhibitor of hepatitis B virus (HBV) replication, which produced a >4-log viral load reduction in HBV-infected chimeric mice with human liver cells. This study evaluated the safety, pharmacokinetics, and antiviral activity of three doses of EDP-514 in treatment-naive viremic patients with HBeAgpositive or -negative chronic HBV infection.
Methods:
Patients with HBsAg detectable at screening and at least 6 months previously were eligible. HBeAg-positive and -negative patients had a serum/plasma HBV DNA level ≥20,000 and ≥2,000 IU/mL, respectively. Twenty-five patients were randomized to EDP-514 200 (n=6), 400 (n=6) or 800 mg (n=7) or placebo (n=6) once daily for 28 days.
Results:
A dose-related increase in EDP-514 exposure (AUClast and Cmax) was observed across doses. At Day 28, mean reductions in HBV DNA were –2.9, –3.3, –3.5 and –0.2 log10 IU/mL with EDP-514 200 mg, 400 mg, 800 mg, and placebo groups, respectively. The corresponding mean change from baseline for HBV RNA levels was –2.9, –2.4, –2.0, and –0.02 log10 U/mL. No virologic failures were observed. No clinically meaningful changes from baseline were observed for HBsAg, HBeAg or HBcrAg. Nine patients reported treatment emergent adverse events of mild or moderate severity with no discontinuations, serious AEs or deaths.
Conclusions
In treatment-naïve viremic patients, oral EDP-514 was generally safe and well-tolerated, displayed PK profile supportive of once-daily dosing, and markedly reduced HBV DNA and HBV RNA.
5.Evaluation of the effects of standard rescue procedure on severe trauma treatment in china.
Xiao-Feng YIN ; Tian-Bing WANG ; Pei-Xun ZHANG ; Yu-Hui KOU ; Dian-Ying ZHANG ; Kai YU ; De-Cheng LYU ; Mao-Zheng LIU ; Dong-Sheng ZHOU ; Peng ZHANG ; Jue-Hua JING ; Wei-Wei GE ; Li Ying CAO ; Guo-Sheng WANG ; Shao-Jie DENG ; Weng-Hua LIU ; Mao ZHANG ; Yong-An XU ; Kun ZHANG ; Bing LI ; Wei WANG ; Zhong-Li GAO ; Cheng-La YI ; Bao-Guo JIANG ;
Chinese Medical Journal 2015;128(10):1301-1305
BACKGROUNDThis study aimed to evaluate the effects of standard rescue procedure (SRP) in improving severe trauma treatments in China.
METHODSThis study was conducted in 12 hospitals located in geographically and industrially different cities in China. A standard procedure on severe trauma rescue was established as a general rule for staff training and patient treatment. A regional network (system) efficiently integrating prehospital rescue, emergency room treatments, and hospital specialist treatments was built under the rule for information sharing and improving severe trauma treatments. Treatment outcomes were compared between before and 1 year after the implementation of the SRP.
RESULTSThe outcomes of a total of 74,615 and 12,051 trauma cases were collected from 12 hospitals before and after the implementation of the SRP. Implementation of the SRP led to efficient cooperation and information sharing of different treatment services. The emergency response time, prehospital transit time, emergency rescue time, consultation call time, and mortality rate of patients were 24.24 ± 4.32 min, 45.69 ± 3.89 min, 6.38 ± 1.05 min, 17.53 ± 0.72 min, and 33.82% ± 3.87% (n = 441), respectively, before the implementation of the standardization and significantly reduced to 10.11 ± 3.21 min, 22.39 ± 4.32 min, 3.26 ± 0.89 min, 3.45 ± 0.45 min, and 20.49% ± 3.11%, separately (n = 495, P < 0.05) after that.
CONCLUSIONSStaff training and SRP can significantly improve the efficiency of severe trauma treatments in China.
