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1Profound neutralization evasion and augmented host cell entry are hallmarks of the fast-spreading SARS-CoV-2 lineage XBB.1.5显示文摘Since late 2022, the share of infections caused by the SARS-CoV2 lineage XBB.1.5 has gradually increased in the United States,resulting in XBB.1.5 becoming the dominating SARS-CoV-2lineage in the United States and a similar trend is likely to soontake place also in European countries. However, information onthe virological properties of XBB.1.5 is scarce. Here, weconducted an initial virological assessment of the SARS-CoV-2XBB.1.5 lineage.Markus Hoffmann Prerna Arora Inga Nehlmeier Amy Kempf Anne Cossmann Sebastian R.Schulz Gema Morillas Ramos Luis A.Manthey Hans-Martin Jäck Georg M.N.Behrens Stefan Pöhlmann 2023Cellular & Molecular Immunology2023,20,4:2
2Evidence of expression variation and allelic imbalance in Crohn's disease susceptibility genes NOD2 and ATG16L1 in human dendritic cells 显示文摘HU J Z INGA P 2013Gene2013,527,:1
3Perception of risk factors for infusion phlebitis among Swedish nurses:a questionnaire study显示文摘Peter L Inga O Otto P 2004J Infus Nurs2004,27,1:1
4Carbon dioxide capture by an amine functionalized ion-ic liquid: Fundamental differences of surface and bulkbehavior 显示文摘INGA N MATTHIAS B CHRISTIAN P 2014Journal of the American Chemical So-ciety2014,136,1:1
5DIBOA: Fate in soil and effects on root-knot nematode egg numbers显示文摘Susan L F Meyer Clifford P Rice Inga A Zasada 2009Soil Biology & Biochemistry2009,41,:1
6Gas diffusion in 'Gold- en' papaya fruit at different maturity stages 显示文摘Talita P Paulo S G A Inga G A 2009Postharvest Biology and Technology2009,54,:1
7Gas per- meability properties of Matrimid~ membranes containing the metal- organic framework Cu-BPY-HFS 显示文摘Zhang Yangfeng Inga H Musselman John P Ferraris 2008Journal of Membrane Sci- ence2008,313,12:1
8P53 mutations experimentally induced by 8-methoxypsoralen plus UVA(PUVA) differ from those found in human skin cancers in PUVA-treated patients显示文摘Monti P Inga A Aprile A 2000Mutagenesis2000,15,:1
9Incorporation of EPA and DHA into plasma phospholipids in response to different omega-3 fatty acid formulations: A comparative bioavailability study of fish oil vs krill oil显示文摘Jan P S Inga S Henrike M 2011Lipids in Health and Disease2011,10,:1
10Epiphytic and epixylic lichens species diversity in Estonian natural forest显示文摘Inga J Jannus P 0,,:1
11Diversity of epiphytic lichens in boreo-nemoral forests on the North-Estonian limestone escarpment:the effect of tree level factors and local environmental conditions显示文摘Inga J Jaan L Jaanus P 0,,01:1
12FungalTraits:a user-friendly traits database of fungi and fungus-like stramenopiles显示文摘The cryptic lifestyle of most fungi necessitates molecular identification of the guild in environmental studies.Over the past decades,rapid development and affordability of molecular tools have tremendously improved insights of the fungal diversity in all ecosystems and habitats.Yet,in spite of the progress of molecular methods,knowledge about functional properties of the fungal taxa is vague and interpretation of environmental studies in an ecologically meaningful manner remains challenging.In order to facilitate functional assignments and ecological interpretation of environmental studies we introduce a user friendly traits and character database FungalTraits operating at genus and species hypothesis levels.Combining the information