MIME-Version: 1.0 Content-Type: multipart/related; boundary="----=_NextPart_01D1F48C.E5DC16A0" ���ĵ�Ϊ�������ļ���ҳ����Ҳ��Ϊ��Web �������ļ������������Ϣ����������������༭����֧�֡�Web �������ļ���������֧�֡�Web ����������������� Windows? Internet Explorer?�� ------=_NextPart_01D1F48C.E5DC16A0 Content-locations: file:///C:/7DF22908/20.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" 浙江大学高校教师= 987;业技术高级职务

 

 

 

 

浙江大学高校教师= 987;业技术高级职务

申报表

 

 

 

   = 号:

0010739

   = 名:

陈晓

   = 位:

医学院

所在学科:

运动医学

现任专业技术职务ᦂ= 6;

副教授

申请专业技术职务ᦂ= 6;

教授

联系电话:

13656642830

E= -mail:

chenxiao-610@zju.guoxinschool.com

 

 

 

 

3Dewm

填报日期:2019年09月25日

 


 

&= #12289;简况

姓名=

陈晓=

性别=

出生年月

1982-09-21=

国籍=

中国=

现党政职务

现工作单位

医学院

现专业<= span style=3D'font-family:SimSun;mso-bidi-font-weight:bold'>技术&#= 32844;务

资格/任职时= 间

副教授/2014-12-30

现聘&#= 20219;专业技术职务/聘任时间

副教授/2014-12-30

所在二级学科

运动医学

申请专业

技术职务

教授=

从事&#= 19987;业及专长

运动医学<= span lang=3DEN-US style=3D'font-family:SimSun;mso-hansi-font-family:Times;mso-= bidi-font-weight: bold'>

最后&#= 23398;历/时间、毕业学= 657;、所学专业、导师姓= ;名

博士研究生毕业/2010-06 、浙江大学、临床医学、欧阳宏伟=

最高学位/时间、授学位单位、获= 3398;位专业、导师姓名=

医学博士/2010-06、浙江大学、、欧阳宏伟

联系&#= 30005;话及Email

13656642830  chenxiao-610@zju.guoxinschool.com

主要学术兼= ;职

1.国际矫形与创伤外科学会(SICOT)中国部基础研究专委会第二届委员会常务委员(2019-)

2.中国研究型医院学会运动医学专业委员会委员(2019-)

3.中国生物医学工程学会组织工程与再生医学分会青年工作组秘书长2019-)

4.17届国际肌腱韧带专题会议(ISL&T – XVII)学术部副主席( Vice Chair of the Program Committee)(2018.03)

5.中华医学会骨科学分会第十一届委员会转化与创新学组青年委员(副组长)(2017-)

6.中华医学会骨科学分会第十一届委员会青年委员会基础学组副组长2018-)

7.国际华人骨研学会(ICMRS)青年委员(2017-)

8.中国生物医学工程学会组织工程与再生医学分会理事会青年委员(2014-2019,2019-

9.中国医师协会器官移植医师分会干细胞与组织移植专业委员会委员(2017-)

10.国际学术期刊Annals of Translational medicine(ATM)杂志编委(2014-2017)

<= /o:p>

 

个人简历(要求从&= #22823;学开始,采用时间= 498;序方式填写,所有时= ;间不间断)

学习及进修= ;经历

学习经= 1382;:

自何年= 6376;至何年月,何学校ᦀ= 8;何单位),何专业,&= #23398;历,学位,导师

1) 2006-09至2010-06, 浙江大学, 临床医学, 博士研究生毕业, 医学博士,
2) 2004-06至2006-06, 南京大学, 临床医学, 硕士研究生毕业, 医学硕士,
3) 1999-09至2004-06, 南京大学, 临床医学, 全日制普通高校本科毕业, 医学学士,

 

= 进修经历:

= 自何年月至何年月,= 0309;学校(何单位),๢= 7;修内容,合作导师

 

工作经历

校外工= 0316;简历:

自何年= 6376;至何年月,在何地ᦁ= 2;何学校(何单位),&= #20219;何职(海外职位英= 991;表述),曾任技术职= ;务

<= o:p>

 

校内工= 0316;经历:

自何年= 6376;至何年月,单位,ߎ= 7;业技术职务

1) 2014-12至, 浙江大学医学院, 副教授
2) 2012-06至2014-11, 浙江大学医学院, 讲师
3) 2010-07至2012-06, 浙江大学医学院, 博士后
=

 


二、主要学术成就<= /span>

2.1 <= /span>标志性成果(不&#= 36229;过300字)

浙江省杰出青年基金,国家基金优秀青年基金获得者。近十年根据组织特异性在肌腱干细胞阶段性分化及机制,生物材料支架修复肌腱的基础应用研究方面进行了系列的研究,共发表40余篇肌腱相关SCI文章(平均影响因子6.2, SCI他引1700余次,H指数23。其中近五年12篇(共同)一作与通讯作者文章。包括了Science Adv再生医学领域相关的几个关键学会(国际干细胞学会,国际生物材料学会,国际组织工程学会)的主流期刊Stem CellsBiomaterialsTissue Engineering。研究成果在国际学术会议(国际生物医学工程年会,国际肌腱韧带专题年会)上多次获奖。研究主要内容于2014年教育部自然科学二等奖(排名第二),2019年生物材料学会二等奖(排名第四)。现主持国家自然科学面上项目三项,重点研发计划课题负责人一项,已完成优青及青年基金一项。

