TY - JOUR
T1 - Prevalence of fungal DNAemia mediated by putatively non-pathogenic fungi in immunocompromised patients with febrile neutropenia
T2 - a prospective cohort study
AU - Lucini, Chantal
AU - Obrová, Klára
AU - Krickl, Isabella
AU - Nogueira, Filomena
AU - Kocmanová, Iva
AU - Herndlhofer, Susanne
AU - Gleixner, Karoline V.
AU - Sperr, Wolfgang R.
AU - Frank, Tijana
AU - Andrade, Nuno
AU - Peters, Christina
AU - Engstler, Gernot
AU - Dworzak, Michael
AU - Attarbaschi, Andishe
AU - van Grotel, Martine
AU - van den Heuvel-Eibrink, Marry M.
AU - Moiseev, Ivan S.
AU - Rogacheva, Yuliya
AU - Zubarovskaya, Ludmilla
AU - Zubarovskaya, Natalia
AU - Pichler, Herbert
AU - Lawitschka, Anita
AU - Koller, Elisabeth
AU - Keil, Felix
AU - Mayer, Jiří
AU - Weinbergerová, Barbora
AU - Valent, Peter
AU - Lion, Thomas
N1 - Publisher Copyright:
© The Author(s) 2024.
PY - 2024/12
Y1 - 2024/12
N2 - Invasive fungal disease (IFD) presents a life-threatening condition in immunocompromised patients, thus often prompting empirical administration of antifungal treatment, without adequate mycological evidence. Over the past years, wide use of antifungal prophylaxis resulted in decreased occurrence of IFD but has contributed to changes in the spectrum of fungal pathogens, revealing the occurrence of previously rare fungal genera causing breakthrough infections. The expanding spectrum of clinically relevant fungal pathogens required the implementation of screening approaches permitting broad rather than targeted fungus detection to support timely onset of pre-emptive antifungal treatment. To address this diagnostically important aspect in a prospective setting, we analyzed 935 serial peripheral blood (PB) samples from 195 pediatric and adult patients at high risk for IFD, involving individuals displaying febrile neutropenia during treatment of hematological malignancies or following allogeneic hematopoietic stem cell transplantation. Two different panfungal-PCR-screening methods combined with ensuing fungal genus identification by Sanger sequencing were employed. In the great majority of PB-specimens displaying fungal DNAemia, the findings were transient and revealed fungi commonly regarded as non-pathogenic or rarely pathogenic even in the highly immunocompromised patient setting. Hence, to adequately exploit the diagnostic potential of panfungal-PCR approaches for detecting IFD, particularly if caused by hitherto rarely observed fungal pathogens, it is necessary to confirm the findings by repeated testing and to identify the fungal genus present by ensuing analysis. If applied appropriately, panfungal-PCR-screening can help prevent unnecessary empirical therapy, and conversely, contribute to timely employment of effective pre-emptive antifungal treatment strategies.
AB - Invasive fungal disease (IFD) presents a life-threatening condition in immunocompromised patients, thus often prompting empirical administration of antifungal treatment, without adequate mycological evidence. Over the past years, wide use of antifungal prophylaxis resulted in decreased occurrence of IFD but has contributed to changes in the spectrum of fungal pathogens, revealing the occurrence of previously rare fungal genera causing breakthrough infections. The expanding spectrum of clinically relevant fungal pathogens required the implementation of screening approaches permitting broad rather than targeted fungus detection to support timely onset of pre-emptive antifungal treatment. To address this diagnostically important aspect in a prospective setting, we analyzed 935 serial peripheral blood (PB) samples from 195 pediatric and adult patients at high risk for IFD, involving individuals displaying febrile neutropenia during treatment of hematological malignancies or following allogeneic hematopoietic stem cell transplantation. Two different panfungal-PCR-screening methods combined with ensuing fungal genus identification by Sanger sequencing were employed. In the great majority of PB-specimens displaying fungal DNAemia, the findings were transient and revealed fungi commonly regarded as non-pathogenic or rarely pathogenic even in the highly immunocompromised patient setting. Hence, to adequately exploit the diagnostic potential of panfungal-PCR approaches for detecting IFD, particularly if caused by hitherto rarely observed fungal pathogens, it is necessary to confirm the findings by repeated testing and to identify the fungal genus present by ensuing analysis. If applied appropriately, panfungal-PCR-screening can help prevent unnecessary empirical therapy, and conversely, contribute to timely employment of effective pre-emptive antifungal treatment strategies.
KW - Antifungal therapy
KW - Antifungal treatment
KW - Fungal diagnostic
KW - Invasive fungal disease
KW - panfungal-PCR
UR - https://www.scopus.com/pages/publications/85200683010
U2 - 10.1186/s13045-024-01583-0
DO - 10.1186/s13045-024-01583-0
M3 - Letter
C2 - 39113112
AN - SCOPUS:85200683010
SN - 1756-8722
VL - 17
JO - Journal of Hematology and Oncology
JF - Journal of Hematology and Oncology
IS - 1
M1 - 63
ER -