JP7041325B2 - 細胞培養器及び細胞培養装置 - Google Patents
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Description
本実施例においては、完全に閉鎖された環境下において、培地交換及びガス交換をすることなく、細胞を培養可能である例を示す。増殖因子を培地(StemSpan H3000、登録商標、STEMCELL Technologies Inc.)に添加し、さらに培地に脱アシル化ゲランガムを添加して、ゲル培地を用意した。
血液を赤血球沈降剤で処理し、赤血球を少なくとも部分的に除去された処理血液を得た。処理血液を表面細胞マーカー抗体で処理し、蛍光活性化セルソーティング(FACS)で分析した結果を図12に示す。処理血液は、CD3陽性細胞、CD14陽性細胞、CD31陽性細胞、CD33陽性細胞、CD34陽性細胞、CD19陽性細胞、CD41陽性細胞、CD42陽性細胞、及びCD56陽性細胞を含んでいた。
血液培地に脱アシル化ゲランガムを添加して、ゲル培地を用意した。用意したゲル培地をラミニンコートした6ウェルディッシュに入れ、2×105個の血液細胞(単核球)を播種した。その後、6ウェルディッシュを37℃のCO2インキュベーター内に配置し、7日間、血液細胞を培養した。その後、血液増殖培地にOCT3/4、SOX2、KLF4、cMYCを搭載するセンダイウイルスベクター(CytoTune-iPS2.0、ThermoFisher SCIENTIFIC)を感染多重度(MOI)が5となるよう添加し、血液細胞をセンダイウイルスに感染させた。
血液培地に脱アシル化ゲランガムを添加して、ゲル培地を用意した。用意したゲル培地をラミニンコートしたフラスコに入れ、5×105個の血液細胞(単核球)を播種した。その後、37℃のCO2インキュベーター内に配置し、7日間、血液細胞を培養した。その後、血液増殖培地にOCT3/4、SOX2、KLF4、cMYCを搭載するセンダイウイルスベクター(CytoTune-iPS2.0、ThermoFisher SCIENTIFIC)を感染多重度(MOI)が5となるよう添加し、血液細胞をセンダイウイルスに感染させた。
ゲル状ではない液体の血液増殖培地をラミニンコートした6ウェルディッシュに入れ、2×105個の血液細胞(単核球)を播種した。その後、6ウェルディッシュを37℃のCO2インキュベーター内に配置し、7日間、血液細胞を培養した。その後、血液増殖培地にOCT3/4、SOX2、KLF4、cMYCを搭載するセンダイウイルスベクター(CytoTune-iPS2.0、ThermoFisher SCIENTIFIC)を感染多重度(MOI)が5となるよう添加し、血液細胞をセンダイウイルスに感染させた。
ゲル状ではない液体の血液増殖培地をラミニンコートしたフラスコに入れ、5×105個の血液細胞(単核球)を播種した。その後、フラスコを37℃のCO2インキュベーター内に配置し、7日間、血液細胞を培養した。その後、血液増殖培地にOCT3/4、SOX2、KLF4、cMYCを搭載するセンダイウイルスベクター(CytoTune-iPS2.0、ThermoFisher SCIENTIFIC)を感染多重度(MOI)が5となるよう添加し、血液細胞をセンダイウイルスに感染させた。
Claims (7)
- 内部で細胞を培養するための細胞培養器であって、
底面の幅が側面の高さ以上であり、
前記内部に流体を供給するための流路を備え、
当該細胞培養器がガス非透過性物質で包埋され、前記内部が閉鎖可能である、
細胞培養器。 - 内部で細胞を培養するための細胞培養器であって、
底面及び上面の少なくも一方が透明であり、
前記内部に流体を供給するための流路を備え、
当該細胞培養器がガス非透過性物質で包埋され、前記内部が閉鎖可能である、
細胞培養器。 - 前記底面を有する第1筐体と、
前記第1筐体上に配置され、前記底面と対向する上面を有する第2筐体と、
を備え、
前記第1筐体と前記第2筐体とが組み合わされ、前記内部が形成される、
請求項1又は2に記載の細胞培養器。 - 前記流路が、前記第1筐体及び前記第2筐体の少なくとも一方に設けられている、請求項3に記載の細胞培養器。
- 当該細胞培養器内の温度を調節する温度調節部をさらに備える、請求項1から4のいずれか1項に記載の細胞培養器。
- 前記内部に内部培養容器を配置可能である、請求項1から5のいずれか1項に記載の細胞培養器。
- 前記内部に配置された培地成分透過部材をさらに備える、請求項1から6のいずれか1項に記載の細胞培養器。
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WO2013145235A1 (ja) | 2012-03-29 | 2013-10-03 | 株式会社日立製作所 | 培養容器及び自動培養装置 |
JP2016208866A (ja) | 2015-04-30 | 2016-12-15 | 株式会社日立製作所 | 自動培養装置 |
WO2017038887A1 (ja) | 2015-08-31 | 2017-03-09 | アイ・ピース株式会社 | 多能性幹細胞製造システム |
WO2018154788A1 (ja) | 2017-02-27 | 2018-08-30 | 剛士 田邊 | 体細胞製造システム |
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