scholarly journals A rare case of aggressive invasive fungal sinusitis with multidrug resistant Pseudomonas aeruginosa co-infection in immunocompromised: a therapeutic challenge

Author(s):  
Debaditya Basu ◽  
Abhijit Kumar ◽  
Ajay Gupta ◽  
Binayak Baruah ◽  
Alok Kumar ◽  
...  

<p class="abstract">Mucormycosis is known to be rapidly progressing and fulminant fungal infection which has the ability to cause significant morbidity and mortality, especially in immunocompromised patients. <em>Pseudomonas aeruginosa </em>commonly co-isolated bacterial species from chronic wounds are likely to interact and compete with Mucorales spores.We report a 70 years old female who presented to us initially with left facial swelling with a cheek ulcer. She had initially denied the necessary investigations but later presented to us with flared up symptoms. She was a known case of type 2 diabetes mellitus, hypothyroidism and dilated cardiomyopathy on medication with permanent pacemaker implant. She was found to have left maxillary mucormycosis with left sided cheek wound having superinfection with <em>Pseudomonas aeruginosa.</em> Patient was started on injection Amphotericin B (lipophilic) and injection colistin with surgical debridement of the wound. Left Caldwell-Luc surgery with left inferior meatal antrostomy was performed for clearing fungal debris in left maxillary sinus. The purpose behind this paper is to highlight the need of early detection and aggressive management for successful management of mucormycosis.</p>

mBio ◽  
2018 ◽  
Vol 9 (6) ◽  
Author(s):  
Melissa D. Barnes ◽  
Magdalena A. Taracila ◽  
Joseph D. Rutter ◽  
Christopher R. Bethel ◽  
Ioannis Galdadas ◽  
...  

ABSTRACT Pseudomonas aeruginosa produces a class C β-lactamase (e.g., PDC-3) that robustly hydrolyzes early generation cephalosporins often at the diffusion limit; therefore, bacteria possessing these β-lactamases are resistant to many β-lactam antibiotics. In response to this significant clinical threat, ceftolozane, a 3′ aminopyrazolium cephalosporin, was developed. Combined with tazobactam, ceftolozane promised to be effective against multidrug-resistant P. aeruginosa. Alarmingly, Ω-loop variants of the PDC β-lactamase (V213A, G216R, E221K, E221G, and Y223H) were identified in ceftolozane/tazobactam-resistant P. aeruginosa clinical isolates. Herein, we demonstrate that the Escherichia coli strain expressing the E221K variant of PDC-3 had the highest minimum inhibitory concentrations (MICs) against a panel of β-lactam antibiotics, including ceftolozane and ceftazidime, a cephalosporin that differs in structure largely in the R2 side chain. The kcat values of the E221K variant for both substrates were equivalent, whereas the Km for ceftolozane (341 ± 64 µM) was higher than that for ceftazidime (174 ± 20 µM). Timed mass spectrometry, thermal stability, and equilibrium unfolding studies revealed key mechanistic insights. Enhanced sampling molecular dynamics simulations identified conformational changes in the E221K variant Ω-loop, where a hidden pocket adjacent to the catalytic site opens and stabilizes ceftolozane for efficient hydrolysis. Encouragingly, the diazabicyclooctane β-lactamase inhibitor avibactam restored susceptibility to ceftolozane and ceftazidime in cells producing the E221K variant. In addition, a boronic acid transition state inhibitor, LP-06, lowered the ceftolozane and ceftazidime MICs by 8-fold for the E221K-expressing strain. Understanding these structural changes in evolutionarily selected variants is critical toward designing effective β-lactam/β-lactamase inhibitor therapies for P. aeruginosa infections. IMPORTANCE The presence of β-lactamases (e.g., PDC-3) that have naturally evolved and acquired the ability to break down β-lactam antibiotics (e.g., ceftazidime and ceftolozane) leads to highly resistant and potentially lethal Pseudomonas aeruginosa infections. We show that wild-type PDC-3 β-lactamase forms an acyl enzyme complex with ceftazidime, but it cannot accommodate the structurally similar ceftolozane that has a longer R2 side chain with increased basicity. A single amino acid substitution from a glutamate to a lysine at position 221 in PDC-3 (E221K) causes the tyrosine residue at 223 to adopt a new position poised for efficient hydrolysis of both cephalosporins. The importance of the mechanism of action of the E221K variant, in particular, is underscored by its evolutionary recurrences in multiple bacterial species. Understanding the biochemical and molecular basis for resistance is key to designing effective therapies and developing new β-lactam/β-lactamase inhibitor combinations.


