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Dive into the research topics where Maiken Cavling Arendrup is active.

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Featured researches published by Maiken Cavling Arendrup.


Clinical Microbiology and Infection | 2012

ESCMID* guideline for the diagnosis and management of Candida diseases 2012: non-neutropenic adult patients

Oliver A. Cornely; Matteo Bassetti; Thierry Calandra; J. Garbino; Bart Jan Kullberg; Olivier Lortholary; Wouter Meersseman; Murat Akova; Maiken Cavling Arendrup; S. Arikan-Akdagli; Jacques Bille; Elio Castagnola; Manuel Cuenca-Estrella; J.P. Donnelly; Andreas H. Groll; Raoul Herbrecht; William W. Hope; H.E. Jensen; Cornelia Lass-Flörl; George Petrikkos; Malcolm Richardson; Emmanuel Roilides; Paul E. Verweij; Claudio Viscoli; Andrew J. Ullmann

This part of the EFISG guidelines focuses on non-neutropenic adult patients. Only a few of the numerous recommendations can be summarized in the abstract. Prophylactic usage of fluconazole is supported in patients with recent abdominal surgery and recurrent gastrointestinal perforations or anastomotic leakages. Candida isolation from respiratory secretions alone should never prompt treatment. For the targeted initial treatment of candidaemia, echinocandins are strongly recommended while liposomal amphotericin B and voriconazole are supported with moderate, and fluconazole with marginal strength. Treatment duration for candidaemia should be a minimum of 14 days after the end of candidaemia, which can be determined by one blood culture per day until negativity. Switching to oral treatment after 10 days of intravenous therapy has been safe in stable patients with susceptible Candida species. In candidaemia, removal of indwelling catheters is strongly recommended. If catheters cannot be removed, lipid-based amphotericin B or echinocandins should be preferred over azoles. Transoesophageal echocardiography and fundoscopy should be performed to detect organ involvement. Native valve endocarditis requires surgery within a week, while in prosthetic valve endocarditis, earlier surgery may be beneficial. The antifungal regimen of choice is liposomal amphotericin B +/- flucytosine. In ocular candidiasis, liposomal amphotericin B +/- flucytosine is recommended when the susceptibility of the isolate is unknown, and in susceptible isolates, fluconazole and voriconazole are alternatives. Amphotericin B deoxycholate is not recommended for any indication due to severe side effects.


Emerging Infectious Diseases | 2009

Frequency and evolution of azole resistance in Aspergillus fumigatus associated with treatment failure

Susan J. Howard; Daša Cerar; Michael J. Anderson; Ahmed M. Albarrag; Matthew C. Fisher; Alessandro C. Pasqualotto; Michél Laverdière; Maiken Cavling Arendrup; David S. Perlin; David W. Denning

An increase in the frequency of azole-resistant Aspergillus fumigatus has emerged.


Clinical Microbiology and Infection | 2014

ESCMID and ECMM Joint Clinical Guidelines for the Diagnosis and Management of Mucormycosis 2013

Oliver A. Cornely; S. Arikan-Akdagli; Eric Dannaoui; Andreas H. Groll; Katrien Lagrou; Arunaloke Chakrabarti; Fanny Lanternier; Livio Pagano; Anna Skiada; Murat Akova; Maiken Cavling Arendrup; Teun Boekhout; Anuradha Chowdhary; Manuel Cuenca-Estrella; Tomáš Freiberger; Jesús Guinea; Josep Guarro; S. de Hoog; William W. Hope; Eric M. Johnson; Shallu Kathuria; Michaela Lackner; Cornelia Lass-Flörl; Olivier Lortholary; Jacques F. Meis; Joseph Meletiadis; Patricia Muñoz; Malcolm Richardson; Emmanuel Roilides; Anna Maria Tortorano

