Publications: Difference between revisions

From Laboratory of Modeling in Biology and Medicine
Jump to: navigation, search
mNo edit summary
mNo edit summary
Line 64: Line 64:


* <span class="pmbm">Komorowski&nbsp;M</span>. '''Making sense of BMP signaling complexity''', ''Cell Syst'' <u>13</u>(5):349–351 (2022) [https://pubmed.ncbi.nlm.nih.gov/35588697 PubMed] [https://doi.org/10.1016/j.cels.2022.04.002 CrossRef]
* <span class="pmbm">Komorowski&nbsp;M</span>. '''Making sense of BMP signaling complexity''', ''Cell Syst'' <u>13</u>(5):349–351 (2022) [https://pubmed.ncbi.nlm.nih.gov/35588697 PubMed] [https://doi.org/10.1016/j.cels.2022.04.002 CrossRef]
===2021===
* <span class="pmbm">Błoński&nbsp;S</span>, <span class="nopmbm">J&nbsp;Aureille</span>, <span class="nopmbm">S&nbsp;Badawi</span>, <span class="pmbm">D&nbsp;Zaremba</span>, <span class="nopmbm">L&nbsp;Pernet</span>, <span class="nopmbm">A&nbsp;Grichine</span>, <span class="nopmbm">S&nbsp;Fraboulet</span>, <span class="pmbm">PM&nbsp;Korczyk</span>, <span class="nopmbm">P&nbsp;Recho</span>, <span class="nopmbm">Ch&nbsp;Guilluy</span>, <span class="nopmbm">ME&nbsp;Dolega</span>. '''Direction of epithelial folding defines impact of mechanical forces on epithelial state''', ''Dev&nbsp;Cell'' <u>56</u>:3222–3234 (2021) [https://pubmed.ncbi.nlm.nih.gov/34875225] [https://doi.org/10.1016/j.devcel.2021.11.008 CrossRef]
* <span class="nopmbm">M&nbsp;Koehler</span>, <span class="nopmbm">A&nbsp;Ray</span>, <span class="pmbm">RA&nbsp;Moreira</span>, <span class="nopmbm">B&nbsp;Juniku</span>, <span class="pmbm">AB&nbsp;Poma</span>, <span class="nopmbm">D&nbsp;Alsteens</span>. '''Molecular insights into receptor binding energetics and neutralization of SARS-CoV-2 variants''', ''Nat&nbsp;Commun'' <u>12</u>(1):6977 (2021) [https://pubmed.ncbi.nlm.nih.gov/34848718 PubMed] [http://dx.doi.org/10.1038/s41467-021-27325-1 CrossRef]
* <span class="author">Kochańczyk&nbsp;M</span> &amp; <span class="author">Lipniacki&nbsp;T</span>. '''Pareto-based evaluation of national responses to COVID-19 pandemic shows that saving lives and protecting economy are non-trade-off objectives''', ''Sci&nbsp;Rep'' <u>11</u>:2425 (2021) &nbsp;[https://pubmed.ncbi.nlm.nih.gov/33510274 PubMed] [https://doi.org/10.1038/s41598-021-81869-2 CrossRef] [https://www.medrxiv.org/content/10.1101/2020.06.27.20141747v2 medRxiv] | [https://www.nature.com/articles/s41598-021-81869-2.pdf PDF] [https://github.com/kochanczyk/covid19-pareto GitHub]
* <span class="pmbm">Grabowski&nbsp;F</span>, <span class="nopmbm">Preibisch&nbsp;G</span>, <span class="nopmbm">Giziński&nbsp;S</span>, <span class="pmbm">Kochańczyk&nbsp;M</span>, <span class="pmbm">Lipniacki&nbsp;T</span>.  '''SARS-CoV-2 Variant of Concern 202012/01 has about twofold replicative advantage and&nbsp;acquires concerning mutations''', ''Viruses'' <u>13</u>(3):392 (2021) [https://pubmed.ncbi.nlm.nih.gov/33804556 PubMed] [https://doi.org/10.3390/v13030392 CrossRef] [https://doi.org/10.1101/2020.12.28.20248906 medRxiv] | [https://www.mdpi.com/1999-4915/13/3/392/pdf PDF]
* <span class="pmbm">Zaremba&nbsp;D</span>, <span class="pmbm">Błoński&nbsp;S</span>, <span class="pmbm">Korczyk&nbsp;PM</span>. '''Integration of capillary–hydrodynamic logic circuitries for built-in control over multiple droplets in microfluidic networks''', ''Lab Chip'' <u>21</u>:1771 (2021) [https://pubmed.ncbi.nlm.nih.gov/33710202 PubMed] [http://doi.org/10.1039/d0lc00900h CrossRef]
* <span class="pmbm">Kaźmierczak&nbsp;B</span> &amp; <span class="nopmbm">Sneyd&nbsp;J</span>. '''Speed of traveling waves for monotone reaction–diffusion systems as a function of diffusion coefficients''', ''Physica D: Nonlin Phenom'' <u>424</u>:132940 (2021) [https://doi.org/10.1016/j.physd.2021.132940 CrossRef]
