Literature DB >> 31046836

The global challenge of Candida auris in the intensive care unit.

Andrea Cortegiani1, Giovanni Misseri2, Antonino Giarratano2, Matteo Bassetti3, David Eyre4.   

Abstract

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Year:  2019        PMID: 31046836      PMCID: PMC6495550          DOI: 10.1186/s13054-019-2449-y

Source DB:  PubMed          Journal:  Crit Care        ISSN: 1364-8535            Impact factor:   9.097


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Since the first isolation of Candida auris in 2009, scientific community has witnessed an exponential emergence of infection episodes and outbreaks in different world regions [1]. According to the Centers for Disease Control and Prevention (CDC), 560 cases of C. auris infections have been notified in the United States as 31 January 2019. It is likely that many cases are missed, due to its misidentification with other non-albicans Candida spp. (e.g., C. haemulonii) by common microbiological diagnostic methods (https://www.cdc.gov/fungal/diseases/candidiasis/tracking-c-auris.html). Most of the reports occurred in critically ill adults, with risk factors for invasive fungal infections, such as immunosuppression, surgery, or indwelling catheters. The most common form of infection was candidemia, with a crude mortality of nearly 30%, but up to 70% in some reports [2]. Despite implementation of countermeasures to limit colonization and infections in intensive care units (ICUs), cases continue to be reported, with a tendency to an endemic pattern [3]. This reflects the ability of C. auris to persist in clinical environment, facilitating its transmission within critical care setting. Multidrug-resistant (MDR) pattern and has been frequently observed (around 40%) with serious and complex consequences for antifungal therapy [4]. In view of C. auris progressive spread and treatment concerns, attention should be focused on the following A.U.R.I.S. major issues (Fig. 1):
Fig. 1

Major issues related to Candida auris. Major issues related to Candida auris described with A.U.R.I.S. outline. MDR, multidrug resistant; ICU, intensive care unit

Worldwide Alert AntifUngal treatment resistance Resilience and mechanisms of transmission Implementation of infection prevention and control measures Surveillance Major issues related to Candida auris. Major issues related to Candida auris described with A.U.R.I.S. outline. MDR, multidrug resistant; ICU, intensive care unit

Worldwide Alert

Following the first isolation in Japan, cases have been reported in several countries in five continents. Although uncommon for fungi, C. auris has the ability to cause outbreaks, as seen in India, the UK, Spain, the USA, Venezuela, Colombia, and South Africa [1]. It is still debated whether C. auris emerged in one region with subsequent spreading to others, or if it emerged independently across different countries. Evidence from genomic sequencing demonstrates different clades of C. auris show strong geographic structure, with independent emergence in East and South Asia, Africa, and South America [1, 5, 6].

AntifUngal treatment resistance

To date, there are not established minimum inhibitory concentrations (MICs) breakpoints for susceptibility testing of C. auris. Antifungal susceptibility data from three continents demonstrated that nearly 40% were MDR, with strains being resistant to fluconazole (90%), amphotericin B (30–40%) and echinocandins (5–10%). Moreover, a small percentage were also resistant to all antifungals actually available [4, 6]. C. auris demonstrates a high propensity to develop antifungal resistance under selective pressure. Recent studies demonstrated mutations in ERG11 (encoding lanosterol demethylase, the target of azoles) and FKS1 genes (encoding 1,3-beta-glucan synthase, the target of echinocandins) [1, 7]. The recommended antifungals for C. auris treatment are mainly based on in vitro testing and on the most frequently retrieved resistance profiles. Echinocandins are the recommended first-line treatment, pending specific susceptibility testing. Lipid formulation of amphotericin B should be an alternative in patients not responding to echinocandins. Close monitoring to early detect therapeutic failures and evolution of antifungal resistance is needed. New antifungals (e.g., SCY-078, APX001A/APX001, and rezafungin) have been tested with success but they are not available to date for clinical use [1].

Resilience and mechanisms of transmission

Unlike others Candida species, C. auris can colonize different anatomical sites (e.g., skin, skin, rectum, axilla, stool) and contaminate hospital equipment and surfaces, creating a vicious cycle of acquisition, spreading, and infection, particularly in ICUs. Indeed, bed, chairs, and monitoring tools (e.g., pulse oximeters, temperature probes) were contaminated during outbreaks [8]. Recently, Eyre et al. [9] published the results of a patients’ and hospital environmental screening program in Oxford, UK, after 70 patients (66 admitted to a neuro-ICU) were identified as being colonized or infected by C. auris. Seven patients developed an invasive infection during hospital stay. C. auris was detected mainly on skin-surface axillary temperature probes and other reusable tools. In patients monitored with skin-surface temperature probes, the risk of C. auris infection/colonization was seven times higher. Adoption of specific bundles of infection control had no significant effects until removal of the temperature probes [9]. Recent studies have confirmed that C. auris can form biofilms, with a high variation of capacity of production depending on the C. auris strain considered [10]. Biofilm may present reduced susceptibility to hydrogen peroxide and chlorhexidine [11]. Quaternary ammonium compounds and cationic surface-active products seem to be ineffective against C. auris. Chlorine-based products appear to be the most effective for environmental surface disinfection [12]. Chlorine-based disinfectants (at a concentration of 1000 ppm), hydrogen- peroxide, or other disinfectants with documented fungicidal activity are recommended for environmental cleaning by the European CDC (ECDC) [13].