These European Society for Clinical Microbiology and Infectious Diseases and European Confederation of Medical Mycology Joint Clinical Guidelines focus on the diagnosis and management of mucormycosis. Only a few of the numerous recommendations can be summarized here. To diagnose mucormycosis, direct microscopy preferably using optical brighteners, histopathology and culture are strongly recommended. Pathogen identification to species level by molecular methods and susceptibility testing are strongly recommended to establish epidemiological knowledge. The recommendation for guiding treatment based on MICs is supported only marginally. Imaging is strongly recommended to determine the extent of disease. To differentiate mucormycosis from aspergillosis in haematological malignancy and stem cell transplantation recipients, identification of the reverse halo sign on computed tomography is advised with moderate strength. For adults and children we strongly recommend surgical debridement in addition to immediate first-line antifungal treatment with liposomal or lipid-complex amphotericin B with a minimum dose of 5 mg/kg/day. Amphotericin B deoxycholate is better avoided because of severe adverse effects. For salvage treatment we strongly recommend posaconazole 4×200 mg/day. Reversal of predisposing conditions is strongly recommended, i.e. using granulocyte colony-stimulating factor in haematological patients with ongoing neutropenia, controlling hyperglycaemia and ketoacidosis in diabetic patients, and limiting glucocorticosteroids to the minimum dose required. We recommend against using deferasirox in haematological patients outside clinical trials, and marginally support a recommendation for deferasirox in diabetic patients. Hyperbaric oxygen is supported with marginal strength only. Finally, we strongly recommend continuing treatment until complete response demonstrated on imaging and permanent reversal of predisposing factors.


Drug Resistance Updates | 2011

Clinical breakpoints for the echinocandins and Candida revisited: integration of molecular, clinical, and microbiological data to arrive at species-specific interpretive criteria.

M. A. Pfaller; Daniel J. Diekema; David R. Andes; Maiken Cavling Arendrup; Steven D. Brown; Shawn R. Lockhart; Mary Motyl; David S. Perlin

The CLSI established clinical breakpoints (CBPs) for caspofungin (CSF), micafungin (MCF) and anidulafungin (ANF) versus Candida. The same CBP (susceptible (S): MIC ≤ 2 mcg/ml; non-S: MIC > 2 mcg/ml) was applied to all echinocandins and species. More data now allow reassessment of these CBPs. We examined cases of echinocandin failure where both MICs and fks mutations were assessed; wild type (WT) MICs and epidemiological cutoff values (ECVs) for a large Candida collection; molecular analysis of fks hotspots for Candida with known MICs; and pharmacokinetic and pharmacodynamic (PK/PD) data. We applied these findings to propose new species-specific CBPs for echinocandins and Candida. Of 18 candidiasis cases refractory to echinocandins and with fks mutations, 28% (CSF), 58% (ANF) and 66% (MCF) had MICs in the S category using CBP of ≤ 2 mcg/ml, while 0-8% would be S using CBP of ≤ 0.25 mcg/ml. WT MIC distributions revealed ECV ranges of 0.03-0.25 mcg/ml for all major species except C. parapsilosis (1-4 mcg/ml) and C. guilliermondii (4-16 mcg/ml). Among Candida tested for fks mutations, only 15.7-45.1% of 51 mutants were detected using the CBP for NS of >2 mcg/ml. In contrast, a cutoff of >0.25 mcg/ml for C. albicans, C. tropicalis, C. krusei, and C. dubliniensis detected 85.6% (MCF) to 95.2% (CSF) of 21 mutant strains. Likewise, a cutoff of >0.12 mcg/ml for ANF and CSF and of >0.06 mcg/ml for MCF detected 93% (ANF) to 97% (CSF, MCF) of 30 mutant strains of C. glabrata. These data, combined with PK/PD considerations, support CBPs of ≤ 0.25 mcg/ml (S), 0.5 mcg/ml (I), ≥ 1 (R) for CSF/MCF/ANF and C. albicans, C. tropicalis and C. krusei and ≤ 2 mcg/ml (S), 4 mcg/ml (I), and ≥ 8 mcg/ml (R) for these agents and C. parapsilosis. The CBPs for ANF and CSF and C. glabrata are ≤ 0.12 mcg/ml (S), 0.25 mcg/ml (I), and ≥ 0.5 mcg/ml (R), whereas those for MCF are ≤ 0.06 mcg/ml (S), 0.12 mcg/ml (I), and ≥ 0.25 mcg/ml (R). New, species-specific CBPs for Candida and the echinocandins are more sensitive to detect emerging resistance associated with fks mutations, and better able to predict risk for clinical failure.


