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圖片為展示效果,實際三個產(chǎn)品都是一樣的規(guī)格。
監(jiān)控人類細(xì)胞移植用途的抗體
(Antibodies for Detecting Human Cells Transplanted into Mice and Rats)
STEM101、STEM121、STEM123是三種小鼠來源的單克隆抗體,分別對人細(xì)胞核標(biāo)記蛋白、人細(xì)胞質(zhì)標(biāo)記蛋白和人GFAP具有特異性,用于人類細(xì)胞向小鼠和大鼠移植實驗中,監(jiān)控細(xì)胞移植、轉(zhuǎn)移、分化。
STEM101®
Mouse Monoclonal Antibody Specific for Human Cell Nucleus Marker
小鼠單克隆抗體抗人細(xì)胞核標(biāo)記
STEM121®
Mouse Monoclonal Antibody Specific for Human Cytoplasmic Marker
小鼠單克隆抗體抗人細(xì)胞質(zhì)標(biāo)記
STEM123®
Mouse Monoclonal Antibody Specific for Human GFAP
小鼠單克隆抗體抗人GFAP
STEM101® Y40400 50 μg
STEM121® Y40410 50 μg
STEM123® Y40420 50 μg
可分開購買
GFAP:膠質(zhì)纖維酸性蛋白(glial fibrillary acidic protein)
是星形膠質(zhì)細(xì)胞活化的標(biāo)志物。主要分布于中樞神經(jīng)系統(tǒng)
產(chǎn)品特點
STEM101與人類細(xì)胞核Ku80蛋白特異性反應(yīng), 不與小鼠或大鼠腦組織或細(xì)胞提取物中的Ku80交叉反應(yīng)
STEM121與在腦,肝臟,胰腺和CNS細(xì)胞中表達(dá)的人類細(xì)胞質(zhì)蛋白反應(yīng),該抗體不與來自小鼠,大鼠或食蟹猴的腦組織或細(xì)胞提取物交叉反應(yīng)
STEM123與人類GFAP(一種星形膠質(zhì)細(xì)胞的標(biāo)志物)特異性反應(yīng),不與來自小鼠或大鼠的腦組織或細(xì)胞提取物交叉反應(yīng)
STEM101 reacts specifically with the nuclear human Ku80 protein; the antibody does not cross-react with mouse or rat Ku80 in brain tissue or cell extracts
STEM121 reacts with a human cytoplasmic protein expressed in brain, liver, pancreas, and CNS cells the antibody does not cross-react with brain tissue or cell extracts from mouse, rat, or cynomologous monkey
STEM123 reacts specifically with human GFAP, a marker of astroglial cells; the antibody does not cross-react with brain tissue or cell extracts from mouse or rat
產(chǎn)品應(yīng)用
通過免疫組織化學(xué)和免疫熒光法定位、定量、表征人源的移植細(xì)胞
Localization, quantification, and/or characterization of engrafted cells of human origin by immunohistochemistry and immunofluorescence
STEM101 STEM121 STEM123已廣泛用于檢測移植到小鼠和大鼠中人類細(xì)胞的植入、遷移和分化??赏ㄟ^免疫組織化學(xué)來確定移植細(xì)胞的位置和數(shù)量。
產(chǎn)品參數(shù)
Size:50 μg
體積:100 μL
同種型Isotype:lgG1
Form:Unconjugated
特異性:
STEM101 與人類細(xì)胞核蛋白特異反應(yīng),不與小鼠大鼠腦組織或細(xì)胞提取物交叉反應(yīng)。
STEM121 與人類細(xì)胞質(zhì)蛋白特異反應(yīng),不與小鼠大鼠獼猴腦組織或細(xì)胞提取物交叉反應(yīng)
STEM123 與人類GFAP蛋白特異反應(yīng), 不與小鼠大鼠腦組織或細(xì)胞提取物交叉反應(yīng)。
移植監(jiān)控表現(xiàn)
STEM101 detects nuclei of transplanted human neural stem cells in the olfactory bulb of a mouse brain.
STEM101在小鼠腦的嗅球中檢測移植的人類神經(jīng)干細(xì)胞的細(xì)胞核。
STEM121 detects migration and differentiation of transplanted human neural stem cells in the hippocampus of a mouse brain.
STEM121在小鼠大腦海馬中檢測移植的人類神經(jīng)干細(xì)胞的遷移和分化。
STEM123 detects human GFAP+ astrocytes differentiated from human neural stem cells after transplantation into a mouse brain.
STEM123在小鼠腦中檢測移植的人類神經(jīng)干細(xì)胞分化的人類GFAP +星形細(xì)胞。
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參考文獻(xiàn)
1. Cummings BJ, et al. (2005) Human neural stem cells differentiate and promote locomotor recovery in spinal cord-injured mice. PNAS 102: 14069-14074.
2. Guzman R, et al. (2007) Long-term monitoring of transplanted human neural stem cells in developmental and pathological contexts with MRI. PNAS 104: 10211-10216.
3. Tamaki SJ, et al. (2009) Neuroprotection of Host Cells by Human Central Nervous System Stem Cells in a Mouse Model of Infantile Neuronal Ceroid Lipofuscinosis. Cell Stem Cell 5:310-319.
4. Salazar DL, et al. (2010) Human Neural Stem Cells Differentiate and Promote Locomotor Recovery in an Early Chronic Spinal Cord Injury NOD-scid Mouse Model. PLoS ONE 5: e12272.
5. Kelly S, et al. Transplanted human fetal neural stem cells survive, migrate, and differentiate in ischemic rat cerebral cortex. PNAS (2004) 101:11839 11844.
