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Merck
CN

CFSP203000

Millipore

纤维素吸收样品垫

thickness 0.83 mm, filter W × L 20 mm × 300 mm, pack of 100 strips

别名:

Absorbent pad, C083 Cellulose Fiber Sample Pad Strips, Cellulose pad, Sample pad

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UNSPSC代码:
40161507
eCl@ss:
32031602
NACRES:
NB.23
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包装

pack of 100 strips

质量水平

制造商/商品名称

SureWick®

宽度

20 mm

filter W × L

20 mm × 300 mm

厚度

0.83 mm

运输

ambient

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一般描述

SureWick® Pad Materials are designed and optimised for use in rapid diagnostic lateral flow tests that require superior consistency and performance. SureWick® cellulose fiber pad materials are used as sample and absorbant pads in lateral flow assays. This pack contains 100 strips of 20mm x 300mm C083 cellulose fiber pad material.

应用

SureWick® Pad Materials are optimised for use as sample, conjugate, or absorbent pads in a broad range of Lateral Flow test applications, including Infectious Disease testing (COVID-19, HIV, Influenza, Malaria, STDs etc.), as well as in women’s health, biomarker detection, drugs of abuse testing, drug development, environmental testing, agricultural applications, food safety, product quality testing, and animal health.

特点和优势

  • SureWick® cellulose fiber pads are made from non-woven, 100% pure cellulose fiber.
  • These pads do not contain binders or glues, which can interfere with assay performance.
  • Manufactured to ensure excellent consistency, they provide reliable, predictable sample flow.
  • They exhibit consistent thickness, bed volume, and uniform surface quality.
  • Quick delivery and lead time.
  • Backed by excellent technical support.

法律信息

SUREWICK is a registered trademark of Merck KGaA, Darmstadt, Germany

储存分类代码

11 - Combustible Solids

WGK

WGK 1

闪点(°F)

Not applicable

闪点(°C)

Not applicable

法规信息

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Jinsu Kim et al.
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Malaria continues to impose a tremendous burden in terms of global morbidity and mortality, yet even today, a large number of diagnoses are presumptive resulting in lack of or inappropriate treatment. In this work, a two-colour lateral flow immunoassay (LFA)
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Birnaviridae is a family of viruses (birnaviruses) which consists of four genera, members of which cause diseases in fish, birds, mollusks, and insects. The genome of birnaviruses encodes the highly immunogenic VP2 capsid protein. In order to demonstrate that the
Vladimir R Cherkasov et al.
Acta biomaterialia, 103, 223-236 (2019-12-18)
Nanosized metal-organic frameworks (nMOFs) have shown great promise as high-capacity carriers for a variety of applications. For biomedicine, numerous nMOFs have been proposed that can transport virtually any molecular drug, can finely tune their payload release profile, etc. However, perspectives
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Smart materials that can switch between different states under the influence of chemical triggers are highly demanded in biomedicine, where specific responsiveness to biomarkers is imperative for precise diagnostics and therapy. Superior selectivity of drug delivery to malignant cells may

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