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      • KCI등재

        Outcomes of Posterior Lumbar Hemivertebra Resection and Short Fusion in Patients With Severe Sacral Tilt

        Shengru Wang,Jianguo Zhang,Yanbin Zhang,You Du,Yang Yang,Guanfeng Lin 대한척추신경외과학회 2021 Neurospine Vol.18 No.3

        Objective: To introduce surgical strategies to restore coronal balance during limited fusion for early lumbar hemivertebra resection in patients with severe sacral tilt. Methods: Sacral tilt was defined as a sacral tilt angle ≥5, and severe sacral tilt was defined as a sacral tilt angle >10. From July 2004 to December 2017, 73 consecutive patients treated with posterior hemivertebra resection and short fusion in our institution were evaluated. Severe sacral tilt was noted in 26 patients (14 boys and 12 girls), and all were enrolled in this study. Undercorrection of the primary lumbar curve as compensation for the sacral tilt and short fusion was performed in these patients. The medical charts and imaging data of the patients were retrospectively reviewed to evaluate the outcomes. Results: All patients were followed for at least 2 years. The mean age at the time of surgery was 3.7 (2–9) years old, with a total of 31 lumbar hemivertebra excised. On average, 2.8 (2–5) segments were fused for each patient. Sacral tilt minimally improved from 14.5° preoperatively to 13.6° postoperatively (p=0.15) and remained stable at the follow-up. The overall lumbar curve was 41.9° preoperatively, 11.7° immediately postoperatively, and 14.6° at the final follow-up. The segmental scoliosis curve was 39.1° preoperatively, 9.7° immediately postoperatively, and 11.2° at the final follow-up. Segmental kyphosis was corrected from 27.2° to 6.5° after the surgery and was 7.1° at the latest follow-up. Conclusion: Sacral tilt is seen in patients with congenital scoliosis in lumbar hemivertebra. Undercorrection of the lumbar curve and segmental scoliosis to compensate for sacral tilt and short fusion after hemivertebra resection may be helpful to restore coronal balance and preserve mobility in segments in patients with pronounced severe sacral tilt.

      • KCI등재

        Purification and characterization of exo-polygalacturonase from Zygoascus hellenicus V25 and its potential application in fruit juice clarification

        Xiaohua Lu,Jianguo Lin,Changgao Wang,Xin Du,Jun Cai 한국식품과학회 2016 Food Science and Biotechnology Vol.25 No.5

        The purification and characterization of the extracellular polygalacturonase from Zygoascus hellenicus V25 submerged culture using orange peel waste were investigated. This polygalacturonase, with a molecular weight of 75.28 kDa, was purified to 16.89 purification fold with a recovery of 18.46% and specific activity of 2469.77 U/mg protein by ammonium sulfate precipitation, DEAE cellulose chromatography, and Sephadex G-100 gel filtration. The enzyme exhibited maximum activity at 60oC and pH 5.0 and was stable over a wide range of pH levels (3.0-11.0). Moreover, enzyme activity was enhanced by Cu2+ and cysteine, whereas it was strongly inhibited by Hg2+. The extent of enzymatic hydrolysis was negatively correlated with the degree of pectin esterification. Km and Vmax values of the polygalacturonase were 5.44 mg/mL and 61.73 μmol/(min·mg), respectively. The polygalacturonase was applied in the juice clarification of four fruits, and results showed that the percentage transmittance at 660 nm increased by 3.51, 4.36, 8.04, and 12.2%.

      • SCIESCOPUSKCI등재

        Purification and characterization of exo-polygalacturonase from Zygoascus hellenicus V25 and its potential application in fruit juice clarification

        Lu, Xiaohua,Lin, Jianguo,Wang, Changgao,Du, Xin,Cai, Jun 한국식품과학회 2016 Food Science and Biotechnology Vol.25 No.5

        The purification and characterization of the extracellular polygalacturonase from Zygoascus hellenicus V25 submerged culture using orange peel waste were investigated. This polygalacturonase, with a molecular weight of 75.28 kDa, was purified to 16.89 purification fold with a recovery of 18.46% and specific activity of 2469.77 U/mg protein by ammonium sulfate precipitation, DEAE cellulose chromatography, and Sephadex G-100 gel filtration. The enzyme exhibited maximum activity at $60^{\circ}C$ and pH 5.0 and was stable over a wide range of pH levels (3.0-11.0). Moreover, enzyme activity was enhanced by $Cu^{2+}$ and cysteine, whereas it was strongly inhibited by $Hg^{2+}$. The extent of enzymatic hydrolysis was negatively correlated with the degree of pectin esterification. $K_m$ and $V_{max}$ values of the polygalacturonase were 5.44 mg/mL and $61.73{\mu}mol/(min{\cdot}mg)$, respectively. The polygalacturonase was applied in the juice clarification of four fruits, and results showed that the percentage transmittance at 660 nm increased by 3.51, 4.36, 8.04, and 12.2%.

