Published on

Infectious Disease and Microbiology – Psychrobacter immobilis

Overview

Psychrobacter immobilis is a Gram-negative coccobacillus and an uncommon opportunistic pathogen. Members of the genus Psychrobacter are notable for their ability to survive and grow in cold environments, and organisms within this group have been isolated from food, environmental sources, and clinical specimens.

Human disease caused by P. immobilis is rare, with only a limited number of documented infections. The organism has been recovered from blood, urine, and wounds, but because clinical experience is limited, treatment should be guided by culture and antimicrobial susceptibility testing rather than a standard empiric regimen.


Classification

Genus: Psychrobacter

Species: Psychrobacter immobilis

Organism type: Gram-negative coccobacillus

The taxonomy and identification of some organisms historically assigned to Psychrobacter or closely related genera have undergone revision, so older reports may contain uncertain or outdated species assignments.


Microbiologic Characteristics

Psychrobacter organisms are generally:

Gram-negative coccobacilli

• Aerobic

• Nonmotile

• Non-spore-forming

• Usually oxidase positive

• Usually catalase positive

• Capable of surviving or growing at relatively low temperatures

Their short, plump morphology can sometimes make them appear almost coccal on Gram stain.


High-Yield Microbiology Pattern

Gram-negative coccobacillus

Cold-tolerant environmental organism

Rare opportunistic infection

→ Consider Psychrobacter


Psychrotolerance

The name:

Psychrobacter

reflects the organism’s association with:

Cold environments

Members of the genus can tolerate and, depending on the species and conditions, grow at temperatures lower than those tolerated by many conventional human pathogens.

This explains their recovery from:

• Refrigerated foods

• Cold environmental habitats

• Marine environments

• Other low-temperature ecological niches


Incubation Period

The incubation period is:

Unknown

Because P. immobilis is a rare opportunistic pathogen rather than an organism producing a well-defined transmissible syndrome, there is no characteristic incubation interval.


Epidemiology

P. immobilis has been isolated from:

Food

and is associated with:

Cold environments

Psychrobacter organisms are broadly environmental and have been recovered from a variety of ecological sources.

Human infection remains:

Uncommon


Clinical Significance

An important principle when Psychrobacter is isolated from a clinical specimen is determining whether the isolate represents:

True infection

or

Colonization/contamination

This distinction depends on the:

• Clinical syndrome

• Specimen source

• Host factors

• Reproducibility of the culture

• Presence of systemic inflammatory findings


Bloodstream Infection

P. immobilis has been isolated from:

Blood

and rare cases of clinically significant:

Bacteremia

have been reported.

Isolation from multiple blood cultures in a patient with compatible signs of infection provides stronger evidence for true invasive disease.


High-Yield Blood Culture Pattern

Unusual Gram-negative coccobacillus

Repeated positive blood cultures

Compatible systemic illness

→ Consider true Psychrobacter bacteremia rather than automatically dismissing the isolate


Urinary Isolation

The organism has also been recovered from:

Urine specimens

Clinical significance should be assessed using the same principles applied to other unusual urinary isolates.

Evidence supporting true UTI includes:

• Urinary symptoms

• Pyuria

• Significant bacterial growth

• Repeated isolation

• Appropriate host risk factors


Wound Infection

P. immobilis has been isolated from:

Wound specimens

Because wounds can contain colonizing environmental organisms, recovery from a superficial specimen does not necessarily prove invasive infection.

True wound infection becomes more likely when there is:

Clinical inflammation

Deep-tissue isolation

Compatible microbiologic findings


Other Psychrobacter Infections

Although the source specifically discusses P. immobilis, other members of the genus Psychrobacter have occasionally been implicated in human disease.

Reported infections within the genus have included:

• Bacteremia

• Wound and soft-tissue infections

• Urinary infection

• Other rare invasive infections

Overall, however:

Human disease is uncommon.


