Engineering the Plant Factory for the Production of Biologics and Small-Molecule Medicines

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Release : 2017-04-27
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Book Rating : 511/5 ( reviews)

Engineering the Plant Factory for the Production of Biologics and Small-Molecule Medicines - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Engineering the Plant Factory for the Production of Biologics and Small-Molecule Medicines write by Domenico De Martinis. This book was released on 2017-04-27. Engineering the Plant Factory for the Production of Biologics and Small-Molecule Medicines available in PDF, EPUB and Kindle. Plant gene transfer achieved in the early ‘80s paved the way for the exploitation of the potential of gene engineering to add novel agronomic traits and/or to design plants as factories for high added value molecules. For this latter area of research, the term "Molecular Farming" was coined in reference to agricultural applications in that major crops like maize and tobacco were originally used basically for pharma applications. The concept of the “green biofactory” implies different advantages over the typical cell factories based on animal cell or microbial cultures already when considering the investment and managing costs of fermenters. Although yield, stability, and quality of the molecules may vary among different heterologous systems and plants are competitive on a case-to-case basis, still the “plant factory” attracts scientists and technologists for the challenging features of low production cost, product safety and easy scale up. Once engineered, a plant is among the cheapest and easiest eukaryotic system to be bred with simple know-how, using nutrients, water and light. Molecules that are currently being produced in plants vary from industrial and pharmaceutical proteins, including medical diagnostics proteins and vaccine antigens, to nutritional supplements such as vitamins, carbohydrates and biopolymers. Convergence among disciplines as distant as plant physiology and pharmacology and, more recently, as omic sciences, bioinformatics and nanotechnology, increases the options of research on the plant cell factory. “Farming for Pharming” biologics and small-molecule medicines is a challenging area of plant biotechnology that may break the limits of current standard production technologies. The recent success on Ebola fighting with plant-made antibodies put a spotlight on the enormous potential of next generation herbal medicines made especially in the name of the guiding principle of reduction of costs, hence reduction of disparities of health rights and as a tool to guarantee adequate health protection in developing countries.

Engineering the Plant Biofactory for the Production of Biologics and Small-Molecule Medicines - Volume 2

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Release : 2022-08-03
Genre : Science
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Book Rating : 985/5 ( reviews)

Engineering the Plant Biofactory for the Production of Biologics and Small-Molecule Medicines - Volume 2 - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Engineering the Plant Biofactory for the Production of Biologics and Small-Molecule Medicines - Volume 2 write by Domenico De Martinis. This book was released on 2022-08-03. Engineering the Plant Biofactory for the Production of Biologics and Small-Molecule Medicines - Volume 2 available in PDF, EPUB and Kindle.

Engineering the Plant Factory for the Production of Biologics and Small-Molecule Medicines

Download Engineering the Plant Factory for the Production of Biologics and Small-Molecule Medicines PDF Online Free

Author :
Release : 2017
Genre :
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Book Rating : /5 ( reviews)