Clinical Microbiology and Infection | 2012

EUCAST technical note on the EUCAST definitive document EDef 7.2: method for the determination of broth dilution minimum inhibitory concentrations of antifungal agents for yeasts EDef 7.2 (EUCAST-AFST)*

Maiken Cavling Arendrup; Manuel Cuenca-Estrella; Cornelia Lass-Flörl; William W. Hope

The European Committee on Antimicrobial Susceptibility Testing-Subcommittee on Antifungal Susceptibility Testing (EUCAST-AFST) has revised the EDef 7.1 document on the method for the determination of broth dilution minimum inhibitory concentrations of antifungal agents for fermentative yeasts. Changes are: dimethylsulphoxide is now the recommended solvent for caspofungin, micafungin and fluconazole; the shelf-life of plates containing the echinocandins prepared from stock solutions in dimethylsulphoxide is extended to 6 months at -80°C; testing of amphotericin and Cryptococcus has been incorporated; and minimum inhibitory concentration ranges for quality control strains and anidulafungin are included.


Clinical Microbiology and Infection | 2012

ESCMID* guideline for the diagnosis and management of Candida diseases 2012: diagnostic procedures

Manuel Cuenca-Estrella; Paul E. Verweij; Maiken Cavling Arendrup; S. Arikan-Akdagli; Jacques Bille; J.P. Donnelly; H.E. Jensen; Cornelia Lass-Flörl; Malcolm Richardson; Murat Akova; Matteo Bassetti; Thierry Calandra; Elio Castagnola; Oliver A. Cornely; J. Garbino; Andreas H. Groll; Raoul Herbrecht; William W. Hope; Bart Jan Kullberg; Olivier Lortholary; Wouter Meersseman; George Petrikkos; Emmanuel Roilides; Claudio Viscoli; Andrew J. Ullmann

As the mortality associated with invasive Candida infections remains high, it is important to make optimal use of available diagnostic tools to initiate antifungal therapy as early as possible and to select the most appropriate antifungal drug. A panel of experts of the European Fungal Infection Study Group (EFISG) of the European Society of Clinical Microbiology and Infectious Diseases (ESCMID) undertook a data review and compiled guidelines for the clinical utility and accuracy of different diagnostic tests and procedures for detection of Candida infections. Recommendations about the microbiological investigation and detection of candidaemia, invasive candidiasis, chronic disseminated candidiasis, and oropharyngeal, oesophageal, and vaginal candidiasis were included. In addition, remarks about antifungal susceptibility testing and therapeutic drug monitoring were made.


Clinical Microbiology and Infection | 2012

ESCMID* guideline for the diagnosis and management of Candida diseases 2012: adults with haematological malignancies and after haematopoietic stem cell transplantation (HCT)

Andrew J. Ullmann; Murat Akova; Raoul Herbrecht; Claudio Viscoli; Maiken Cavling Arendrup; S. Arikan-Akdagli; Matteo Bassetti; Jacques Bille; Thierry Calandra; Elio Castagnola; Oliver A. Cornely; J.P. Donnelly; J. Garbino; Andreas H. Groll; William W. Hope; H.E. Jensen; Bart Jan Kullberg; Cornelia Lass-Flörl; Olivier Lortholary; Wouter Meersseman; George Petrikkos; Malcolm Richardson; Emmanuel Roilides; Paul E. Verweij; Manuel Cuenca-Estrella

