Bioalternatives provides services to support your research needs in biology and in in vitro pharmacology. For more than 20 years, we have been assisting scientists from the pharmaceutical and biotechnological industry on preclinical issues (exploratory research, in vitro modelling, discovery of therapeutic molecules).
Because each of our clients is unique and each study is based on different prerequisites and objectives, we focus on the customized technical solution that can best meet your requirements. We pay particular attention to the feasibility study and to the personalized management of your project, especially through regular and open communication between your study manager and our specialists.
in vitro pharmacological studies are our core business: by managing a plurality of projects, our scientists have acquired an expertise and know-how which can be applied to a wide range of products.
https://www.bioalternatives.com/wp-content/uploads/2016/03/mw_inhibition-of-keratinocyte-differentiation.jpg368655Guillaumehttps://www.bioalternatives.com/wp-content/uploads/2019/06/Logo-Bioalternatives-150dpi.pngGuillaume2014-07-10 16:22:302018-10-24 22:00:08Inhibition of keratinocyte differentiation by the synergistic effect of IL-17A, IL-22, IL-1α, TNFα and oncostatin M
https://www.bioalternatives.com/wp-content/uploads/2016/04/mw_expression-patterns-of-candidate-susceptibility.jpg368655Guillaumehttps://www.bioalternatives.com/wp-content/uploads/2019/06/Logo-Bioalternatives-150dpi.pngGuillaume2013-09-12 16:28:002018-10-24 22:00:24Expression patterns of candidate susceptibility genes HNF1β and CtBP2 in prostate cancer: Association with tumor progression
https://www.bioalternatives.com/wp-content/uploads/2013/04/mw_Contribution-of-IL-22.jpg368655Guillaumehttps://www.bioalternatives.com/wp-content/uploads/2019/06/Logo-Bioalternatives-150dpi.pngGuillaume2013-04-11 15:14:312018-10-24 22:00:41Contribution of IL22 to experimental skin inflammation
https://www.bioalternatives.com/wp-content/uploads/2016/05/mw_IL-1-and-Oncostatin-M.jpg368655Guillaumehttps://www.bioalternatives.com/wp-content/uploads/2019/06/Logo-Bioalternatives-150dpi.pngGuillaume2013-03-17 15:22:592018-10-24 22:00:53Involvement of IL-1 and Oncostatin M in acanthosis associated with hypertensive leg ulcer
https://www.bioalternatives.com/wp-content/uploads/2016/05/mw_The-gap-junction-protein-Cx43.jpg368655Guillaumehttps://www.bioalternatives.com/wp-content/uploads/2019/06/Logo-Bioalternatives-150dpi.pngGuillaume2012-02-11 10:42:322018-10-24 22:02:57The gap junction protein Cx43 is involved in the bone-targeted metastatic behaviour of human prostate cancer cells
https://www.bioalternatives.com/wp-content/uploads/2016/05/mw_CCL20-and-beta-defensin-2.jpg368655Guillaumehttps://www.bioalternatives.com/wp-content/uploads/2019/06/Logo-Bioalternatives-150dpi.pngGuillaume2011-02-01 11:13:042018-10-24 22:04:08CCL20 and β-defensin-2 induce arrest of human Th17 cells on inflamed endothelium in vitro under flow conditions
https://www.bioalternatives.com/wp-content/uploads/2016/05/mw_Human-embryonic-stem-cell-derivatives.jpg368655Guillaumehttps://www.bioalternatives.com/wp-content/uploads/2019/06/Logo-Bioalternatives-150dpi.pngGuillaume2009-11-21 15:43:332018-10-24 22:05:21Human embryonic stem-cell derivatives for full reconstruction of the pluristratified epidermis: a preclinical study
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