from previous efforts such as FUNGuild and FunFun together with involvement of expert knowledge,we reannotated 10,210 and 151 fungal and Stramenopila genera,respectively.This resulted in a stand-alone spreadsheet dataset covering 17 lifestyle related traits of fungal and Stramenopila genera,designed for rapid functional assignments of environmental stud-ies.In order to assign the trait states to fungal species hypotheses,the scientific community of experts manually categorised and assigned available trait information to 697,413 fungal ITS sequences.On the basis of those sequences we were able to summarise trait and host information into 92,623 fungal species hypotheses at 1%dissimilarity threshold.Sergei Põlme Kessy Abarenkov RHenrik Nilsson Björn D.Lindahl Karina Engelbrecht Clemmensen Havard Kauserud Nhu Nguyen Rasmus Kjøller Scott T.Bates Petr Baldrian Tobias Guldberg Frøslev Kristjan Adojaan Alfredo Vizzini Ave Suija Donald Pfister Hans-Otto Baral Helle Järv Hugo Madrid Jenni Nordén Jian-Kui Liu Julia Pawlowska Kadri Põldmaa Kadri Pärtel Kadri Runnel Karen Hansen Karl-Henrik Larsson Kevin David Hyde Marcelo Sandoval-Denis Matthew E.Smith Merje Toome-Heller Nalin N.Wijayawardene Nelson Menolli Jr Nicole K.Reynolds Rein Drenkhan Sajeewa S.N.Maharachchikumbura Tatiana B.Gibertoni Thomas Læssøe William Davis Yuri Tokarev Adriana Corrales Adriene Mayra Soares Ahto Agan Alexandre Reis Machado Andrés Argüelles-Moyao Andrew Detheridge Angelina de Meiras-Ottoni Annemieke Verbeken Arun Kumar Dutta Bao-Kai Cui C.K.Pradeep César Marín Daniel Stanton Daniyal Gohar Dhanushka N.Wanasinghe Eveli Otsing Farzad Aslani Gareth W.Griffith Thorsten H.Lumbsch Hans-Peter Grossart Hossein Masigol Ina Timling Inga Hiiesalu Jane Oja John Y.Kupagme József Geml Julieta Alvarez-Manjarrez Kai Ilves Kaire Loit Kalev Adamson Kazuhide Nara Kati Küngas Keilor Rojas-Jimenez Krišs Bitenieks Laszlo Irinyi LászlóGNagy Liina Soonvald Li-Wei Zhou Lysett Wagner M.Catherine Aime MaarjaÖpik María Isabel Mujica Martin Metsoja Martin Ryberg Martti Vasar Masao Murata Matthew PNelsen Michelle Cleary Milan C.Samarakoon Mingkwan Doilom Mohammad Bahram Niloufar Hagh-Doust Olesya Dulya Peter Johnston Petr Kohout Qian Chen Qing Tian Rajasree Nandi Rasekh Amiri Rekhani Hansika Perera Renata dos Santos Chikowski Renato L.Mendes-Alvarenga Roberto Garibay-Orijel Robin Gielen Rungtiwa Phookamsak Ruvishika S.Jayawardena Saleh Rahimlou Samantha C.Karunarathna Saowaluck Tibpromma Shawn P.Brown Siim-Kaarel Sepp Sunil Mundra Zhu-Hua Luo Tanay Bose Tanel Vahter Tarquin Netherway Teng Yang Tom May Torda Varga Wei Li Victor Rafael Matos Coimbra Virton Rodrigo Targino de Oliveira Vitor Xavier de Lima Vladimir S.Mikryukov Yongzhong Lu Yosuke Matsuda Yumiko Miyamoto Urmas Kõljalg Leho Tedersoo 2020Fungal Diversity2020,,6:1
13Anisotropy of transcallosal motor fibres indicates functional impairment in children with periventricular leukomalacia显示文摘Koerte Inga Pelavin Paula Kirmess Berit Fuchs Teresa Berweck Steffen Laubender Ruediger P Borggraefe Ingo Schroeder Sebastian Danek Adrian Rummeny Claudia Reiser Maximilian Kubicki Marek Shenton Martha E Ertl-Wagner Birgit Heinen Florian 2011Developmental Medicine and Child Neurology2011,,2:1
14Analysis of the glu cosinolate pattern of Arabidopsis thaliana seeds by capil lary zone eleetrophoresis coupled to eleetrospray ioniza tion- mass spectrometry 显示文摘Gerhard B Inga K Matthias P 2005Eleetrophoresis2005,,26:1
