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Merck

E6032

Peel-A-Way embedding molds

Square S-22

Synonyme(s) :

disposable paraffin molds for embedding

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NACRES:
NA.47
UNSPSC Code:
41116124
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Nom du produit

Peel-A-Way embedding molds, Square S-22

material

polyethylene

application(s)

hematology
histology

storage temp.

room temp

Quality Level

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Application

Peel-A-Way® Embedding molds are used for multiple applications like:

  • for embedding tumor spheroids in 1% agarose gel, for histological analysis and immunohistochemical evaluation of formalin-fixed and paraffin-embedded (FFPE) tumor sections.
  • in plant growth studies to securely hold leaf samples in a semi-frozen state within optimal cutting temperature (OCT) compound, ensuring precise orientation for subsequent cryosectioning and analysis.
  • in sample preparation for confocal microscopy, image acquisition, and image analysis of brain tissues. PBS containing 6% low-melt agarose solution was poured to cover tissues into Peel-A-Way® Embedding molds.
  • Peel-A-Way® embedding mold is suitable for sectioning of embryos and in preparation of acute tissue slices of mouse spinal cord.
  • in the preparation of choroid plexus organoids by providing a convenient and efficient method for embedding the organoids in gelatin, allowing for precise sectioning and analysis during subsequent cryosectioning procedures

General description

Peel-A-Way® embedding molds are innovative disposable paraffin molds specifically designed for the effortless embedding of tissue samples and cells from suspension cultures in paraffin wax or other embedding media. With dimensions of 22mm x 22mm square and 20mm deep, these molds provide a convenient and efficient solution for histology and pathology laboratories. The unique peel-away design allows for easy removal from solidified embedding blocks, ensuring a smooth workflow in sample preparation.

Packaging

288 molds per case

Legal Information

Peel-A-Way is a registered trademark of Polysciences, Inc.
p3xFLAG is a trademark of Sigma-Aldrich Co. LLC

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Consulter la Bibliothèque de documents

Convergence of topological domain boundaries, insulators, and polytene interbands revealed by high-resolution mapping of chromatin contacts in the early Drosophila melanogaster embryo
Stadler MR, et al.
eLife, 6-6 (2017)
Célia Fourrier et al.
Biochemical and biophysical research communications, 534, 107-113 (2020-12-15)
Measurement of autophagic flux in vivo is critical to understand how autophagy can be used to combat disease. Neurodegenerative diseases have a special relationship with autophagy, which makes measurement of autophagy in the brain a significant research priority. Currently, measurement of
Silvia Belluti et al.
Journal of experimental & clinical cancer research : CR, 40(1), 362-362 (2021-11-17)
Approaches based on expression signatures of prostate cancer (PCa) have been proposed to predict patient outcomes and response to treatments. The transcription factor NF-Y participates to the progression from benign epithelium to both localized and metastatic PCa and is associated
An Acute Mouse Spinal Cord Slice Preparation for Studying Glial Activation ex vivo
Garre JM, et al.
Bio-protocol, 7(2) (2017)
Functional Imaging Methods for Investigating 3D Choroid Plexus Organoids
Tang SS et, al.
Methods in Molecular Biology (2025)

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