Clinical-Forensic Autopsy Findings to Defeat COVID-19 Disease: A Literature Review
Abstract
:1. Introduction
2. Methods
3. COVID-19 Laboratory-Based Molecular Testing
3.1. Detection of the Molecular Region of the COVID-19 Virus
3.2. Rapid Diagnostic Tests Based on Antigen Detection
4. Autopsy Findings
5. Discussion
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Rabi, F.A.; Al Zoubi, M.S.; Kasasbeh, G.; Salameh, D.M.; Al-Nasser, A.D. SARS-CoV-2 and Coronavirus Disease 2019: What We Know So Far. Pathogens 2020, 9, 231. [Google Scholar] [CrossRef] [PubMed]
- A Lake, M. What we know so far: COVID-19 current clinical knowledge and research. Clin. Med. 2020, 20, 124–127. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Shereen, M.A.; Khan, S.; Kazmi, A.; Bashir, N.; Siddique, R. COVID-19 infection: Origin, transmission, and characteristics of human coronaviruses. J. Adv. Res. 2020, 24, 91–98. [Google Scholar] [CrossRef]
- Kannan, S.; Ali, P.S.S.; Sheeza, A.; Hemalatha, K. COVID-19 (Novel Coronavirus 2019)-recent trends. Eur. Rev. Med. Pharmacol. Sci. 2020, 24, 2006–2011. [Google Scholar] [PubMed]
- Lauer, S.A.; Grantz, K.H.; Bi, Q.; Jones, F.K.; Zheng, Q.; Meredith, H.R.; Azman, A.S.; Reich, N.G.; Lessler, J. The Incubation Period of Coronavirus Disease 2019 (COVID-19) From Publicly Reported Confirmed Cases: Estimation and Application. Ann. Intern Med. 2020, 172, 577–582. [Google Scholar] [CrossRef] [Green Version]
- Jung, S.-M.; Akhmetzhanov, A.R.; Hayashi, K.; Linton, N.M.; Yang, Y.; Yuan, B.; Kobayashi, T.; Kinoshita, R.; Nishiura, H. Real-Time Estimation of the Risk of Death from Novel Coronavirus (COVID-19) Infection: Inference Using Exported Cases. J. Clin. Med. 2020, 9, 523. [Google Scholar] [CrossRef] [Green Version]
- Jung, S.-M.; Kinoshita, R.; Thompson, R.N.; Linton, N.M.; Yang, Y.; Akhmetzhanov, A.R.; Nishiura, H. Epidemiological Identification of A Novel Pathogen in Real Time: Analysis of the Atypical Pneumonia Outbreak in Wuhan, China, 2019–2020. J. Clin. Med. 2020, 9, 637. [Google Scholar] [CrossRef] [Green Version]
- Roosa, K.; Lee, Y.; Luo, R.; Kirpich, A.; Rothenberg, R.; Hyman, J.M.; Yan, P.; Chowell, G. Short-term Forecasts of the COVID-19 Epidemic in Guangdong and Zhejiang, China: February 13–23, 2020. J. Clin. Med. 2020, 9, 596. [Google Scholar] [CrossRef] [Green Version]
- Corman, V.M.; Landt, O.; Kaiser, M.; Molenkamp, R.; Meijer, A.; Chu, D.K.; Bleicker, T.; Brünink, S.; Schneider, J.; Schmidt, M.L.; et al. Detection of 2019 novel coronavirus (2019-nCoV) by real-time RT-PCR. Eurosurveillance 2020, 25, 2000045. [Google Scholar] [CrossRef] [Green Version]
- Udugama, B.; Kadhiresan, P.; Kozlowski, H.N.; Malekjahani, A.; Osborne, M.; Li, V.Y.C.; Chen, H.; Mubareka, S.; Gubbay, J.B.; Chan, W.C.W. Diagnosing COVID-19: The Disease and Tools for Detection. ACS Nano 2020, 14, 3822–3835. [Google Scholar] [CrossRef] [Green Version]
- Kampf, G.; Todt, D.; Pfaender, S.; Steinmann, E. Persistence of coronaviruses on inanimate surfaces and their inactivation with biocidal agents. J. Hosp. Infect. 2020, 104, 246–251. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- CDC. Collection and Submission of Postmortem Specimens from Deceased Persons with Known or Suspected; Ad Interim Guid; Centers for Disease Control and Prevention: Atlanta, GA, USA, 2020.
