76258
Paraplast Plus®
suitable for electron microscopy, pellets (fast-melting)
Synonyme(s) :
Paraffin – polyisobutylene mixture
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About This Item
Produits recommandés
Forme
pellets (fast-melting)
Niveau de qualité
Technique(s)
electron microscopy: suitable
Épaisseur
≤1 μm , short ribbons
≤2 μm , sectioning: continuous ribbons
Pf
56-57 °C
Application(s)
hematology
histology
Température de stockage
2-8°C
Description générale
regular Paraplast with approx. 0.8% DMSO added for enhanced ease of infiltration and sectioning
Application
Paraffin polyisobutylene mixture is a tissue embedding medium composed of highly purified paraffin and polyisobutylene and a low level of dimethyl sulfoxide (DMSO) to enhance the rate of tissue penetration. Paraffin-polyisobutylene (76258) supports thin wrinkle-free sectioning down to 4 microM with more flexible and continuous ribbons.
Informations légales
Paraplast Plus is a registered trademark of Leica Biosystems
Code de la classe de stockage
11 - Combustible Solids
Classe de danger pour l'eau (WGK)
WGK 2
Point d'éclair (°F)
Not applicable
Point d'éclair (°C)
Not applicable
Équipement de protection individuelle
Eyeshields, Gloves, type N95 (US)
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The Anatomical record, 250(2), 164-171 (1998-03-07)
Since androgens and/or estrogens must bind with specific receptors in order to elicit a response at the target organ(s), it is important to understand factors that regulate expression of androgen receptors (AR) and estrogen receptors (ER). Hence, the objective of
[Paraplast-plus, a tissue embedding medium that enables sections to stick to the slides without adhesives (author's transl)].
Mikroskopie, 31(3-4), 99-106 (1975-06-01)
The Anatomical record, 249(1), 54-62 (1997-09-19)
Because of the significance of androgens and estrogens in prenatal and postanatal differentiation of the testis and excurrent ducts, it is important to understand the developmental pattern of androgen receptor (AR) and estrogen receptor (ER) in these organs. Tissues from
Plant physiology, 147(4), 1947-1959 (2008-06-20)
The size and shape of the plant leaf is an important agronomic trait. To understand the molecular mechanism governing plant leaf shape, we characterized a classic rice (Oryza sativa) dwarf mutant named narrow leaf1 (nal1), which exhibits a characteristic phenotype
Acta anatomica, 132(2), 164-168 (1988-01-01)
A method is described for the histochemical detection of horseradish peroxidase in Paraplast Plus embedded brain sections. The procedure uses 150-micron-thick Vibratome-cut slices of glutaraldehyde-paraformaldehyde-fixed brain tissue. Tetramethylbenzidine stabilized by diaminobenzidine/cobalt/H2O2 is used as chromogen. The Vibratome-cut slices are dehydrated
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