Fungal diseases still play a major role in morbidity and mortality in patients with haematological malignancies, including those undergoing haematopoietic stem cell transplantation. Although Aspergillus and other filamentous fungal diseases remain a major concern, Candida infections are still a major cause of mortality. This part of the ESCMID guidelines focuses on this patient population and reviews pertaining to prophylaxis, empirical/pre-emptive and targeted therapy of Candida diseases. Anti-Candida prophylaxis is only recommended for patients receiving allogeneic stem cell transplantation. The authors recognize that the recommendations would have most likely been different if the purpose would have been prevention of all fungal infections (e.g. aspergillosis). In targeted treatment of candidaemia, recommendations for treatment are available for all echinocandins, that is anidulafungin (AI), caspofungin (AI) and micafungin (AI), although a warning for resistance is expressed. Liposomal amphotericin B received a BI recommendation due to higher number of reported adverse events in the trials. Amphotericin B deoxycholate should not be used (DII); and fluconazole was rated CI because of a change in epidemiology in some areas in Europe. Removal of central venous catheters is recommended during candidaemia but if catheter retention is a clinical necessity, treatment with an echinocandin is an option (CII(t) ). In chronic disseminated candidiasis therapy, recommendations are liposomal amphotericin B for 8 weeks (AIII), fluconazole for >3 months or other azoles (BIII). Granulocyte transfusions are only an option in desperate cases of patients with Candida disease and neutropenia (CIII).


Clinical Infectious Diseases | 2006

Amphotericin B and Caspofungin Resistance in Candida glabrata Isolates Recovered from a Critically Ill Patient

Mikkel Krogh-Madsen; Maiken Cavling Arendrup; Lars Heslet; Jenny Dahl Knudsen

BACKGROUND Consecutive Candida glabrata isolates recovered from a patient in an intensive care unit were resistant to amphotericin B (minimum inhibitory concentration, up to 32 mu g/mL; determined by Etest [AB Biodisk]). Analyses at the national reference laboratory showed that some isolates were also resistant to azoles and caspofungin. In this study, 4 isolates were studied thoroughly using susceptibility assays and a mouse model and to determine clonality. METHODS Different broth microdilution tests, Etests, and time-kill studies for antifungals were performed in different media. Three of the 4 isolates were examined in an in vivo experiment, in which mice were challenged intravenously with 1 of 3 isolates and treated daily with amphotericin B, caspofungin, or saline. For the clonality studies, arbitrarily primed polymerase chain reaction (PCR) was performed with the 4 isolates, 8 isolates obtained from nonrelated patients, and a reference strain. RESULTS The murine model indicated that 1 isolate was resistant to amphotericin B, 1 had intermediate susceptibility, and 1 was fully susceptible. Two of the 3 isolates were resistant to caspofungin. Microdilution methods did not reliably differentiate between amphotericin B-susceptible and -resistant isolates. All assays identified caspofungin-susceptible and -resistant isolates. Arbitrarily primed PCR showed that the 4 isolates probably were of clonal origin. CONCLUSIONS We have documented the emergence of amphotericin B-resistant and caspofungin-resistant C. glabrata isolates during treatment of a critically ill liver transplant recipient. Only the Etest predicted amphotericin B resistance in the isolates. We recommend that important fungal strains recovered from patients who are receiving antifungal therapy should be tested for susceptibility to the antifungal drug used, because resistance can be present initially or may occur during treatment.


Journal of Clinical Microbiology | 2011

National Surveillance of Fungemia in Denmark (2004 to 2009)

Maiken Cavling Arendrup; Brita Grønbech Bruun; Jens Jørgen Christensen; Kurt Fuursted; Helle Krogh Johansen; Poul Kjældgaard; Jenny Dahl Knudsen; Lise Kristensen; Jens Kjølseth Møller; Lene Nielsen; Flemming Schønning Rosenvinge; Bent Røder; Henrik Carl Schønheyder; Marianne Kaaber Thomsen; Kjeld Truberg

