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Mild respiratory COVID can cause multi-lineage neural cell and myelin dysregulation
Fernández-Castañeda, Anthony; Lu, Peiwen; Geraghty, Anna C; Song, Eric; Lee, Myoung-Hwa; Wood, Jamie; O'Dea, Michael R; Dutton, Selena; Shamardani, Kiarash; Nwangwu, Kamsi; Mancusi, Rebecca; Yalçın, Belgin; Taylor, Kathryn R; Acosta-Alvarez, Lehi; Malacon, Karen; Keough, Michael B; Ni, Lijun; Woo, Pamelyn J; Contreras-Esquivel, Daniel; Toland, Angus Martin Shaw; Gehlhausen, Jeff R; Klein, Jon; Takahashi, Takehiro; Silva, Julio; Israelow, Benjamin; Lucas, Carolina; Mao, Tianyang; Peña-Hernández, Mario A; Tabachnikova, Alexandra; Homer, Robert J; Tabacof, Laura; Tosto-Mancuso, Jenna; Breyman, Erica; Kontorovich, Amy; McCarthy, Dayna; Quezado, Martha; Vogel, Hannes; Hefti, Marco M; Perl, Daniel P; Liddelow, Shane; Folkerth, Rebecca; Putrino, David; Nath, Avindra; Iwasaki, Akiko; Monje, Michelle
COVID survivors frequently experience lingering neurological symptoms that resemble cancer-therapy-related cognitive impairment, a syndrome for which white matter microglial reactivity and consequent neural dysregulation is central. Here, we explored the neurobiological effects of respiratory SARS-CoV-2 infection and found white-matter-selective microglial reactivity in mice and humans. Following mild respiratory COVID in mice, persistently impaired hippocampal neurogenesis, decreased oligodendrocytes, and myelin loss were evident together with elevated CSF cytokines/chemokines including CCL11. Systemic CCL11 administration specifically caused hippocampal microglial reactivity and impaired neurogenesis. Concordantly, humans with lasting cognitive symptoms post-COVID exhibit elevated CCL11 levels. Compared with SARS-CoV-2, mild respiratory influenza in mice caused similar patterns of white-matter-selective microglial reactivity, oligodendrocyte loss, impaired neurogenesis, and elevated CCL11 at early time points, but after influenza, only elevated CCL11 and hippocampal pathology persisted. These findings illustrate similar neuropathophysiology after cancer therapy and respiratory SARS-CoV-2 infection which may contribute to cognitive impairment following even mild COVID.
PMCID:9189143
PMID: 35768006
ISSN: 1097-4172
CID: 5278212
Neurovascular injury with complement activation and inflammation in COVID-19
Lee, Myoung Hwa; Perl, Daniel P; Steiner, Joseph; Pasternack, Nicholas; Li, Wenxue; Maric, Dragan; Safavi, Farinaz; Horkayne-Szakaly, Iren; Jones, Robert; Stram, Michelle N; Moncur, Joel T; Hefti, Marco; Folkerth, Rebecca D; Nath, Avindra
The underlying mechanisms by which severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) leads to acute and long-term neurological manifestations remains obscure. We aimed to characterize the neuropathological changes in patients with coronavirus disease 2019 and determine the underlying pathophysiological mechanisms. In this autopsy study of the brain, we characterized the vascular pathology, the neuroinflammatory changes and cellular and humoral immune responses by immunohistochemistry. All patients died during the first wave of the pandemic from March to July 2020. All patients were adults who died after a short duration of the infection, some had died suddenly with minimal respiratory involvement. Infection with SARS-CoV-2 was confirmed on ante-mortem or post-mortem testing. Descriptive analysis of the pathological changes and quantitative analyses of the infiltrates and vascular changes were performed. All patients had multifocal vascular damage as determined by leakage of serum proteins into the brain parenchyma. This was accompanied by widespread endothelial cell activation. Platelet aggregates and microthrombi were found adherent to the endothelial cells along vascular lumina. Immune complexes with activation of the classical complement pathway were found on the endothelial cells and platelets. Perivascular infiltrates consisted of predominantly macrophages and some CD8+ T cells. Only rare CD4+ T cells and CD20+ B cells were present. Astrogliosis was also prominent in the perivascular regions. Microglial nodules were predominant in the hindbrain, which were associated with focal neuronal loss and neuronophagia. Antibody-mediated cytotoxicity directed against the endothelial cells is the most likely initiating event that leads to vascular leakage, platelet aggregation, neuroinflammation and neuronal injury. Therapeutic modalities directed against immune complexes should be considered.
