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The antibiotic resistance crisis and the development of new antibiotics
by
Brüssow, Harald
in
Abdomen
/ Acquired immune deficiency syndrome
/ Age groups
/ AIDS
/ Anti-Bacterial Agents - pharmacology
/ Antibiotic resistance
/ Antibiotics
/ Antimicrobial agents
/ Bacteria
/ Bacteria - classification
/ Bacteria - drug effects
/ Bacteria - genetics
/ Bacterial Infections - drug therapy
/ Bacterial Infections - microbiology
/ Bioprospecting
/ Cardiovascular disease
/ Cardiovascular diseases
/ Chemical properties
/ Chemical synthesis
/ Consortia
/ Cost analysis
/ Diabetes
/ Disease resistance
/ Drug Development
/ Drug Discovery
/ Drug resistance
/ Drug Resistance, Bacterial
/ E coli
/ Fatalities
/ Genetics
/ Heart diseases
/ High income
/ HIV
/ Human immunodeficiency virus
/ Humans
/ Immunization
/ Infectious diseases
/ Injuries
/ Ischemia
/ Launch costs
/ Lilliput
/ Machine learning
/ Malaria
/ Mortality
/ Pathogens
/ Pharmaceutical industry
/ Phylogeny
/ Public health
/ Public sector
/ Staphylococcus infections
/ Streptococcus infections
/ Tuberculosis
2024
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The antibiotic resistance crisis and the development of new antibiotics
by
Brüssow, Harald
in
Abdomen
/ Acquired immune deficiency syndrome
/ Age groups
/ AIDS
/ Anti-Bacterial Agents - pharmacology
/ Antibiotic resistance
/ Antibiotics
/ Antimicrobial agents
/ Bacteria
/ Bacteria - classification
/ Bacteria - drug effects
/ Bacteria - genetics
/ Bacterial Infections - drug therapy
/ Bacterial Infections - microbiology
/ Bioprospecting
/ Cardiovascular disease
/ Cardiovascular diseases
/ Chemical properties
/ Chemical synthesis
/ Consortia
/ Cost analysis
/ Diabetes
/ Disease resistance
/ Drug Development
/ Drug Discovery
/ Drug resistance
/ Drug Resistance, Bacterial
/ E coli
/ Fatalities
/ Genetics
/ Heart diseases
/ High income
/ HIV
/ Human immunodeficiency virus
/ Humans
/ Immunization
/ Infectious diseases
/ Injuries
/ Ischemia
/ Launch costs
/ Lilliput
/ Machine learning
/ Malaria
/ Mortality
/ Pathogens
/ Pharmaceutical industry
/ Phylogeny
/ Public health
/ Public sector
/ Staphylococcus infections
/ Streptococcus infections
/ Tuberculosis
2024
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Do you wish to request the book?
The antibiotic resistance crisis and the development of new antibiotics
by
Brüssow, Harald
in
Abdomen
/ Acquired immune deficiency syndrome
/ Age groups
/ AIDS
/ Anti-Bacterial Agents - pharmacology
/ Antibiotic resistance
/ Antibiotics
/ Antimicrobial agents
/ Bacteria
/ Bacteria - classification
/ Bacteria - drug effects
/ Bacteria - genetics
/ Bacterial Infections - drug therapy
/ Bacterial Infections - microbiology
/ Bioprospecting
/ Cardiovascular disease
/ Cardiovascular diseases
/ Chemical properties
/ Chemical synthesis
/ Consortia
/ Cost analysis
/ Diabetes
/ Disease resistance
/ Drug Development
/ Drug Discovery
/ Drug resistance
/ Drug Resistance, Bacterial
/ E coli
/ Fatalities
/ Genetics
/ Heart diseases
/ High income
/ HIV
/ Human immunodeficiency virus
/ Humans
/ Immunization
/ Infectious diseases
/ Injuries
/ Ischemia
/ Launch costs
/ Lilliput
/ Machine learning
/ Malaria
/ Mortality
/ Pathogens
/ Pharmaceutical industry
/ Phylogeny
/ Public health
/ Public sector
/ Staphylococcus infections
/ Streptococcus infections
/ Tuberculosis
2024
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The antibiotic resistance crisis and the development of new antibiotics
Journal Article
The antibiotic resistance crisis and the development of new antibiotics
2024
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Overview
The Global Burden of Disease report of 2019 estimated 14 million infection‐related deaths, making it the second leading cause of death after ischaemic heart disease. Bacterial pathogens accounted for 7.7 million deaths and deaths attributable to bacterial antibiotic resistance amounted to 1.3 million, describing a clear demand for novel antibiotics. Antibiotic development had its golden age in 1930–1960. Following failures in the screening of chemical libraries for novel antibiotics at the beginning of this century, the high cost of launching new antibiotics (estimated at US$ 1.4 billion per registered drug) and difficulties in achieving a return of investment for novel antibiotics, pharmaceutical industry has mostly left the field. The current Lilliput review analyses the question whether scientific or economic hurdles prevented the registration of new antibiotics. Scientifically, substantial progress has been achieved over recent years to define the chemical properties needed to overcome the permeation barrier in Gram‐negative pathogens; in extending the chemical space of antibiotic candidates by full modular synthesis of suitable molecules; by extending bioprospecting to previously ‘unculturable’ bacteria or unusual bacteria; by attacking bacterial targets on the outer bacterial membrane; and by looking for support from structural biology, genomics, molecular genetics, phylogenetic analyses and deep machine learning approaches. However, these research activities were mostly conducted by academic researchers and biotech companies with limited financial resources. It thus seems that the development of new antibiotics, frequently described as the drying of the pipeline, is less limited by lack of scientific insight than by lack of the mobilization of the monetary resources needed to bring these discoveries to the market despite recent financial push and pull efforts of the public sector. The current Lilliput review analyses the question whether scientific or economic hurdles prevented the registration of new antibiotics. Scientifically, substantial progress has been achieved over recent years. The lack of profitability for costly novel antibiotic development necessitates push and pull efforts of the public sector to complement what the market forces alone cannot achieve.
Publisher
John Wiley & Sons, Inc,John Wiley and Sons Inc,Wiley
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