Documents

D8938

Sigma-Aldrich

KIMBLE Dounce tissue grinder set

2 mL complete

NACRES:
NB.22
Pricing and availability is not currently available.

material

glass

feature

autoclavable

mfr. no.

Kimble®, 885300-0002

pestle A clearance

0.0030-0.0050 in.

pestle B clearance

0.0005-0.0025 in.

working volume × L

2 mL × 60 mm

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General description

Designed primarily for cellular work where the nucleus remains intact after homogenization. All-glass construction. Two pestles are supplied with each complete set. Large clearance pestle is used for the initial sample reduction. Small clearance pestle is used to form the final homogenate.

Legal Information

KIMBLE is a registered trademark of DWK Life Sciences
Certificate of Analysis
Certificate of Origin
Fang-Yuan Hu et al.
Frontiers in bioengineering and biotechnology, 8, 564057-564057 (2020-10-20)
Retina is a crucial tissue for capturing and processing light stimulus. It is critical to describe the characteristics of retina at the single-cell level for understanding its biological functions. A variety of abnormalities in terms of morphology and function are...
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Naomi Habib et al.
Nature neuroscience, 23(6), 701-706 (2020-04-29)
The role of non-neuronal cells in Alzheimer's disease progression has not been fully elucidated. Using single-nucleus RNA sequencing, we identified a population of disease-associated astrocytes in an Alzheimer's disease mouse model. These disease-associated astrocytes appeared at early disease stages and...
Alan Selewa et al.
Scientific reports, 10(1), 1535-1535 (2020-02-01)
A comprehensive reference map of all cell types in the human body is necessary for improving our understanding of fundamental biological processes and in diagnosing and treating disease. High-throughput single-cell RNA sequencing techniques have emerged as powerful tools to identify...
Kenan Li et al.
Journal of neurochemistry, 150(6), 759-775 (2019-06-13)
Hypoxia-inducible factor prolyl 4-hydroxylases (HIF-PHDs) are important targets against oxidative stress. We hypothesized that inhibition HIF-PHD by adaptaquin reduces hypoxic-ischemic brain injury in a neonatal mouse model. The pups were treated intraperitoneally immediately with adaptaquin after hypoxia-ischemia (HI) and then...

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