PMID: 35788639
ISSN: 1460-2156
CID: 5280222
PTSD - Seeking the Ghost in the Machine [Comment]
Folkerth, Rebecca D
PMID: 35675181
ISSN: 1533-4406
CID: 5283192
Detection of astrocytic tau pathology facilitates recognition of chronic traumatic encephalopathy neuropathologic change
Ameen-Ali, Kamar E; Bretzin, Abigail; Lee, Edward B; Folkerth, Rebecca; Hazrati, Lili-Naz; Iacono, Diego; Keene, C Dirk; Kofler, Julia; Kovacs, Gabor G; Nolan, Amber; Perl, Daniel P; Priemer, David S; Smith, Douglas H; Wiebe, Douglas J; Stewart, William
Traumatic brain injury (TBI) is associated with the development of a range of neurodegenerative pathologies, including chronic traumatic encephalopathy (CTE). Current consensus diagnostic criteria define the pathognomonic cortical lesion of CTE neuropathologic change (CTE-NC) as a patchy deposition of hyperphosphorylated tau in neurons, with or without glial tau in thorn-shaped astrocytes, typically towards the depths of sulci and clustered around small blood vessels. Nevertheless, although incorporated into consensus diagnostic criteria, the contribution of the individual cellular components to identification of CTE-NC has not been formally evaluated. To address this, from the Glasgow TBI Archive, cortical tissue blocks were selected from consecutive brain donations from contact sports athletes in which there was known to be either CTE-NC (n = 12) or Alzheimer's disease neuropathologic change (n = 4). From these tissue blocks, adjacent tissue sections were stained for tau antibodies selected to reveal either solely neuronal pathology (3R tau; GT-38) or mixed neuronal and astroglial pathologies (4R tau; PHF-1). These stained sections were then randomised and independently assessed by a panel of expert neuropathologists, blind to patient clinical history and primary antibody applied to each section, who were asked to record whether CTE-NC was present. Results demonstrate that, in sections stained for either 4R tau or PHF-1, consensus recognition of CTE-NC was high. In contrast, recognition of CTE-NC in sections stained for 3R tau or GT-38 was poor; in the former no better than chance. Our observations demonstrate that the presence of both neuronal and astroglial tau pathologies facilitates detection of CTE-NC, with its detection less consistent when neuronal tau pathology alone is visible. The combination of both glial and neuronal pathologies, therefore, may be required for detection of CTE-NC.
