COVID-19 and Fungal Diseases
Abstract
:1. Introduction
2. COVID-19 and Fungal Infection
2.1. Mucormycosis in the Head and Neck
2.2. Candidiasis in the Head and Neck
2.3. Aspergillosis in the Head and Neck
3. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- World Health Organization. WHO Coronavirus (COVID-19) Dashboard. Available online: https://covid19.who.int/ (accessed on 24 April 2022).
- Zhou, P.; Yang, X.L.; Wang, X.G.; Hu, B.; Zhang, L.; Zhang, W.; Si, H.R.; Zhu, Y.; Li, B.; Huang, C.L.; et al. A Pneumonia Outbreak Associated with a New Coronavirus of Probable Bat Origin. Nature 2020, 579, 270–273. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Walls, A.C.; Park, Y.J.; Tortorici, M.A.; Wall, A.; McGuire, A.T.; Veesler, D. Structure, Function, and Antigenicity of the SARS-CoV-2 Spike Glycoprotein. Cell 2020, 181, 281–292. [Google Scholar] [CrossRef] [PubMed]
- World Health Organization. Modes of Transmission of Virus Causing COVID-19: Implications for IPC Precaution Recommendations. Available online: https://www.who.int/news-room/commentaries/detail/modes-of-transmission-of-virus-causing-covid-19-implications-for-ipc-precaution-recommendations (accessed on 6 June 2022).
- Kamat, M.; Datar, U.; Byakodi, S.; Kamat, S.; Kumar, V.V. COVID-19-Associated Mucormycosis of Head-and-Neck Region: A Systematic Review. J. Clin. Transl. Res. 2022, 8, 31–42. [Google Scholar]
- Song, G.; Liang, G.; Liu, W. Fungal Co-infections Associated with Global COVID-19 Pandemic: A Clinical and Diagnostic Perspective from China. Mycopathologia 2020, 185, 599–606. [Google Scholar] [CrossRef] [PubMed]
- Salehi, M.; Ahmadikia, K.; Badali, H.; Khodavaisy, S. Opportunistic Fungal Infections in the Epidemic Area of COVID-19: A Clinical and Diagnostic Perspective from Iran. Mycopathologia 2020, 185, 607–611. [Google Scholar] [CrossRef]
- Zhang, G.; Hu, C.; Luo, L.; Fang, F.; Chen, Y.; Li, J.; Peng, Z.; Pan, H. Clinical Features and Short-Term Outcomes of 221 Patients with COVID-19 in Wuhan, China. J. Clin. Virol. 2020, 127, 104364. [Google Scholar] [CrossRef]
- Chauvet, P.; Mallat, J.; Arumadura, C.; Vangrunderbeek, N.; Dupre, C.; Pauquet, P.; Orfi, A.; Granier, M.; Lemyze, M. Risk Factors for Invasive Pulmonary Aspergillosis in Critically Ill Patients with Coronavirus Disease 2019-Induced Acute Respiratory Distress Syndrome. Crit. Care Explor. 2020, 2, e0244. [Google Scholar] [CrossRef]
- Costantini, C.; van de Veerdonk, F.L.; Romani, L. Covid-19-Associated Pulmonary Aspergillosis: The Other Side of the Coin. Vaccines 2020, 8, 713. [Google Scholar] [CrossRef]
- Arastehfar, A.; Carvalho, A.; van de Veerdonk, F.L.; Jenks, J.D.; Koehler, P.; Krause, R.; Cornely, O.A.; Perlin, D.S.; Lass-Flörl, C.; Hoenigl, M. COVID-19 Associated Pulmonary Aspergillosis (CAPA)-From Immunology to Treatment. J. Fungi 2020, 6, 91. [Google Scholar] [CrossRef]
- Dos Santos, J.A.; Normando, A.G.C.; da Silva, R.L.C.; De Paula, R.M.; Cembranel, A.C.; Santos-Silva, A.R.; Guerra, E.N.S. Oral Mucosal Lesions in a COVID-19 Patient: New Signs or Secondary Manifestations? Int. J. Infect. Dis. 2020, 97, 326–328. [Google Scholar] [CrossRef]
- Leelahavanichkul, A.; Worasilchai, N.; Wannalerdsakun, S.; Jutivorakool, K.; Somparn, P.; Issara-Amphorn, J.; Tachaboon, S.; Srisawat, N.; Finkelman, M.; Chindamporn, A. Gastrointestinal Leakage Detected by Serum (1→3)-β-D-Glucan in Mouse Models and a Pilot Study in Patients with Sepsis. Shock 2016, 46, 506–518. [Google Scholar] [CrossRef] [PubMed]