* <span class="pmbm">Nienałtowski&nbsp;K</span>, <span class="nopmbm">Rigby&nbsp;RE</span>, <span class="pmbm">Walczak&nbsp;J</span>, <span class="pmbm">Zakrzewska&nbsp;KE</span>, <span class="pmbm">Głów&nbsp;E</span>, <span class="nopmbm">Rehwinkel&nbsp;J</span>, <span class="pmbm">Komorowski&nbsp;M</span>. '''Fractional response analysis reveals logarithmic cytokine responses in cellular populations''', ''Nat Commun'' <u>12</u>:4175 (2021) [https://pubmed.ncbi.nlm.nih.gov/34234126 PubMed] [https://doi.org/10.1038/s41467-021-24449-2 CrossRef]
* <span class="pmbm">Topolewski&nbsp;P</span> &amp; <span class="pmbm">Komorowski&nbsp;M</span>. '''Information-theoretic analyses of cellular strategies for achieving high signaling capacity — dynamics, cross-wiring and heterogeneity of cellular states''', ''Curr Opin Syst Biol'' <u>27</u>:100352 (2021) [https://doi.org/10.1016/j.coisb.2021.06.003 CrossRef]
* <span class="nopmbm">Fiebelkow&nbsp;J</span>, <span class="nopmbm">Guendel&nbsp;A</span>, <span class="nopmbm">Guendel&nbsp;B</span>, <span class="nopmbm">Mehwald&nbsp;N</span>, <span class="pmbm">Jetka&nbsp;T</span>, <span class="pmbm">Komorowski&nbsp;M</span>, <span class="nopmbm">Waldherr&nbsp;S</span>, <span class="nopmbm">Schaper&nbsp;F</span>, <span class="nopmbm">Dittrich&nbsp;A</span>. '''The tyrosine phosphatase SHP2 increases robustness and information transfer within IL-6-induced JAK/STAT signalling''', ''Cell Commun Signal'' <u>19</u>:94 (2021) [https://pubmed.ncbi.nlm.nih.gov/34530865 PubMed] [https://doi.org/10.1186/s12964-021-00770-7 CrossRef]
* <span class="pmbm">Poma&nbsp;A</span>, <span class="nopmbm">Thu&nbsp;TTM</span>, <span class="nopmbm">Tu&nbsp;LA</span>, <span class="nopmbm">Hu C-K</span>, <span class="nopmbm">Li MS</span>. '''Nanomechanical stability of Aβ tetramers and fibril-like structures: Molecular dynamics simulations''', ''J&nbsp;Phys Chem&nbsp;B'' <u>125</u>(28):7628−7637 (2021) [https://pubmed.ncbi.nlm.nih.gov/34253022 PubMed] [http://dx.doi.org/10.1021/acs.jpcb.1c02322 CrossRef]
* <span class="pmbm">Piechocka&nbsp;IK</span>, <span class="nopmbm">Keary&nbsp;S</span>, <span class="nopmbm">Sosa-Costa&nbsp;A</span>, <span class="nopmbm">Lau&nbsp;L</span>, <span class="nopmbm">Mohan&nbsp;N</span>, <span class="nopmbm">Stanisavljevic&nbsp;J</span>, <span class="nopmbm">Borgman&nbsp;KJE</span>, <span class="nopmbm">Lakadamyali&nbsp;M</span>, <span class="nopmbm">Manzo&nbsp;C</span>, <span class="nopmbm">Garcia-Parajo&nbsp;MF</span>. '''Shear forces induce ICAM-1 nanoclustering onendothelial cells that impact on T-cell migration''', ''Biophys&nbsp;J'' <u>120</u>:2644–2656 (2021) [https://pubmed.ncbi.nlm.nih.gov/34087211 PubMed] [https://doi.org/10.1016/j.bpj.2021.05.016 CrossRef]
* <span class="pmbm">Rinoldi&nbsp;C</span>, <span class="nopmbm">Lanzi&nbsp;M</span>, <span class="nopmbm">Fiorelli&nbsp;R</span>, <span class="pmbm">Nakielski&nbsp;P</span>, <span class="pmbm">Zembrzycki&nbsp;K</span>, <span class="pmbm">Kowalewski&nbsp;T</span>, <span class="nopmbm">Urbanek&nbsp;O</span>, <span class="nopmbm">Grippo&nbsp;V</span>, <span class="nopmbm">Jezierska-Woźniak &nbsp;K</span>, <span class="nopmbm">Maksymowicz&nbsp;W</span>, <span class="nopmbm">Camposeo&nbsp;A</span>, <span class="nopmbm">Bilewicz&nbsp;R</span>, <span class="nopmbm">Pisignano&nbsp;D</span>, <span class="nopmbm">Sanai&nbsp;N</span>,  <span class="pmbm">Pierini&nbsp;F</span>. '''Three-dimensional printable conductive semi-interpenetrating polymer network hydrogel for neural tissue applications''', ''Biomacromolecules'' <u>22</u>(7):3084–3098 (2021) [https://pubmed.ncbi.nlm.nih.gov/34151565 PubMed] [https://doi.org/10.1021/acs.biomac.1c00524 CrossRef] | [https://pubs.acs.org/doi/pdf/10.1021/acs.biomac.1c00524 PDF]
