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Titlebook: Algae-Based Biopharmaceuticals; Sergio Rosales-Mendoza Book 2016 Springer International Publishing Switzerland 2016 Biopharmaceutical.Chla

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cribed. Nuclearand chloroplast-based expression approaches are analyzed and compared in termsof biosynthetic advantages, gene expression complexity, and DNA transferapproaches (Chapter 2). In the following sect978-3-319-81229-8978-3-319-32232-2
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The Biopharmaceuticals Field and Algae as Expression Hosts,engineered photosynthetic organisms have been explored as biofactories and even delivery vehicles. In particular, algae species have been proposed as a low cost and convenient platform for the production of BFs. This chapter serves as an introduction to this book by presenting a brief overview of th
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Genetic Engineering Approaches for Algae,and high protein yields are envisioned. In conclusion current genetic engineering tools are fuelling the developments in the molecular pharming field with relevant prospects for achieving improvements in yields and expanding the spectrum of target species.
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Algae-Made Vaccines Targeting Human Diseases, achieve vaccination without the requirement of a costly purification, cold chain distribution; and consequently very low cost easy to administer vaccines are envisioned. This outlook indicates a potential for using algae as an advantageous vaccine production host. Perspectives for the development o
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Algae-Made Vaccines Targeting Animal Pathogens,ver virus. The algae species used as biofactories include .., and .. In general, these algae species have shown a proper biosynthetic capacity to produce functional antigenic proteins. Although the number of the targeted pathogens and the degree of vaccine characterization is still narrow, a perspec
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Algae-Made Antibodies and Immunotoxins, describes the advances in this field and identifies the perspectives for achieving new products, namely biosimilars, biobetters, or next generation molecules using algae as biofactories and perhaps delivery vectors.
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Database and Expert Systems Applicationsand high protein yields are envisioned. In conclusion current genetic engineering tools are fuelling the developments in the molecular pharming field with relevant prospects for achieving improvements in yields and expanding the spectrum of target species.
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