examples of industrial biotechnology products

Learner Career Outcomes. The latest volume in the Advanced Biotechnology series provides an overview of the main product classes and platform chemicals produced by biotechnological processes today, with applications in … Have an informed discussion of the key enabling technologies underpinning research in industrial biotechnology Microbial Production of Synthetic Fuels. Biotechnological processing uses enzymes and microorganisms to produce products that are useful to a broad range of industrial sectors, including chemical and pharmaceutical, human and animal nutrition, pulp and paper, textiles, energy, materials and polymers, using renewable raw materials. This course will cover the key enabling technologies that underpin biotechnology research including enzyme discovery and engineering, systems and synthetic biology and biochemical and process engineering. © 2020 Coursera Inc. All rights reserved. 2. Production of Enzymes and Human Proteins. Foods such as fruits, grains, and vegetables are engineered to carry antigenic proteins which are extracted from pathogens. 4.6 (1,583 ratings) 5 … Understand enzymatic function and catalysis. Genetically modified crops have had a significant contribution in the development of vaccines. We will also consider the wider issues involved in sustainable manufacturing including responsible research innovation and bioethics. In the latter part of the course, we will illustrate how these technologies translate into real world applications, which benefit society and impact our everyday lives. Using biological resources, such as plants, algae, fungi, marine life, and microorganisms, industrial biotechnology combined with the emerging science of synthetic biology, is revolutionizing manufacturing processes to deliver renewable and sustainable materials, biopharmaceuticals, chemicals, and energy. In particular, we will be looking at the key enabling technologies that underpin biotechnology research, including enzyme discovery and engineering, systems and synthetic biology, and biochemical and process engineering. Biotechnology is also used in many other industrial areas. 3. Biotechnological processing uses enzymes and microorganisms to produce products that are useful to a broad range of industrial sectors, including chemical and pharmaceutical, human and animal nutrition, … They provide the raw material for the manufacture of many everyday products that we take for granted, including pharmaceuticals, food and drink, materials, plastics and personal care. Throughout this course, we will exploring the ways in which chemistry, biology, and engineering principles contribute to interdisciplinary efforts within industrial biotechnology to develop innovative processes and products that are economically viable, environmentally compatible, and socially responsible. This will include input from our industry stakeholders and collaborators working in the pharmaceutical, chemicals and biofuels industries. 5. New vaccines employing green biotechnology innovations are changing the processes of preventing illnesses, particularly in developing countries. Plastics Pioneer: Cargill Dow LLC, Minnetonka, Minn.: A pioneer in the large-scale production of plant-based plastics (NatureWorks PLA), Cargill Dow is now applying the same technology to make and market a textile product. Industrial Biotechnology Products. According to the Biotechnology Industry Organization, there are more than 250 biotechnology products available, including medicines, vaccines, fertilizers, pest-resistant crops, bio-fuels and bio-defense products. Understand the principles and role of bioprocessing and biochemical engineering in industrial biotechnology. White Biotechnology draws inspiration from industrial biotech to design more energy-efficient, less polluting, and low resource-consuming processes and products that can beat traditional ones. Give examples of industrial biotechnology products and processes and their application in healthcare, agriculture, fine chemicals, energy and the environment. Microbial Biomass and … Microorganisms and enzymes can be used for the production of food supplements such as vitamin B2, biobased plastics such as polylactic acid and energy carriers such as biogas and bioethanol. Applications of Biotechnology in Industry and Healthcare: Improvement in Fermentation Products. Industrial biotechnology and biobased chemicals manufacture underpin one of the largest industrial sectors. They are the key enablers in the white biotechnology revolution, providing essential components in the new science of 'synthetic biology', offering new routes to biofuels, bulk and commodity chemicals and novel therapeutics. View Syllabus. This is a really fascinating course that sparked my enthusiasm for industrial biotechnology. Since that time, industrial biotechnology has produced enzymes for use in our daily lives and for the manufacturing sector. 4. Fossil fuels have been the primary energy source for society since the Industrial Revolution. Production of Secondary Metabolites from Cultured Plant Cell. Molecular Farming for Healthcare Pro­ducts. Microbial Mining or Bioleaching. They are the vehicles for delivering innovative bioscience solutions to chemicals manufacture, drug discovery, therapeutics and bioprocessing. Industrial biotechnology is changing how we manufacture chemicals and materials, as well as providing us with a source of renewable energy. Information incorporated encompasses a broad variety of basic sciences and advanced technology. 1. Microbial Production of Synthetic Fuels. supports HTML5 video. Applications of Biotechnology in Industry and Healthcare: Improvement in Fermentation Products. Pharmaceuticals, food and drink, materials, plastics, and personal care. Microbial Mining or Bioleaching. [MUSIC], Enzymes, Enzyme Discovery and Engineering, To view this video please enable JavaScript, and consider upgrading to a web browser that. Much of this material will be delivered through lectures to ensure that you have a solid foundation in these key areas. Innovations include food packaging, clothing, detergent ingredients and car parts. 6. Give examples of industrial biotechnology products and processes and their application in healthcare, agriculture, fine chemicals, energy and the environment. Examples of biotechnology Antibiotics Bacteria and yeast cultures Skim, fortified or long-life milk Contributions to the fight against cancer Biofuel production Transgenic plants Biodegradable … The latest volume in the Advanced Biotechnology series provides an overview of the main product classes and platform chemicals produced by biotechnological processes today, with applications in the food, healthcare and fine chemical industries. Yellow Biotechnology relates to the use of biotechnology in food production, for example… To view this video please enable JavaScript, and consider upgrading to a web browser that These sources of carbon provide the raw material for the manufacture of many everyday products that we take for granted. Construction Engineering and Management Certificate, Machine Learning for Analytics Certificate, Innovation Management & Entrepreneurship Certificate, Sustainabaility and Development Certificate, Spatial Data Analysis and Visualization Certificate, Master's of Innovation & Entrepreneurship. Everyday examples include the production of bread, yoghurt and vinegar using microorganisms and the use of enzymes in detergents. Give examples of industrial biotechnology products and processes and their application in healthcare, agriculture, fine chemicals, energy and the environment. When injected into the body, these antigens trigger an immune respons… As the 21st century progresses we need solutions for the manufacture of chemicals that are smarter, more predictable and more sustainable. Plastics (olefins and styrenics) used for eating utensils, beverage and food containers, and personal care products made from petroleum Naturally occurring microbial process genetically enhanced to produce … But they won't last forever. 10 % started a new career after completing these courses. Explain the diversity of synthetic biology application and discuss the different ethical and regulatory/governance challenges involved in this research.

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