- Chen, N.; Zhou, M.; Dong, X.; Qu, J.; Gong, F.; Han, Y.; Qiu, Y.; Wang, J.; Liu, Y.; Wei, Y.; et al. Epidemiological and Clinical Characteristics of 99 Cases of 2019 Novel Coronavirus Pneumonia in Wuhan, China: A Descriptive Study. Lancet 2020, 395, 507–513. [Google Scholar] [CrossRef] [Green Version]
- Yang, X.; Yu, Y.; Xu, J.; Shu, H.; Xia, J.; Liu, H.; Wu, Y.; Zhang, L.; Yu, Z.; Fang, M.; et al. Clinical Course and Outcomes of Critically Ill Patients with SARS-CoV-2 Pneumonia in Wuhan, China: A Single-Centered, Retrospective, Observational Study. Lancet Respir. Med. 2020, 8, 475–481. [Google Scholar] [CrossRef] [Green Version]
- Zhu, X.; Ge, Y.; Wu, T.; Zhao, K.; Chen, Y.; Wu, B.; Zhu, F.; Zhu, B.; Cui, L. Co-Infection with Respiratory Pathogens among COVID-2019 Cases. Virus Res. 2020, 285, 198005. [Google Scholar] [CrossRef]
- Verweij, P.E.; Gangneux, J.P.; Bassetti, M.; Brüggemann, R.J.M.; Cornely, O.A.; Koehler, P.; Lass-Flörl, C.; van de Veerdonk, F.L.; Chakrabarti, A.; Hoenigl, M. Diagnosing COVID-19-Associated Pulmonary Aspergillosis. Lancet Microbe 2020, 1, e53–e55. [Google Scholar] [CrossRef]
- Alanio, A.; Dellière, S.; Fodil, S.; Bretagne, S.; Mégarbane, B. Prevalence of Putative Invasive Pulmonary Aspergillosis in Critically Ill Patients with COVID-19. Lancet Respir. Med. 2020, 8, e48–e49. [Google Scholar] [CrossRef]
- Koehler, P.; Cornely, O.A.; Böttiger, B.W.; Dusse, F.; Eichenauer, D.A.; Fuchs, F.; Hallek, M.; Jung, N.; Klein, F.; Persigehl, T.; et al. COVID-19 Associated Pulmonary Aspergillosis. Mycoses 2020, 63, 528–534. [Google Scholar] [CrossRef]
- Kula, B.E.; Clancy, C.J.; Nguyen, M.H.; Schwartz, I.S. Invasive Mould Disease in Fatal COVID-19: A Systematic Review of Autopsies. Lancet Microbe 2021, 2, e405–e414. [Google Scholar] [CrossRef]
- Sharma, S.; Grover, M.; Bhargava, S.; Samdani, S.; Kataria, T. Post Coronavirus Disease Mucormycosis: A Deadly Addition to the Pandemic Spectrum. J. Laryngol. Otol. 2021, 135, 442–447. [Google Scholar] [CrossRef]
- Bhogireddy, R.; Krishnamurthy, V.; Jabaris, S.L.; Pullaiah, C.P.; Manohar, S. Is Mucormycosis an Inevitable Complication of COVID-19 in India? Braz. J. Infect. Dis. 2021, 25, 101597. [Google Scholar] [CrossRef]
- Ibrahim, A.S.; Kontoyiannis, D.P. Update on Mucormycosis Pathogenesis. Curr. Opin. Infect. Dis. 2013, 26, 508–515. [Google Scholar] [CrossRef] [PubMed]
- Ahmed, E.; Abou-Bakr, A.; Hussein, R.R.; El-Gawish, A.A.; Ras, A.B.E.; Ghalwash, D.M. Oral Mucormycosis in Post-COVID-19 Patients: A Case Series. Oral Dis. 2021, in press. [Google Scholar] [CrossRef] [PubMed]
- Cornely, O.A.; Alastruey-Izquierdo, A.; Arenz, D.; Chen, S.C.A.; Dannaoui, E.; Hochhegger, B.; Hoenigl, M.; Jensen, H.E.; Lagrou, K.; Lewis, R.E.; et al. Global Guideline for the Diagnosis and Management of Mucormycosis: An Initiative of the European Confederation of Medical Mycology in Cooperation with the Mycoses Study Group Education and Research Consortium. Lancet Infect. Dis. 2019, 19, e405–e421. [Google Scholar] [CrossRef]
- Karimi-Galougahi, M.; Arastou, S.; Haseli, S. Fulminant Mucormycosis Complicating Coronavirus Disease 2019 (COVID-19). Int. Forum. Allergy Rhinol. 2021, 11, 1029–1030. [Google Scholar] [CrossRef] [PubMed]
