资讯
内科
心血管
肿瘤
内分泌
普通内科
消化
呼吸
神经科
传染科
精神心理
肾内科
风湿免疫
血液科
老年医学
外科
头颈外科
胃肠外科
血管外科
肝胆胰外
骨科
普通外科
胸心外科
神经外科
泌尿外科
烧伤科
整形美容
麻醉疼痛
专科科室
罕见病
康复医学
药械
儿科
耳鼻咽喉
口腔科
眼科
政策人文
营养全科
预防公卫
妇产科
中医科
急重症
皮肤性病
影像放射
转化医学
检验病理
护理
热点
临床研究
研究设计
人工智能
智慧医疗
论文基金
医学科普
药物经济
医生集团
职业安全
患者招募
医学科研
公司产业
医学英语
MedSci动态
指南
按科室浏览
肿瘤科
心血管
传染科
妇产科
神经科
儿科
呼吸
内分泌科
血液科
消化
更多科室
工具
临床工具
临床指南
医学计算与公式
ICD-10/ICD-11疾病编码
医讯达
直播
话题
公开课
精品课
科研工具
期刊数据库查询
期刊智能选择
全球基金查询
文献查询
SCI写作宝典
生物医药大词典
其他工具
下载App使用方便更快捷
Medsci 梅斯搜索
公开课
精品课
服务
科研数智化
直播,公开课与精品课
科研加速器
研究者发起的临床研究(IIS)支持
真实世界研究解决方案
药物经济学
医保准入事务
研究方案设计
数据库建立与管理
药物警戒(PV)
真实世界研究执行
数据统计分析
数字化学术传播解决方案
多渠道营销(MCM)
产品医学策略
学术传播(APO)
其它
积分商城
FAQS
#Biomaterials#
102篇内容 | 2558人围观
关注话题
话题活跃用户
#
插入话题
插入图片
评论
最新
最热
GetTopicDetailResponse(id=cbdd3451e3, topicName=Biomaterials, introduction=Biomaterials, content=null, image=null, comments=102, allHits=2558, url=https://h5.medsci.cn/topic?id=3451, type=0, isShow=1, status=1, isAdmin=null, adminId=1, adminEncryptionId=1eae1, adminName=小M, createdBy=null, createdName=, createdAvatar=, createdTime=Fri May 29 21:19:53 CST 2020, time=2020-05-29, bannerImg=https://img.medsci.cn/202167/1623032167418_5160405.png, bannerImgH5=https://img.medsci.cn/202167/1623032167418_5160405.png, likes=0, followStatus=false, moduleDTOList=null, tagId=11623, tagList=[TagDto(tagId=11623, tagName=Biomaterials)], ipAttribution=, topicAdmin=1, lengthMark=0)
[GetTopicListResponse(id=2050013, encodeId=57f02050013d0, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:可控制和持续递送siRNA/NP的水凝胶可有效加速骨折愈合, objectType=article, longId=149745, objectId=5f42149e45f9, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=5f42149e45f9, replyNumber=0, likeNumber=66, createdTime=2018-12-29, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=5f42149e45f9, moduleTitle=Biomaterials:可控制和持续递送siRNA/NP的水凝胶可有效加速骨折愈合, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=5f42149e45f9)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050003, encodeId=6ab3205000363, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:系特异性外泌体可以超越细胞外基质介导的人间充质干细胞分化, objectType=article, longId=148059, objectId=f0a5148059c8, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=f0a5148059c8, replyNumber=0, likeNumber=74, createdTime=2019-02-25, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=f0a5148059c8, moduleTitle=Biomaterials:系特异性外泌体可以超越细胞外基质介导的人间充质干细胞分化, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=f0a5148059c8)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050028, encodeId=855a2050028b6, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:MiR-145介导细胞形态调节的间充质干细胞分化为平滑肌细胞, objectType=article, longId=162696, objectId=516b1626963f, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=516b1626963f, replyNumber=0, likeNumber=71, createdTime=2020-01-26, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=516b1626963f, moduleTitle=Biomaterials:MiR-145介导细胞形态调节的间充质干细胞分化为平滑肌细胞, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=516b1626963f)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050010, encodeId=c12d20500106b, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:肺上皮再生过程中,Fibrillin-2和Tenascin-C消除了年龄差距的影响, objectType=article, longId=149742, objectId=9ac2149e4299, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=9ac2149e4299, replyNumber=0, likeNumber=55, createdTime=2018-12-17, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=9ac2149e4299, moduleTitle=Biomaterials:肺上皮再生过程中,Fibrillin-2和Tenascin-C消除了年龄差距的影响, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=9ac2149e4299)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050021, encodeId=42e32050021b0, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:铜洗脱生物活性玻璃功能化的胶原蛋白支架减少感染并增强骨生成和血管生成, objectType=article, longId=159479, objectId=51431594e9ae, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=51431594e9ae, replyNumber=0, likeNumber=71, createdTime=2019-05-12, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=51431594e9ae, moduleTitle=Biomaterials:铜洗脱生物活性玻璃功能化的胶原蛋白支架减少感染并增强骨生成和血管生成, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=51431594e9ae)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050005, encodeId=f06520500057f, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:3D打印的生物功能化支架可有效修复软骨缺损, objectType=article, longId=149699, objectId=3838149699fc, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=3838149699fc, replyNumber=0, likeNumber=78, createdTime=2019-09-10, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=3838149699fc, moduleTitle=Biomaterials:3D打印的生物功能化支架可有效修复软骨缺损, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=3838149699fc)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050011, encodeId=6587205001163, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:新型生物载体可有效通过血脑屏障输送药物, objectType=article, longId=149743, objectId=03e6149e430d, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=03e6149e430d, replyNumber=0, likeNumber=0, createdTime=2018-12-08, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=03e6149e430d, moduleTitle=Biomaterials:新型生物载体可有效通过血脑屏障输送药物, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=03e6149e430d)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050014, encodeId=a35120500143f, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:血管化3D打印支架促进骨再生, objectType=article, longId=153412, objectId=da9015341226, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=da9015341226, replyNumber=0, likeNumber=64, createdTime=2019-04-01, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=da9015341226, moduleTitle=Biomaterials:血管化3D打印支架促进骨再生, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=da9015341226)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050027, encodeId=7837205002e91, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:绣球花结构肿瘤微环境响应可降解纳米平台用于缺氧肿瘤多模式成像和治疗, objectType=article, longId=162695, objectId=1c6e16269586, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=1c6e16269586, replyNumber=0, likeNumber=56, createdTime=2019-12-22, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=1c6e16269586, moduleTitle=Biomaterials:绣球花结构肿瘤微环境响应可降解纳米平台用于缺氧肿瘤多模式成像和治疗, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=1c6e16269586)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050032, encodeId=14d0205003257, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:利用空间控制的细胞分泌的神经营养因子的导管改善周围神经再生, objectType=article, longId=162703, objectId=c7a3162e0304, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=c7a3162e0304, replyNumber=0, likeNumber=92, createdTime=2019-11-09, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=c7a3162e0304, moduleTitle=Biomaterials:利用空间控制的细胞分泌的神经营养因子的导管改善周围神经再生, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=c7a3162e0304)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050016, encodeId=4f4b205001693, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:肿瘤微环境响应磁共振纳米诊疗剂研究取得进展, objectType=article, longId=156832, objectId=c6551568329a, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=c6551568329a, replyNumber=0, likeNumber=80, createdTime=2019-09-28, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=c6551568329a, moduleTitle=Biomaterials:肿瘤微环境响应磁共振纳米诊疗剂研究取得进展, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=c6551568329a)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050015, encodeId=f0f620500156a, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:沈华浩团队发现纳米药物有望成为治疗哮喘的潜在靶向新药, objectType=article, longId=156397, objectId=025f15639e9b, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=025f15639e9b, replyNumber=0, likeNumber=80, createdTime=2019-02-03, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=025f15639e9b, moduleTitle=Biomaterials:沈华浩团队发现纳米药物有望成为治疗哮喘的潜在靶向新药, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=025f15639e9b)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050009, encodeId=b6e62050009de, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:研究制备动态PDMS底物以研究不断变化的细胞环境, objectType=article, longId=149733, objectId=f3bf149e3312, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=f3bf149e3312, replyNumber=0, likeNumber=88, createdTime=2018-10-05, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=f3bf149e3312, moduleTitle=Biomaterials:研究制备动态PDMS底物以研究不断变化的细胞环境, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=f3bf149e3312)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050017, encodeId=97f8205001e13, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials Science:制备出适用于肿瘤细胞成像和热化疗的纳米硫化铜材料, objectType=article, longId=157371, objectId=154715e371db, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=154715e371db, replyNumber=0, likeNumber=63, createdTime=2019-10-01, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=154715e371db, moduleTitle=Biomaterials Science:制备出适用于肿瘤细胞成像和热化疗的纳米硫化铜材料, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=154715e371db)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050019, encodeId=27242050019fa, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:通过3D打印将成骨镁掺入PLGA / TCP多孔支架中以修复大块骨缺损, objectType=article, longId=158929, objectId=e48d15892940, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=e48d15892940, replyNumber=0, likeNumber=64, createdTime=2019-09-02, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=e48d15892940, moduleTitle=Biomaterials:通过3D打印将成骨镁掺入PLGA / TCP多孔支架中以修复大块骨缺损, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=e48d15892940)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050018, encodeId=cc4a2050018ff, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:间充质干细胞衍生的细胞外囊泡对视网膜缺血具有良好的治疗作用。