Diagnosis

The primary diagnostic method is:

Culture

Depending on the clinical presentation, specimens may include:

• Blood

• Urine

• Wound material

• Deep tissue

• Other normally sterile specimens


Laboratory Identification

Accurate species identification may be challenging because:

Psychrobacter is uncommon in clinical laboratories

• Historical taxonomy has changed

• Phenotypically similar organisms may be confused with related Gram-negative bacteria

Modern laboratory identification methods can improve species-level classification.


Interpretation of Culture

Because the organism is rare, a positive culture should always be interpreted in:

Clinical context

Particularly convincing evidence of true infection includes:

Isolation from a normally sterile site

Repeated recovery

Compatible clinical disease


Treatment

There are:

Insufficient published clinical data

to establish a single standard treatment regimen specifically for P. immobilis infection.

Therefore, antimicrobial selection should be based primarily on:

In vitro antimicrobial susceptibility testing


Treatment Principle

Culture

Confirm organism identification

Perform susceptibility testing

Select an active antimicrobial

Assess for an underlying source

Provide source control when necessary


Why Susceptibility Testing Matters

Because Psychrobacter infections are:

Rare

there are insufficient clinical data to confidently recommend one antimicrobial regimen for every case.

Therefore, therapy should account for:

• Susceptibility results

• Site of infection

• Severity

• Host immune status

• Renal and hepatic function

• Presence of a removable infectious source


Source Control

When infection involves a wound or another localized source, management may also require:

• Wound cleaning

• Drainage of infected collections

• Debridement when appropriate

• Removal of infected foreign material when relevant

Thus, management should not rely solely on antimicrobial therapy when a correctable source is present.


Psychrobacter vs. Acinetobacter

These organisms can have some superficial microbiologic similarities.

Psychrobacter

→ Gram-negative coccobacillus

→ Usually oxidase positive

→ Associated with cold environments

→ Rare human pathogen

Acinetobacter

→ Gram-negative coccobacillus

Oxidase negative

→ Important healthcare-associated pathogen

A. baumannii can exhibit extensive multidrug resistance

The:

Oxidase reaction

can therefore be a useful distinguishing clue.


Psychrobacter vs. Moraxella

Both may appear as:

Gram-negative coccoid or coccobacillary organisms

and both are often:

Oxidase positive

However, Psychrobacter is particularly associated with:

Environmental and cold-tolerant organisms

whereas Moraxella catarrhalis is a well-established human respiratory pathogen.


Prevention

There are no specific preventive measures or vaccines directed against P. immobilis because human disease is:

Extremely uncommon

General principles include:

• Appropriate wound hygiene

• Proper handling of invasive devices

• Standard infection-control practices

• Proper food handling


High-Yield Clinical Pattern

Cold-associated environmental organism

Gram-negative coccobacillus

Rare isolation from blood, urine, or wounds

→ Think Psychrobacter immobilis


Exam Essentials

Genus: Psychrobacter

Species: P. immobilis

Type: Gram-negative coccobacillus

Metabolism: Generally aerobic

Motility: Nonmotile

Oxidase: Usually positive

Catalase: Usually positive

Environmental feature: Cold tolerant/psychrotolerant

Reservoir: Environmental sources and food, particularly in colder settings

Incubation: Unknown

Human infection: Very rare

Clinical specimens: Blood, urine, and wounds

Possible disease: Bacteremia, UTI, and wound infection

Diagnosis: Culture

Diagnostic challenge: Uncommon organism with historically evolving taxonomy and possible identification difficulties

Standard treatment: Not established

Treatment principle: Antimicrobial susceptibility-guided therapy

Additional management: Source control when clinically indicated


Key clinical pearl: Psychrobacter immobilis is a rare, cold-tolerant Gram-negative coccobacillus associated primarily with environmental and food sources. Human disease is uncommon, but the organism has been recovered from blood, urine, and wounds. Because clinical treatment data are sparse and taxonomy has historically been difficult, a clinically significant isolate should be accurately identified and treated according to in vitro antimicrobial susceptibility results rather than a fixed empiric regimen.