成果受到国内外广泛认可,数次在国际与国内学术会议上受邀做特邀报告,任职于数个国际、国内专业学会的常委与副组长等职务。如国际矫形与创伤外科学会(SICOT)中国部常务委员,国际华人骨研学会(ICMRS) 青年委员,中国生物工程学会组织工程与再生医学分会理事会青年委员秘书长,中华医学会骨科学分会第十一届委员会转化与创新学组青年委员(副组长)、青年委员会基础学组副组长等。目前为数个国际学术(SCI)期刊的审稿人(Reviewer Position):  Advanced  Science (IF 15), Small(IF 10.5),Stem cells Translational Medicine(IF 5.9)等。

2.2主要学术成 = 489;、贡献、创新点科学= ;价值或社会经济意义&#= 21450;影响力(不&#= 36229;过3000字)

基于任现职之前建立的干细胞阶段性肌腱分化体系Stem Cells  2009Sci Rep2012,Tissue Eng 2014a,2014b 第一及通讯作者,以及构建的同时既具有力学功能又具有足够内在空隙的功能性肌腱支架(Biomaterials,2008Biomaterials,2010a,b,Biomaterials,2014Acta Biomat,2013,第一及共同第一作者)。近五年来,本人在肌腱干细胞亚群鉴定及相关腱-骨分化通路平衡与调控上做了深入研究,以(共同)一作或通讯作者发表10篇相关研究性论文及2篇综述。1)鉴定出肌腱相关的NES+干细胞亚群(Science Adv 2016),首次用单细胞方法证实存在肌腱特异性的干细胞亚群。2) 在干细胞分化体系中,建立了腱-骨分化平衡网络及相关机制。发现转录因子MKX(Stem Cells 2015),C-Fos(Stem Cells Transl Med 2017), 表观调控因子HDAC(Acta Biomaterialia 2017a, Biomaterials 2018)与平行排列表面结构(Biomaterials 2015, Acta Biomaterialia 2017b)协同 调控干细胞向肌腱分化,抑制骨分化,从而减缓或治疗肌腱病发展。MTOR相关通路则是肌腱形成及骨化的共同关键通路(Stem Cells 2018),而缺氧相关因子HIF1a及HIF2a则参与了干细胞向骨分化,导致骨的形成(Biomaterilas 2015, Stem Cells 2016)。具体如下:

 1.  肌腱中首次利用单细胞基因分析技术解析肌腱细胞亚群,并在体内外证实新亚群的功能。原创性成果共同通讯发表于Science子刊(Science Advances 2016)

 目前对于肌腱干细胞的认知定义局限于来源于肌腱具有类似与间充质干细胞的多项分化能力,尚无特异识别标志和亚群界定。长久以来,研究者在本领域的研究局限于细胞群体水平上的分析。然而,无论是体外还是体内的干细胞都具有极高的异质性,许多传统干、祖细胞的类型都被证实包含了多种功能各异的细胞亚型。单细胞基因分析技术突破了传统群体细胞研究平均化的局限,申请人将其利用于肌腱细胞的亚群解析,揭示了肌腱细胞由三大亚群组成,不仅清晰展现了细胞群体的异质性,同时也发现了各个亚群的特点。革新目前对于构成肌腱组织的细胞组成的认知,也指导了进一步的体外干细胞向腱系分化体系的建立通过单细胞基因分析结果显示了存在nestin阳性肌腱干/祖细胞的亚群,我们进一步研究在肌腱分化和损伤修复过程中nestin在肌腱干细胞中的表达和功能,发现nestin阳性的TSPCs参与肌腱损伤早期的内源修复。进而通过敲降实验和单克隆实验在证实nestin对于肌腱干细胞自我更新能力和腱系分化成熟中的关键作用。利用体内动物模型证实nestin对于肌腱干细胞的表型维持及分化决定中的关键作用。这些研究结果,提供了关于肌腱干细胞生物学的新见解,并可能在未来有助于肌腱损伤的细胞治疗。2016年作为共同通讯作者发表于Science子刊Science AdvancesYin Z et al. 5年IF 13.8

 

2.  在肌腱损伤研究中,发现肌腱干细胞在疾病与再生中的异常分化是肌腱再生与恶化的关键因素,其中向骨软骨分化是肌腱病加重的重要因素。本人在腱-骨分化命运调控上做了系列研究,建立了干细胞向腱-骨分化调控机制和手段。具体如下:

2.1  在干细胞向骨系分化调控上,发现缺氧相关因子HIF1a及HIF2a参与了干细胞向骨分化,导致骨的形成系列论文以第一作者或共同通讯作者发表于领域TOP期刊BiomaterialsStem Cells上

 A.发现HIF1a-Twist1-miR-199a通路在骨、软骨及肌腱启动分化及成熟中作用。我们发现miR-199a-5p细胞增殖、干性及促进分化起重要做用,miR-199aMSC,肌腱及脂诱导过程中会显著上调在骨诱导过程中,其上调、下调过程与HIF1atwist1有一定的相关性同时我们也发现在肌腱干细胞中表达量比MSC中高,说明miR199在干细胞向各系分化过程中可能起到启动的作用。根据现有结果及生物信息学分析,其作用机制可能通过Twist1-HIF1a循环通路起作用。经基因过表达、敲除实验及阶段性诱导实验发现,miR-199a-5pMSC增殖、分化相关转录因子Twist1,  HIF1a可能形成通路循环,分化早期共同促进MSC分化,成熟期miR-199a-5p可能通过反向抑制HIF1aTwist1而促进骨分化。该研究成果2015年以第一作者发表于国际主流生物材料专业期刊BiomaterialsIF 10.273)。

