Clinical and Pathophysiological Overview of Acinetobacter Infections: a Century of Challenges

Клинический и патофизиологический обзор инфекций, вызванных Acinetobacter: столетие проблем
Darren Wong, Travis B. Nielsen, Robert A. Bonomo, Paul Pantapalangkoor, Brian Luna, Brad Spellberg
2017-01-01

Acinetobacter infectionscapsular polysaccharideextensively drug-resistant (XDR) phenotypelipopolysaccharide–TLR4-mediated sepsisnosocomial infections
Acinetobacter is a complex genus, and historically, there has been confusion about the existence of multiple species. The species commonly cause nosocomial infections, predominantly aspiration pneumonia and catheter-associated bacteremia, but can also cause soft tissue and urinary tract infections. Community-acquired infections by Acinetobacter spp. are increasingly reported. Transmission of Acinetobacter and subsequent disease is facilitated by the organism's environmental tenacity, resistance to desiccation, and evasion of host immunity. The virulence properties demonstrated by Acinetobacter spp. primarily stem from evasion of rapid clearance by the innate immune system, effectively enabling high bacterial density that triggers lipopolysaccharide (LPS)-Toll-like receptor 4 (TLR4)-mediated sepsis. Capsular polysaccharide is a critical virulence factor that enables immune evasion, while LPS triggers septic shock. However, the primary driver of clinical outcome is antibiotic resistance. Administration of initially effective therapy is key to improving survival, reducing 30-day mortality threefold. Regrettably, due to the high frequency of this organism having an extreme drug resistance (XDR) phenotype, early initiation of effective therapy is a major clinical challenge. Given its high rate of antibiotic resistance and abysmal outcomes (up to 70% mortality rate from infections caused by XDR strains in some case series), new preventative and therapeutic options for Acinetobacter spp. are desperately needed.
1
Acinetobacter commonly causes nosocomial aspiration pneumonia and catheter-associated bacteremia, while community-acquired infections are increasingly reported.
2
Antibiotic resistance is the primary determinant of clinical outcome; initially effective therapy reduces 30-day mortality threefold.
3
Capsular polysaccharide promotes immune evasion, whereas lipopolysaccharide-driven TLR4 activation at high bacterial density contributes to septic shock.
4
Environmental persistence, desiccation resistance, and immune evasion facilitate Acinetobacter transmission and subsequent disease.
5
Extensively drug-resistant Acinetobacter infections can have mortality rates up to 70%, underscoring the need for new preventive and therapeutic strategies.

Acinetobacter spp. infections, particularly nosocomial and community-acquired infections

Clinical manifestations, pathophysiological mechanisms, virulence factors, antibiotic resistance, and treatment-related outcomes

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2017-01-01
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Authors
Darren Wong
Travis B. Nielsen
Robert A. Bonomo
Paul Pantapalangkoor
Brian Luna
Brad Spellberg
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