Image description
Published on

Infectious Disease and Microbiology – Pseudomonas luteola

Overview

Pseudomonas luteola is a Gram-negative bacillus that is an uncommon cause of human infection. It was formerly known as Chryseomonas luteola and is encountered primarily as an opportunistic pathogen.

Human infections are rare but have been reported worldwide. Important clinical manifestations include bacteremia/septicemia, central venous catheter-associated infection, wound infection, peritoneal dialysis-associated peritonitis, prosthetic valve endocarditis, and meningitis.


Classification

Genus: Pseudomonas

Species: Pseudomonas luteola

Former name: Chryseomonas luteola

Organism type: Gram-negative bacillus


Microbiologic Characteristics

P. luteola is a:

Gram-negative bacillus

• Environmental organism

• Opportunistic pathogen

• Rare cause of invasive human infection

An important historical laboratory characteristic is the production of:

Yellow-pigmented colonies

The species name luteola reflects this yellow pigmentation.


High-Yield Microbiology Pattern

Gram-negative bacillus

Yellow-pigmented colonies

Rare opportunistic infection

Foreign body or catheter

→ Consider Pseudomonas luteola


Epidemiology

P. luteola has a:

Worldwide distribution

However, human infection is:

Rare

The organism is primarily environmental and may be encountered in:

• Soil

• Water

• Moist environmental sources

Human disease generally occurs opportunistically rather than as a common community infection.


Risk Factors

Reported infections frequently occur in patients with:

Central venous catheters

• Prosthetic cardiac material

• Peritoneal dialysis catheters

• Recent surgery or trauma

• Open wounds

• Other invasive medical devices

• Significant underlying disease

Thus, the presence of:

Foreign material

is an important clinical clue.


Septicemia and Bacteremia

One of the important manifestations is:

Septicemia/bacteremia

Some cases may be:

Polymicrobial

The source particularly emphasizes an association with:

Central venous catheters


Central Venous Catheter Infection

A central venous catheter can provide a surface for:

Bacterial adherence

and potentially persistent bloodstream infection.

A typical sequence is:

Environmental organism

Contamination or colonization of device

Catheter-associated infection

Bacteremia/septicemia


High-Yield Clinical Pattern

Central venous catheter

Unusual Gram-negative bacillus

Bacteremia

→ Consider an opportunistic environmental organism such as P. luteola


Polymicrobial Infection

The source notes that septicemia may sometimes be:

Polymicrobial

Therefore, isolation of P. luteola does not necessarily mean that it is the only organism contributing to the infection.

Management should address:

All clinically significant pathogens

identified from appropriate cultures.


Wound Infection

P. luteola can cause:

Wound infections

This is consistent with its environmental reservoir and opportunistic behavior.

Potential settings include:

• Traumatic wounds

• Surgical wounds

• Contaminated tissue

• Patients with impaired host defenses


Peritoneal Dialysis-Associated Peritonitis

An important manifestation is:

Peritonitis

in patients receiving:

Peritoneal dialysis

The dialysis catheter provides a potential route by which environmental organisms can enter the peritoneal cavity.


High-Yield Dialysis Pattern

Peritoneal dialysis

Peritonitis

Rare environmental Gram-negative bacillus

→ Consider Pseudomonas luteola


Prosthetic Valve Endocarditis

P. luteola has also been reported as a cause of:

Prosthetic valve endocarditis

The presence of:

Prosthetic cardiac material

provides a surface that may facilitate persistent infection.


High-Yield Endocarditis Pattern

Prosthetic heart valve

Endocarditis

Unusual environmental Gram-negative bacillus

→ Consider P. luteola


Meningitis

Rare cases of:

Meningitis

have also been reported.

This represents an uncommon but potentially serious invasive manifestation.


Diagnosis

The primary diagnostic method is:

Culture

Depending on the clinical syndrome, appropriate specimens may include:

• Blood

• Catheter-associated blood cultures

• Wound specimens

• Peritoneal dialysis fluid

• Cerebrospinal fluid

• Other normally sterile specimens


Organism Identification

Because P. luteola is uncommon, accurate laboratory identification is important.