15Simple identification of dominant p53 mutants by a yeast functional assay 显示文摘Inga A Cresta S Monti P 1997Carcinogenesis1997,18,:1
16Dicloxacillin: a higher risk than cloxacillin for infusion phlebitis 显示文摘Peter L Inga O Otto P 2003Scand J Infect Dis2003,35,:1
17Delta variant(B.1.617.2)sublineages do not show increased neutralization resistance显示文摘The emergence of SARS-CoV-2 variants threatens efforts to control the COVID-19 pandemic.At present,the global spread of the Delta(B.1.617.2)variant is responsible for a rapid increase in COVID-19 cases and hospitalizations in many countries.The variant evades neutralizing antibodies and is believed to be more transmissible and pathogenic[1,2,3,4].Prerna Arora Amy Kempf Inga Nehlmeier Luise Graichen Anzhalika Sidarovich Martin S.Winkler Sebastian Schulz Hans-Martin Jäck Metodi V.Stankov Georg M.N.Behrens Stefan Pöhlmann Markus Hoffmann 2021Cellular & Molecular Immunology2021,18,11:1
18Efficient antibody evasion but reduced ACE2 binding by the emerging SARS-CoV-2 variant B.1.640.2显示文摘The SARS-CoV-2 spike(S)protein engages ACE2 for cell entry,and the S protein/ACE2 interface is an important target for neutralizing antibodies.In the course of the COVID-19 pandemic,SARS-CoV-2 variants have emerged that harbor mutations in the S protein,which confer neutralization resistance and allow viral spread in immunologically nonnaive populations.The most prominent example is the highly mutated Omicron variant,which infects convalescent or vaccinated individuals with unprecedented efficiency[1,2].Prerna Arora Amy Kempf Inga Nehlmeier Luise Graichen Sebastian Schulz Anne Cossmann Alexandra Dopfer-Jablonka Martin S.Winkler Hans-Martin Jäck Georg M.N.Behrens Stefan Pöhlmann Markus Hoffmann 2022Cellular & Molecular Immunology2022,19,9:0
19The spike protein of SARS-CoV-2 variant A.30 is heavily mutated and evades vaccine-induced antibodies with high efficiency显示文摘The COVID-19 pandemic,caused by SARS-CoV-2,continues to rage in many countries,straining health systems and economies.Vaccines protect against severe disease and death and are considered central to ending the pandemic.COVID-19 vaccines(and SARS-CoV-2 infection)elicit antibodies that are directed against the viral spike(S)protein and neutralize the virus.However,the emergence of SARS-CoV-2 variants with S protein mutations that confer resistance to neutralization might compromise vaccine efficacy[1].Prerna Arora Cheila Rocha Amy Kempf Inga Nehlmeier Luise Graichen Martin S.Winkler Martin Lier Sebastian Schulz Hans-Martin Jäck Anne Cossmann Metodi V.Stankov Georg M.N.Behrens Stefan Pöhlmann Markus Hoffmann 2021Cellular & Molecular Immunology2021,18,12:0
20Neutralization of the SARS-CoV-2 Delta variant after heterologous and homologous BNT162b2 or ChAdOx1 nCoV-19 vaccination显示文摘Since the beginning of the COVID-19 pandemic,divergent variants of concern(VoCs)of SARS-CoV-2 have evolved and become the most prevalent SARS-CoV-2 variants in distinct locations at different times.Currently,the Delta variant(B.1.617.2)dominates infection events in large parts of the world.Immunization campaigns,however,still use SARS-CoV-2 vaccines based on the spike(S)protein of the original Wuhan virus.Swantje I.Hammerschmidt Berislav Bosnjak Günter Bernhardt Michaela Friedrichsen Inga Ravens Alexandra Dopfer-Jablonka Markus Hoffmann Stefan Pöhlmann Georg M.N.Behrens Reinhold Förster 2021Cellular & Molecular Immunology2021,18,10:0
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