ABSTRACT A 6-year nationwide study of fungemia in Denmark was performed using data from an active fungemia surveillance program and from laboratory information systems in nonparticipating regions. A total of 2,820 episodes of fungemia were recorded. The incidence increased from 2004 to 2007 (7.7 to 9.6/100,000) and decreased slightly from 2008 to 2009 (8.7 to 8.6/100,000). The highest incidences were seen at the extremes of age (i.e., 11.3 and 37.1/100,000 for those <1 and 70 to 79 years old, respectively). The rate was higher for males than for females (10.1 versus 7.6/100,000, P = 0.003), with the largest difference observed for patients >50 years of age. The species distribution varied significantly by both age and gender. Candida species accounted for 98% of the pathogens, and C. albicans was predominant, although the proportion decreased (64.4% to 53.2%, P < 0.0001). C. glabrata ranked second, and the proportion increased (16.5% to 25.9%, P = 0.003). C. glabrata was more common in adults and females than in children and males, whereas C. tropicalis was more common in males (P = 0.020). C. krusei was a rare isolate (4.1%) except at one university hospital. Acquired resistance to amphotericin and echinocandins was rare. However, resistance to fluconazole (MIC of >4 μg/ml) occurred in C. albicans (7/1,183 [0.6%]), C. dubliniensis (2/65 [3.1%]), C. parapsilosis (5/83 [6.0%]), and C. tropicalis (7/104 [6.7%]). Overall, 70.8% of fungemia isolates were fully fluconazole susceptible, but the proportion decreased (79.7% to 68.9%, P = 0.02). The study confirmed an incidence rate of fungemia in Denmark three times higher than those in other Nordic countries and identified marked differences related to age and gender. Decreased susceptibility to fluconazole was frequent and increasing.


Clinical Microbiology and Infection | 2014

ESCMID and ECMM joint guidelines on diagnosis and management of hyalohyphomycosis: Fusarium spp., Scedosporium spp. and others

Anna Maria Tortorano; Malcolm Richardson; Emmanuel Roilides; A.D. van Diepeningen; Morena Caira; Patricia Muñoz; Eric M. Johnson; Joseph Meletiadis; Zoi-Dorothea Pana; Michaela Lackner; Paul E. Verweij; Tomáš Freiberger; Oliver A. Cornely; S. Arikan-Akdagli; Eric Dannaoui; Andreas H. Groll; Katrien Lagrou; Arunaloke Chakrabarti; Fanny Lanternier; Livio Pagano; Anna Skiada; Murat Akova; Maiken Cavling Arendrup; Teun Boekhout; Anuradha Chowdhary; Manuel Cuenca-Estrella; J. Guinea; Josep Guarro; S. de Hoog; William W. Hope

Mycoses summarized in the hyalohyphomycosis group are heterogeneous, defined by the presence of hyaline (non-dematiaceous) hyphae. The number of organisms implicated in hyalohyphomycosis is increasing and the most clinically important species belong to the genera Fusarium, Scedosporium, Acremonium, Scopulariopsis, Purpureocillium and Paecilomyces. Severely immunocompromised patients are particularly vulnerable to infection, and clinical manifestations range from colonization to chronic localized lesions to acute invasive and/or disseminated diseases. Diagnosis usually requires isolation and identification of the infecting pathogen. A poor prognosis is associated with fusariosis and early therapy of localized disease is important to prevent progression to a more aggressive or disseminated infection. Therapy should include voriconazole and surgical debridement where possible or posaconazole as salvage treatment. Voriconazole represents the first-line treatment of infections due to members of the genus Scedosporium. For Acremonium spp., Scopulariopsis spp., Purpureocillium spp. and Paecilomyces spp. the optimal antifungal treatment has not been established. Management usually consists of surgery and antifungal treatment, depending on the clinical presentation.

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David S. Perlin

Rutgers Biomedical and Health Sciences

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Paul E. Verweij

Radboud University Nijmegen

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Helle Krogh Johansen

Copenhagen University Hospital

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Jenny Dahl Knudsen

Copenhagen University Hospital

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