Adolescent ; Adult ; Aged ; Child ; Child, Preschool ; China ; Emergency Medical Services ; standards ; Female ; Humans ; Infant ; Infant, Newborn ; Male ; Middle Aged ; Wounds and Injuries ; Young Adult
6.The role of tyrosine phosphatase Shp2 in spermatogonial differentiation and spermatocyte meiosis.
Yang LI ; Wen-Sheng LIU ; Jia YI ; Shuang-Bo KONG ; Jian-Cheng DING ; Yi-Nan ZHAO ; Ying-Pu TIAN ; Gen-Sheng FENG ; Chao-Jun LI ; Wen LIU ; Hai-Bin WANG ; Zhong-Xian LU
Asian Journal of Andrology 2020;22(1):79-87
The transition from spermatogonia to spermatocytes and the initiation of meiosis are key steps in spermatogenesis and are precisely regulated by a plethora of proteins. However, the underlying molecular mechanism remains largely unknown. Here, we report that Src homology domain tyrosine phosphatase 2 (Shp2; encoded by the protein tyrosine phosphatase, nonreceptor type 11 [Ptpn11] gene) is abundant in spermatogonia but markedly decreases in meiotic spermatocytes. Conditional knockout of Shp2 in spermatogonia in mice using stimulated by retinoic acid gene 8 (Stra8)-cre enhanced spermatogonial differentiation and disturbed the meiotic process. Depletion of Shp2 in spermatogonia caused many meiotic spermatocytes to die; moreover, the surviving spermatocytes reached the leptotene stage early at postnatal day 9 (PN9) and the pachytene stage at PN11-13. In preleptotene spermatocytes, Shp2 deletion disrupted the expression of meiotic genes, such as disrupted meiotic cDNA 1 (Dmc1), DNA repair recombinase rad51 (Rad51), and structural maintenance of chromosome 3 (Smc3), and these deficiencies interrupted spermatocyte meiosis. In GC-1 cells cultured in vitro, Shp2 knockdown suppressed the retinoic acid (RA)-induced phosphorylation of extracellular-regulated protein kinase (Erk) and protein kinase B (Akt/PKB) and the expression of target genes such as synaptonemal complex protein 3 (Sycp3) and Dmc1. Together, these data suggest that Shp2 plays a crucial role in spermatogenesis by governing the transition from spermatogonia to spermatocytes and by mediating meiotic progression through regulating gene transcription, thus providing a potential treatment target for male infertility.
Animals
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Cell Cycle Proteins/genetics*
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Cell Line
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Cell Survival
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Chondroitin Sulfate Proteoglycans/genetics*
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Chromosomal Proteins, Non-Histone/genetics*
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Gene Expression Regulation
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Gene Knockdown Techniques
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Infertility, Male
;
Male
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Meiosis/genetics*
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Mice
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Mice, Knockout
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Mice, Transgenic
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Phosphate-Binding Proteins/genetics*
;
Protein Tyrosine Phosphatase, Non-Receptor Type 11/genetics*
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Rad51 Recombinase/genetics*
;
Real-Time Polymerase Chain Reaction
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Spermatocytes/metabolism*
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Spermatogenesis/genetics*
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Spermatogonia/metabolism*
7.Neuroglobin Facilitates Neuronal Oxygenation through Tropic Migration under Hypoxia or Anemia in Rat: How Does the Brain Breathe?
