浙江大學(xué)機(jī)械工程學(xué)系導(dǎo)師:茍中入

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浙江大學(xué)機(jī)械工程學(xué)系導(dǎo)師:茍中入

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浙江大學(xué)機(jī)械工程學(xué)系導(dǎo)師:茍中入 正文


  姓名:茍中入
  性別:男
  所在學(xué)院:材料科學(xué)與工程學(xué)系
  職稱:副研究員

  個(gè)人簡(jiǎn)介
  副研究員,碩士生導(dǎo)師,中國(guó)生物材料學(xué)會(huì)會(huì)員,Journal of Nanoscience Letters雜志Editorial Board Member; 入選2011年度浙江省“151人才工程”培養(yǎng)對(duì)象。
  1995.09~1999.07 中南工業(yè)大學(xué) 工學(xué)學(xué)士
  1999.09~2002.02 中南大學(xué) 工學(xué)碩士
  2002.03~2005.03 中科院上海硅酸鹽研究所 工學(xué)博士
  2005.03~2007.04 浙江大學(xué) 博士后
  2007.05~ 浙江加州國(guó)際納米技術(shù)研究院 副研究員

  主要從事骨科、口腔科、眼科和創(chuàng)傷科生物醫(yī)用納米材料及細(xì)胞生物學(xué)、納米營(yíng)養(yǎng)學(xué)、防護(hù)納米材料等研究,先后主持國(guó)家自然基金(青年基金)、浙江省科技廳面上(重點(diǎn))項(xiàng)目、浙江省自然基金、浙江省教育廳、浙江省科技廳公益性項(xiàng)目等,參與國(guó)家自然基金重點(diǎn)項(xiàng)目(子課題)、市-校合作項(xiàng)目、紹興市公益基金等合作項(xiàng)目5項(xiàng);提出多元生物活性物質(zhì)協(xié)同組裝納米材料和跨尺度納米材料的設(shè)計(jì),并初步解決了骨再生修復(fù)材料設(shè)計(jì)中多元生物活性物質(zhì)協(xié)同管理和控制釋放的難題,研發(fā)低成本制造多維微量營(yíng)養(yǎng)素功能飲品,在國(guó)際刊物J Phys Chem C, J Mater Chem, J Biomed Mater Res (A, B)、Acta Biomater, J Controlled Release等發(fā)表學(xué)術(shù)論文30篇,申請(qǐng)發(fā)明和實(shí)用新型專利20項(xiàng)(獲授權(quán)專利11項(xiàng))。

  工作研究領(lǐng)域
  1.生物材料與再生醫(yī)學(xué)(包括骨科、口腔科、眼科和創(chuàng)傷科組織損傷再生修復(fù)微創(chuàng)可注射材料、 高強(qiáng)度多孔生物活性材料、仿生涂層材料等)
  2.納米營(yíng)養(yǎng)學(xué)(多維營(yíng)養(yǎng)保健納米技術(shù)、納米生物安全性等)3.防護(hù)技術(shù)(包括納米纖維膜阻隔材料、空氣凈化納米纖維膜材料)

  工作研究項(xiàng)目:
  浙江省科技廳面上科研項(xiàng)目: 骨質(zhì)疏松性骨折微創(chuàng)治療生物誘導(dǎo)活性納米材料的研制(2008C21058), 2008.01~2009.12.
  溫州市-浙江大學(xué)市校合作科研項(xiàng)目: 注射型原位誘導(dǎo)骨折愈合生物納米材料的設(shè)計(jì)與研制(H20080039), 2009.01~2011.12.
  國(guó)家自然科學(xué)基金: 仿生凝膠體系中多元微量元素對(duì)類骨礦物介導(dǎo)作用的基礎(chǔ)研究(50902121), 2010.01~2012.12.
  浙江省自然科學(xué)基金: 多孔生物玻璃材料力學(xué)增強(qiáng)機(jī)制及原位骨再生基礎(chǔ)研究(Y4090029), 2010.01~ 2011.12;
  浙江省教育廳科研計(jì)劃項(xiàng)目:促糖尿病足潰瘍愈合仿生納米纖維海綿材料的性能研究(2010SSA005)2011.01~2012.12