Author(s):  
Maggie Wong ◽  
Davie Wong ◽  
Sangita Malhotra

Abstract Purpose A case of osteomyelitis caused by multidrug-resistant (MDR) Pseudomonas aeruginosa is reported. Summary An 84-year-old Caucasian male with an underlying history of type 2 diabetes, peripheral vascular disease, and coronary artery disease had chronic nonhealing wounds on his right foot. Wound care and a course of intravenous (IV) ertapenem with oral ciprofloxacin were ineffective. His initial wound culture grew Staphylococcus aureus, group G streptococcus and P. aeruginosa; the Pseudomonas was susceptible to multiple agents. The patient eventually required midtarsal amputation and angioplasties to his right leg. Twenty days after the operation, 2 openings were discovered at the surgical site, 1 of which was probed to the bone. He was readmitted 5 weeks after the operation. A repeat wound swab grew MDR P. aeruginosa and Finegoldia magna. The Pseudomonas was susceptible to gentamicin and colistin. The patient had revision of the infected amputation site with the goal of salvaging his right lower limb. The patient developed acute renal failure after 26 days of IV gentamicin, IV ceftriaxone, and oral metronidazole. Additional susceptibility testing was performed to identify alternatives. The bacteria were considered susceptible to IV fosfomycin, the last resort, by our microbiology laboratory. This was combined with ceftolozane/tazobactam followed by meropenem to treat the residual infection. After 2 weeks of IV fosfomycin, the patient’s wound improved and further amputation was avoided. Conclusion Our case demonstrates that IV fosfomycin may provide an effective salvage therapy when combined with β-lactams for the treatment of severe diabetic foot infection or osteomyelitis caused by MDR P. aeruginosa.


2020 ◽  
Vol 15 (3) ◽  
pp. 193-206
Author(s):  
Brognara Lorenzo ◽  
Salmaso Luca ◽  
Mazzotti Antonio ◽  
Di M. Alberto ◽  
Faldini Cesare ◽  
...  

Background: Chronic wounds are commonly associated with polymicrobial biofilm infections. In the last years, the extensive use of antibiotics has generated several antibiotic-resistant variants. To overcome this issue, alternative natural treatments have been proposed, including the use of microorganisms like probiotics. The aim of this manuscript was to review current literature concerning the application of probiotics for the treatment of infected chronic wounds. Methods: Relevant articles were searched in the Medline database using PubMed and Scholar, using the keywords “probiotics” and “wound” and “injuries”, “probiotics” and “wound” and “ulcer”, “biofilm” and “probiotics” and “wound”, “biofilm” and “ulcer” and “probiotics”, “biofilm” and “ulcer” and “probiotics”, “probiotics” and “wound”. Results: The research initially included 253 articles. After removal of duplicate studies, and selection according to specific inclusion and exclusion criteria, 19 research articles were included and reviewed, accounting for 12 in vitro, 8 in vivo studies and 2 human studies (three articles dealing with animal experiments included also in vitro testing). Most of the published studies about the effects of probiotics for the treatment of infected chronic wounds reported a partial inhibition of microbial growth, biofilm formation and quorum sensing. Discussion: The application of probiotics represents an intriguing option in the treatment of infected chronic wounds with multidrug-resistant bacteria; however, current results are difficult to compare due to the heterogeneity in methodology, laboratory techniques, and applied clinical protocols. Lactobacillus plantarum currently represents the most studied strain, showing a positive application in burns compared to guideline treatments, and an additional mean in chronic wound infections. Conclusions: Although preliminary evidence supports the use of specific strains of probiotics in certain clinical settings such as infected chronic wounds, large, long-term clinical trials are still lacking, and further research is needed.


2021 ◽  
Vol 9 (7) ◽  
pp. 1345
Author(s):  
Stefan E. Heiden ◽  
Katharina Sydow ◽  
Stephan Schaefer ◽  
Ingo Klempien ◽  
Veronika Balau ◽  
...  

The emergence of carbapenemase-producing Enterobacteriaceae limits therapeutic options and presents a major public health problem. Resistances to carbapenems are mostly conveyed by metallo-beta-lactamases (MBL) including VIM, which are often encoded on resistance plasmids. We characterized four VIM-positive isolates that were obtained as part of a routine diagnostic screening from two laboratories in north-eastern Germany between June and August 2020. Whole-genome sequencing was performed to address (a) phylogenetic properties, (b) plasmid content, and (c) resistance gene carriage. In addition, we performed phenotypic antibiotic and mercury resistance analyses. The genomic analysis revealed three different bacterial species including C. freundii, E. coli and K. oxytoca with four different sequence types. All isolates were geno- and phenotypically multidrug-resistant (MDR) and the phenotypic profile was explained by the underlying resistance gene content. Three isolates of four carried nearly identical VIM-1-resistance plasmids, which in addition encoded a mercury resistance operon and showed some similarity to two publicly available plasmid sequences from sources other than the two laboratories above. Our results highlight the circulation of a nearly identical IncN-type VIM-1-resistance plasmid in different Enterobacteriaceae in north-eastern Germany.


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