Chun-Yang LI ; Hai-Feng JIANG ; Li LI ; Xiao-Jing LAI ; Qian-Rong LIU ; Shang-Bin YU ; Cheng-La YI ; Xiao-Qian CHEN
Neuroscience Bulletin 2023;39(10):1481-1496
The discovery of neuroglobin (Ngb), a brain- or neuron-specific member of the hemoglobin family, has revolutionized our understanding of brain oxygen metabolism. Currently, how Ngb plays such a role remains far from clear. Here, we report a novel mechanism by which Ngb might facilitate neuronal oxygenation upon hypoxia or anemia. We found that Ngb was present in, co-localized to, and co-migrated with mitochondria in the cell body and neurites of neurons. Hypoxia induced a sudden and prominent migration of Ngb towards the cytoplasmic membrane (CM) or cell surface in living neurons, and this was accompanied by the mitochondria. In vivo, hypotonic and anemic hypoxia induced a reversible Ngb migration toward the CM in cerebral cortical neurons in rat brains but did not alter the expression level of Ngb or its cytoplasm/mitochondria ratio. Knock-down of Ngb by RNA interference significantly diminished respiratory succinate dehydrogenase (SDH) and ATPase activity in neuronal N2a cells. Over-expression of Ngb enhanced SDH activity in N2a cells upon hypoxia. Mutation of Ngb at its oxygen-binding site (His64) significantly increased SDH activity and reduced ATPase activity in N2a cells. Taken together, Ngb was physically and functionally linked to mitochondria. In response to an insufficient oxygen supply, Ngb migrated towards the source of oxygen to facilitate neuronal oxygenation. This novel mechanism of neuronal respiration provides new insights into the understanding and treatment of neurological diseases such as stroke and Alzheimer's disease and diseases that cause hypoxia in the brain such as anemia.
Rats
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Animals
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Neuroglobin/metabolism*
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Globins/metabolism*
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Nerve Tissue Proteins/metabolism*
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Neurons/metabolism*
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Hypoxia/metabolism*
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Brain/metabolism*
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Oxygen
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Anemia/metabolism*
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Adenosine Triphosphatases/metabolism*
8.Tumor-derived neomorphic mutations in ASXL1 impairs the BAP1-ASXL1-FOXK1/K2 transcription network.
Yu-Kun XIA ; Yi-Rong ZENG ; Meng-Li ZHANG ; Peng LIU ; Fang LIU ; Hao ZHANG ; Chen-Xi HE ; Yi-Ping SUN ; Jin-Ye ZHANG ; Cheng ZHANG ; Lei SONG ; Chen DING ; Yu-Jie TANG ; Zhen YANG ; Chen YANG ; Pu WANG ; Kun-Liang GUAN ; Yue XIONG ; Dan YE
Protein & Cell 2021;12(7):557-577
Additional sex combs-like 1 (ASXL1) interacts with BRCA1-associated protein 1 (BAP1) deubiquitinase to oppose the polycomb repressive complex 1 (PRC1)-mediated histone H2A ubiquitylation. Germline BAP1 mutations are found in a spectrum of human malignancies, while ASXL1 mutations recurrently occur in myeloid neoplasm and are associated with poor prognosis. Nearly all ASXL1 mutations are heterozygous frameshift or nonsense mutations in the middle or to a less extent the C-terminal region, resulting in the production of C-terminally truncated mutant ASXL1 proteins. How ASXL1 regulates specific target genes and how the C-terminal truncation of ASXL1 promotes leukemogenesis are unclear. Here, we report that ASXL1 interacts with forkhead transcription factors FOXK1 and FOXK2 to regulate a subset of FOXK1/K2 target genes. We show that the C-terminally truncated mutant ASXL1 proteins are expressed at much higher levels than the wild-type protein in ASXL1 heterozygous leukemia cells, and lose the ability to interact with FOXK1/K2. Specific deletion of the mutant allele eliminates the expression of C-terminally truncated ASXL1 and increases the association of wild-type ASXL1 with BAP1, thereby restoring the expression of BAP1-ASXL1-FOXK1/K2 target genes, particularly those involved in glucose metabolism, oxygen sensing, and JAK-STAT3 signaling pathways. In addition to FOXK1/K2, we also identify other DNA-binding transcription regulators including transcription factors (TFs) which interact with wild-type ASXL1, but not C-terminally truncated mutant. Our results suggest that ASXL1 mutations result in neomorphic alleles that contribute to leukemogenesis at least in part through dominantly inhibiting the wild-type ASXL1 from interacting with BAP1 and thereby impairing the function of ASXL1-BAP1-TF in regulating target genes and leukemia cell growth.