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Merck
CN

P3558

切片石蜡®

for tissue embedding

别名:

石蜡-聚异丁烯混合物

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化学文摘社编号:
UNSPSC Code:
12171500
NACRES:
NA.47
MDL number:
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产品名称

切片石蜡®, for tissue embedding

form

solid

mp

56-57 °C (lit.)
56-57 °C

application(s)

hematology
histology

storage temp.

room temp

Quality Level

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Application

Paraplast®用于组织包埋,还用于:
  • 筛选存在心脏平滑肌的主要脊椎动物种类以及心脏平滑肌在陆栖和水栖龟中的系统分布
  • 研究海马体神经元膜阻抗与树突长度之间的关系
  • 比较人根尖乳头干细胞的再生特性,作为其他牙干细胞的替代

Features and Benefits

  • 最大程度减少 组织挤压。
  • 制出无皱褶切片。
  • 优异的蜡带连续性。

General description

Paraplast®是石蜡–异丁烯的混合物,用于组织包埋和浸润。 它是由高纯石蜡和高分子塑料组成的精制复合物。可制作组织挤压少、无皱褶的切片,获得连续性极佳的4μ蜡带。

Other Notes

颗粒形式的双重过滤石蜡。

Legal Information

Paraplast is a registered trademark of Leica Biosystems

存储类别

11 - Combustible Solids

wgk

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

Eyeshields, Gloves, type N95 (US)


历史批次信息供参考:

分析证书(COA)

Lot/Batch Number

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Diana B Sequeira et al.
Clinical oral investigations, 25(9), 5317-5329 (2021-02-26)
To compare the regenerative properties of human stem cells of the apical papilla (SCAPs) embedded in a platelet-rich plasma (PRP) scaffold, when implanted in vivo using an organotypic model composed of human root segments, with or without the presence of
Positive Effects of Diphlorethohydroxycarmalol (DPHC) on the Stability of the Integument Structure in Diet-Induced Obese Female Mice
Chae-Lim Kim
Development & reproduction (2015)
Intestinal metabolism of weaned piglets fed a typical United States
or European diet with or without supplementation
of tributyrin and lactitol
A. Piva
Journal of Animal Science (2008)
Cristina Barrero et al.
Planta, 229(2), 235-247 (2008-10-03)
Transfer cells have specializations that facilitate the transport of solutes across plant exchange surfaces. ZmMRP-1 is a maize (Zea mays) endosperm transfer cell-specific transcriptional activator that plays a central role in the regulatory pathways controlling transfer cell differentiation and function.
Renata F Medeiros et al.
The British journal of nutrition, 118(1), 1-10 (2017-08-12)
Endothelial function is a key mechanism in the development of CVD. Arginine and exercise are important non-pharmacological strategies for mitigating the impact of metabolic changes in the metabolic syndrome, but the effect of their combined administration is unknown. Thus, the

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