Current Challenges in Modeling Cellular Metabolism

Current Challenges in Modeling Cellular Metabolism
Author :
Publisher : Frontiers Media SA
Total Pages : 117
Release :
ISBN-10 : 9782889197545
ISBN-13 : 2889197549
Rating : 4/5 (45 Downloads)

Synopsis Current Challenges in Modeling Cellular Metabolism by : Daniel Machado

Mathematical and computational models play an essential role in understanding the cellular metabolism. They are used as platforms to integrate current knowledge on a biological system and to systematically test and predict the effect of manipulations to such systems. The recent advances in genome sequencing techniques have facilitated the reconstruction of genome-scale metabolic networks for a wide variety of organisms from microbes to human cells. These models have been successfully used in multiple biotechnological applications. Despite these advancements, modeling cellular metabolism still presents many challenges. The aim of this Research Topic is not only to expose and consolidate the state-of-the-art in metabolic modeling approaches, but also to push this frontier beyond the current edge through the introduction of innovative solutions. The articles presented in this e-book address some of the main challenges in the field, including the integration of different modeling formalisms, the integration of heterogeneous data sources into metabolic models, explicit representation of other biological processes during phenotype simulation, and standardization efforts in the representation of metabolic models and simulation results.

Systems Metabolic Engineering

Systems Metabolic Engineering
Author :
Publisher : Springer Science & Business Media
Total Pages : 391
Release :
ISBN-10 : 9789400745346
ISBN-13 : 9400745346
Rating : 4/5 (46 Downloads)

Synopsis Systems Metabolic Engineering by : Christoph Wittmann

Systems Metabolic Engineering is changing the way microbial cell factories are designed and optimized for industrial production. Integrating systems biology and biotechnology with new concepts from synthetic biology enables the global analysis and engineering of microorganisms and bioprocesses at super efficiency and versatility otherwise not accessible. Without doubt, systems metabolic engineering is a major driver towards bio-based production of chemicals, materials and fuels from renewables and thus one of the core technologies of global green growth. In this book, Christoph Wittmann and Sang-Yup Lee have assembled the world leaders on systems metabolic engineering and cover the full story – from genomes and networks via discovery and design to industrial implementation practises. This book is a comprehensive resource for students and researchers from academia and industry interested in systems metabolic engineering. It provides us with the fundaments to targeted engineering of microbial cells for sustainable bio-production and stimulates those who are interested to enter this exiting research field.

The Chemistry of Microbiomes

The Chemistry of Microbiomes
Author :
Publisher : National Academies Press
Total Pages : 133
Release :
ISBN-10 : 9780309458399
ISBN-13 : 0309458390
Rating : 4/5 (99 Downloads)

Synopsis The Chemistry of Microbiomes by : National Academies of Sciences, Engineering, and Medicine

The 21st century has witnessed a complete revolution in the understanding and description of bacteria in eco- systems and microbial assemblages, and how they are regulated by complex interactions among microbes, hosts, and environments. The human organism is no longer considered a monolithic assembly of tissues, but is instead a true ecosystem composed of human cells, bacteria, fungi, algae, and viruses. As such, humans are not unlike other complex ecosystems containing microbial assemblages observed in the marine and earth environments. They all share a basic functional principle: Chemical communication is the universal language that allows such groups to properly function together. These chemical networks regulate interactions like metabolic exchange, antibiosis and symbiosis, and communication. The National Academies of Sciences, Engineering, and Medicine's Chemical Sciences Roundtable organized a series of four seminars in the autumn of 2016 to explore the current advances, opportunities, and challenges toward unveiling this "chemical dark matter" and its role in the regulation and function of different ecosystems. The first three focused on specific ecosystemsâ€"earth, marine, and humanâ€"and the last on all microbiome systems. This publication summarizes the presentations and discussions from the seminars.

Omics Technologies and Bio-engineering

Omics Technologies and Bio-engineering
Author :
Publisher : Academic Press
Total Pages : 422
Release :
ISBN-10 : 9780128158715
ISBN-13 : 0128158719
Rating : 4/5 (15 Downloads)

Synopsis Omics Technologies and Bio-engineering by : Debmalya Barh

Omics Technologies and Bio-Engineering: Towards Improving Quality of Life, Volume 2 is a unique reference that brings together multiple perspectives on omics research, providing in-depth analysis and insights from an international team of authors. The book delivers pivotal information that will inform and improve medical and biological research by helping readers gain more direct access to analytic data, an increased understanding on data evaluation, and a comprehensive picture on how to use omics data in molecular biology, biotechnology and human health care. - Covers various aspects of biotechnology and bio-engineering using omics technologies - Focuses on the latest developments in the field, including biofuel technologies - Provides key insights into omics approaches in personalized and precision medicine - Provides a complete picture on how one can utilize omics data in molecular biology, biotechnology and human health care