 B.炎症环境通过HIF2a调控肌腱干细胞向骨及肌腱分化成熟。我们研究发现损伤后的促炎症微环境导致组织干/组细胞异常高表达HIF2aHIF2a过表达促进肌腱干细胞骨化抑制其腱系分化,抑制HIF2a则降低肌腱干细胞骨化能力。体外研究证实长期IL-1刺激,能抑制肌腱干细胞的腱系分化同时促进其骨软骨系分化及钙化形成,且去除IL-1后,该作用不能被逆转。证实肌腱病中急、慢性促炎症因子IL-1改变了肌腱干细胞的分化方向。具体机制为促炎症因子IL-1通过激活HIF-2alpha抑制Scleraxis表达及影响肌腱干细胞的分化命运,揭示HIF2aScx在肌腱钙化中的病理功能,临床常用药物地高辛可以通过抑制HIF2a蛋白水平上调Scx表达及肌腱系基因表达,抑制钙化促进肌腱修复。为肌腱病异位钙化的治疗提供新的治疗策略。该研究成果2016年以共同通讯作者发表于国际主流干细胞研究专业期刊Stem Cells (Hu JJ, et al. IF=3D 5.9)

 2.2在腱系分化、抑制骨化调控上,利用前期建立干细胞肌腱分化体系上,发现转录因子MKX,C-Fos, 表观调控因子HDAC与平行排列表面结构协同调控干细胞向肌腱分化,抑制骨分化。系列论文以第一作者或通讯作者发表于领域TOP期刊(Stem Cells 2015,Stem Cells Transl Med 2017,Acta Biomaterialia 2017a, 2017b,Biomaterials 2015,2018)。

 A.设计制作纳米纤维肌腱支架并首先发现平行纳米纤维排列影响细胞内力学信号通路调控腱系分化抑制骨化在研究中首先发现平行纳米纤维影响细胞内力学信号通路促进腱系分化和抑制骨系分化(Biomaterials2010aESI  1%高引用论文),这一研究是国际肌腱组织工程领域率先探索利用纳米技术的尝试,为以后进一步利用纳米技术和知识促进肌腱组织工程发展奠定实验基础。基于以上结果,我们进一步发现支架在体内仍具有诱导组织分化成熟的能力,具有平行微结构的支架,在体内也能有效诱导肌腱组织,而无序微结构的支架则诱导骨组织的的形成。深入探索发现基质结构诱导的细胞排列通过调控细胞骨架相关的力学信号通路引导干细胞分化。该研究成果2015年作为共同第一作者发表于BiomaterialsYin Zi et al, IF 10.273)。

 B.发现了表观调控因子HDAC与平行排列表面结构协同调控干细胞向肌腱分化,抑制骨化:基于平行支架诱导效果,我们进一步探索发现平等支架诱导肌腱干细胞(TSPCs)的肌腱系分分同时降低细胞中HDAC的活性,筛选了HDAC的抑制剂TSA,证明其对TSPCs表型的维持。为了进一步优化诱导肌腱分化的材料,我们将物理拓扑结构和小分子结合创兴性的制备了具有表观活性的TSA修饰的平行纤维材料,并在体内外验证了其相对于单独拓扑结构具有更好的促进肌腱分化和原位组织修复功能。为肌腱修复再生提供了更理想的策略与材料。该研究成果20172018年作为共同通讯作者发表于BiomaterialsZhang C et al, IF 10.273)及Acta Biomaterialia (Zhang C et al, 5IF 7.15)

 C.发现了转录因子Mkx可有效地促进干细胞腱系分化、抑制骨化,促进跟腱损伤的再生,Mkx促间充质干细胞向腱系分化效果强于Scx,表现为显著地促进胶原纤维生长和腱系基因的表达。这表明Mkx是参与肌腱发育成熟的关键转录因子和第二信号。进一步研究揭示了其调控Scx表达的机制,即MkxTgfb2promoter结合,直接调控Tgfb2的表达,通过激活TGFbeta信号途径,间接上调Scx表达。并研究了转录因子Mkx在肌腱病理、发育、损伤过程中的功能和作用机制,引起了同行对该新近肌腱转录因子的关注和探索。该研究成果本人作为共同通讯作者于2015年发表于国际主流干细胞研究专业期刊Stem Cells  (Liu HH, et al, 5IF=3D5.98  

2.3  在腱骨分化平衡上,发现MTOR相关通路是肌腱形成及骨化的共同关键通路,在两者分化中均起到必须的调控作用(Stem Cells 2018)。

 哺乳动物雷帕霉素靶蛋白(mTOR)信号通路是细胞生长、代谢,蛋白合成等生物过程中十分重要的一条信号通路。有多项研究显示mTOR在肌肉骨骼系统中的干细胞分化过程中是不可或缺的一环。我们发现在小鼠的肌腱发育过程中,mTOR信号通路介导了TSPCs的腱系分化。在肌腱组织中将mTOR蛋白特异性敲除后,肌腱出现不可逆转的发育障碍。在Scx-cre;mTORflox/flox鼠的跟腱建立肌腱病钙化模型,mTOR敲除后跟腱异位骨化形成现象显著减弱。这提示mTOR不仅参与了肌腱的正常发育过程,还可能在肌腱的异位成骨的病理进程中起重要作用。该研究成果本人作为共同通讯作者于2018年发表于国际主流干细胞研究专业期刊Stem Cells (Cong X, et al, 5年IF=3D5.98)。