PMCID:8996534
PMID: 35410438
ISSN: 2051-5960
CID: 5201872
A fatal case report of antibody-dependent enhancement of dengue virus type 1 following remote Zika virus infection [Case Report]
Bonheur, Ashley N; Thomas, Sarah; Soshnick, Sara H; McGibbon, Emily; Dupuis, Alan P; Hull, Rene; Slavinski, Sally; Del Rosso, Paula E; Weiss, Don; Hunt, Danielle T; McCabe, Megan E; Dean, Amy B; Folkerth, Rebecca; Laib, Anne M; Wong, Susan J
BACKGROUND:Dengue virus (DENV) is endemic in many parts of the world. Antibody dependent enhancement (ADE) in DENV infections occurs when a person with primary immunity is infected by a second, different DENV strain. Antibodies to Zika virus (ZIKV), which emerged in the Western Hemisphere in 2015, are cross reactive with DENV and theoretically could provoke ADE in a DENV naïve individual. CASE PRESENTATION/METHODS:DENV infection was suspected in a child who had recently returned from a one-month stay in the Dominican Republic. The child presented with fever, vomiting, abdominal pain, and in hypovolemic shock. Volume and pressor resuscitation were unsuccessful, and the child died less than 24 h after hospitalization. Laboratory results suggested an early acute first DENV infection since serum, plasma, and spinal fluid had DENV1 detected by polymerase chain reaction (PCR), yet the serum lacked IgG antibodies to DENV nonstructural protein 1 (NS1) of all four DENV serotypes. This acute DENV infection occurred in the presence of a remote ZIKV infection as determined by antibodies to ZIKV NS1 envelope by multiplex microsphere immunoassay and an exceptionally high plaque reduction neutralization titer to ZIKV. ZIKV IgG avidity index was high, confirming a past infection. DENV1 RNA was detected in all ten organs and tissues examined by PCR. The severe and fatal complications reported here suggest that a remote ZIKV infection may provoke an exaggerated immune response leading to hypovolemic shock when primarily infected by DENV1. CONCLUSION/CONCLUSIONS:We report the first known patient in the United States with a rapidly progressive and fatal case of travel-associated DENV in which prior exposure to ZIKV likely played a role in triggering an ADE phenomenon. This association of prior ZIKV immunity and subsequent new dengue infection is a worrisome phenomenon and an important contribution to the body of knowledge on immunity to flaviviruses.
PMCID:8334327
PMID: 34348665
ISSN: 1471-2334
CID: 5865122
Microvascular Injury in the Brains of Patients with Covid-19 [Letter]
Lee, Myoung-Hwa; Perl, Daniel P; Nair, Govind; Li, Wenxue; Maric, Dragan; Murray, Helen; Dodd, Stephen J; Koretsky, Alan P; Watts, Jason A; Cheung, Vivian; Masliah, Eliezer; Horkayne-Szakaly, Iren; Jones, Robert; Stram, Michelle N; Moncur, Joel; Hefti, Marco; Folkerth, Rebecca D; Nath, Avindra
PMID: 33378608
ISSN: 1533-4406
CID: 5081302
Dementia in the Forensic Setting: Diagnoses Obtained Using a Condensed Protocol at the Office of Chief Medical Examiner, New York City
Priemer, David S; Folkerth, Rebecca D
Individuals with dementia may come to forensic autopsy, partly because of non-natural deaths (e.g. fall-related), and/or concerns of abuse/neglect. At the New York City Office of Chief Medical Examiner (NYC OCME), brains from such cases are submitted for neurodegenerative disease (ND) work-up. Seventy-eight sequential cases were evaluated using a recently published condensed protocol for the NIA-AA guidelines for the neuropathologic assessment of Alzheimer disease (AD), a cost-cutting innovation in diagnostic neuropathology. ND was identified in 74 (94.9%) brains; the most common were AD (n = 41 [52.5%]), primary age-related tauopathy (n = 26 [33.3%]), and Lewy body disease ([LBD], n = 25 [32.1%]). Others included age-related tau astrogliopathy, hippocampal sclerosis of aging, progressive supranuclear palsy, multiple system atrophy, amyotrophic lateral sclerosis, argyrophilic grain disease, and Creutzfeldt-Jakob disease. 26.8% of AD cases involved a non-natural, dementia-related death, versus 40.0% for LBD. Finally, 70 (89.7%) cases had chronic cerebrovascular disease, 53 (67.9%) being moderate-to-severe. We present a diverse distribution of NDs notable for a high rate of diagnoses associated with falls (e.g. LBD), a potential difference from the hospital neuropathology experience. We also report a high burden of cerebrovascular disease in demented individuals seen at the NYC OCME. Finally, we demonstrate that the aforementioned condensed protocol is applicable for a variety of ND diagnoses.