- Dyer, O. COVID-19: India Sees Record Deaths as “Black Fungus” Spreads Fear. BMJ 2021, 373, n1238. [Google Scholar] [CrossRef]
- Sivagnanam, S.; Sengupta, D.J.; Hoogestraat, D.; Jain, R.; Stednick, Z.; Fredricks, D.N.; Hendrie, P.; Whimbey, E.; Podczervinski, S.T.; Krantz, E.M.; et al. Seasonal Clustering of Sinopulmonary Mucormycosis in Patients with Hematologic Malignancies at a Large Comprehensive Cancer Center. Antimicrob. Resist. Infect. Control. 2017, 6, 123. [Google Scholar] [CrossRef] [Green Version]
- Patel, A.; Kaur, H.; Xess, I.; Michael, J.S.; Savio, J.; Rudramurthy, S.; Singh, R.; Shastri, P.; Umabala, P.; Sardana, R.; et al. A Multicentre Observational Study on the Epidemiology, Risk Factors, Management and Outcomes of Mucormycosis in India. Clin. Microbiol. Infect. 2020, 26, 944. [Google Scholar] [CrossRef]
- Moorthy, A.; Gaiwad, R.; Krishna, S.; Hegde, R.; Tripathi, K.K.; Kale, P.G.; Rao, P.S.; Haldipur, D.; Bonanthaya, K. SARS-CoV-2, Uncontrolled Diabetes and Corticosteroids—An Unholy Trinity in Invasive Fungal Infections of the Maxillofacial Region? A Retrospective, Multi-centric Analysis. J. Maxillofac. Oral Surg. 2021, 20, 418–425. [Google Scholar] [CrossRef]
- Mehta, S.; Pandey, A. Rhino-Orbital Mucormycosis Associated with COVID-19. Cureus 2020, 12, e10726. [Google Scholar] [CrossRef]
- Werthman-Ehrenreich, A. Mucormycosis with Orbital Compartment Syndrome in a Patient with COVID-19. Am. J. Emerg. Med. 2021, 42, 264.e5–264.e8. [Google Scholar] [CrossRef]
- Ravani, S.A.; Agrawal, G.A.; Leuva, P.A.; Modi, P.H.; Amin, K.D. Rise of the Phoenix: Mucormycosis in COVID-19 Times. Indian J. Ophthalmol. 2021, 69, 1563–1568. [Google Scholar] [CrossRef] [PubMed]
- Luo, Q.L.; Orcutt, J.C.; Seifter, L.S. Orbital Mucormycosis with Retinal and Ciliary Artery Occlusions. Br. J. Ophthalmol. 1989, 73, 680–683. [Google Scholar] [CrossRef] [PubMed]
- Kohn, R.; Hepler, R. Management of Limited Rhino-Orbital Mucormycosis without Exenteration. Ophthalmology 1985, 92, 1440–1444. [Google Scholar] [CrossRef]
- Chander, J.; Kaur, M.; Singla, N.; Punia, R.P.S.; Singhal, S.K.; Attri, A.K.; Alastruey-Izquierdo, A.; Stchigel, A.M.; Cano-Lira, J.F.; Guarro, J. Mucormycosis: Battle with the Deadly Enemy over a Five-Year Period in India. J. Fungi 2018, 4, 46. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Rolling, T.; Hohl, T.M.; Zhai, B. Minority Report: The Intestinal Mycobiota in Systemic Infections. Curr. Opin. Microbiol. 2020, 56, 1–6. [Google Scholar] [CrossRef]
- Al-Hatmi, A.M.S.; Mohsin, J.; Al-Huraizi, A.; Khamis, F. COVID-19 Associated Invasive Candidiasis. J. Infect. 2021, 82, e45–e46. [Google Scholar] [CrossRef] [PubMed]
- Bhagali, R.; Prabhudesai, N.P.; Prabhudesai, M.N. Post COVID-19 Opportunistic Candida Retinitis: A Case Report. Indian J. Ophthalmol. 2021, 69, 987–989. [Google Scholar] [CrossRef]
- Gangneux, J.P.; Bougnoux, M.E.; Dannaoui, E.; Cornet, M.; Zahar, J.R. Invasive Fungal Diseases during COVID-19: We Should Be Prepared. J. Mycol. Med. 2020, 30, 100971. [Google Scholar] [CrossRef]
- Laudenbach, J.M.; Epstein, J.B. Treatment Strategies for Oropharyngeal Candidiasis. Expert Opin. Pharmacother. 2009, 10, 1413–1421. [Google Scholar] [CrossRef]
- Marra, A.R.; Camargo, L.F.A.; Pignatari, A.C.C.; Sukiennik, T.; Behar, P.R.P.; Medeiros, E.A.S.; Ribeiro, J.; Girão, E.; Correa, L.; Guerra, C.; et al. Nosocomial Bloodstream Infections in Brazilian Hospitals: Analysis of 2563 Cases from a Prospective Nationwide Surveillance Study. J. Clin. Microbiol. 2011, 49, 1866–1871. [Google Scholar] [CrossRef] [Green Version]