三、岗位工作思路&= #21450;预期目标

一、教学工作

工作思路:申请人自2015年副教授以来,在教学,尤其是医学院解剖及海宁国际校区全英文教学方面一直非常重视,投入了大量的精力。在近五年总课时数647学时,其中解剖519节,国际校区89教学评价近三年优秀率88%(8/9)。本年均总课时数129.4学时,年均本科教学时数124学时超过学院要求50%

人计划在就任教授之后,将继续积极参加本科生教学,并力争将研究前沿与本科教学相结合,深入教学改革解剖与组织胚胎学是形成人体组织结构与维持功能的基础,解剖结构的改变及组织学细胞水平上微观的改变是组织损伤与疾病导致功能缺失的根本原因之一。而目前人体解剖与组织胚胎学学科偏重于正常组织与结构的教学,在解释临床损伤、疾病改变,应用于再生医学以及交叉学科结合方面应用不足基于此,本人将力争将所开设的课程加入最新的研究,打造为省级甚至国家的精品课程,并计划在解剖教师的共同努力下将相关课程改造为可以面向大众的MOOC在线课程并申报精品课程。积极参与本科生学术指导工作,例如国创、省创、SRTP(校、院级)、各类竞赛及本科生毕业设计等。

 

二、科研工作

因此,本申请人立足于发展人体解剖与组织胚胎学学科,利用单细胞技术在细胞水平上解码肌肉骨骼系统正常组织组成和组织再生过程中细胞亚群和结构的改变,理解组织发生和修复过程中的生理机制和病理障碍。在干细胞与再生医学方向上,结合各交叉学科,在理解组织细胞和创伤病理的基础上结合各种生物、工程、材料等技术手段促进组织修复再生,以恢复宏观的解剖与微观的组织细胞正常结构为目标,指导促进运动系统软组织损伤的修复,为组织修复提供新思路和新靶点。

肌腱韧带损伤是最常见的运动损伤之一,据统计,每年至少有3000万的肌腱损伤病例。追求肌腱的完全修复再生是本申请人领导的课题组今后长期的研究目标。以后开展的研究将以此主题为导向,以本研究组已建立的肌腱组织工程研究体系为基础,向上游研究解答肌腱再生的科学问题并应用于临床治疗。当前用于治疗肌腱损伤的组织工程支架构建和干细胞研究大大提高了肌腱自我修复的进程和修复效果,肌腱干细胞被认为是肌腱组织工程与再生的最适合种子细胞。然而,目前研究同时也发现肌腱干细胞作为种子细胞修复后的肌腱在力学性能上,特别是在微观结构上与正常肌腱仍有显著区别,修复组织的超微结构显示修复肌腱是由大量的小直径的胶原纤维构成。而这些小直径胶原纤维正是导致愈后肌腱力学性能低下的直接因素。不仅如此,干细胞用在肌腱修复时易出现异位骨化现象,导致肌腱修复失败。这些结果表明尚缺乏有效知识和手段使干细胞完全分化为功能性肌腱细胞,达到肌腱完全再生。这主要是因为:1)目前分离肌腱干细胞由物理方法分离,由多种亚群组成,异质性大,寻找到可向肌腱特异分化成熟的亚群是利用肌腱干细胞修复的关键。2)缺乏合适诱导条件使肌腱干细胞在组织修复时分化为成熟功能性肌腱细胞,这是目前实现肌腱完全再生在瓶颈问题。而目前发现的肌腱发育中重要的转录因子包括: Scx,Mkx, Sox9 等,但是其上下游分子机制并不明了。在肌腱发育过程中,干细胞的聚集、增殖和分化过程中的时空特异性标志物也未有定论。尤其是对于难以修复的部位,如骨腱连接点,了解其发育再生的机制更加具有价值。申请人前期验证的SCX,MKXNES,Sci Rep 2014, Stem Cells 2015Sci Adv 2016)等关键转录因子基础上,寻找肌腱特异分化的肌腱干细胞亚群,并针对性开发新的诱导培养方式和再生策略。

将来拟 1)通过运用肌腱组织发育和再生等模型和单细胞分析等高通量研究手段,研究肌腱的组织发育中的细胞亚群的时序性变化规律,包含肌腱在连接处以及正常肌腱部位的肌腱细胞及干细胞亚群标志,阶段性特异分化成熟和转分化的调控机制。2)在前期已建立的单细胞检测平台,小分子药物筛选平台和肌腱再生平台上,以NES+肌腱干细胞亚群为基础,明确腱系分化的肌腱干细胞亚群及其在SCX,MKX基础上的腱系分化调控网络,并基于SCX,MKX调控网络筛选小分子药物组合,最终实现规模化培养NES+肌腱干细胞,促进肌腱成熟与再生,并开展临床实验,治疗肌腱相关疾病。

5年内在专业主流期刊发表3-5篇高水平论文,论文平均引文10以上,提升学科的国际影响力。团队建设包括积极申报国家杰出青年基金、长江学者特聘教授或科技部创新人才推进计划,争取入围会议评审答辩。指导、协助青年教师从事教学科研工作并申报省级和国家级科研项目。

 

三、学科建设

积极参与学科建设,提升学科在国内外的学术地位,建立高水平的学术梯队,为基础医学系的发展做贡献。提升国内外影响力,担任国内外肌肉骨骼系统、组织工程与再生医学相关专业学会的委员等职位。积极组织每年参加国内外肌肉骨骼系统、干细胞、组织工程与再生医学国际学会相关国际会议,并做相关的学术报告