PMID: 34388235
ISSN: 1554-6578
CID: 5061012
The Second NINDS/NIBIB Consensus Meeting to Define Neuropathological Criteria for the Diagnosis of Chronic Traumatic Encephalopathy
Bieniek, Kevin F; Cairns, Nigel J; Crary, John F; Dickson, Dennis W; Folkerth, Rebecca D; Keene, C Dirk; Litvan, Irene; Perl, Daniel P; Stein, Thor D; Vonsattel, Jean-Paul; Stewart, William; Dams-O'Connor, Kristen; Gordon, Wayne A; Tripodis, Yorghos; Alvarez, Victor E; Mez, Jesse; Alosco, Michael L; McKee, Ann C
Chronic traumatic encephalopathy (CTE) is a neurodegenerative disorder associated with exposure to head trauma. In 2015, a panel of neuropathologists funded by the NINDS/NIBIB defined preliminary consensus neuropathological criteria for CTE, including the pathognomonic lesion of CTE as "an accumulation of abnormal hyperphosphorylated tau (p-tau) in neurons and astroglia distributed around small blood vessels at the depths of cortical sulci and in an irregular pattern," based on review of 25 tauopathy cases. In 2016, the consensus panel met again to review and refine the preliminary criteria, with consideration around the minimum threshold for diagnosis and the reproducibility of a proposed pathological staging scheme. Eight neuropathologists evaluated 27 cases of tauopathies (17 CTE cases), blinded to clinical and demographic information. Generalized estimating equation analyses showed a statistically significant association between the raters and CTE diagnosis for both the blinded (OR = 72.11, 95% CI = 19.5-267.0) and unblinded rounds (OR = 256.91, 95% CI = 63.6-1558.6). Based on the challenges in assigning CTE stage, the panel proposed a working protocol including a minimum threshold for CTE diagnosis and an algorithm for the assessment of CTE severity as "Low CTE" or "High CTE" for use in future clinical, pathological, and molecular studies.
PMCID:7899277
PMID: 33611507
ISSN: 1554-6578
CID: 4861942
Nicotinic Receptors in the Brainstem Ascending Arousal System in SIDS With Analysis of Pre-natal Exposures to Maternal Smoking and Alcohol in High-Risk Populations of the Safe Passage Study
Vivekanandarajah, Arunnjah; Nelson, Morgan E; Kinney, Hannah C; Elliott, Amy J; Folkerth, Rebecca D; Tran, Hoa; Cotton, Jacob; Jacobs, Perri; Minter, Megan; McMillan, Kristin; Duncan, Jhodie R; Broadbelt, Kevin G; Schissler, Kathryn; Odendaal, Hein J; Angal, Jyoti; Brink, Lucy; Burger, Elsie H; Coldrey, Jean A; Dempers, Johan; Boyd, Theonia K; Fifer, William P; Geldenhuys, Elaine; Groenewald, Coen; Holm, Ingrid A; Myers, Michael M; Randall, Bradley; Schubert, Pawel; Sens, Mary Ann; Wright, Colleen A; Roberts, Drucilla J; Nelsen, Laura; Wadee, Shabbir; Zaharie, Dan; Haynes, Robin L
Pre-natal exposures to nicotine and alcohol are known risk factors for sudden infant death syndrome (SIDS), the leading cause of post-neonatal infant mortality. Here, we present data on nicotinic receptor binding, as determined by 125I-epibatidine receptor autoradiography, in the brainstems of infants dying of SIDS and of other known causes of death collected from the Safe Passage Study, a prospective, multicenter study with clinical sites in Cape Town, South Africa and 5 United States sites, including 2 American Indian Reservations. We examined 15 pons and medulla regions related to cardiovascular control and arousal in infants dying of SIDS (n = 12) and infants dying from known causes (n = 20, 10 pre-discharge from time of birth, 10 post-discharge). Overall, there was a developmental decrease in 125I-epibatidine binding with increasing postconceptional age in 5 medullary sites [raphe obscurus, gigantocellularis, paragigantocellularis, centralis, and dorsal accessory olive (p = 0.0002-0.03)], three of which are nuclei containing serotonin cells. Comparing SIDS with post-discharge known cause of death (post-KCOD) controls, we found significant decreased binding in SIDS in the nucleus pontis oralis (p = 0.02), a