Implementation of infection prevention and control measures

CDC and ECDC released recommendations for C. auris case and outbreak management [13]. Usually, outbreaks follow an exponential increase in the number of affected patients. It is mandatory to trace contacts with the aim to achieve early identification and screening of possible colonized patients that might be responsible for persistence of C. auris. Patients potentially or already colonized should be placed in single rooms with contact isolation precautions. Screening should be applied for contacts and patients previously hospitalized in healthcare settings where C. auris isolation was confirmed. Hand hygiene (with alcohol or chlorhexidine hand rubs), wearing of protective clothing, and skin and environmental/equipment decontamination should be performed to prevent ongoing transmission.

Global Surveillance

Aiming to support implementation measures on global surveillance on antimicrobial resistances, in 2016, the World Health Organization [14] launched the Global Resistance Surveillance System (GLASS). The emergence of C. auris and progressive spread of infections caused by other resistant pathogens has strengthened the need for a surveillance network for antimicrobial resistance globally for critically ill patients’ safety. It is hard to predict future C. auris diffusion. There will be outbreaks also in countries in which C. auris has been not reported yet? Will new MDR clones continue to emerge? Will we be able to apply effective antifungal stewardship programs and control measures? By now, global surveillance, improving knowledge, and taking care of the A.U.R.I.S. major issues may be the best ways to face C. auris challenge.
  12 in total

Review 1.  Candida auris: a fungus with identity crisis.

Authors:  Taissa Vila; Ahmed S Sultan; Daniel Montelongo-Jauregui; Mary Ann Jabra-Rizk
Journal:  Pathog Dis       Date:  2020-06-01       Impact factor: 3.166

Review 2.  Ibrexafungerp: A Novel Oral Triterpenoid Antifungal in Development for the Treatment of Candida auris Infections.

Authors:  Mahmoud Ghannoum; Maiken Cavling Arendrup; Vishnu P Chaturvedi; Shawn R Lockhart; Thomas S McCormick; Sudha Chaturvedi; Elizabeth L Berkow; Deven Juneja; Bansidhar Tarai; Nkechi Azie; David Angulo; Thomas J Walsh
Journal:  Antibiotics (Basel)       Date:  2020-08-25

3.  A Selective Medium for Isolation and Detection of Candida auris, an Emerging Pathogen.

Authors:  Sourav Das; Shreya Singh; Yamini Tawde; Arunaloke Chakrabarti; Shivaprakash M Rudramurthy; Harsimran Kaur; Shamanth A Shankarnarayan; Anup Ghosh
Journal:  J Clin Microbiol       Date:  2021-01-21       Impact factor: 5.948

Review 4.  Candida auris: A Quick Review on Identification, Current Treatments, and Challenges.

Authors:  Lucia Černáková; Maryam Roudbary; Susana Brás; Silva Tafaj; Célia F Rodrigues
Journal:  Int J Mol Sci       Date:  2021-04-25       Impact factor: 5.923

5.  Antifungal activity of boric acid, triclosan and zinc oxide against different clinically relevant Candida species.

Authors:  Marly Alejandra Gavilanes-Martínez; Alejandra Coral-Garzón; Diego H Cáceres; Ana María García
Journal:  Mycoses       Date:  2021-06-05       Impact factor: 4.931

6.  Isolation of Candida auris from cystic fibrosis patient, Greece, April 2019.

Authors:  Angeliki Stathi; Ioanna Loukou; Helen Kirikou; Argyri Petrocheilou; Maria Moustaki; Aristea Velegraki; Levantia Zachariadou
Journal:  Euro Surveill       Date:  2019-07

7.  Global warming "heating up" the ICU through Candida auris infections: the climate changes theory.

Authors:  Giovanni Misseri; Mariachiara Ippolito; Andrea Cortegiani
Journal:  Crit Care       Date:  2019-12-19       Impact factor: 9.097

8.  Retrospective Analysis of the Clinical Characteristics of Candida auris Infection Worldwide From 2009 to 2020.

Authors:  Shan Hu; Feilong Zhu; Weiwei Jiang; Yuehua Wang; Yongqiang Quan; Guoming Zhang; Feng Gu; Ying Yang
Journal:  Front Microbiol       Date:  2021-05-20       Impact factor: 5.640

Review 9.  Candida auris, an Agent of Hospital-Associated Outbreaks: Which Challenging Issues Do We Need to Have in Mind?

Authors:  Raquel Sabino; Cristina Veríssimo; Álvaro Ayres Pereira; Francisco Antunes
Journal:  Microorganisms       Date:  2020-01-28

10.  Ongoing Challenges with Healthcare-Associated Candida auris Outbreaks in Oman.

Authors:  Amal Al Maani; Hema Paul; Azza Al-Rashdi; Adil Al Wahaibi; Amina Al-Jardani; Asma M Ali Al Abri; Mariam A H AlBalushi; Seif Al-Abri; Mohammed Al Reesi; Ali Al Maqbali; Nashwa M Al Kasaby; Theun de Groot; Jacques F Meis; Abdullah M S Al-Hatmi
Journal:  J Fungi (Basel)       Date:  2019-10-23
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