干细胞与再生医学是浙江大学浙江省重点学科人体解剖与组织胚胎学的重点方向之一,作为一门多学科交叉领域的新学科,充分利用和涵盖了当代科学技术发展的各个领域和学科,包括组织工程学、材料科学、生物学、生物化学、物理学、化学、应用工程学、临床医学及其他学科,其发展需要复合专业知识人才。本人将立足于重点学科和组织工程与再生医学技术重点实验室,更积极参与建设干细胞和再生医学这个方向通过进一步引进和培养再生医学领域的复合型专业人才及重点学科建设,建立一支干细胞、组织工程和再生医学创新团队。同时,在本科生和研究生培养方面,打破专业单一方向研究的局限,利用学科交叉优势,联合各学科,共同培养多向研究能力的研究生;在国际合作上,与香港中文大学骨科实验室,英国爱丁堡再生医学中心建立研究生交流培养计划,培养研究生国际视野。

 

四、社会服务

积极担任学术兼职,力争在具有学术地位或具影响力的组织中担任理事或委员;与世界一流大学,学术机构建立实质性的合作,如联合发表具有影响力的合作论文,承担国际科技合作项目等,促进浙江大学一流学科、一流大学建设。

 

&= #12289;任现职= 0197;来近5(根&#= 25454;所在院系任职基本Ĉ= 65;件要求的年限填写)主要业绩

4.1教学与人才= 521;养情况

1、共开设课= 243; 13 门,授课ਲ= 2;数共计 647 学时。其中= ;本科生课程 11 门,= 课程教学时数 620  学时,具体ঀ= 0;课情况如下:

教学= 年度,课程名称,授= 5838;对象,学生数,本ߟ= 4;学时数/课程总学时数,考核= 结果

1) 2019-2020秋冬, IFBS1, 本科生, 110, 15/,

2) 2019-2020秋冬, 人体形态学基础实验, 本科生, 30, 60/,

3) 2018-2019春夏, 干细胞工程, 本科生, 20, 12/,

4) 2018-2019春夏, 局部解剖学, 本科生, 35, 72/, 优秀

5) 2018-2019春夏, ICMB1, 本科生, 90, 24/,

6) 2018-2019秋冬, 人体解剖学乙, 本科生, 127, 16/, 优秀

7) 2018-2019秋冬, IFBS1, 本科生, 67, 15/,

8) 2018-2019秋冬, 人体解剖与组织学, 本科生, 11, 51/, 优秀

9) 2017-2018春夏, 局部解剖学, 本科生, 30, 36/, 优秀

10) 2017-2018春夏, 细胞生物学, 本科生, 100, 4/,

11) 2017-2018春夏, 干细胞与组织工程, 本科生, 23, 3/,

12) 2017-2018春夏, ICMB1, 本科生, 66, 15/,

13) 2017-2018秋冬, 人体形态学基础实验, 本科生, 34, 60/80, 良好

14) 2017-2018秋冬, IFBS1(海宁), 本科生, 22, 9/,

15) 2017-2018秋冬, 人体解剖学(乙), 本科生, 112, 32/48, 优秀

16) 2017-2018秋冬, 生物工程, 本科生, 30, 3/,

17) 2016-2017春夏, ICMB1(海宁), 本科生, 22, 11/,

18) 2016-2017春夏, 干细胞与组织工程, 本科生, 23, 3/,

19) 2016-2017春夏, 医学细胞生物学, 本科生, 140, 4/,

20) 2016-2017秋冬, 人体结构与功能学, 本科生, 21, 17/,

21) 2016-2017秋冬, 人体形态学基础实验-1, 本科生, 31, 30/30, 优秀

22) 2016-2017秋冬, 人体形态学基础实验-2, 本科生, 33, 30/30, 优秀

23) 2016-2017秋冬, 人体解剖学乙, 本科生, 13, 16/, 优秀

24) 2016-2017秋冬, 干细胞与组织工程, 本科生, 28, 3/,

25) 2015-2016秋冬, 干细胞与组织工程, 本科生, 20, 4/,

26) 2015-2016秋冬, 人体解剖与组织学, 本科生, 25, 45/64, 良好

27) 2015-2016秋冬, 人体结构与功能学, 本科生, 20, 15/,

28) 2015-2016秋冬, 人体形态学基础实验, 本科生, 30, 15/, 良好

1) 2018-2019春夏, 人体结构与功能学, 研究生, 25, 12/,

2) 2017-2018春夏, 人体结构与功能学, 研究生, 22, 12/,

3) 2014-2015春夏, 干细胞与再生医学, 研究生, 20, 4/,

2、指导本科= 983;毕业论文(设计) 5 人(请列= 出姓名、专业、年级= 5289;

1) 张姚婧, 临床医学, 2013级
2) 马远瞩, 化学, 2012级
3) 秦天, 生物技术, 2012级
4) 张鸿, 生物技术, 2013级
5) 张诗晨, 生物技术, 2013级

 

3、指导研究= 983; 9 (请列出研究生姓名、= 研究生类型、专业、= 4180;级)

1) 范春梅, 博士研究生, 干细胞与再生医学, 2018
2) 张鸿, 博士研究生, 干细胞与再生医学, 2017
3) 秦天, 博士研究生, 干细胞与再生医学, 2016
4) 朱雨晴, 博士研究生, 干细胞与再生医学, 2017
5) 张尔辰, 硕士研究生, 干细胞与再生医学, 2014
6) 刘蒙霏, 硕士研究生, 干细胞与再生医学, 2016
7) 张诗晨, 硕士研究生, 干细胞与再生医学, 2017
8) 阎若谨, 硕士研究生, 干细胞与再生医学, 2018
9) 赵艳艳, 硕士研究生, 干细胞与再生医学, 2019

