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Università degli Studi di Napoli "Federico II" | Chimica delle Sostanze Naturali - Academia.edu

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type="text/json">{"id":48057,"name":"DNA","url":"https://www.academia.edu/Documents/in/DNA","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="61232" href="https://www.academia.edu/Documents/in/Adenosine">Adenosine</a><script data-card-contents-for-ri="61232" type="text/json">{"id":61232,"name":"Adenosine","url":"https://www.academia.edu/Documents/in/Adenosine","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=42024669]'), work: {"id":42024669,"title":"2′-DEOXY-8-(PROPYN-1-YL)ADENOSINE-CONTAINING Oligonucleotides: Effects on Stability of Duplex and Quadruplex 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13,19-didesmethyl spirolide C via NMR- and molecular modeling-based techniques. 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action","url":"https://www.academia.edu/Documents/in/Mechanism_of_action"}],"publication_year":2009,"publication_year_with_fallback":2009,"paper_rank":null,"all_time_views":10,"active_discussion":{}}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_42024688" data-work_id="42024688" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/42024688/ChemInform_Abstract_Syntheses_of_1_15N_2_Deoxyinosine_4_15N_2_DeoxyAICAR_and_1_15N_2_Deoxyguanosine">ChemInform Abstract: Syntheses of [1-15N]-2′-Deoxyinosine, [4-15N]-2′-DeoxyAICAR, and [1-15N]-2′-Deoxyguanosine</a></div></div><div class="u-pb4x u-mt3x"></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a 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view-count u-mr2x" data-work-id="42024688"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 42024688; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=42024688]").text(description); $(".js-view-count-work_42024688").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_42024688").removeClass('hidden') })</script></div></li></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_42024689" data-work_id="42024689" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/42024689/Exploitation_of_a_very_small_peptide_nucleic_acid_as_a_new_inhibitor_of_miR_509_3p_involved_in_the_regulation_of_cystic_fibrosis_disease_gene_expression">Exploitation of a very small peptide nucleic acid as a new inhibitor of miR-509-3p involved in the regulation of cystic fibrosis disease-gene expression</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Computational techniques, and in particular molecular dynamics (MD) simulations, have been successfully used as a complementary technique to predict and analyse the structural behaviour of nucleic acids, including peptide nucleic acid-... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_42024689" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Computational techniques, and in particular molecular dynamics (MD) simulations, have been successfully used as a complementary technique to predict and analyse the structural behaviour of nucleic acids, including peptide nucleic acid- (PNA-) RNA hybrids. This study shows that a 7-base long PNA complementary to the seed region of miR-509-3p, one of the miRNAs involved in the posttranscriptional regulation of the CFTR disease-gene of Cystic Fibrosis, and bearing suitable functionalization at its N- and C-ends aimed at improving its resistance to nucleases and cellular uptake, is able to revert the expression of the luciferase gene containing the 3&amp;#39;UTR of the gene in A549 human lung cancer cells, in agreement with the MD results that pointed at the formation of a stable RNA/PNA heteroduplex notwithstanding the short sequence of the latter. The here reported results widen the interest towards the use of small PNAs as effective anti-miRNA agents.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/42024689" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="24495ef5d1f98be7f49ad688cbb4fce8" rel="nofollow" data-download="{&quot;attachment_id&quot;:62149827,&quot;asset_id&quot;:42024689,&quot;asset_type&quot;:&quot;Work&quot;,&quot;always_allow_download&quot;:false,&quot;track&quot;:null,&quot;button_location&quot;:&quot;work_strip&quot;,&quot;source&quot;:null,&quot;hide_modal&quot;:null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/62149827/download_file?st=MTczMzM0Nzg2OSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by&nbsp;<span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="1110486" href="https://unina.academia.edu/BrunoCatalanotti">Bruno Catalanotti</a><script data-card-contents-for-user="1110486" type="text/json">{"id":1110486,"first_name":"Bruno","last_name":"Catalanotti","domain_name":"unina","page_name":"BrunoCatalanotti","display_name":"Bruno Catalanotti","profile_url":"https://unina.academia.edu/BrunoCatalanotti","photo":"/images/s65_no_pic.png"}</script></span></span></li><li class="js-paper-rank-work_42024689 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="42024689"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 42024689, container: ".js-paper-rank-work_42024689", }); 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u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_88102760" data-work_id="88102760" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/88102760/Discovery_of_a_AhR_flavonoid_agonist_that_counter_regulates_ACE2_expression_in_rodent_models_of_inflammation_and_attenuates_ACE2_SARS_CoV2_interaction_in_vitro">Discovery of a AhR flavonoid agonist that counter-regulates ACE2 expression in rodent models of inflammation and attenuates ACE2-SARS-CoV2 interaction in vitro</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">The severe acute respiratory syndrome (SARS)-CoV-2, a newly emerged coronavirus first identified in 2019, is the pathogenetic agent od Corona Virus Induced Disease (COVID)19. The virus enters the human cells after binding to the... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_88102760" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">The severe acute respiratory syndrome (SARS)-CoV-2, a newly emerged coronavirus first identified in 2019, is the pathogenetic agent od Corona Virus Induced Disease (COVID)19. The virus enters the human cells after binding to the angiotensin converting enzyme (ACE) 2 receptor in target tissues. ACE2 expression is induced in response to inflammation. The colon expression of ACE2 is upregulated in patients with inflammatory bowel disease (IBD), highlighting a potential risk of intestinal inflammation in promoting viral entry in the human body. Because mechanisms that regulate ACE2 expression in the intestine are poorly understood and there is a need of anti-SARS-CoV2 therapies, we have settled to investigate whether natural flavonoids might regulate the expression of ACE2 in intestinal models of inflammation. The results of these studies demonstrated that pelargonidin, a natural flavonoid bind and activates the Aryl hydrocarbon Receptor (AhR) in vitro and reverses intestinal inflammati...</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/88102760" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="b9cbf056af06780d671c98db3eaf6666" rel="nofollow" data-download="{&quot;attachment_id&quot;:92144609,&quot;asset_id&quot;:88102760,&quot;asset_type&quot;:&quot;Work&quot;,&quot;always_allow_download&quot;:false,&quot;track&quot;:null,&quot;button_location&quot;:&quot;work_strip&quot;,&quot;source&quot;:null,&quot;hide_modal&quot;:null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/92144609/download_file?st=MTczMzM0Nzg2OSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by&nbsp;<span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="1110486" href="https://unina.academia.edu/BrunoCatalanotti">Bruno Catalanotti</a><script data-card-contents-for-user="1110486" type="text/json">{"id":1110486,"first_name":"Bruno","last_name":"Catalanotti","domain_name":"unina","page_name":"BrunoCatalanotti","display_name":"Bruno Catalanotti","profile_url":"https://unina.academia.edu/BrunoCatalanotti","photo":"/images/s65_no_pic.png"}</script></span></span></li><li class="js-paper-rank-work_88102760 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="88102760"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 88102760, container: ".js-paper-rank-work_88102760", }); 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