S-100钙结合蛋白P(S-100)重组蛋白
广州健仑生物科技有限公司
S100蛋白是一组具有EF-手形的钙依赖调节蛋白,参与一系列细胞内活动的调节,包括细胞增殖/分化、蛋白质磷酸化、酶活性、细胞内钙稳态和转录因子活性等;S100家族成员的基因表达异常也与大多数人类肿瘤相关。S-100蛋白有3种亚型:S-100ao、S-100a、S-100b,主要存在神经组织、垂体、颈动脉体、肾上腺髓质、唾液腺和少数间叶组织中。主要用于星形胶质瘤、室管膜瘤、神经母细胞瘤、神经鞘瘤、恶黑、脂肪肉瘤和Langerhans细胞增生疾病的研究。
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S-100钙结合蛋白P(S-100)重组蛋白
【产品介绍】
细胞定位:细胞浆/细胞核
克隆号:16/f5
同型:IgG
适用组织:石蜡/冰冻
阳性对照:胎盘/导管癌
抗原修复:热修复(EDTA)
抗体孵育时间:30-60min
产品编号 | 抗体名称 | 克隆型别 |
|
OB217 | PTEN (10号染色体缺失磷酸酶及张力蛋白同源基因) | polyclonal |
OB218 | PTH试剂(甲状旁腺素) | MRQ-31 |
OB219 | PU.1(Ets蛋白转录因子) | EPR3158Y |
OB220 | RCC(Renal Cell Carcinoma Marker)(肾细胞癌标记) | 66.4.C2 |
OB221 | S100P(S100P蛋白) | 16/f5 |
OB222 | S-100(S-100蛋白) | 4C4.9 |
OB223 | SALL4(SALL4蛋白) | 6E3 |
OB224 | Smoothelin(平滑肌细胞特异性抗原) | R4A |
OB225 | SOX-10试剂(Sry相关HMG-Box基因10) | EP268 |
OB226 | SOX-11(Sry相关HMG-Box基因11) | MRQ-58 |
OB227 | SOX-2试剂(Sry相关HMG-Box基因2) | SP76 |
OB228 | Stathmin试剂(微管解聚蛋白) | SP49 |
OB229 | Surfactant(表面活性蛋白)或SP-B(Surfactant Protein B) | 1B9 |
OB230 | Survivin(存活蛋白) | EP119 |
OB231 | Synaptophysin(突触素) | MRQ-40 |
OB232 | TAG-72(肿瘤相关糖蛋白) | B72.3 |
OB233 | Tau试剂(Tau蛋白) | polyclonal |
S-100钙结合蛋白P(S-100)重组蛋白
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【公司名称】 广州健仑生物科技有限公司
【市场部】 欧
【】
【腾讯 】
【公司地址】 广州清华科技园创新基地番禺石楼镇创启路63号二期2幢101-103室
对从病人机体分离的肝脏及抗原抗体肿瘤组织进行分析,研究者发现,癌症中ASPP2表达的欠缺和病人较低的生存率直接相关;蛋白ASPP2可以通过和E-钙粘蛋白及β-连环蛋白的关联来控制MET和EMT过程。Z后研究者Lu表示,近些年来我们已经对驱动EMT的过程研究地非常多了,但是对于MET过程的发生却知之甚少,而MET过程对于机体的健康及癌症的转移又至关重要,而本文的Z大亮点就是我们鉴别出了MET的诱导子及守护者,这对于后期开发ZL癌症的新型靶向疗法提供了新的研究思路和依据。
日本东京大学教授竹内昌治率领的研究小组24日宣布,通过把人工培养的肌肉组织安在人工关节上,他们成功制作出了能像人类手指那样屈伸的人工手指。这一成果有望在再生YL领域得到应用。
研究人员将大鼠的肌肉细胞植入特殊的凝胶层,然后将多个凝胶层放在一起进行培养,Z终培养出了长约8毫米、厚约1.5毫米的立体肌肉组织。
随后,研究人员在长2厘米的塑料棒两侧分别安装了人工培养出的大鼠肌肉组织,塑料棒正中安装有关节。利用微弱的电流进行刺激后,肌肉就会收缩,而轮流刺激两侧的肌肉,就能使塑料棒像手指那样屈伸。
Analysis of the liver and antigen-antibody-tumor tissue isolated from the patient's body revealed that the lack of ASPP2 expression in cancer was directly linked to the lower survival rate of the patient; the protein ASPP2 was directly linked to E-cadherin and β-catenin To control the MET and EMT processes. Last researcher Lu said that in recent years we have studied very much about the EMT driving process but have little knowledge of the occurrence of MET events that are crucial for the health of the body and the transfer of cancer, The highlight of this article is that we identified the elicitors and guardians of MET, which provided a new research idea and basis for the later development of new targeted therapies for the treatment of cancer.
A team led by Professor Takeuchi Masaharu of the University of Tokyo in Japan announced on the 24th that they successfully produced artificial fingers that flexed like human fingers by putting artificial muscle tissue in artificial joints. This result is expected to be applied in the field of regenerative medicine.
Researchers planted muscle cells from rats into a special gel layer and then placed multiple gel layers together to create a three-dimensional muscle tissue approximay 8 mm long and 1.5 mm thick.
Subsequently, the researchers in the 2 cm long plastic rods installed on both sides of the artificial culture of rat muscle tissue, plastic rods installed in the middle section. When stimulated with a weak electric current, the muscles contract, and in turn, stimulate the muscles on either side, making the plastic rod bend like a finger.