 

4.2代表性论文 = 289;著作情况

1、共发表论= 991; 20 篇,其中作= 为第一作者或通讯作= 2773; 12 篇。

请按照您认为最具= 195;表性、重要性或影响= ;力的顺序列出

= 所有作者姓名(通讯= 0316;者名字前用“*”标示),论ă= 91;题目,发表期刊名称= ,出版年月,卷,期= 5292;起止页码,检索收ঈ= 5;情况,期刊影响因子&= #65292;他引次数,期刊级= 035;

1) Chen Xiao(#),Gu Shen(#),Chen Bifeng,Shen Weiliang,Yin Zi,Xu Guowei,Hu Jiajie,Zhu Ting,Li Gang,Wan Chao,Ouyang Hongwei,Lee Tin Lap(*) and Chan Wai Yee(*), Nanoparticle delivery of stable miR-199a-5p agomir improves the osteogenesis of human mesenchymal stem cells via the HIF1a pathway, BIOMATERIALS, 2015-06, 53, , 239-250, SCI, 10.272, 31, 核心期刊

2) Yin Zi(#); Hu Jia-jie(#); Yang Long; Zheng Ze-Feng; An Cheng-rui; Wu Bing-bing; Zhang Can; Shen Wei-Liang; Liu Huan-huan; Chen Jia-lin; Heng Boon Chin; Guo Guo-ji; Chen Xiao(*)and Ouyang Hong-Wei(*), Single-cell analysis reveals a nestin(+) tendon stem/progenitor cell population with strong tenogenic potentiality, Science Advances, 2016-11, 2, 11, -, ESCI,SCI, 13.293, 10, 权威期刊

3) Zhang C(#), Zhang E, Yang L, Tu W, Lin J, Yuan C, Bunpetch V, Chen X(*) and Ouyang H(*), Histone deacetylase inhibitor treated cell sheet from mouse tendon stem/progenitor cells promotes tendon repair, BIOMATERIALS, 2018-07, 172, , 66-82, SCI,EI, 10.273, 3, 核心期刊

4) Cong XX(#), Rao XS(#), Lin JX(#), Liu XC, Zhang GA, Gao XK, He MY, Shen WL, Fan W, Pioletti D, Zheng LL, Liu HH, Yin Z, Low BC, Schweitzer R, Ouyang H, Chen X(*)and Zhou Y(*), Activation of AKT-mTOR Signaling Directs Tenogenesis of Mesenchymal Stem Cells, STEM CELLS, 2018-04, 36, 4, 527-539, SCI, 5.981, 5, 核心期刊

5) Yin Zi(#),Chen Xiao(#),Song Haixing,Hu Jiajie,Tang Qiaomei,Zhu Ting,Shen Weiliang,Chen Jialin,Liu Huanhuan,Heng B and Ouyang Hongwei(*), Electrospun scaffolds for multiple tissues regeneration in vivo through topography dependent induction of lineage specific differentiation, BIOMATERIALS, 2015-03, 44, , 173-185, SCI, 10.272, 45, 核心期刊

6) Zhang C(#), Wang X(#), Zhang E, Yang L, Yuan H, Tu W, Zhang H, Yin Z, Shen W, Chen X(*), Zhang Y(*) and Ouyang H(*), An epigenetic bioactive composite scaffold with well-aligned nanofibers for functional tendon tissue engineering, ACTA BIOMATERIALIA, 2018-01, 66, , 141-156, SCI, 7.151, 12, 核心期刊

7) Chen J(#), Zhang E(#), Zhang W, Liu Z, Lu P, Zhu T, Yin Z, Backman LJ, Liu H, Chen X(*) and Ouyang H(*), Fos Promotes Early Stage Teno-Lineage Differentiation of Tendon Stem/Progenitor Cells in Tendon, Stem Cells Transl Med, 2017-07, 6, 11, 2009-2019, SCI, 5.962, 2, 核心期刊

8) Liu H(#), Yang L(#), Zhang E, Zhang R, Cai D, Zhu S, Ran J, Bunpetch V, Cai Y, Heng BC, Hu Y, Dai X(*), Chen X(*) and Ouyang H(*), Biomimetic tendon extracellular matrix composite gradient scaffold enhances ligament-to-bone junction reconstruction, ACTA BIOMATERIALIA, 2017-07, 56, , 129-140, SCI, 7.151, 13, 核心期刊

9) Hu JiaJie(#), Yin Zi(#), Shen Weiliang, Xie Yubin, Zhu Ting, Lu Ping, Cai Youzhi, Kong Minjian, Heng Boon Chin, Zhou Yiting, Chen Weishan, Chen Xiao(*) and Ouyang Hongwei(*), Pharmacological Regulation of in-situ Tissue Stem Cells Differentiation for Soft Tissue Calcification Treatment, Stem Cells, 2016-04, 34, 4, 1083-1096, SCI, 5.981, 2, 核心期刊

10) Liu Huanhuan, Zhang Can, Zhu Shouan, Lu Ping, Zhu Ting, Gong Xiaonan, Hu Jiajie, Yin Zi, Chen Xiao(*), and Ouyang Hongwei(*), Mohawk promotes the tenogenesis of mesenchymal stem cells through activation of the TGFβ signaling pathway, Stem Cells, 2015-02, 33, 2, 443-455, SCI, 5.981, 49, 核心期刊

