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Kategorie szczegółowe BISAC

Scalable Green Chemistry: Case Studies from the Pharmaceutical Industry

ISBN-13: 9789814316491 / Angielski / Twarda / 2013 / 350 str.

Stefan Koenig
Scalable Green Chemistry: Case Studies from the Pharmaceutical Industry Koenig, Stefan 9789814316491 Pan Stanford Publishing - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

Scalable Green Chemistry: Case Studies from the Pharmaceutical Industry

ISBN-13: 9789814316491 / Angielski / Twarda / 2013 / 350 str.

Stefan Koenig
cena 555,21
(netto: 528,77 VAT:  5%)

Najniższa cena z 30 dni: 555,21
Termin realizacji zamówienia:
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Packed with real-world examples, this book illustrates the 12 principles of green chemistry. These diverse case studies demonstrate to scientists and students that beyond the theory, the challenges of green chemistry in pharmaceutical discovery and development remain an ongoing endeavor. By informing and welcoming additional practitioners to this mission, the negative environmental impact of pharmaceutical products will continue to be minimized. Green chemistry is the methodology by which chemical production in this industry can become more efficient, adding environmental stewardship to the noble mission of treating human disease.

Kategorie:
Technologie
Kategorie BISAC:
Science > Chemia - Organiczna
Business & Economics > Industries - General
Medical > Farmakologia
Wydawca:
Pan Stanford Publishing
Język:
Angielski
ISBN-13:
9789814316491
Rok wydania:
2013
Ilość stron:
350
Waga:
0.65 kg
Wymiary:
23.11 x 16.0 x 2.79
Oprawa:
Twarda
Wolumenów:
01
Dodatkowe informacje:
Wydanie ilustrowane

Introduction to Green Pharmaceutical Science: Fact, Fiction, and Future, Julie B. Manley

Green Chemistry in Drug Development, Apurba Bhattacharya, Siddhartha Akasapu, and Rakeshwar Bandichhor
Introduction
Aprepitant
Paroxetine
Pregabalin
Sertraline
Conclusions

Development of Green-by-Design, Practical Biocatalytic Processes,
Gjalt W. Huisman and Steven J. Collier
Introduction
Introduction on Biocatalysis and Directed Evolution
Biocatalysis and Green Chemistry
Ketoreductase Processes for Chiral Alcohols
Transaminase Processes to Chiral Primary Amines
Acyltransferase Approach to Simvastatin
Integrated Biocatalytic Processes
Conclusions and Outlook

Application of Green Metrics to Scalable Industrial Synthesis Plans: Approaches to Oseltamivir Phosphate (Tamiflu R _), John Andraos
Introduction
Green Metrics Essentials for Industrial Chemists
Oseltamivir Approaches: Synthesis Strategies
Oseltamivir Syntheses: Material Efficiencies
Concluding Remarks

The Road to Becoming Green: Process Development of AR-A2, an Active Pharmaceutical Ingredient with Antidepressant Activity,
Hans-J¨urgen Federsel, Martin Hedberg, Fredrik R. Qvarnstr¨om, and Wei Tian
The Green Agenda
Starting the New Project
Time for Change: The Road Map to Better Synthesis
Homing in on Safety, Health, and Environment (SHE) Improvements
Focusing the Morpholinobenzoic Acid Side Chain: Design of the Ultimate Process
Reaching the End Product: SHE Perspective on the Final Stages
Summary: Improvements in Environmental Impact of the AR-A2 × HBr Process

Improved and Greener Process for Pioglitazone and Its Pharmaceutically Acceptable Salts,
Apurba Bhattacharya, Rakeshwar Bandichhor, and Lokeswara Rao Madivada
Introduction
A Green Attitude
Synthesis of Pioglitazone
Development of a Greener Process: Improved Process for Pioglitazone
Process Optimization
Conclusions

The Development of a Convergent Green Synthesis of Linezolid, an Oxazolidinone Antibacterial Agent,
William R. Perrault, James B. Keeler, William C. Snyder, Christian L. Clark, Michael R. Reeder, Richard J. Imbordino, Rebecca M. Anderson, Nabil Ghazal, Stephen L. Secreast, and Bruce A. Pearlman
Background
Green Linezolid Process
Conclusion

Development of a Nonaqueous Process for the Synthesis of 3-Amino-pentan-1,5-diol, Thimma Rawalpally and Thomas Cleary
Introduction
IND Synthesis
First-Generation Aminodiol Synthesis
Second-Generation Synthesis
Environmental Assessment of the Synthetic Routes

Development of a Robust, Environmentally Responsible Process for the Manufacture of Tofacitinib Citrate,
Rajappa Vaidyanathan
Introduction
Retrosynthetic Strategy
Approaches to Piperidine 6
Choice and Synthesis of the Coupling Partner
The Debenzylation Step
Amidation, Salt Formation, and Isolation
Conclusions

Selective Nitration under cGMP Conditions,
Peter Poechlauer, Sascha Braune, and Roland Oberm¨uller
Introduction: Pharmaceuticals—Successful Products, Inefficient Manufacture?
Pharmaceutical Production
Process Intensification
Process Intensification in Practice
Safety First: A thorough Analysis
Consequences for Plant Design
Quality
Continuous Improvement and Its Consequences on the Environmental Impact of a Plant
Conclusion

Going Green Using Combined Real-Time Analytics and Process Automation,
Dominique Hebrault and Terry Redman
Introduction
Case Studies
General Conclusions

Approaches to the Scale-Up of Organic Chemistry Using Microwave Heating,
Nicholas E. Leadbeater
Introduction
Scale-Up of Chemistry Performed Using Microwave Heating
Concluding Remarks

Challenges Faced and Future Directions, Stefan G. Koenig
Introduction
Successful Beginnings
The Future of Green Chemistry
Conclusions Index 357

Stefan Koenig received his PhD from Yale University before conducting postdoctoral research at the ETH (Swiss Federal Institute) in Zurich, Switzerland. He embarked on his professional career in the pharmaceutical industry at Sepracor (now Sunovion Pharmaceuticals). Currently, he is a scientist at Genentech and chair of Roche/Genentech’s global Green Chemistry Technical Working Group.



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