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Laveur de microplaques compact avec une flexibilité maximale pour un encombrement minimal

Le laveur de microplaques MultiWash+™ est un laveur automatisé, compact, silencieux et efficace avec 20 options de protocole de lavage différentes. Les variations incluent la vitesse et le volume réglables, la vitesse et la durée d’aspiration réglables, des temps de trempage réglables et trois modes d’agitation. Les quatre flacons de lavage/rinçage proposés sont configurables pour les plaques à 96 et à 384 puits.

  • Efficacité

    Rendement

    Lavage efficace grâce à une aspiration croisée et une réduction du volume résiduel dans chaque puits. Le laveur sans vide et sans pression est doté de pompes intégrées pour un lavage silencieux.

  • Simplification

    Élimination des flacons sous pression

    Le laveur fournit un volume de distribution par quantités de 50 μl et, puisqu'il n'utilise pas de flacon sous pression, la tubulure peut être insérée dans des récipients variés.

  • Optimisation

    Avantages pour les débits faibles

    Bénéficiez des avantages d’un laveur de microplaques pour les applications à faible débit et pour tout test comprenant un lavage comme étape primaire, intermédiaire ou finale avant la quantification.

Laveur de microplaques MultiWash+

Laveur de microplaques MultiWash+

Caractéristiques

  • Prêt à l’emploi

    Les 20 protocoles de lavage différents offrent jusqu’à huit cycles pour chaque protocole pour une facilité d’utilisation et une flexibilité optimales.

  • Lavage configurable

    Les paramètres incluent la vitesse et le volume réglables, la vitesse et la durée d’aspiration réglables, des temps de trempage réglables et trois modes d’agitation pour le mélange des solutions.

Applications du laveur de microplaques MultiWash+

Caractéristiques et options du laveur de microplaques MultiWash+

Ressources du laveur de microplaques MultiWash+

Présentations
Vidéos et webinaires
Flux de travail ELISA utilisant le lecteur de microplaques EMax plus

Flux de travail ELISA utilisant le lecteur de microplaques EMax plus et le laveur de microplaques MultiWash+

  • Citation
    Dated: Jan 12, 2021
    Publication Name: Molecular Devices

    Gustave Roussy Cancer Center

    The Kroemer Lab is interested in the molecular mechanisms of cellular stress and death. The mode of cellular stress and death that is evoked during cancer treatment has profound therapeutic implications. A systematic search has been launched to identify molecular switches that “decide” which particular cell stress or cell death subroutine is… View more

    The Kroemer Lab is interested in the molecular mechanisms of cellular stress and death. The mode of cellular stress and death that is evoked during cancer treatment has profound therapeutic implications. A systematic search has been launched to identify molecular switches that “decide” which particular cell stress or cell death subroutine is preferentially executed. In addition, cancer cell death modalities and their impact on the immune system are analyzed in a systematic fashion to develop strategies that improve the chances of therapeutic success.

    The Cell Biology platform (pictured, right) within the Kroemer Lab is used as a hub to conduct screening approaches as it offers fully automated cell biology workflows that allow for the phenotypic screening of large-scale compound and siRNA libraries. They use a battery of fluorescent biosensor cells to assess all types of cellular stress and death.

    To enable this cutting-edge research, the group needed a high-content analysis system that they could fully integrate into an automated platform which also includes compound management and automated cell culture.

    Contributors: Oliver Kepp  
    Go to article

  • Citation
    Dated: May 22, 2014
    Publication Name: J. Agric. Food Chem.

    Cytotoxic Effect of Ergot Alkaloids in Achnatherum inebrians Infected by the Neotyphodium gansuense Endophyte

    Ergonovine or ergonovinine was isolated from the aerial parts of endophyte (Neotyphodium gansuense) infected (E+) drunken horse grass (Achnatherum inebrians), neither of which existed in endophyte-free (E−) plants. Both of these ergot alkaloids had a cytotoxic effect on animal smooth muscle cells and increased cell growth inhibition with greater… View more

    Ergonovine or ergonovinine was isolated from the aerial parts of endophyte (Neotyphodium gansuense) infected (E+) drunken horse grass (Achnatherum inebrians), neither of which existed in endophyte-free (E−) plants. Both of these ergot alkaloids had a cytotoxic effect on animal smooth muscle cells and increased cell growth inhibition with greater concentrations, in a significantly (P < 0.05) positive correlation. The median inhibitory concentrations (IC50) for ergonovine and ergonovinine were 71.95 and 72.75 μg/mL, respectively. These results indicate that endophytic ergot alkaloids may be the cause of drunken horse grass poisoning.

    Contributors: Xingxu Zhang, Zhibiao Nan*, Chunjie Li, and Kun Gao
     
    Go to article

  • Citation
    Dated: Dec 22, 2011
    Publication Name: Journal of the American Aging Association (AGE)

    Menopause occurs late in life in the captive chimpanzee (Pan troglodytes)

    Menopause in women occurs at mid-life. Chimpanzees, in contrast, continue to display cycles of menstrual bleeding and genital swelling, suggestive of ovulation, until near their maximum life span of about 60 years. Because ovulation was not confirmed hormonally, however, the age at which chimpanzees experience menopause has remained uncertain. In… View more

    Menopause in women occurs at mid-life. Chimpanzees, in contrast, continue to display cycles of menstrual bleeding and genital swelling, suggestive of ovulation, until near their maximum life span of about 60 years. Because ovulation was not confirmed hormonally, however, the age at which chimpanzees experience menopause has remained uncertain. In the present study, we provide hormonal data from urine samples collected from 30 female chimpanzees, of which 9 were old (>30 years), including 2 above the age of 50 years. Eight old chimpanzees showed clear endocrine evidence of ovulation, as well as cycles of genital swelling that correlated closely with measured endocrine changes. Endocrine evidence thus confirms prior observations (cyclic anogenital swelling) that menopause is a late-life event in the chimpanzee. We also unexpectedly discovered an idiopathic anovulation in some young and middle-aged chimpanzees; this merits further study. Because our results on old chimpanzees validate the use of anogenital swelling as a surrogate index of ovulation, we were able to combine data on swelling and urinary hormones to provide the first estimates of age-specific rates of menopause in chimpanzees. We conclude that menopause occurs near 50 years of age in chimpanzees as it does in women. Our finding identifies a basic difference between the human and chimpanzee aging processes: female chimpanzees can remain reproductively viable for a greater proportion of their life span than women. Thus, while menopause marks the end of the chimpanzee’s life span, women may thrive for decades more.

    Contributors: James G. Herndon, Jamespaul Paredes, Mark E. Wilson, Mollie A. Bloomsmith, Lakshmi Chennareddi & Margaret L. Walker  
    Go to article

Laveur de microplaques MultiWash™+

Produit

Numéro de référence de la pièce

MultiWash+ pour plaques à 96 puits : 4 lignes de liquide, Rampe à 8 aiguilles et tubulure, 4 flacons de lavage/rinçage (2 l), 1 flacon à déchets (2,5 l) MultiWash+
Peigne à 16 aiguilles en option 5032338
Peigne à 12 aiguilles en option 5032336
Kit de maintenance pour laveur : 2 X fusibles T de rechange de 2,5 A, 2 aiguilles de nettoyage, ensembles de tubulures pour tous les flacons, outil de nettoyage pour les aiguilles, ensemble de tubulures pour la rampe, et ensemble de tubulures de rechange pour la rampe 5032339
Kit de tubulure externe (4 voies) 5032340
Flacon de rinçage 2 L 5032342

Produits et services connexes du laveur de microplaques MultiWash+