- Coroners Society of Ireland. Statement of Coroners Service from the Coroners Society of Ireland; Coroners Society of Ireland: Dublin, Ireland, 2020. [Google Scholar]
- Hanley, B.; Lucas, S.B.; Youd, E.; Swift, B.; Osborn, M. Autopsy in suspected COVID-19 cases. J. Clin. Pathol. 2020, 73, 239–242. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Yaacoub, S.; Schünemann, H.J.; Khabsa, J.; El-Harakeh, A.; Khamis, A.M.; Chamseddine, F.; El Khoury, R.; Saad, Z.; Hneiny, L.; Garcia, C.C.; et al. Safe management of bodies of deceased persons with suspected or confirmed COVID-19: A rapid systematic review. BMJ Glob. Health 2020, 5, e002650. [Google Scholar] [CrossRef] [PubMed]
- Khoo, L.S.; Hasmi, A.H.; Ibrahim, M.A.; Mahmood, M.S. Management of the dead during COVID-19 outbreak in Malaysia. Forensic Sci. Med. Pathol. 2020, 1, 1–8. [Google Scholar] [CrossRef]
- Cheung, J.C.-H.; Ho, L.T.; Cheng, J.V.; Cham, E.Y.K.; Lam, K.N. Staff safety during emergency airway management for COVID-19 in Hong Kong. Lancet Respir. Med. 2020, 8, e19. [Google Scholar] [CrossRef]
- Lacy, J.M.; Brooks, E.G.; Akers, J.; Armstrong, D.; Decker, L.; Gonzalez, A.; Humphrey, W.; Mayer, R.; Miller, M.; Perez, C.; et al. COVID-19. Am. J. Forensic Med. Pathol. 2020, 2020, e567. [Google Scholar] [CrossRef]
- Basso, C.; Calabrese, F.; Sbaraglia, M.; Del Vecchio, C.; Carretta, G.; Saieva, A.; Donato, D.; Flor, L.; Crisanti, A.; Tos, A.P.D. Feasibility of postmortem examination in the era of COVID-19 pandemic: The experience of a Northeast Italy University Hospital. Virchows Arch. 2020, 1, 1–7. [Google Scholar] [CrossRef]
- Salerno, M.; Sessa, F.; Piscopo, A.; Montana, A.; Torrisi, M.; Patanè, F.; Murabito, P.; Volti, G.L.; Pomara, C. No Autopsies on COVID-19 Deaths: A Missed Opportunity and the Lockdown of Science. J. Clin. Med. 2020, 9, 1472. [Google Scholar] [CrossRef]
- Pomara, C.; Volti, G.L.; Cappello, F. COVID-19 Deaths: Are We Sure It Is Pneumonia? Please, Autopsy, Autopsy, Autopsy! J. Clin. Med. 2020, 9, 1259. [Google Scholar] [CrossRef]
- Fineschi, V.; Aprile, A.; Aquila, I.; Arcangeli, M.; Asmundo, A.; Bacci, M.; Cingolani, M.; Cipolloni, L.; D’Errico, S. Management of the corpse with suspect, probable or confirmed COVID-19 respiratory infection–Italian interim recommendations for personnel potentially exposed to material from corpses, including body fluids, in morgue structures, during autopsy practice. Pathol. J. Ital. Soc. Anat. Pathol. Diagnostic. Cytopathol. 2020, 7, 216–218. [Google Scholar] [CrossRef]
- Wichmann, D.; Sperhake, J.-P.; Lütgehetmann, M.; Steurer, S.; Edler, C.; Heinemann, A.; Heinrich, F.; Mushumba, H.; Kniep, I.; Schröder, A.S.; et al. Autopsy Findings and Venous Thromboembolism in Patients With COVID-19. Ann. Intern Med. 2020, 7, 233. [Google Scholar] [CrossRef]
- Maxim, L.D.; Niebo, R.; Utell, M.J. Screening tests: A review with examples. Inhal. Toxicol. 2014, 26, 811–828. [Google Scholar] [CrossRef] [PubMed]
