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5μg/10μg/20μg/50μg/100μg/200μg/500μg
| 规格: | 5μg | 产品价格: | ¥307.0 |
|---|---|---|---|
| 规格: | 10μg | 产品价格: | ¥498.0 |
| 规格: | 20μg | 产品价格: | ¥811.0 |
| 规格: | 50μg | 产品价格: | ¥1626.0 |
| 规格: | 100μg | 产品价格: | ¥2771.0 |
| 规格: | 200μg | 产品价格: | ¥4702.0 |
| 规格: | 500μg | 产品价格: | ¥9519.0 |
Product Introduction
Bioactivity
| 名称 | Fetal-tau Protein, Human, Recombinant (His) |
| 描述 | MAPT (microtubule-associated protein tau) can produce tau proteins. Tau proteins are proteins that stabilize microtubules. They are abundant in neurons of the central nervous system and are less common elsewhere, but are also expressed at very low levels in CNS astrocytes and oligodendrocytes. When tau proteins are defective, and no longer stabilize microtubules properly, they can result in dementias such as Alzheimer's disease. Tau protein is a highly soluble microtubule-associated protein (MAP). In humans, these proteins are mostly found in neurons compared to non-neuronal cells. One of tau's main functions is to modulate the stability of axonal microtubules. Other nervous system MAPs may perform similar functions, as suggested by tau knockout mice, who did not show abnormalities in brain development - possibly because of compensation in tau deficiency by other MAPs. |
| 存储条件 | Lyophilized powder: -20~-80°C for 1 year | Solution: -80°C for 6 months |
| 关键字 | PPP1R-103 | PPP1R 103 | MTBT-2 | MTBT-1 | MTBT 2 | MTBT 1 | FTDP17 | FTDP 17 |
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文献和实验Isolation and Characterization of Human Fetal Myoblasts
Dissociated human fetal skeletal muscle contains myogenic cells, as well as non-myogenic cells such as adipocytes, fibroblasts, and lymphocytes. It is therefore important to determine an efficient and reliable isolation method to obtain
Human Fetal Brain Cell Culture
in lower species. A major impediment has been the ethical considerations surrounding the use of fetal human tissue obtained from elective abortions and the lack of an alternative source of viable normal human brain cells. Although research that employs
Functional Development of Human Fetal Gastrointestinal Tract
are pretty well understood, our knowledge of the human GI functions originated primarily from studies on rat and mouse. Because of clear differences in genetic make up, development rates and sequences, as well as physiological differences, extrapolations
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