Cybernetic Modeling for Bioreaction Engineering

Cybernetic Modeling for Bioreaction Engineering
Author :
Publisher : Cambridge University Press
Total Pages : 295
Release :
ISBN-10 : 9781107000520
ISBN-13 : 1107000521
Rating : 4/5 (20 Downloads)

Synopsis Cybernetic Modeling for Bioreaction Engineering by : Doraiswami Ramkrishna

Describes dynamic state of metabolic systems, while paving the way for fully predictive modeling frameworks.

Physiology of the Bacterial Cell

Physiology of the Bacterial Cell
Author :
Publisher : Sinauer Associates, Incorporated
Total Pages : 536
Release :
ISBN-10 : UOM:39015032694443
ISBN-13 :
Rating : 4/5 (43 Downloads)

Synopsis Physiology of the Bacterial Cell by : Frederick Carl Neidhardt

Textbook for upper-division and graduate students in the biological and biochemical sciences introduces the properties of bacteria that have led to their success as colonizers of this planet. The major theme is the analysis of the molecular devices that have led to the ability of bacteria to grow rapidly in a variety of environments, to adapt quickly to changes in their surroundings, to withstand starvation and exposure to toxic agents, and to compete successfully with other organisms. Annotation copyrighted by Book News, Inc., Portland, OR

The Heterogeneity of Cancer Metabolism

The Heterogeneity of Cancer Metabolism
Author :
Publisher : Springer
Total Pages : 186
Release :
ISBN-10 : 9783319777368
ISBN-13 : 331977736X
Rating : 4/5 (68 Downloads)

Synopsis The Heterogeneity of Cancer Metabolism by : Anne Le

Genetic alterations in cancer, in addition to being the fundamental drivers of tumorigenesis, can give rise to a variety of metabolic adaptations that allow cancer cells to survive and proliferate in diverse tumor microenvironments. This metabolic flexibility is different from normal cellular metabolic processes and leads to heterogeneity in cancer metabolism within the same cancer type or even within the same tumor. In this book, we delve into the complexity and diversity of cancer metabolism, and highlight how understanding the heterogeneity of cancer metabolism is fundamental to the development of effective metabolism-based therapeutic strategies. Deciphering how cancer cells utilize various nutrient resources will enable clinicians and researchers to pair specific chemotherapeutic agents with patients who are most likely to respond with positive outcomes, allowing for more cost-effective and personalized cancer therapeutic strategies.

Systems Biology and the Challenge of Deciphering the Metabolic Mechanisms Underlying Cancer

Systems Biology and the Challenge of Deciphering the Metabolic Mechanisms Underlying Cancer
Author :
Publisher : Frontiers Media SA
Total Pages : 144
Release :
ISBN-10 : 9782889453337
ISBN-13 : 2889453332
Rating : 4/5 (37 Downloads)

Synopsis Systems Biology and the Challenge of Deciphering the Metabolic Mechanisms Underlying Cancer by : Osbaldo Resendis-Antonio

Since the discovery of the Warburg effect in the 1920s cancer has been tightly associated with the genetic and metabolic state of the cell. One of the hallmarks of cancer is the alteration of the cellular metabolism in order to promote proliferation and undermine cellular defense mechanisms such as apoptosis or detection by the immune system. However, the strategies by which this is achieved in different cancers and sometimes even in different patients of the same cancer is very heterogeneous, which hinders the design of general treatment options. Recently, there has been an ongoing effort to study this phenomenon on a genomic scale in order to understand the causality underlying the disease. Hence, current “omics” technologies have contributed to identify and monitor different biological pieces at different biological levels, such as genes, proteins or metabolites. These technological capacities have provided us with vast amounts of clinical data where a single patient may often give rise to various tissue samples, each of them being characterized in detail by genomescale data on the sequence, expression, proteome and metabolome level. Data with such detail poses the imminent problem of extracting meaningful interpretations and translating them into specific treatment options. To this purpose, Systems Biology provides a set of promising computational tools in order to decipher the mechanisms driving a healthy cell’s metabolism into a cancerous one. However, this enterprise requires bridging the gap between large data resources, mathematical analysis and modeling specifically designed to work with the available data. This is by no means trivial and requires high levels of communication and adaptation between the experimental and theoretical side of research.