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J Med Virol . N-Acylethanolamine Acid Amidase Inhibition Reduces SARS-CoV-2 Infection in Human Precision Cut-Lung Slices and Downregulates NF-KBB S

tetano

Editor, Senior Moderator
J Med Virol


. 2026 Feb;98(2):e70819.
doi: 10.1002/jmv.70819.
N-Acylethanolamine Acid Amidase Inhibition Reduces SARS-CoV-2 Infection in Human Precision Cut-Lung Slices and Downregulates NF-KBB Signalling

Veronica La Rocca[SUP] 1 2 [/SUP], Carolina Filipponi[SUP] 1 [/SUP], Viktoria Diesendorf[SUP] 3 [/SUP], Alessandro De Carli[SUP] 1 [/SUP], Giulia Sciandrone[SUP] 1 [/SUP], Silvia Nottoli[SUP] 1 [/SUP], Erika Plicanti[SUP] 1 [/SUP], Rossella Fonnesu[SUP] 1 [/SUP], Elena Iacono[SUP] 1 [/SUP], Alessandro Mengozzi[SUP] 4 [/SUP], Stefano Masi[SUP] 4 [/SUP], Paola Lenzi[SUP] 5 [/SUP], Francesco Fornai[SUP] 5 6 [/SUP], Katherina Sewald[SUP] 7 [/SUP], Helena Obernolte[SUP] 7 [/SUP], Roberto Angelini[SUP] 8 [/SUP], Jochen Bodem[SUP] 3 [/SUP], Giulia Freer[SUP] 1 [/SUP], Mauro Pistello[SUP] 1 9 [/SUP], Michele Lai[SUP] 1 [/SUP]


Affiliations
Abstract

SARS-CoV-2, like other positive-sense RNA viruses, manipulates host lipid metabolism to facilitate its replication by enhancing lipogenesis and lipid droplet formation. This infection disrupts bioactive lipid levels associated with the inflammatory response by increasing nuclear factor-κB (NF-κB) transcription. Recent findings have shown that NF-κB activation is essential for sustaining SARS-CoV-2 replication. Therefore, we proposed that counteracting NF-κB-driven pro-inflammatory lipid production could be accomplished by enhancing an anti-inflammatory, lipolytic pathway. Our goal was to increase levels of Palmitoylethanolamide (PEA), the main activator of the Peroxisome Proliferator-Activated Receptor-α (PPAR-α), a transcription factor that suppresses lipogenesis and NF-κB transcription. PEA levels are mainly regulated by N-acylethanolamine acid amidase (NAAA), a lysosomal enzyme that breaks down PEA. We hypothesized that inhibiting NAAA might interfere with SARS-CoV-2 replication by allowing PEA to accumulate, thereby activating PPAR-α and suppressing NF-κB. Our results show that genetic or chemical ablation of NAAA significantly suppresses SARS-CoV-2 replication ex-vivo by 3 log[SUB]10[/SUB] in human-derived precision-cut lung slices. We investigated whether inhibiting NAAA could block NF-κB activation by steering its opposite PPAR-α mediated pathway. We observed increased PPAR-α expression in NAAA KO cells, while PPAR-α expression remained low in infected untreated cells. Elevated PPAR-α expression correlated with reduced NF-κB activation when NAAA is ablated. These findings highlight NAAA as an essential host factor for SARS-CoV-2 replication and propose a mechanism that reduces both replication and inflammation by targeting NF-κB during Coronaviridae replication.


 
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