- Magill, S.S.; Edwards, J.R.; Bamberg, W.; Beldavs, Z.G.; Dumyati, G.; Kainer, M.A.; Lynfield, R.; Maloney, M.; McAllister-Hollod, L.; Nadle, J.; et al. Multistate point-prevalence survey of health care-associated infections. N. Engl. J. Med. 2014, 370, 1198–1208. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Lippi, G.; Simundic, A.M.; Plebani, M. Potential preanalytical and analytical vulnerabilities in the laboratory diagnosis of coronavirus disease 2019 (COVID-19). Clin. Chem. Lab. Med. 2020, 1, 285. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Noh, J.Y.; Yoon, S.-W.; Kim, D.-J.; Lee, M.-S.; Kim, J.-H.; Na, W.; Song, D.; Jeong, D.G.; Kim, H.K. Simultaneous detection of severe acute respiratory syndrome, Middle East respiratory syndrome, and related bat coronaviruses by real-time reverse transcription PCR. Arch. Virol. 2017, 162, 1617–1623. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Wan, Z.; Zhang, Y.; He, Z.; Liu, J.; Lan, K.; Hu, Y.; Zhang, C. A Melting Curve-Based Multiplex RT-qPCR Assay for Simultaneous Detection of Four Human Coronaviruses. Int. J. Mol. Sci. 2016, 17, 1880. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Shen, M.; Zhou, Y.; Ye, J.; Al-Maskri, A.A.A.; Kang, Y.; Zeng, S.; Cai, S. Recent advances and perspectives of nucleic acid detection for coronavirus. J. Pharm. Anal. 2020, 10, 97–101. [Google Scholar] [CrossRef]
- Carter, L.J.; Garner, L.V.; Smoot, J.W.; Li, Y.; Zhou, Q.; Saveson, C.J.; Sasso, J.M.; Gregg, A.C.; Soares, D.J.; Beskid, T.R.; et al. Assay Techniques and Test Development for COVID-19 Diagnosis. ACS Cent. Sci. 2020, 6, 591–605. [Google Scholar] [CrossRef]
- WHO. Laboratory Testing for Coronavirus Disease 2019 (COVID-19) in Suspected Human Cases: Interim Guid; World Health Organization: Geneva, Switzerland, 2020. [Google Scholar]
- CDC. Real-Time RT-PCR Diagnostic Panel For Emergency Use Only; Centers for Disease Control and Prevention: Atlanta, GA, USA, 2020.
- Sheridan, C. Coronavirus and the race to distribute reliable diagnostics. Nat. Biotechnol. 2020, 38, 382–384. [Google Scholar] [CrossRef]
- Selitsky, S.R.; Marron, D.; Hollern, D.; Mose, L.E.; Hoadley, K.A.; Jones, C.D.; Parker, J.S.; Dittmer, D.P.; Perou, C.M. Virus expression detection reveals RNA-sequencing contamination in TCGA. BMC Genom. 2020, 21, 1–11. [Google Scholar] [CrossRef]
- Fogel, J.M.; Piwowar-Manning, E.; Debevec, B.; Walsky, T.; Schlusser, K.; Laeyendecker, O.; Wilson, E.A.; McCauley, M.; Gamble, T.; Tegha, G.; et al. Brief Report: Impact of Early Antiretroviral Therapy on the Performance of HIV Rapid Tests and HIV Incidence Assays. J. Acquir. Immune Defic. Syndr. 2017, 75, 426–430. [Google Scholar] [CrossRef] [PubMed]
- Lescure, F.-X.; Bouadma, L.; Nguyen, D.; Parisey, M.; Wicky, P.-H.; Behillil, S.; Gaymard, A.; Bouscambert-Duchamp, M.; Donati, F.; Le Hingrat, Q.; et al. Clinical and virological data of the first cases of COVID-19 in Europe: A case series. Lancet Infect. Dis. 2020, 20, 697–706. [Google Scholar] [CrossRef] [Green Version]