Engineering the Plant Factory for the Production of Biologics and Small-Molecule Medicines - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Engineering the Plant Factory for the Production of Biologics and Small-Molecule Medicines write by . This book was released on 2017. Engineering the Plant Factory for the Production of Biologics and Small-Molecule Medicines available in PDF, EPUB and Kindle. Plant gene transfer achieved in the early '80s paved the way for the exploitation of the potential of gene engineering to add novel agronomic traits and/or to design plants as factories for high added value molecules. For this latter area of research, the term "Molecular Farming" was coined in reference to agricultural applications in that major crops like maize and tobacco were originally used basically for pharma applications. The concept of the "green biofactory" implies different advantages over the typical cell factories based on animal cell or microbial cultures already when considering the investment and managing costs of fermenters. Although yield, stability, and quality of the molecules may vary among different heterologous systems and plants are competitive on a case-to-case basis, still the "plant factory" attracts scientists and technologists for the challenging features of low production cost, product safety and easy scale up. Once engineered, a plant is among the cheapest and easiest eukaryotic system to be bred with simple know-how, using nutrients, water and light. Molecules that are currently being produced in plants vary from industrial and pharmaceutical proteins, including medical diagnostics proteins and vaccine antigens, to nutritional supplements such as vitamins, carbohydrates and biopolymers. Convergence among disciplines as distant as plant physiology and pharmacology and, more recently, as omic sciences, bioinformatics and nanotechnology, increases the options of research on the plant cell factory. "Farming for Pharming" biologics and small-molecule medicines is a challenging area of plant biotechnology that may break the limits of current standard production technologies. The recent success on Ebola fighting with plant-made antibodies put a spotlight on the enormous potential of next generation herbal medicines made especially in the name of the guiding principle of reduction of costs, hence reduction of disparities of health rights and as a tool to guarantee adequate health protection in developing countries.Plant gene transfer achieved in the early '80s paved the way for the exploitation of the potential of gene engineering to add novel agronomic traits and/or to design plants as factories for high added value molecules. For this latter area of research, the term "Molecular Farming" was coined in reference to agricultural applications in that major crops like maize and tobacco were originally used basically for pharma applications. The concept of the "green biofactory" implies different advantages over the typical cell factories based on animal cell or microbial cultures already when considering the investment and managing costs of fermenters. Although yield, stability, and quality of the molecules may vary among different heterologous systems and plants are competitive on a case-to-case basis, still the "plant factory" attracts scientists and technologists for the challenging features of low production cost, product safety and easy scale up. Once engineered, a plant is among the cheapest and easiest eukaryotic system to be bred with simple know-how, using nutrients, water and light. Molecules that are currently being produced in plants vary from industrial and pharmaceutical proteins, including medical diagnostics proteins and vaccine antigens, to nutritional supplements such as vitamins, carbohydrates and biopolymers. Convergence among disciplines as distant as plant physiology and pharmacology and, more recently, as omic sciences, bioinformatics and nanotechnology, increases the options of research on the plant cell factory. "Farming for Pharming" biologics and small-molecule medicines is a challenging area of plant biotechnology that may break the limits of current standard production technologies. The recent success on Ebola fighting with plant-made antibodies put a spotlight on the enormous potential of next generation herbal medicines made especially in the name of the guiding principle of reduction of costs, hence reduction of disparities of health rights and as a tool to guarantee adequate health protection in developing countries.

Controlled Environment Horticulture

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Release : 2019-08-21
Genre : Science
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Book Rating : 976/5 ( reviews)

Controlled Environment Horticulture - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Controlled Environment Horticulture write by Christoph-Martin Geilfus. This book was released on 2019-08-21. Controlled Environment Horticulture available in PDF, EPUB and Kindle. An understanding of crop physiology and ecophysiology enables the horticulturist to manipulate a plant’s metabolism towards the production of compounds that are beneficial for human health when that plant is part of the diet or the source of phytopharmaceutical compounds. The first part of the book introduces the concept of Controlled Environment Horticulture as a horticultural production technique used to maximize yields via the optimization of access to growing factors. The second part describes the use of this production technique in order to induce stress responses in the plant via the modulation of these growing factors and, importantly, the way that this manipulation induces defence reactions in the plant resulting in the production of compounds beneficial for human health. The third part provides guidance for the implementation of this knowledge in horticultural production.

Engineering the Microbial Platform for the Production of Biologics and Small-Molecule Medicines

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Release : 2019-12-23
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Book Rating : 539/5 ( reviews)

Engineering the Microbial Platform for the Production of Biologics and Small-Molecule Medicines - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Engineering the Microbial Platform for the Production of Biologics and Small-Molecule Medicines write by Dipesh Dhakal. This book was released on 2019-12-23. Engineering the Microbial Platform for the Production of Biologics and Small-Molecule Medicines available in PDF, EPUB and Kindle.