      • KCI등재

        Protein target identifi cation of ginsenosides in skeletal muscle tissues: discovery of natural smallmolecule activators of muscle-type creatine kinase

        Feiyan Chen,Kexuan Zhu,Lin Chen,Liufeng Ouyang,Cuihua Chen,Ling Gu,Yucui Jiang,Zhongli Wang,Zixuan Lin,Qiang Zhang,Xiao Shao,Jianguo Dai,Yunan Zhao 고려인삼학회 2020 Journal of Ginseng Research Vol.44 No.3

        Background: Ginseng effectively reduces fatigue in both animal models and clinical trials. However, themechanism of action is not completely understood, and its molecular targets remain largely unknown. Methods: By screening for proteins that interact with the primary components of ginseng (ginsenosides)in an affinity chromatography assay, we have identified muscle-type creatine kinase (CK-MM) as a potentialtarget in skeletal muscle tissues. Results: Biolayer interferometry analysis showed that ginsenoside metabolites, instead of parent ginsenosides,had direct interaction with recombinant human CK-MM. Subsequently, 20(S)-protopanaxadiol(PPD), which is a ginsenoside metabolite and displayed the strongest interaction with CK-MM in thestudy, was selected as a representative to confirm direct binding and its biological importance. Biolayerinterferometry kinetics analysis and isothermal titration calorimetry assay demonstrated that PPDspecifically bound to human CK-MM. Moreover, the mutation of key amino acids predicted by moleculardocking decreased the affinity between PPD and CK-MM. The direct binding activated CK-MM activityin vitro and in vivo, which increased the levels of tissue phosphocreatine and strengthened the functionof the creatine kinase/phosphocreatine system in skeletal muscle, thus buffering cellular ATP, delayingexercise-induced lactate accumulation, and improving exercise performance in mice. Conclusion: Our results suggest a cellular target and an initiating molecular event by which ginsengreduces fatigue. All these findings indicate PPD as a small molecular activator of CK-MM, which can helpin further developing better CK-MM activators based on the dammarane-type triterpenoid structure.

      • KCI등재

        Medium Optimization using Mathematical Statistics for Production of β-Carotene by Blakeslea trispora and Fermenting Process Regulation

        Zuowen Yan,Changgao Wang,Jianguo Lin,Jun Cai 한국식품과학회 2013 Food Science and Biotechnology Vol.22 No.6

        Optimization of medium components forenhancement of β-carotene production by Blakesleatrispora was achieved using mathematical statistics. Optimum concentrations of components using Plackett-Burman design and response surface methodology (RSM)were D-glucose 7.16%, wheat bran extract 4.08%, MgSO40.04%, soybean oil 3%, thiamine 0.01%, soybean meal1%, and KH2PO4 0.2%. Maximum production of β-carotene using optimized medium was 643 mg/L in ashake flask. A predicted value of 669 mg/L was based onresults of an RSM regression. The optimum aeration rate of1.5 vvm produced 866 mg/L and the optimum agitationspeed of 100 rpm produced 975 mg/L of β-carotene. The tof a quadratic model using regression derived coefficientswas significant. Maximum production of β-carotene usingthe optimized medium in a stirred tank reactor (10 L) at anoptimal aeration rate and an optimum agitation speed withaddition of 0.1%(v/v) β-ionone was 1,357 mg/L.