- Shen, Z.; Xiao, Y.; Kang, L.; Ma, W.; Shi, L.; Zhang, L.; Zhou, Z.; Yang, J.; Zhong, J.; Yang, D.; et al. Genomic Diversity of Severe Acute Respiratory Syndrome–Coronavirus 2 in Patients With Coronavirus Disease. Clin. Infect. Dis. 2020, 4, 536. [Google Scholar] [CrossRef] [Green Version]
- Lu, R.; Zhao, X.; Li, J.; Niu, P.; Yang, B.; Wu, H.; Wang, W.; Song, H.; Huang, B.; Zhu, N.; et al. Genomic characterisation and epidemiology of 2019 novel coronavirus: Implications for virus origins and receptor binding. Lancet 2020, 395, 565–574. [Google Scholar] [CrossRef] [Green Version]
- Yi, H. 2019 Novel Coronavirus Is Undergoing Active Recombination. Clin. Infect. Dis. 2020, 6, 1110–1116. [Google Scholar] [CrossRef] [PubMed]
- Lippi, G.; Betsou, F.; Cadamuro, J.; Cornes, M.; Fleischhacker, M.; Fruekilde, P.; Neumaier, M.; Nybo, M.; Padoan, A.; Plebani, M.; et al. Preanalytical challenges-time for solutions. Clin. Chem. Lab. Med. 2019, 57, 974–981. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Spackman, E.; Cardona, C.; Munoz-Aguayo, J.; Fleming, S. Successes and Short Comings in Four Years of an International External Quality Assurance Program for Animal Influenza Surveillance. PLoS ONE 2016, 11, e0164261. [Google Scholar] [CrossRef] [PubMed]
- Santurro, A.; Scopetti, M.; D’Errico, S.; Fineschi, V. A technical report from the Italian SARS-CoV-2 outbreak. Postmortem sampling and autopsy investigation in cases of suspected or probable COVID-19. Forensic Sci. Med. Pathol. 2020, 2020, 1–6. [Google Scholar] [CrossRef] [PubMed]
- Suess, C.; Hausmann, R. Gross and histopathological pulmonary findings in a COVID-19 associated death during self-isolation. Int. J. Leg. Med. 2020, 134, 1285–1290. [Google Scholar] [CrossRef]
- Edler, C.; Schröder, A.S.; Aepfelbacher, M.; Fitzek, A.; Heinemann, A.; Heinrich, F.; Klein, A.; Langenwalder, F.; Lütgehetmann, M.; Meißner, K.; et al. Dying with SARS-CoV-2 infection—an autopsy study of the first consecutive 80 cases in Hamburg, Germany. Int. J. Leg. Med. 2020, 134, 1275–1284. [Google Scholar] [CrossRef]
- Bruning, A.H.; Leeflang, M.; Vos, J.M.B.W.; Spijker, R.; De Jong, M.D.; Wolthers, K.C.; Pajkrt, D. Rapid Tests for Influenza, Respiratory Syncytial Virus, and Other Respiratory Viruses: A Systematic Review and Meta-analysis. Clin. Infect. Dis. 2017, 65, 1026–1032. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Racine, R.; Winslow, G.M. IgM in microbial infections: Taken for granted? Immunol. Lett. 2009, 125, 79–85. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Lee, H.-K.; Lee, B.-H.; Seok, S.H.; Baek, M.-W.; Lee, H.-Y.; Kim, D.-J.; Na, Y.-R.; Noh, K.-J.; Park, S.-H.; Kumar, D.N.; et al. Production of specific antibodies against SARS-coronavirus nucleocapsid protein without cross reactivity with human coronaviruses 229E and OC43. J. Veter Sci. 2010, 11, 165–167. [Google Scholar] [CrossRef] [PubMed]