- Lone, S.A.; Ahmad, A. Candida auris—The Growing Menace to Global Health. Mycoses 2019, 62, 620–637. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Prestel, C.; Anderson, E.; Forsberg, K.; Lyman, M.; de Perio, M.A.; Kuhar, D.; Edwards, K.; Rivera, M.; Shugart, A.; Walters, M.; et al. Candida auris Outbreak in a COVID-19 Specialty Care Unit—Florida, July–August 2020. MMWR Morb. Mortal. Wkly. Rep. 2021, 70, 56–57. [Google Scholar] [CrossRef] [PubMed]
- Villanueva-Lozano, H.; Treviño-Rangel, R.J.; González, G.M.; Ramírez-Elizondo, M.T.; Lara-Medrano, R.; Aleman-Bocanegra, M.C.; Guajardo-Lara, C.E.; Gaona-Chávez, N.; Castilleja-Leal, F.; Torre-Amione, G.; et al. Outbreak of Candida auris Infection in a COVID-19 Hospital in Mexico. Clin. Microbiol. Infect. 2021, 27, 813–816. [Google Scholar] [CrossRef]
- Zheng, M.; Gao, Y.; Wang, G.; Song, G.; Liu, S.; Sun, D.; Xu, Y.; Tian, Z. Functional Exhaustion of Antiviral Lymphocytes in COVID-19 Patients. Cell. Mol. Immunol. 2020, 17, 533–535. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Giamarellos-Bourboulis, E.J.; Netea, M.G.; Rovina, N.; Akinosoglou, K.; Antoniadou, A.; Antonakos, N.; Damoraki, G.; Gkavogianni, T.; Adami, M.E.; Katsaounou, P.; et al. Complex Immune Dysregulation in COVID-19 Patients with Severe Respiratory Failure. Cell Host Microbe 2020, 27, 992–1000.e3. [Google Scholar] [CrossRef]
- Salehi, M.; Ahmadikia, K.; Mahmoudi, S.; Kalantari, S.; Jamalimoghadamsiahkali, S.; Izadi, A.; Kord, M.; Manshadi, S.A.D.; Seifi, A.; Ghiasvand, F.; et al. Oropharyngeal Candidiasis in Hospitalised COVID-19 Patients from Iran: Species Identification and Antifungal Susceptibility Pattern. Mycoses 2020, 63, 771–778. [Google Scholar] [CrossRef]
- Du, H.; Bing, J.; Hu, T.; Ennis, C.L.; Nobile, C.J.; Huang, G. Candida auris: Epidemiology, Biology, Antifungal Resistance, and Virulence. PLoS Pathog. 2020, 16, e1008921. [Google Scholar] [CrossRef]
- Krishnan, P.A. Fungal Infections of the Oral Mucosa. Indian J. Dent. Res. 2012, 23, 650–659. [Google Scholar] [CrossRef]
- Deepa, A.G.; Nair, B.J.; Sivakumar, T.T.; Joseph, A.P. Uncommon Opportunistic Fungal Infections of Oral Cavity: A Review. J. Oral Maxillofac. Pathol. 2014, 18, 235–243. [Google Scholar] [CrossRef] [Green Version]
- Jain, A.; Taneja, S. Post-COVID Fungal Infections of Maxillofacial Region: A Systematic Review. Oral Maxillofac. Surg. 2021, 7, 1–7. [Google Scholar] [CrossRef]
- Santosh, A.B.R.; Muddana, K.; Bakki, S.R. Fungal Infections of Oral Cavity: Diagnosis, Management, and Association with COVID-19. SN Compr. Clin. Med. 2021, 3, 1373–1384. [Google Scholar] [CrossRef] [PubMed]
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Oh, K.-H.; Lee, S.-H. COVID-19 and Fungal Diseases. Antibiotics 2022, 11, 803. https://doi.org/10.3390/antibiotics11060803
Oh K-H, Lee S-H. COVID-19 and Fungal Diseases. Antibiotics. 2022; 11(6):803. https://doi.org/10.3390/antibiotics11060803
Chicago/Turabian StyleOh, Kyoung-Ho, and Seung-Hoon Lee. 2022. "COVID-19 and Fungal Diseases" Antibiotics 11, no. 6: 803. https://doi.org/10.3390/antibiotics11060803
APA StyleOh, K. -H., & Lee, S. -H. (2022). COVID-19 and Fungal Diseases. Antibiotics, 11(6), 803. https://doi.org/10.3390/antibiotics11060803