critical component of the cholinergic ascending arousal system of the rostral pons (post-KCOD, 12.1 ± 0.9 fmol/mg and SIDS, 9.1 ± 0.78 fmol/mg). In addition, we found an effect of maternal smoking in SIDS (n = 11) combined with post-KCOD controls (n = 8) on the raphe obscurus (p = 0.01), gigantocellularis (p = 0.02), and the paragigantocellularis (p = 0.002), three medullary sites found in this study to have decreased binding with age and found in previous studies to have abnormal indices of serotonin neurotransmission in SIDS infants. At these sites, 125I-epibatidine binding increased with increasing cigarettes per week. We found no effect of maternal drinking on 125I-epibatidine binding at any site measured. Taken together, these data support changes in nicotinic receptor binding related to development, cause of death, and exposure to maternal cigarette smoking. These data present new evidence in a prospective study supporting the roles of developmental factors, as well as adverse exposure on nicotinic receptors, in serotonergic nuclei of the rostral medulla-a finding that highlights the interwoven and complex relationship between acetylcholine (via nicotinic receptors) and serotonergic neurotransmission in the medulla.
PMCID:7988476
PMID: 33776893
ISSN: 1664-2295
CID: 4836772
COllaborative Neuropathology NEtwork Characterizing ouTcomes of TBI (CONNECT-TBI)
Smith, Douglas H; Dollé, Jean-Pierre; Ameen-Ali, Kamar E; Bretzin, Abigail; Cortes, Etty; Crary, John F; Dams-O'Connor, Kristen; Diaz-Arrastia, Ramon; Edlow, Brian L; Folkerth, Rebecca; Hazrati, Lili-Naz; Hinds, Sidney R; Iacono, Diego; Johnson, Victoria E; Keene, C Dirk; Kofler, Julia; Kovacs, Gabor G; Lee, Edward B; Manley, Geoffrey; Meaney, David; Montine, Thomas; Okonkwo, David O; Perl, Daniel P; Trojanowski, John Q; Wiebe, Douglas J; Yaffe, Kristine; McCabe, Thomas; Stewart, William
Efforts to characterize the late effects of traumatic brain injury (TBI) have been in progress for some time. In recent years much of this activity has been directed towards reporting of chronic traumatic encephalopathy (CTE) in former contact sports athletes and others exposed to repetitive head impacts. However, the association between TBI and dementia risk has long been acknowledged outside of contact sports. Further, growing experience suggests a complex of neurodegenerative pathologies in those surviving TBI, which extends beyond CTE. Nevertheless, despite extensive research, we have scant knowledge of the mechanisms underlying TBI-related neurodegeneration (TReND) and its link to dementia. In part, this is due to the limited number of human brain samples linked to robust demographic and clinical information available for research. Here we detail a National Institutes for Neurological Disease and Stroke Center Without Walls project, the COllaborative Neuropathology NEtwork Characterizing ouTcomes of TBI (CONNECT-TBI), designed to address current limitations in tissue and research access and to advance understanding of the neuropathologies of TReND. As an international, multidisciplinary collaboration CONNECT-TBI brings together multiple experts across 13 institutions. In so doing, CONNECT-TBI unites the existing, comprehensive clinical and neuropathological datasets of multiple established research brain archives in TBI, with survivals ranging minutes to many decades and spanning diverse injury exposures. These existing tissue specimens will be supplemented by prospective brain banking and contribute to a centralized route of access to human tissue for research for investigators. Importantly, each new case will be subject to consensus neuropathology review by the CONNECT-TBI Expert Pathology Group. Herein we set out the CONNECT-TBI program structure and aims and, by way of an illustrative case, the approach to consensus evaluation of new case donations.
PMCID:7919306
PMID: 33648593
ISSN: 2051-5960
CID: 4824102