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HDP1385

Perfecta3D® hanging drop plate

size 384 wells , with lid and tray, polystyrene (untreated), sterile

Sinonimo/i:

3D, 3D Cell Culture

Autenticatiper visualizzare i prezzi riservati alla tua organizzazione & contrattuali


About This Item

Codice UNSPSC:
41121800

Materiali

polystyrene (untreated)

Sterilità

sterile

Confezionamento

pack of 8 ea (individually packaged)

Produttore/marchio commerciale

3D Biomatrix HDP1384-8

Misura

384 wells , with lid and tray

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Descrizione generale

Perfecta3D® Hanging Drop Plates facilitate consistent and controllable formation of three-dimensional (3D) spheroids and cell aggregates.

Cells can be mixed prior to seeding in wells for homogeneous co-cultures, or added after spheroids are formed for patterned co-cultures. Stem cell aggregates like embryoid bodies can be cultured and studied without cellular contact with surfaces. Media can be changed easily.

One aggregate forms per well. The 96- and 384-well Perfecta3D® Hanging Drop Plates are compatible with automated liquid handling equipment. Drugs and assay reagents can be added directly to the wells. One spheroid per well and control over spheroid size means consistent data.

  • Easy to use
  • One spheroid or aggregate per well
  • Access cultures from the top of the plate: perform media changes, add compounds, or add cells for co-cultures
  • Compatible with liquid handling systems, microplate readers, and manual pipetting

Note legali

Perfecta3D is a registered trademark of 3D Biomatrix

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To elucidate the molecular etiology of deepening of the upper eyelid sulcus (DUES) induced by prostaglandin (PG) analogs, a three-dimensional (3D) tissue culture system was employed using human orbital fibroblasts (HOFs). During adipogenesis, changes in HOF 3D organoid sizes, as
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To elucidate molecular pharmacology of Rho-associated coiled-coil containing protein kinase inhibitors (ROCK-i, Ripasudil and Y27632) on their efficiency for aqueous outflow, 2D or 3D cultures of a human trabecular meshwork (HTM) were prepared in the presence of TGFβ2. Those were
Fumihito Hikage et al.
Endocrinology, 160(1), 20-35 (2018-11-06)
Thyroid-associated orbitopathy (TAO) is a disfiguring periocular connective tissue disease associated with autoimmune thyroid disorders. It is a potentially blinding condition, for which no effective pharmacological treatment has been established. Despite a suggested role played by autoimmune thyrotropin receptor activation

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