      • KCI등재

        Asymmetry of Cloud Vertical Structures and Associated Radiative Effects in Typhoon over the Northwest Pacific Based on CloudSat Tropical Cyclone Dataset

        Yan Yafei,Tan Jianguo,Cui Linli,Yu Wei,Hu Yan 한국기상학회 2020 Asia-Pacific Journal of Atmospheric Sciences Vol.56 No.4

        The clouds’ macro-, microphysical vertical structures and radiative effects in 4 shear-relative quadrants of typhoon over the northwest Pacific during development, maturity and extinction stages are studied based on CloudSat Tropical Cyclone dataset and China Meteorological Administration tropical cyclone dataset from 2nd June 2006 to 31th December 2015. The typhoon cloud is in an asymmetric “mushroom” shape, with the downshear quadrants (in particular of the downshear left quadrant (DL)) have denser clouds than the upshear quadrants. Cloud ice water content mainly distributes near typhoon center with wide vertical range (6–17 km). A large number of ice particles with small sizes are gathering in high levels, while small amount of ice particles with large sizes are gathering in low levels. As typhoon matures, the number concentration and size of cloud ice particles in inner ring increases, especially in the DL quadrant; while in the upshear left (UL) quadrant, a larger amount of ice particles with bigger sizes are transport to high levels (above 16 km) by deeper convection near storm center. The shortwave (longwave) cloud radiative effects (CRE) is mainly heating (cooling) upper layer atmosphere between 10 km and 17 km (between 14 km and 17 km), and the net CRE on atmosphere is heating almost at any levels in typhoon. The strongest heating of shortwave CRE and net CRE, as well as the strongest cooling of longwave CRE are in the DL quadrant at development stage and in the UL quadrant at maturity stage in inner core of storms. The existences of typhoon clouds mainly decrease solar radiation penetrating to the earth surface and increase longwave radiation absorbed by the whole atmosphere in typhoon’s inner core, and they are generally stronger in downshear (especially in DL) quadrants, except the maturity stage when the UL quadrant performs the strongest shortwave CRE on the surface and longwave CRE on the atmosphere in typhoon’s inner core.

      • KCI등재

        Traditional Dual Growing Rods With 2 Different Apical Control Techniques in the Treatment of Early-Onset Scoliosis

        Shengru Wang,Yiwei Zhao,Guanfeng Lin,You Du,Yang Yang,Jianguo Zhang 대한척추신경외과학회 2023 Neurospine Vol.20 No.3

        Objective: Based on traditional dual growing rods (TDGR), apical control techniques (ACTs) were introduced as adjuvant procedures to improve deformity correction at the apex segment in the treatment of early-onset scoliosis (EOS). We aimed to explore whether TDGR+ ACTs have different indications, attain more deformity correction, have negative effects on spinal growth, and have different complications. Methods: Between 2004 and 2019, a retrospective study of EOS patients treated with TDGR with or without ACTs was conducted and divided into 3 groups: TDGR group; hybrid technique (HT) group: Vertebrectomy/hemivertebrectomy with short fusion and TDGR; ACPS group: apical convex control pedicle screws (ACPS) and TDGR. Demographic, radiographic parameters, clinical outcomes, complications, and revisions were analyzed and compared. Results: Seventy-eight EOS patients were enrolled. The preoperative main curve was the largest in the HT group. ACPS group had the smallest residual curve (19° ± 8.9°) and apical vertebral translation (12.0 ± 9.0 mm) at the latest follow-up, followed by the HT group (30° ± 17.4°, 22.1 ± 13.4 mm) and TDGR group (30° ± 13.2°, 32.8 ± 17.1 mm). ACPS group had the largest T1–12 height and T1–S1 height after index surgery. Complications and revisions in the ACTs groups was lower than the TDGR group. Scoliosis Research Society-22 self-image questionnaire was superior in the ACPS group. Conclusion: According to our intermediate results, TDGR+ACTs could improve correction ability of apex deformity. ACTs had little deleterious effects on spinal height during the lengthening procedures, with a lower complication rate than TDGR. TDGR+ACTs might be a supplemental option for suitable EOS patients.

      • KCI등재

        Use of grape seed as reductant for leaching of cobalt from spent lithium-ion batteries

        Ying-Jie Zhang,Qi Meng,Peng Dong,Jianguo Duan,Yan Lin 한국공업화학회 2018 Journal of Industrial and Engineering Chemistry Vol.66 No.-

        The grape seed was novelly used as reductant for leaching of spent LiCoO2 material, which is idea of “waste + waste → resources”. About 92% Co and 99% Li could be leached under the optimized conditions of grape seed 0.6 g/g, malic acid 1.5 mol/L, 180 min, 80 °C, and slurry density 20 g/L. The catechin, EC and EGCG contained in grape seed could be employed as efficient reductants during leaching. The leaching process is controlled by combination of surface chemical reaction and diffusion with apparent activation energy of 11.96 kJ/mol, which is related to the form of Co(OH)3.

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