6. Cummings BJ, et al. Human neural stem cells differentiate and promote locomotor recovery in spinal cord-injured mice. PNAS (2005) 102: 14069-14074.
7. Tamaki SJ, et al. Neuroprotection of Host Cells by Human Central Nervous System Stem Cells in a Mouse Model of Infantile Neuronal Ceroid Lipofuscinosis. Cell Stem Cell (2009) 5:310-319.
8. Kallur T, et al. Human Fetal Cortical and Striatal Neural Stem Cells Generate Region-Specific Neurons In Vitro and Differentiate Extensively to Neurons After Intrastriatal Transplantation in Neonatal Rats. J Neurosci Res. (2006) 84:1630-1644.
9. Salazar DL, et al. Human Neural Stem Cells Differentiate and Promote Locomotor Recovery in an Early Chronic Spinal Cord Injury NOD-scid Mouse Model. PLoS ONE (2010) 5: e12272.
10. Tamaki SJ, et al. (2009) Neuroprotection of Host Cells by Human Central Nervous System Stem Cells in a Mouse Model of Infantile Neuronal Ceroid Lipofuscinosis. Cell Stem Cell 5:310-319.
11. Salazar DL, et al. (2010) Human Neural Stem Cells Differentiate and Promote Locomotor Recovery in an Early Chronic Spinal Cord Injury NOD-scid Mouse Model. PLoS ONE 5:e12272.
12. Cummings BJ, et al. (2005) Human neural stem cells differentiate and promote locomotor recovery in spinal cord-injured mice. PNAS 102: 14069-14074.
背景介紹
Stem121:抗人類細(xì)胞質(zhì)蛋白的小鼠抗體
1. Stem121是什么?
· Stem121是小鼠來源的單克隆抗體,它特異性地識別人類細(xì)胞(特別是人類神經(jīng)細(xì)胞)細(xì)胞質(zhì)中的某個抗原。
· Stem121在反應(yīng)屬性上有兩個主要特點:
1) 它所識別的抗原不在細(xì)胞核內(nèi),可以特異性的識別細(xì)胞質(zhì)內(nèi)的抗原;
2)它與小鼠、大鼠、猴子細(xì)胞的細(xì)胞質(zhì)沒有反應(yīng)性。
2. Stem121的應(yīng)用
· 小鼠、大鼠、猴子是目前干細(xì)胞治療研究者常用的模式動物。通常,研究者將人類的神經(jīng)干細(xì)胞注射進(jìn)入這些模式動物的腦部,然后觀察這些細(xì)胞是否可以在動物的腦部存活、生長、分化、遷移。因此,必須可靠而且準(zhǔn)確地示蹤在動物體內(nèi)的人類神經(jīng)干細(xì)胞。
· Stem121抗體是可以對人類細(xì)胞細(xì)胞質(zhì)進(jìn)行標(biāo)記的抗體。
· 對于輸入的人神經(jīng)干細(xì)胞,既標(biāo)記細(xì)胞核又標(biāo)記細(xì)胞質(zhì),意味著更加可靠、更加準(zhǔn)確。如下圖所示,人類的神經(jīng)干細(xì)胞被注射進(jìn)入大鼠的腦部,藍(lán)色標(biāo)記是某種識別人類細(xì)胞的細(xì)胞核的抗體,綠色標(biāo)記是識別人類細(xì)胞細(xì)胞質(zhì)的Stem121抗體,紅色標(biāo)記是識別人類細(xì)胞某種發(fā)炎癥狀的抗體。在A部分的左圖左下角有個箭頭指示的細(xì)胞,具備藍(lán)色與綠色標(biāo)記,這說明這個細(xì)胞確定是人類細(xì)胞而非大鼠細(xì)胞;右圖右下角的箭頭指示同一個細(xì)胞,沒有綠色標(biāo)記,說明這個人類細(xì)胞并沒有出現(xiàn)發(fā)炎癥狀。而且,如果實驗的設(shè)計目的是觀察人類的神經(jīng)細(xì)胞的細(xì)胞質(zhì)能否進(jìn)入到人類或是動物細(xì)胞的細(xì)胞核里面,那么就需要Stem121對人類細(xì)胞質(zhì)進(jìn)行標(biāo)記。
· 另外,需要注意,Stem121在之前發(fā)表的文章中,也被稱作SC121。(Kelly S, et al .Transplanted human fetal neural stem cells survive, migrate, and differentiate in ischemic rat cerebral cortex. PNAS,2004,101: 11839-11844.)
訂購信息
品牌 | 名稱 | Code No. | 包裝量 | 價格 |
Cellartis | STEM101 | Y40400 | 50 μg | 1,887 元 |
Cellartis | STEM121 | Y40410 | 50 μg | 1,887 元 |
Cellartis | STEM123 | Y40420 | 50 μg | 1,887 元 |
華雅再生醫(yī)學(xué)旗艦公司:紅榮微再(上海)生物工程技術(shù)有限公司主營細(xì)胞治療和精準(zhǔn)醫(yī)療等產(chǎn)品,2018年與TAKARA繼續(xù)合作,授權(quán)代理(上海)其旗下Cellartis干細(xì)胞研究制品和Rubicon單細(xì)胞文庫構(gòu)建試劑。Cellartis公司位于瑞典,擁有iPS細(xì)胞等干細(xì)胞分化為肝細(xì)胞及臟器細(xì)胞的分化誘導(dǎo)技術(shù)和ES細(xì)胞,ips細(xì)胞,分化細(xì)胞等干細(xì)胞相關(guān)產(chǎn)品。
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