- Li, Z.; Yi, Y.; Luo, X.; Xiong, N.; Liu, Y.; Li, S.; Sun, R.; Wang, Y.; Hu, B.; Chen, W.; et al. Development and Clinical Application of A Rapid IgM-IgG Combined Antibody Test for SARS-CoV-2 Infection Diagnosis. J. Med. Virol. 2020, 2020, e25727. [Google Scholar] [CrossRef]
- Lee, C.Y.-P.; Lin, R.T.P.; Renia, L.; Ng, L.F.P. Serological Approaches for COVID-19: Epidemiologic Perspective on Surveillance and Control. Front. Immunol. 2020, 11, e00879. [Google Scholar] [CrossRef]
- Vashist, S.K. In Vitro Diagnostic Assays for COVID-19: Recent Advances and Emerging Trends. Diagnostics 2020, 10, 202. [Google Scholar] [CrossRef] [Green Version]
- Gorse, G.J.; Donovan, M.M.; Patel, G.B. Antibodies to coronaviruses are higher in older compared with younger adults and binding antibodies are more sensitive than neutralizing antibodies in identifying coronavirus-associated illnesses. J. Med. Virol. 2020, 92, 512–517. [Google Scholar] [CrossRef] [Green Version]
- Tay, M.Z.; Poh, C.M.; Renia, L.; Macary, P.A.; Ng, L.F.P. The trinity of COVID-19: Immunity, inflammation and intervention. Nat. Rev. Immunol. 2020, 20, 363–374. [Google Scholar] [CrossRef]
- Spicuzza, L.; Montineri, A.; Manuele, R.; Crimi, C.; Pistorio, M.P.; Campisi, R.; Vancheri, C.; Crimi, N. Reliability and usefulness of a rapid IgM-IgG antibody test for the diagnosis of SARS-CoV-2 infection: A preliminary report. J. Infect. 2020, 2020, 32335175. [Google Scholar] [CrossRef]
- Hoffman, T.; Nissen, K.; Krambrich, J.; Rönnberg, B.; Akaberi, D.; Esmaeilzadeh, M.; Salaneck, E.; Lindahl, J.F.; Lundkvist, Å. Evaluation of a COVID-19 IgM and IgG rapid test; an efficient tool for assessment of past exposure to SARS-CoV-2. Infect. Ecol. Epidemiol. 2020, 10, 1754538. [Google Scholar] [CrossRef] [Green Version]
- Zhao, J.; Yuan, Q.; Wang, H.; Liu, W.; Liao, X.; Su, Y.; Wang, X.; Yuan, J.; Li, T.; Li, J.; et al. Antibody responses to SARS-CoV-2 in patients of novel coronavirus disease 2019. Clin. Infect. Dis. 2020, 2020, ciaa344. [Google Scholar] [CrossRef]
- Wang, N.; Li, S.-Y.; Yang, X.; Huang, H.-M.; Zhang, Y.-J.; Guo, H.; Luo, C.-M.; Miller, M.; Zhu, G.; A Chmura, A.; et al. Serological Evidence of Bat SARS-Related Coronavirus Infection in Humans, China. Virol. Sin. 2018, 33, 104–107. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Che, X.-Y.; Qiu, L.-W.; Liao, Z.-Y.; Wang, Y.-D.; Wen, K.; Pan, Y.-X.; Hao, W.; Mei, Y.-B.; Cheng, V.; Yuen, K.-Y. Antigenic Cross-Reactivity between Severe Acute Respiratory Syndrome–Associated Coronavirus and Human Coronaviruses 229E and OC43. J. Infect. Dis. 2005, 191, 2033–2037. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Ota, M. Will we see protection or reinfection in COVID-19? Nat. Rev. Immunol. 2020, 20, 351. [Google Scholar] [CrossRef] [PubMed]
- World Health Organization. Coronavirus Disease (COVID-19) Technical Guidance: Laboratory Testing for 2019-nCoV in Humans; World Health Organ: Geneva, Switzerland, 2020. [Google Scholar]