11) Zhang H, Liu MF, Liu RC, Shen WL, Yin Z(*), Chen X(*), Physical Microenvironment-Based Inducible Scaffold for Stem Cell Differentiation and Tendon Regeneration, TISSUE ENGINEERING PART B-REVIEWS, 2018-12, 24, 6, 443-453, EI,SCI, 7.795, 1, 核心期刊

12) Zhang YJ(#), Chen X(#), Li G, Chan KM, Heng BC, Yin Z(*) and Ouyang HW, Concise Review: Stem Cell Fate Guided By Bioactive Molecules for Tendon Regeneration, Stem Cells Transl Med, 2018-05, 7, 5, 404-414, SCI, 5.962, 1, 核心期刊

2、出版著作= 945;材共 2 本,总字数= ;为 3.1 万字,其ߑ= 3;为主编、副主编出版&= #20840;国统编教材 0 本,省部重= ;点、规划教材共 0 本:

= 所有作者姓名,书名= 5292;著作类型,出版地ᦁ= 2;出版社名称,出版年&= #26376;,个人字数/总字数,主编/副主编

1) 陈晓,张晓明,欧阳宏伟, 系统解剖学实验指导第一版, 教材, 北京, 人民卫生出版社, 2016.5, 1.1/40, 否

2) 陈晓,欧阳宏伟, 医学细胞生物学, 教材, 北京, 人民军医出版社, 2015.8, 2/105, 否

 

4.3主要科研、= 945;改项目情况

1&#= 20849;参加项目 2 项,= 其中纵向项目 2 项,= 横向项目 0 <= /b>

主持= 项目到校总经费 744.74 万元,其中= 纵向项目到校经费 744.74 万元,横×= 21;项目到校经费 0 万元。

2、作为项目负责人৙= 5;担项目 5 项,= 其中纵向项目 5 项,= 横向项目 0 项。=

请按= 您认为最具代表性、= 7325;要性或影响力的顺ॴ= 7;列出:

= 项目名称,项目类别= 5292;项目性质,项目来଎= 4;,项目编号,本人主&= #25345;到校经费/项目总经费(万元),起始年月, = 456;止年月,项目成员

1) 运动医学, 优秀青年科学基金项目, 纵向, 国家基金委, 81522029, 130/130, 2016-01-01, 2018-12-31, 陈晓

2) 生物医用材料研发与组织器官修复替代专项。基于纳米簇新型材料的生物学效应及其仿生装配复合组织的基础研究- 课题四 软硬组织复合结构的装配及再生研究, 国家科技重大专项, 纵向, 国家科技部, 2018YFC1105104, 256.4/326, 2018-09-01, 2021-06-30, 陈晓 ,吕红斌,章淑芳,周婧

3) 病理胶原-靶向缓释雷帕霉素治疗肌腱异位钙化作用及机制研究, 面上项目, 纵向, 国家基金委, 81972099, 0/55, 2020-01-01, 2023-12-31, 陈晓,陈扬武,盛锟琨,范春梅,秦天,张鸿,陈小怡

4) 三维培养微环境调控表观修饰促肌腱干细胞表型维持与再生效用及机制研究, 面上项目, 纵向, 国家基金委, 81772418, 58/58, 2018-01-01, 2021-12-31, 陈晓,吴兵兵,张项凯,安晟锐,秦天,陈扬武,刘蒙霏

5) 表观调控活性支架促进肌腱分化的效应和机制研究, 面上项目, 纵向, 国家基金委, 31570987, 63/63, 2016-01-01, 2019-12-31, 陈晓,张璨,茵梓,胡嘉洁,张尔辰,刘欢欢,杨龙,沈炜亮,胡叶君

6) 研究和开发适合贴壁型干细胞(脐带、结缔组织和ESC 来源MSC)自动 化、规模化培养和功能特异性的扩增体, 国家科技重大专项, 纵向, 国家科技部, 2017YFA0104902, 237.34/237.34, 2017-07-01, 2021-12-31, 欧阳宏伟,邓志红,陈晓,柳华

7) 浙江大学 MOOC课程项目,人体形态学基础实验, 其他校基金, 纵向, 浙江大学, , /0.5, 2019-5-1, 2019-12-31, 柳华,周婧,陈晓,蒋磊,张超,景泰乐

 

4.4获得重要成= 524;奖励情况

共获= 成果奖 7 = &#= 65292;其中教材奖 0 <= span style=3D'font-family:SimSun'>项&#= 65292;教学成果奖 0 &#= 65292;科研成果奖 3 <= span style=3D'font-family:SimSun'>项。

请按= 您认为最具代表性、= 7325;要性或影响力的顺ॴ= 7;列出= :

