功能性3D類腦組織誕生

雕龍文庫 分享 時間: 收藏本文

功能性3D類腦組織誕生

  Bioengineers have created three-dimensional brain-like tissue that functions like and has structural features similar to tissue in the rat brain and that can be kept alive in the lab for more than two months. As a first demonstration of its potential, researchers used the brain-like tissue to study chemical and electrical changes that occur immediately following traumatic brain injury and, in a separate experiment, changes that occur in response to a drug. The tissue could provide a superior model for studying normal brain function as well as injury and disease, and could assist in the development of new treatments for brain dysfunction.   The brain-like tissue was developed at the Tissue Engineering Resource Center at Tufts University, Boston, which is funded by the National Institute of Biomedical Imaging and Bioengineering to establish innovative biomaterials and tissue engineering models. David Kaplan, Ph.D., Stern Family Professor of Engineering at Tufts University is director of the center and led the research efforts to develop the tissue.   Currently, scientists grow neurons in petri dishes to study their behavior in a controllable environment. Yet neurons grown in two dimensions are unable to replicate the complex structural organization of brain tissue, which consists of segregated regions of grey and white matter. In the brain, grey matter is comprised primarily of neuron cell bodies, while white matter is made up of bundles of axons, which are the projections neurons send out to connect with one another. Because brain injuries and diseases often affect these areas differently, models are needed that exhibit grey and white matter compartmentalization.   Recently, tissue engineers have attempted to grow neurons in 3D gel environments, where they can freely establish connections in all directions. Yet these gel-based tissue models don t live long and fail to yield robust, tissue-level function. This is because the extracellular environment is a complex matrix in which local signals establish different neighborhoods that encourage distinct cell growth and/or development and function. Simply providing the space for neurons to grow in three dimensions is not sufficient.

  

  Bioengineers have created three-dimensional brain-like tissue that functions like and has structural features similar to tissue in the rat brain and that can be kept alive in the lab for more than two months. As a first demonstration of its potential, researchers used the brain-like tissue to study chemical and electrical changes that occur immediately following traumatic brain injury and, in a separate experiment, changes that occur in response to a drug. The tissue could provide a superior model for studying normal brain function as well as injury and disease, and could assist in the development of new treatments for brain dysfunction.   The brain-like tissue was developed at the Tissue Engineering Resource Center at Tufts University, Boston, which is funded by the National Institute of Biomedical Imaging and Bioengineering to establish innovative biomaterials and tissue engineering models. David Kaplan, Ph.D., Stern Family Professor of Engineering at Tufts University is director of the center and led the research efforts to develop the tissue.   Currently, scientists grow neurons in petri dishes to study their behavior in a controllable environment. Yet neurons grown in two dimensions are unable to replicate the complex structural organization of brain tissue, which consists of segregated regions of grey and white matter. In the brain, grey matter is comprised primarily of neuron cell bodies, while white matter is made up of bundles of axons, which are the projections neurons send out to connect with one another. Because brain injuries and diseases often affect these areas differently, models are needed that exhibit grey and white matter compartmentalization.   Recently, tissue engineers have attempted to grow neurons in 3D gel environments, where they can freely establish connections in all directions. Yet these gel-based tissue models don t live long and fail to yield robust, tissue-level function. This is because the extracellular environment is a complex matrix in which local signals establish different neighborhoods that encourage distinct cell growth and/or development and function. Simply providing the space for neurons to grow in three dimensions is not sufficient.