- Xu, Z.; Shi, L.; Wang, Y.; Zhang, J.; Huang, L.; Zhang, C.; Liu, S.; Zhao, P.; Liu, H.; Zhu, L.; et al. Pathological findings of COVID-19 associated with acute respiratory distress syndrome. Lancet Respir. Med. 2020, 8, 420–422. [Google Scholar] [CrossRef]
- Tian, S.; Hu, W.; Niu, L.; Liu, H.; Xu, H.; Xiao, S.-Y. Pulmonary Pathology of Early-Phase 2019 Novel Coronavirus (COVID-19) Pneumonia in Two Patients With Lung Cancer. J. Thorac. Oncol. 2020, 15, 700–704. [Google Scholar] [CrossRef] [PubMed]
- Tian, S.; Xiong, Y.; Liu, H.; Niu, L.; Guo, J.; Liao, M.; Xiao, S.-Y. Pathological Study of the 2019 Novel Coronavirus Disease (COVID-19) through Post-Mortem Core Biopsies. Mod. Pathol. 2020, 33, 1007–1014. [Google Scholar] [CrossRef] [Green Version]
- Karami, P.; Naghavi, M.; Feyzi, A.; Aghamohammadi, M.; Novin, M.S.; Mobaien, A.; Qorbanisani, M.; Karami, A.; Norooznezhad, A.H. WITHDRAWN: Mortality of a pregnant patient diagnosed with COVID-19: A case report with clinical, radiological, and histopathological findings. Travel Med. Infect. Dis. 2020, 1, 101665. [Google Scholar] [CrossRef]
- Schaller, T.; Hirschbühl, K.; Burkhardt, K.; Braun, G.; Trepel, M.; Märkl, B.; Claus, R. Postmortem Examination of Patients With COVID-19. JAMA 2020, 2020, 8907. [Google Scholar] [CrossRef]
- Peretto, G.; Sala, S.; Caforio, A.L.P. Acute myocardial injury, MINOCA, or myocarditis? Improving characterization of coronavirus-associated myocardial involvement. Eur. Heart J. 2020, 41, 2124–2125. [Google Scholar] [CrossRef]
- Zhou, R. Does SARS-CoV-2 cause viral myocarditis in COVID-19 patients? Eur. Heart J. 2020, 41, 2123. [Google Scholar] [CrossRef] [PubMed]
- Magro, C.; Mulvey, J.J.; Berlin, D.; Nuovo, G.; Salvatore, S.; Harp, J.; Baxter-Stoltzfus, A.; Laurence, J. Complement associated microvascular injury and thrombosis in the pathogenesis of severe COVID-19 infection: A report of five cases. Transl. Res. 2020, 220, 1–13. [Google Scholar] [CrossRef] [PubMed]
- Ruffatti, A.; Calligaro, A.; Lacognata, C.S.; D’Odorico, A.; Colpo, A.; Cardin, F.; Calabrese, F. Insights into the pathogenesis of catastrophic antiphospholipid syndrome. A case report of relapsing catastrophic antiphospholipid syndrome and review of the literature on ischemic colitis. Clin. Rheumatol. 2019, 39, 1347–1355. [Google Scholar] [CrossRef] [PubMed]
- Cai, Y.; Hao, Z.; Gao, Y.; Ping, W.; Wang, Q.; Peng, S.; Zhao, B.; Sun, W.; Zhu, M.; Li, K.; et al. Coronavirus Disease 2019 in the Perioperative Period of Lung Resection: A Brief Report From a Single Thoracic Surgery Department in Wuhan, People’s Republic of China. J. Thorac. Oncol. 2020, 15, 1065–1072. [Google Scholar] [CrossRef]
- Zhou, B.; Zhao, W.; Feng, R.; Zhang, X.; Li, X.; Zhou, Y.; Peng, L.; Li, Y.; Zhang, J.; Luo, J.; et al. The pathologic autopsy of coronavirus disease 2019 (COVID-2019) in China: A review. Pathog. Dis. 2020, 78, ftaa026. [Google Scholar] [CrossRef]
- Von Weyhern, C.H.; Kaufmann, I.; Neff, F.; Kremer, M. Early evidence of pronounced brain involvement in fatal COVID-19 outcomes. Lancet 2020, 395, e109. [Google Scholar] [CrossRef]