= 所有获奖人员姓名,= 9033;目名称,奖励名称ᦁ= 2;获奖级别,授奖单位&= #65292;获奖年月,本人排= 517;/总人数

1) 欧阳宏伟,邱贵兴,陈世益,陈晓,邹晓晖,赵洪石, 运动系统组织工程与修复再生技术, 科学技术奖, 二等奖, 中国生物材料学会, 2019.5, 4/7

2) 欧阳宏伟,陈晓,邹晓晖,茵梓,沈炜亮,齐义营,纪俊峰, 肌腱分化和再生的研究, 教育部自然科学, 二等奖, 教育部, 2014.12, 2/7

3) 秦天,陈晓(通讯作者), 第十七届国际韧带和肌腱专题会议, 最佳学生论文奖, , 第十七届国际韧带和肌腱专题会议, 2018.4, 2/2

4) 陈晓, 2018年浙大医学院青年教师教学竞赛, 教学比赛, 三等奖, 浙江大学医学院, 2018.5, 43466

5) 陈晓, 2017年度浙江大学基础医学院青优秀青年教师, 2017年度浙江大学基础医学院青优秀青年教师奖, 院级, 浙江大学, 2017.12, 1/1

6) 陈晓, 2016年度浙江大学校级先进工作者, 2016年度浙江大学校级先进工作者, 校级, 浙江大学, 2016.12, 1/1

7) 陈晓, 2015年度浙江大学基础医学院青年研究者奖, 2015年度浙江大学基础医学院青年研究者奖, 院级, 浙江大学, 2015.12, 1/1

4.5担任国际期刊Ņ= 34;委、国际学术会议重= 要职务及在国际学术= 0250;议全会报告、特邀ঢ়= 3;告情况

学术兼职:

1.国际矫形与创伤外科学会(SICOT)中国部基础研究专委会第二届委员会常务委员(2019-)

2.中国研究型医院学会运动医学专业委员会委员(2019-)

3.中国生物医学工程学会组织工程与再生医学分会青年工作组秘书长(2019-)  

4.第17届国际肌腱韧带专题会议(ISL&T – XVII)学术部副主席(Vice Chair Program Committee)(2018.03)

5.中华医学会骨科学分会第十一届委员会转化与创新学组青年委员(副组长)(2017-)

6.中华医学会骨科学分会第十一届委员会青年委员会基础学组副组长(2018-)

7.国际华人骨研学会(ICMRS)青年委员(2017-)

8.中国生物医学工程学会组织工程与再生医学分会理事会青年委员(2014-2019,2019-)

9.中国医师协会器官移植医师分会干细胞与组织移植专业委员会委员(2017-)

10.国际学术期刊Annals of Translational medicine(ATM)杂志编委(2014-2017)

 

特邀报告:

1.特邀报告:第二届中华医学会骨科青年医师论坛,靶向病理组织缓释雷帕霉素抑制异位钙化研究,2019.03.08北京

2.特邀报告Invited speaker:  Biometric Tendon Extracellular Matrix Composite Gradients for the Ligament-to-bone Junction , Termis-AP, 2016,9.4 台北

3.特邀报告:“中华医学会骨科分会青年基础学组巡讲”,肌腱组织工程与阶段性分化体系,2019.1.5-6内蒙古呼和浩特

4.特邀报告:骨科,第三届骨科院士杰青长江论坛(第一届全国骨科创新与转化学术研讨会)Stepwise tenogenic differentiation (肌腱阶段性分化与再生),2018.6.22 ,天津

5.特邀报告:第十一届骨科医师协会年会,肌腱研究深度解析,浙江杭州,2018.5.11

6.特邀报告,2017中国医师协会器官移植分会组织与细胞移植专业委员会学术研讨会.肌腱组织工程与再生进展.  2017.11.11北京

7.特邀报告,第三届国际华人骨科研究大会The 3rd ICMRS  Stepwise tenogenic differentiation of stem cells: role of TF, biomaterials. ,2017.8.19.新疆,石河子

 

4.6&= #33719;得专利情况

共获专利 项,其中发= ;明专利 项。

请按您认为= 368;具代表性、重要性或= ;影响力的顺序列出:

= 所有专利人员姓名,= 9987;利名称,专利类型ᦁ= 2;专利授权国,专利号&= #65292;授权公告年月,本= 154;排名/总人数

4.7其他获奖及荣Ţ= 65;情况=

1.第三届 亚洲生物医学未来领袖大赛一等奖,获奖时间:2017,本人排序:指导教师

2.第一、二、四届 亚洲生物医学未来领袖大赛三等奖(4项),获奖时间:201520162018本人排序:指导教师

4.8 社会服务及兼ň= 44;等情况=

1.2017-2018,2018-2019年度海宁国际校区ICMB1课程秘书

2.2017级博士生德育导师

3.1203医药班的班主任,1211医药班的班主任(201420152016

4.基础系新生之友

5.2019年研究生招生宣讲(湖南大学)

6.20152017年研究生招生宣讲(华南)

7.积极参与学院基金申请相关事务:2016年度NSFC优青杰青上会预答辩评委,2017NSFC大项目评审会,省自然基金杰青项目预答辩评委,2018年省杰青、重点研发项目上会预答辩,2019年省杰青、优青项目上会预答辩等。

8.积极参与医学院研究生与本科生相关事务:20172018年生物医学本科生毕业论文答辩评委,2016届基础医学系本科毕业论文答辩评委。2017博士生国际研讨会评委,2016年国家奖学金评选评委等

9.第一、二、三届亚洲生物医学未来领袖大赛评委,指导教师

10.参与人体解剖与组织学重点学科建设,完成重点学科结题

五、未列入业ń= 89;统计的其他能反映学= 术研究水平的突出业= 2489;

 

个人承诺

 

本人保证:所从事的学术研究符合学术道德规范要求;所提供的材料客观真实;符合申报要求和任职条件。

 

承诺人:<= b>3D"zf_image"       &nbs= p;          

2019年09月25日     

 

上述材料均已审核&#= 65292;内容真实,与证明Ĉ= 48;料原件相符。

 

审核人:3D"file_image"

 

2019年10月08日      

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