  發(fā)表論文:
  部分學(xué)術(shù)論文:
  Wang C, Shi X, Chen X, Wu H, Zhang H, Xie J, Yang X, Gou Z, Ye J*. 17-β-estradiol inhibits hyperosmolarity-induced proinflammatory cytokine elevation via the p38 MAPK pathway in human corneal epithelial cells. Mol Vision. 2012; 18:1115-1122.
  Zhang G, Huang R, Li Z, Chen X, Yang X, Sun X, Yang G, Gao C, Xia W, Gou Z*. Understanding the influence of alendronate on the morphology and phase transformation of apatitic precursor nanocrystals. J Inorg Biochem. 2012; 113; 1-8.
  Dan Li, Chen Ye, Yang Zhu, Gou Z, Gao C*. Enhancement of osteogenesis by poly(lactide-co-glycolide) sponges loaded with surface-embedded hydroxyapatite particles and rhBMP-2. J Biomed Maters Res. Part B. 2012: 100B: 1103-1113.
  Yang X, Zhang L, Chen X, Sun X, Yang G, Guo X, Zhang Q, Yang H, Gao C, Gou Z*. Influence of B2O3 on the thermal and bioactive properties of CaO-SiO2-P2O5 system. J Non-Crystal Solids. 2012; 358: 1171– 1179.
  Yang G, Yang X, Li Z, Lin M, Sun X, Chen X, Gou Z* Counterionic biopolymers-reinforced bioactive glass scaffolds with improved mechanical properties in wet state. Mater Lett. 2012; 75:80-83
  Yang X, Zhang L, Chen X, Yang G, Gao C, Zhang X, Zhang L, Yang H, Gou Z*. Trace elements-incorporating octacalcium phosphate porous beads via polypeptide-assisted nanocrystals self-assembly for potential applications in osteogenesis. Acta Biomater. 2012; 8: 1586-1596.
  Li D, Wang W, Guo R, Qi Y, Gou Z, Gao C*. Restoration of rat calvarial defects by poly(lactide-co-glycolide)/ hydroxyapatite scaffolds loaded with bone mesenchymal stem cells and DNA complexes. Chin Sci Bulliton. 2012; 57: 435-444.
  Xu S, Yang X, Chen X, Lin X, Zhang L, Yang G, Gao C, Gou Z*. Hybrid calcium phosphate coatings with the addition of trace elements and polyaspartic acid by a low-thermal process. Biomed. Mater. 2011; 6: 035002.
  Su P, Wang C, Yang X, Chen X, Gao C, Feng X.-X., Chen J.-Y., Ye J, Gou Z*. Elelctrospinning of chitosan nanofibers: The favorable effect of metal ions. Carbohydtrate Polymers. 2011;84: 239-246.
  Wang J, Gao X, Yang X, Gan Y, Zhang X, Gou Z*. A facile pollutant-free approach toward a series of nutritionally effective calcium phosphate nanomaterials for food and drink additives. J. Nanopart. Res. 2011; 13: 1039-1048.
  Yang X, Gao X, Gan Y, Zhao L, Gao C, Zhang X, Feng Y, Ting K, Gou Z*. Preparation and characterization of trace elements-multidoped injectable biomimetic materials for minimally invasive treatment of osteoporotic bone trauma. J. Biomed. Mater. Res. Part A. 2010;95A:1170-1181. (featured as front cover of the issue).
  Ye J*, Wang C., Su P., Wu H., Zhou Y., Yao K., Yang J., Gou Z*. Biochemically active hydrosol as a means of collecting electrospun microcapsules for drug delivery. J. Mater. Chem. 2010; 20: 9025-9028. (*Co-corresponding author).
  Yang X, Gao X, Gan Y, Gao C, Zhang X, Ting K, Wu MB, Gou Z*. Facile Synthesis of octacalcium phosphate nanobelts: growth mechanism and surface adsorption properties. J Phys Chem C, 2010; 114: 6265- 6271.
  Wang J, Gao X, Yang X, Gan Y, Weng W, Gou Z*. A facile strategy for in situ core-template-functionalizing siliceous hollow nanospheres for guest species entrapment. Nanoscale Res Lett. 2009; 4: 1171-1177.
  Gou Z*, Yang X, Gao X, Zhang X, Ting K, Octacalcium phosphate microscopic superstructure self-assembly and evolution by dual-mediating combination. CrystEngComm. 2009; 11: 1585-1590.
  Gou Z, Weng W*, Han G, Yan W. Tailoring of multilayered core-shell nanostructure for multicomponents administration and controllable release of biologically active ions. J Biomed Maters Res. Part A, 2008; 85A: 909-918.
  Feng J*, Yan W, Gou Z, Weng W, YangD. Stimulating effect of silica-containing nanospheres on proliferation of osteoblast-like cells. J Mater Sci: Mater Med. 2007; 18; 2167-2172.
  Gou Z, Weng W*, Yan W, Du P, Han G. A novel route to fabricate the biomedical material: structure strategy and the biologically active ions controllable release. J. Controlled Release. 2006; 116: 360-364.
  Gou Z, Weng W*, Han G. An efficient ultrasound-enhanced controllable release of biologically active trace elements on bioactive silica-gel -based material. Chem Lett. 2006; 35: 1214-1215.
  Gou Z, Weng W*. Effect of sodium phosphate and calcium nitrate on gelation, particle size, and texture of sol-gel-derived silica in vitro. Key Eng Mater. 2006; 330: 203-207.

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