  

信息流廣告 周易 易經(jīng) 代理招生 二手車 網(wǎng)絡(luò)營銷 旅游攻略 非物質(zhì)文化遺產(chǎn) 查字典 社區(qū)團購 精雕圖 戲曲下載 抖音代運營 易學網(wǎng) 互聯(lián)網(wǎng)資訊 成語 成語故事 詩詞 工商注冊 注冊公司 抖音帶貨 云南旅游網(wǎng) 網(wǎng)絡(luò)游戲 代理記賬 短視頻運營 在線題庫 國學網(wǎng) 知識產(chǎn)權(quán) 抖音運營 雕龍客 雕塑 奇石 散文 自學教程 常用文書 河北生活網(wǎng) 好書推薦 游戲攻略 心理測試 石家莊人才網(wǎng) 考研真題 漢語知識 心理咨詢 手游安卓版下載 興趣愛好 網(wǎng)絡(luò)知識 十大品牌排行榜 商標交易 單機游戲下載 短視頻代運營 寶寶起名 范文網(wǎng) 電商設(shè)計 免費發(fā)布信息 服裝服飾 律師咨詢 搜救犬 Chat GPT中文版 經(jīng)典范文 優(yōu)質(zhì)范文 工作總結(jié) 二手車估價 實用范文 古詩詞 衡水人才網(wǎng) 石家莊點痣 養(yǎng)花 名酒回收 石家莊代理記賬 女士發(fā)型 搜搜作文 石家莊人才網(wǎng) 鋼琴入門指法教程 詞典 圍棋 chatGPT 讀后感 玄機派 企業(yè)服務(wù) 法律咨詢 chatGPT國內(nèi)版 chatGPT官網(wǎng) 勵志名言 河北代理記賬公司 文玩 語料庫 游戲推薦 男士發(fā)型 高考作文 PS修圖 兒童文學 買車咨詢 工作計劃 禮品廠 舟舟培訓 IT教程 手機游戲推薦排行榜 暖通,電地暖, 女性健康 苗木供應(yīng) ps素材庫 短視頻培訓 優(yōu)秀個人博客 包裝網(wǎng) 創(chuàng)業(yè)賺錢 養(yǎng)生 民間借貸律師 綠色軟件 安卓手機游戲 手機軟件下載 手機游戲下載 單機游戲大全 免費軟件下載 石家莊論壇 網(wǎng)賺 手游下載 游戲盒子 職業(yè)培訓 資格考試 成語大全 英語培訓 藝術(shù)培訓 少兒培訓 苗木網(wǎng) 雕塑網(wǎng) 好玩的手機游戲推薦 漢語詞典 中國機械網(wǎng) 美文欣賞 紅樓夢 道德經(jīng) 標準件 電地暖 網(wǎng)站轉(zhuǎn)讓 鮮花 書包網(wǎng) 英語培訓機構(gòu) 電商運營
主站蜘蛛池模板: 国产高清一级毛片在线不卡| 最近最好的中文字幕2019免费| 国语自产偷拍精品视频偷拍| 亚洲欧美国产日韩天堂在线视| 4ayy私人影院| 日韩在线看片免费人成视频播放| 国产一级做a爱片久久毛片a| 三人性free欧美多人| 污黄视频在线看| 国产欧美一区二区三区免费| 久久久久亚洲精品无码系列| 精品久久久久久久九九九精品 | 涩涩高清无乱码在线观看| 国语自产偷拍精品视频偷拍| 亚洲av无码一区二区三区天堂古代| 香蕉网在线播放| 性欧美vr高清极品| 人妻中文字幕在线网站| www.爱爱视频| 日本24小时在线| 伊人电影综合网| 欧美jlzz18性欧美| 成人免费视频观看无遮挡| 亚洲欧美日韩国产一区二区精品| 99re6在线| 好男人资源在线手机免费| 亚洲国产精品成人精品无码区在线 | 波多野结衣中文字幕视频| 国产日韩欧美网站| 一级做a爱片久久蜜桃| 欧美猛男做受视频| 国产性夜夜春夜夜爽三级| 一级毛片在线免费视频| 欧美在线视频免费看| 国产三级精品三级在线观看| www.亚洲成在线| 日韩高清在线日韩大片观看网址| 吃奶摸下激烈免费视频免费| 777奇米四色米奇影院在线播放| 日本天堂影院在线播放| 亚洲综合区图片小说区|