The historical name:

Chryseomonas luteola

may appear in older literature.

Recognition of the organism as a potential pathogen is especially important when it is repeatedly recovered from:

Normally sterile sites

or in association with:

Intravascular/prosthetic devices


Contamination vs. True Infection

Because P. luteola is an environmental organism, an unusual culture result should be interpreted within the clinical context.

True infection is more likely when there is:

• Compatible clinical disease

• Repeated positive cultures

• Isolation from a normally sterile site

• Central venous catheter involvement

• Prosthetic material

• Peritoneal dialysis-associated infection

• Appropriate inflammatory findings


Treatment

The source lists:

Ceftazidime

as the principal treatment.

However, because P. luteola infections are uncommon and susceptibility patterns can vary, treatment should ideally be guided by:

Culture and antimicrobial susceptibility testing


Additional Treatment Options

The source lists:

• Ureidopenicillins

• Aminoglycosides

Imipenem

Meropenem

Ciprofloxacin

The appropriate antimicrobial depends on:

• Susceptibility results

• Site of infection

• Severity

• Renal function

• Presence of prosthetic or catheter material


Source Control

Because many reported infections involve:

Foreign material

management may require more than antimicrobial therapy.

Possible interventions include:

• Removal or replacement of an infected central venous catheter

• Management of an infected peritoneal dialysis catheter

• Debridement of an infected wound

• Evaluation of infected prosthetic cardiac material


High-Yield Treatment Principle

Device-associated P. luteola infection

Culture and susceptibility-guided antibiotics

Appropriate source control


Pseudomonas luteola vs. Pseudomonas aeruginosa

Although both carry the Pseudomonas name, they should not automatically be considered clinically identical.

Pseudomonas aeruginosa

→ Major human opportunistic pathogen

→ Common healthcare-associated infections

→ Characteristic blue-green pigments

→ Numerous well-established virulence factors

→ Frequently multidrug resistant

Pseudomonas luteola

Rare human pathogen

→ Environmental organism

→ Historically called Chryseomonas luteola

→ Characteristically associated with yellow pigmentation

→ Reported particularly with catheters and prosthetic material


Device-Associated Disease

A useful way to remember P. luteola is:

RARE ENVIRONMENTAL GRAM-NEGATIVE BACILLUS

FOREIGN BODY

The important foreign-body settings include:

Central venous catheter

Peritoneal dialysis catheter

and

Prosthetic heart valve


High-Yield Clinical Pattern

Rare environmental Gram-negative bacillus

Yellow-pigmented colonies

Central venous catheter-associated bacteremia

→ Think Pseudomonas luteola


Exam Essentials

Genus: Pseudomonas

Species: P. luteola

Former name: Chryseomonas luteola

Type: Gram-negative bacillus

Distribution: Worldwide

Frequency: Rare human infection

Reservoir: Primarily environmental

Pigment: Characteristically yellow

Clinical behavior: Opportunistic pathogen

Major infection: Bacteremia/septicemia

Important association: Central venous catheters

Other infections: Wound infection, peritoneal dialysis-associated peritonitis, prosthetic valve endocarditis, and meningitis

Polymicrobial disease: May occur

Diagnosis: Culture

Source treatment: Ceftazidime

Additional source agents: Ureidopenicillins, aminoglycosides, imipenem, meropenem, and ciprofloxacin

Treatment principle: Susceptibility-guided antimicrobial therapy

Device-associated infection: Consider appropriate source control


Key clinical pearl: Pseudomonas luteola, formerly Chryseomonas luteola, is a rare environmental Gram-negative bacillus notable for yellow pigmentation and opportunistic infections involving foreign material. The most useful clinical clue is an unusual Gram-negative bacteremia associated with a central venous catheter, although peritoneal dialysis peritonitis and prosthetic valve endocarditis are also characteristic reported presentations.



Image description