, objectType=article, longId=158672, objectId=51031586e250, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=51031586e250, replyNumber=0, likeNumber=127, createdTime=2019-07-17, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=51031586e250, moduleTitle=Biomaterials:间充质干细胞衍生的细胞外囊泡对视网膜缺血具有良好的治疗作用。, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=51031586e250)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050004, encodeId=c9d320500047d, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:邻近细胞信号传导在干细胞分化中的作用, objectType=article, longId=148127, objectId=cc1814812e62, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=cc1814812e62, replyNumber=0, likeNumber=70, createdTime=2018-09-12, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=cc1814812e62, moduleTitle=Biomaterials:邻近细胞信号传导在干细胞分化中的作用, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=cc1814812e62)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2049994, encodeId=5aa8204999405, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:利用巨噬细胞介导的降解明胶微球可更好的改善骨愈合, objectType=article, longId=132677, objectId=6ba11326e7ca, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=6ba11326e7ca, replyNumber=0, likeNumber=54, createdTime=2018-04-17, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=6ba11326e7ca, moduleTitle=Biomaterials:利用巨噬细胞介导的降解明胶微球可更好的改善骨愈合, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=6ba11326e7ca)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050008, encodeId=8aaa2050008ff, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:研制具有改善的抗逆转录病毒特征的纳米制剂cabotegravir前药, objectType=article, longId=149726, objectId=74d3149e2693, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=74d3149e2693, replyNumber=0, likeNumber=80, createdTime=2019-01-31, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=74d3149e2693, moduleTitle=Biomaterials:研制具有改善的抗逆转录病毒特征的纳米制剂cabotegravir前药, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=74d3149e2693)], followStatus=false, userIsMember=false, type=1, lengthMark=0), GetTopicListResponse(id=2050000, encodeId=01082050000ec, content=<a href='/topic/show?id=cbdd3451e3' target=_blank style='color:#2F92EE;'>#Biomaterials#</a>, objectTitle=Biomaterials:深圳先进院等成功构筑新型黑磷药物控释系统, objectType=article, longId=144364, objectId=bfba1443641f, topicUrl=null, isHasObj=0, objectCover=null, objectUrl=/article/show_article.do?id=bfba1443641f, replyNumber=0, likeNumber=58, createdTime=2019-06-06, rootId=0, userName=zhangyxzsh, userId=d8e0333, projectId=1, avatar=, status=1, hasArticle=1, attachment=null, ipAttribution=, moduleDTOList=[ModuleDTO(moduleId=bfba1443641f, moduleTitle=Biomaterials:深圳先进院等成功构筑新型黑磷药物控释系统, moduleType=article, hrefUrl=https://www.medsci.cn/article/show_article.do?id=bfba1443641f)], followStatus=false, userIsMember=false, type=1, lengthMark=0)]
梅斯话题小助手
关注
已关注
Biomaterials
2020-05-29
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:可控制和持续递送siRNA/NP的水凝胶可有效加速骨折愈合
66
0
2018-12-29
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:系特异性外泌体可以超越细胞外基质介导的人间充质干细胞分化
74
0
2019-02-25
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:MiR-145介导细胞形态调节的间充质干细胞分化为平滑肌细胞
71
0
2020-01-26
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:肺上皮再生过程中,Fibrillin-2和Tenascin-C消除了年龄差距的影响
55
0
2018-12-17
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:铜洗脱生物活性玻璃功能化的胶原蛋白支架减少感染并增强骨生成和血管生成
71
0
2019-05-12
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:3D打印的生物功能化支架可有效修复软骨缺损
78
0
2019-09-10
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:新型生物载体可有效通过血脑屏障输送药物
0
0
2018-12-08
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:血管化3D打印支架促进骨再生
64
0
2019-04-01
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:绣球花结构肿瘤微环境响应可降解纳米平台用于缺氧肿瘤多模式成像和治疗
56
0
2019-12-22
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:利用空间控制的细胞分泌的神经营养因子的导管改善周围神经再生
92
0
2019-11-09
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:肿瘤微环境响应磁共振纳米诊疗剂研究取得进展
80
0
2019-09-28
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:沈华浩团队发现纳米药物有望成为治疗哮喘的潜在靶向新药
80
0
2019-02-03
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:研究制备动态PDMS底物以研究不断变化的细胞环境
88
0
2018-10-05
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials Science:制备出适用于肿瘤细胞成像和热化疗的纳米硫化铜材料
63
0
2019-10-01
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:通过3D打印将成骨镁掺入PLGA / TCP多孔支架中以修复大块骨缺损
64
0
2019-09-02
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:间充质干细胞衍生的细胞外囊泡对视网膜缺血具有良好的治疗作用。
127
0
2019-07-17
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:邻近细胞信号传导在干细胞分化中的作用
70
0
2018-09-12
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:利用巨噬细胞介导的降解明胶微球可更好的改善骨愈合
54
0
2018-04-17
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:研制具有改善的抗逆转录病毒特征的纳米制剂cabotegravir前药
80
0
2019-01-31
回复
zhangyxzsh
(审核中...)
关注
已关注
前往app查看评论内容
#Biomaterials#
Biomaterials:深圳先进院等成功构筑新型黑磷药物控释系统
58
0
2019-06-06
回复
共102条
首页
上一页
下一页
尾页
页码:
3
/6页
20条/页
扫描二维码下载梅斯医学APP
科室
订阅+
更多科室
工具
服务