中文字幕欧美一区二区_久久精品国产亚洲77777_91在线?清?看_狠狠干妹子_人妻夜夜爽爽88888视频_97综合网

食品伙伴網服務號
 
 
當前位置: 首頁 » 專業英語 » 專業知識 » 正文

納米粒子+干細胞=創傷快速愈合

放大字體  縮小字體 發布日期:2009-10-15
核心提示:A new study may have hit upon another way to improve stem cells' ability to help repair damaged tissue. While stem cells can rapidly grow into any kind of new tissue, they aren't always able to encourage new blood vessels to grow so that the tissue

    A new study may have hit upon another way to improve stem cells' ability to help repair damaged tissue. While stem cells can rapidly grow into any kind of new tissue, they aren't always able to encourage new blood vessels to grow so that the tissue stays alive. But in a new study, published in the Proceedings of the National Academy of Sciences, scientists describe a way around the problem. The researchers used nanoparticles to ferry a key gene into the stem cells, which caused the cells to recruit new blood vessels, thus fueling tissue growth.

    The nanoparticles carried a gene (VEGF) that is known to stimulate new blood vessel growth. When the modified cells were injected into mice whose hind limbs had been injured, the tissue that regrew to repair the damage had three times the blood vessel density of similar tissue in mice given unmodified cells. Four weeks later, only 20 per cent of the mice given modified cells had lost limbs, compared with 60 per cent in mice that received unmodified cells.

    The researchers are optimistic about the nanoparticle approach, however they state in the study that the effect may be transient. They note that there was a significant increase in VEGF levels in mouse muscle two days following cell grafting, but VEGF levels produced by the cells dropped sharply after four days. They say that using a virus to transmit the gene may be a better approach to stimulate new blood vessels over a longer period of time. However, the viral approach is not without risks–viruses can integrate into the genome of cells and linger permanently, potentially causing cancer or immune reactions.

    一項新的研究偶然發現了提高干細胞能力,促進受損組織愈合的另一種方法。干細胞雖然能生長為各種組織,但卻不能一直促進新血管的生長,使新組織存活。這項研究的論文發表在《美國國家科學院學報》上,文中科學家闡述了解決這一問題的方法。研究人員使用納米粒子將一個關鍵基因導入干細胞,這個基因可使細胞長出新的血管,從而促進組織生長。

    納米粒子承載一個人所共知的可刺激新血管生長的基因 (VEGF) .將改性細胞注入后腿受傷的白鼠體內后,重新生長的修復創傷的組織中,血管密度是注入未經改性的細胞的白鼠相似組織中的三倍。

    研究人員對納米粒子法持樂觀態度,然而,他們在論文中稱,這種作用也許是短暫的。他們說,細胞移植后的頭兩天,白鼠肌肉中VEGF水平顯著增加,但四天之后,干細胞產生的VEGF水平急劇下降。還說,用病毒傳輸關鍵基因,從而較長時間地刺激新血管生長可能是個好辦法。但是,這種方法必須使用危險性病毒,并可將病毒帶進細胞的基因組,并永久滯留其中,有可能導致癌癥或免疫反應。

更多翻譯詳細信息請點擊:http://www.trans1.cn
 
關鍵詞: 納米粒子 干細胞
[ 網刊訂閱 ]  [ 專業英語搜索 ]  [ ]  [ 告訴好友 ]  [ 打印本文 ]  [ 關閉窗口 ] [ 返回頂部 ]
分享:

 

 
推薦圖文
推薦專業英語
點擊排行
 
 
Processed in 0.170 second(s), 17 queries, Memory 0.9 M
主站蜘蛛池模板: 国产视频一区二区91 | 日产精品久久久一区二区 | 国产不卡一区二区视频 | 日韩精品资源二区在线 | 亚洲视频一区国产 | 欧美精品成人在线 | 狠狠婷婷 | 久久一精品 | 欧美肥老太交性506070 | 日韩高清在线观看 | 中文字幕在线观看第三页 | 91.xxx.高清在线 | 久久精品欧美一区二区三区不卡 | 超碰偷拍 | 草莓福利社区在线 | 国产午夜精品无码理论片 | 熟女人妻aⅴ一区二区三区60路 | 久久精品成人一区二区三区 | 精品国产一卡2卡3卡4卡新区 | 亚洲AⅤ人片在线观看无 | 亚洲国产精品一区二区久久亚洲午夜 | 亚洲高清91 | 国产一级片不卡 | 男人影音 | 56精品视频在线播放免费观看 | 欧美《熟妇的荡欲》在线观看 | 色偷偷色噜噜狠狠网站久久 | 国产SUV精品一区二区33 | 国产精品视频1区2区3区 | 欧美bbw极品另类 | 在线观看亚洲欧美视频免费 | hd欧美free性xxx×护士 | 中文在线精品 | 国产狼人综合免费视频 | 老人内射视频代码免费视频 | 成人午夜激情视频 | 2020最新国产精品 | 性深夜免费福利视频 | 337P大尺度啪啪人体 | 国产精品一区自拍 | 成年免费大片黄在线观看一级 |