| Literature DB >> 34224085 |
Francesca Coperchini1, Gianluca Ricci1, Laura Croce1,2, Marco Denegri3, Rubina Ruggiero4, Laura Villani5, Flavia Magri1,2, Luca Chiovato6,7, Mario Rotondi1,2.
Abstract
INTRODUCTION: Angiotensin-converting-enzyme-2 (ACE-2) was demonstrated to be the receptor for cellular entry of SARS-CoV-2. ACE-2 mRNA was identified in several human tissues and recently also in thyroid cells in vitro.Entities:
Keywords: ACE-2; COVID-19; SARS-COV-2; Thyrocytes; Thyroid
Mesh:
Substances:
Year: 2021 PMID: 34224085 PMCID: PMC8256224 DOI: 10.1007/s12020-021-02807-w
Source DB: PubMed Journal: Endocrine ISSN: 1355-008X Impact factor: 3.633
Fig. 1Mean expression of ACE-2 mRNA after treatment with cytokines alone or in combination. Modulation of expression of ACE-2 mRNA after treatment with 1000 U/ml IFN-γ and 10 ng/ml TNF-α alone or in combination in primary cultures of thyroid cells (n = 6 samples) after 24 h. The ACE-2 expression levels were normalized on GAPDH and are shown as a change in fold expression compared to not-treated cells. Bars are representative of the mean fold increase in ACE 2 mRNA expression. IFN-γ alone significantly increases the expression of ACE-2 mRNA when compared with not-treated cells (Kruskall–Wallis 63.143, p < 0.001; * IFN-γ vs. not-treated p < 0.05). Although TNF-α alone does not produce a significant increase in the expression of ACE-2, it strongly synergized with IFN-γ in inducing ACE-2 expression (** IFN-γ + TNF-α vs. IFN-γ p < 0.05)
Fig. 2Expression of ACE-2 mRNA and CXCL10 secretion after treatment with cytokines alone or in combination in NHT cells (n = 6 samples). (Panel A) Modulation of expression of ACE-2 mRNA (on the left) and the secretion of CXCL10 protein (on the right) after treatment with 1000 U/ml IFN-γ and 10 ng/ml TNF-α alone or in combination in primary cultures of thyroid cells (n = 4 samples) after 24 h. The ACE-2 expression levels were normalized on GAPDH and are shown as a change in expression fold compared to expression levels in not-treated cells. The CXCL10 secretion levels are shown as protein concentration in each sample. This panel includes all the samples in which the combination of IFN-γ + TNF-α induced a similar response pattern for both ACE 2 and CXCL10 (Cluster 1). In four patients out of six (66.6%), the combination of IFN-γ + TNF-α induces a further increase in ACE-2 expression when compared with the treatment with IFN-γ alone. (Panel B) Modulation of the expression of ACE-2 mRNA (on the left) and the secretion of CXCL10 (on the right) after treatment with 1000 U/ml IFN-γ and 10 ng/ml TNF-α alone or in combination in primary cultures of thyroid cells (n = 2 samples) after 24 h. The ACE-2 expression levels were normalized on GAPDH and are shown as a change in expression fold compared to expression levels in not-treated cells. The CXCL10 secretion levels are shown as protein concentration in each sample. This panel includes the samples in which the combination of IFN-γ + TNF-α produced a synergic effect in terms of increasing the CXCL10 secretion, but no synergism could be detected for ACE-2 expression (Cluster 2). In 2 patients (33.3%) the expression of ACE-2 after treatment with IFN-γ + TNF-α remained similar to what was observed after treatment with IFN-γ alone
Fig. 3Thyroid cultures samples patterns ACE 2 expression and CXCL10 secretion levels. (Panel A) Different ACE-2 expression between Thyroid samples pattern 1 (black) and Thyroid samples pattern 2 (white). (Panel B) Similar CXCL10 secretion between Thyroid samples pattern 1 (black) and Thyroid samples pattern 2 (white). Bars are representative of mean fold increase in ACE-2 mRNA