おすすめの製品
物質
polypropylene
round bottom
無菌性
non-sterile
包装
pack of 100 ea
メーカー/製品名
BRAND 701330
サイズ
96 well
ウェルの最大容量
300 μm
結合型
non-treated surface
詳細
PP. For volumes up to 300 µl. Compatible with virtually all leading microplate centrifuges. Raised rings around the orifice of each well minimize possible cross-contamination. The plates can be sealed using self-adhesive films, such as DMSO-resistant sealing film (cross-cut) with alphanumeric coding.
特徴および利点
- BRAND® 96-well microplate, U-bottom is a deep-well plate ideal for agglutination and other assays requiring stirring and washing of samples.
- Features a round-shaped well bottom with no edges.
- Raised rings around the orifice prevent possible cross-contamination.
- Compatible with a range of microplate centrifuges.
- Securely sealable with suitable sealing mats or self-adhesive sealing films.
- Alphanumeric code for accurate identification.
- Made from high-transparency medical grade polypropylene (PP) that facilitates sample visibility.
- Chemically resistant to most solvents including DMSO, phenol, and chloroform.
法的情報
BRAND is a registered trademark of BRAND GMBH + CO KG
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Parkinson's disease (PD) and Multiple System Atrophy (MSA) are clinically distinctive diseases that feature a common neuropathological hallmark of aggregated α-synuclein. Little is known about how differences in α-synuclein aggregate structure affect disease phenotype. Here, we amplified α-synuclein aggregates from PD
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Despite the proven role of oxidative stress in numerous systemic diseases and in the process of aging, little is still known about the salivary redox balance of healthy children, adults, and the elderly. Our study was the first to assess
Journal of clinical medicine, 8(10) (2019-10-05)
The exact contribution of neutrophils to post-resuscitative brain damage is unknown. We aimed to investigate whether neutrophil extracellular trap (NET) formation in the early phase after return of spontaneous circulation (ROSC) may be associated with poor 30 day neurologic function
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Molecular chaperones play important roles in preventing protein misfolding and its potentially harmful consequences. Deterioration of molecular chaperone systems upon ageing are thought to underlie age-related neurodegenerative diseases, and augmenting their activities could have therapeutic potential. The dementia relevant domain
ライフサイエンス、有機合成、材料科学、クロマトグラフィー、分析など、あらゆる分野の研究に経験のあるメンバーがおります。.
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