- Solomon, I.H.; Normandin, E.; Bhattacharyya, S.; Mukerji, S.S.; Keller, K.; Ali, A.S.; Adams, G.; Hornick, J.L.; Padera, R.F.; Sabeti, P. Neuropathological Features of Covid-19. N. Engl. J. Med. 2020. [Google Scholar] [CrossRef]
- Barton, L.M.; Duval, E.J.; Stroberg, E.; Ghosh, S.; Mukhopadhyay, S. COVID-19 Autopsies, Oklahoma, USA. Am. J. Clin. Pathol. 2020, 153, 725–733. [Google Scholar] [CrossRef] [Green Version]
- Menter, T.; Haslbauer, J.; Nienhold, R.; Savic, S.; Hopfer, H.; Deigendesch, N.; Frank, S.; Turek, D.; Willi, N.; Pargger, H.; et al. Post-mortem examination of COVID19 patients reveals diffuse alveolar damage with severe capillary congestion and variegated findings of lungs and other organs suggesting vascular dysfunction. Histopathology 2020, 2020, 14131. [Google Scholar] [CrossRef]
- Varga, Z.; Flammer, A.J.; Steiger, P.; Haberecker, M.; Andermatt, R.; Zinkernagel, A.S.; Mehra, M.R.; A Schuepbach, R.; Ruschitzka, F.; Moch, H. Endothelial cell infection and endotheliitis in COVID-19. Lancet 2020, 395, 1417–1418. [Google Scholar] [CrossRef]
- Dolhnikoff, M.; Duarte-Neto, A.N.; Monteiro, R.A.D.A.; Da Silva, L.F.F.; De Oliveira, E.P.; Saldiva, P.H.N.; Mauad, T.; Negri, E.M. Pathological evidence of pulmonary thrombotic phenomena in severe COVID-19. J. Thromb. Haemost. 2020, 18, 1517–1519. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Ackermann, M.; Verleden, S.E.; Kuehnel, M.; Haverich, A.; Welte, T.; Laenger, F.; Vanstapel, A.; Werlein, C.; Stark, H.; Tzankov, A.; et al. Pulmonary Vascular Endothelialitis, Thrombosis, and Angiogenesis in Covid-19. N. Engl. J. Med. 2020. [Google Scholar] [CrossRef] [PubMed]
- Carsana, L.; Sonzogni, A.; Nasr, A.; Rossi, R.S.; Pellegrinelli, A.; Zerbi, P.; Rech, R.; Colombo, R.; Antinori, S.; Corbellino, M.; et al. Pulmonary post-mortem findings in a series of COVID-19 cases from northern Italy: A two-centre descriptive study. Lancet Infect. Dis. 2020. [Google Scholar] [CrossRef]
- Yi, E.S.; Cecchini, M.J.; Bois, M.C. Pathologists in pursuit of the COVID-19 culprit. Lancet Infect. Dis. 2020. [Google Scholar] [CrossRef]
- Jin, Y.-H.; Cai, L.; Cheng, Z.-S.; Cheng, H.; Deng, T.; Fan, Y.-P.; Fang, C.; Huang, D.; Huang, L.-Q.; Huang, Q.; et al. A rapid advice guideline for the diagnosis and treatment of 2019 novel coronavirus (2019-nCoV) infected pneumonia (standard version). Mil. Med. Res. 2020, 7, 1–23. [Google Scholar] [CrossRef] [Green Version]
- Nuccetelli, M.; Pieri, M.; Grelli, S.; Ciotti, M.; Miano, R.; Andreoni, M.; Bernardini, S. SARS-CoV-2 infection serology: A useful tool to overcome lockdown? Cell Death Discov. 2020, 6, 38. [Google Scholar] [CrossRef]
- Li, R.; Pei, S.; Chen, B.; Song, Y.; Zhang, T.; Yang, W.; Shaman, J. Substantial undocumented infection facilitates the rapid dissemination of novel coronavirus (SARS-CoV-2). Science 2020, 368, 489–493. [Google Scholar] [CrossRef] [Green Version]
- Liu, W.-D.; Chang, S.-Y.; Wang, J.-T.; Tsai, M.-J.; Hung, C.-C.; Hsu, C.-L.; Chang, S.-C. Prolonged virus shedding even after seroconversion in a patient with COVID-19. J. Infect. 2020. [Google Scholar] [CrossRef]
- Pung, R.; Chiew, C.J.; Young, B.; Chin, S.; Chen, M.I.-C.; E Clapham, H.; Cook, A.R.; Maurer-Stroh, S.; Toh, M.P.H.S.; Poh, C.; et al. Investigation of three clusters of COVID-19 in Singapore: Implications for surveillance and response measures. Lancet 2020, 395, 1039–1046. [Google Scholar] [CrossRef]
- O’Hurley, G.; Sjöstedt, E.; Rahman, A.; Li, B.; Kampf, C.; Pontén, F.; Gallagher, W.M.; Lindskog, C. Garbage in, garbage out: A critical evaluation of strategies used for validation of immunohistochemical biomarkers. Mol. Oncol. 2014, 8, 783–798. [Google Scholar] [CrossRef]
- CDC. Health TIM of Emergency Indications Related to the COVID-19 Epidemic Concerning the Funeral Sector, Cemetery, and Cremation; Centers for Disease Control and Prevention: Atlanta, GA, USA, 2020.
- Italian Ministry of Health. Emergency Indications Related to the COVID-19 Epidemic Concerning the Funeral Sector, Cemetery, and Cremation-Update following the new legislative indications and epidemiological data. In Proceedings of the Circular of General Direction of Health Prevention, New York, NY, USA, 3 June 2020. [Google Scholar]
- Tweel, J.G.V.D.; Taylor, C.R. The rise and fall of the autopsy. Virchows Archiv 2013, 462, 371–380. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- De Cock, K.M.; Zielinski-Gutiérrez, E.; Lucas, S.B. Learning from the Dead. N. Engl. J. Med. 2019, 381, 1889–1891. [Google Scholar] [CrossRef] [PubMed]
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Sessa, F.; Bertozzi, G.; Cipolloni, L.; Baldari, B.; Cantatore, S.; D’Errico, S.; Di Mizio, G.; Asmundo, A.; Castorina, S.; Salerno, M.; et al. Clinical-Forensic Autopsy Findings to Defeat COVID-19 Disease: A Literature Review. J. Clin. Med. 2020, 9, 2026. https://doi.org/10.3390/jcm9072026
Sessa F, Bertozzi G, Cipolloni L, Baldari B, Cantatore S, D’Errico S, Di Mizio G, Asmundo A, Castorina S, Salerno M, et al. Clinical-Forensic Autopsy Findings to Defeat COVID-19 Disease: A Literature Review. Journal of Clinical Medicine. 2020; 9(7):2026. https://doi.org/10.3390/jcm9072026
Chicago/Turabian StyleSessa, Francesco, Giuseppe Bertozzi, Luigi Cipolloni, Benedetta Baldari, Santina Cantatore, Stefano D’Errico, Giulio Di Mizio, Alessio Asmundo, Sergio Castorina, Monica Salerno, and et al. 2020. "Clinical-Forensic Autopsy Findings to Defeat COVID-19 Disease: A Literature Review" Journal of Clinical Medicine 9, no. 7: 2026. https://doi.org/10.3390/jcm9072026
APA StyleSessa, F., Bertozzi, G., Cipolloni, L., Baldari, B., Cantatore, S., D’Errico, S., Di Mizio, G., Asmundo, A., Castorina, S., Salerno, M., & Pomara, C. (2020). Clinical-Forensic Autopsy Findings to Defeat COVID-19 Disease: A Literature Review. Journal of Clinical Medicine, 9(7), 2026. https://doi.org/10.3390/jcm9072026