* <span class="pmbm">Rinoldi&nbsp;C</span>, <span class="pmbm">Zargarian&nbsp;SS</span>, <span class="pmbm">Nakielski&nbsp;P</span>, <span class="nopmbm">Li&nbsp;X</span>, <span class="nopmbm">Liguori&nbsp;A</span>,  <span class="nopmbm">Petronella&nbsp;G</span>, <span class="nopmbm">Presutti&nbsp;D</span>,  <span class="nopmbm">Wang&nbsp;Q</span>,  <span class="nopmbm">Costantini&nbsp;M</span>,  <span class="nopmbm">De&nbsp;Sio&nbsp;L</span>,  <span class="nopmbm">Gualandi&nbsp;C</span>, <span class="nopmbm">Ding&nbsp;B</span>, <span class="pmbm">Pierini&nbsp;F</span>. '''Nanotechnology-assisted RNA delivery: From nucleic acid therapeutics to COVID-19 vaccines''', ''Small Meth'' <u>5</u>(9):2100402 (2021) [https://pubmed.ncbi.nlm.nih.gov/34928055 PubMed] [https://doi.org/10.1002/smtd.202100402 CrossRef]
* <span class="pmbm">Haghighat&nbsp;Bayan&nbsp;MA</span>, <span class="nopmbm">Taromi&nbsp;FA</span>, <span class="nopmbm">Lanzi &nbsp;M</span>, <span class="pmbm">Pierini&nbsp;F</span>. '''Enhanced efficiency in hollow core electrospun nanofiber-based organic solar cells''', ''Sci&nbsp;Rep'' <u>11</u>:21144 (2021) [https://pubmed.ncbi.nlm.nih.gov/34707121 PubMed] [https://doi.org/10.1038/s41598-021-00580-4 CrossRef]
* <span class="nopmbm">Lanzi&nbsp;M</span> &amp; <span class="pmbm">Pierini&nbsp;F</span>. '''Efficient and thermally stable BHJ solar cells based on a soluble hydroxy-functionalized regioregular polydodecylthiophene''', ''React Funct Polym'' <u>158</u>:104803 (2021) [https://doi.org/10.1016/j.reactfunctpolym.2020.104803 CrossRef]
* <span class="nopmbm">De&nbsp;Sio&nbsp;L</span>, <span class="nopmbm">Ding&nbsp;B</span>, <span class="nopmbm">Focsan&nbsp;M</span>, <span class="nopmbm">Kogermann&nbsp;K</span>, <span class="nopmbm">Pascoal-Faria&nbsp;P</span>, <span class="nopmbm">Petronella&nbsp;F</span>, <span class="nopmbm">Mitchell&nbsp;G</span>, <span class="nopmbm">Zussmann&nbsp;E</span>, <span class="pmbm">Pierini&nbsp;F</span>. '''Personalized reusable face masks with smart nano‐assisted destruction of pathogens for COVID‐19: A visionary road''', ''Chem&nbsp;Eur&nbsp;J'' <u>27</u>(20):6112–6130 (2021) [https://pubmed.ncbi.nlm.nih.gov/33284500 PubMed] [https://doi.org/10.1002/chem.202004875 CrossRef]
* <span class="nopmbm">Lanzi&nbsp;M</span>, <span class="nopmbm">Quadretti&nbsp;D</span>, <span class="pmbm">Marinelli&nbsp;M</span>, <span class="pmbm">Ziai&nbsp;Y</span>, <span class="nopmbm">Salatelli&nbsp;E</span>, <span class="pmbm">Pierini&nbsp;F</span>. '''Influence of the active layer structure on the photovoltaic performance of water-soluble polythiophene-based solar cells''', ''Polymers'' <u>13</u>(10):1640 (2021) [https://pubmed.ncbi.nlm.nih.gov/34070205 PubMed] [https://doi.org/10.3390/polym13101640 CrossRef]
* <span class="nopmbm">Guglielmelli&nbsp;A</span>, <span class="pmbm">Pierini&nbsp;F</span>, <span class="nopmbm">Tabiryan&nbsp;N</span>, <span class="nopmbm">Umeton&nbsp;C</span>, <span class="nopmbm">Bunning&nbsp;TJ</span>, <span class="nopmbm">De&nbsp;Sio&nbsp;L</span>. '''Thermoplasmonics with gold nanoparticles: A&nbsp;new weapon in modern optics and biomedicine''', ''Adv Photonics Res'' 2000198 (2021) [https://doi.org/10.1002/adpr.202000198 CrossRef]
* <span class="nopmbm">Marinelli&nbsp;M</span>, <span class="nopmbm">Candini&nbsp;A</span>, <span class="nopmbm">Monti&nbsp;F</span>, <span class="nopmbm">Boschi&nbsp;A</span>, <span class="nopmbm">Zangoli&nbsp;M</span>, <span class="nopmbm">Salatelli&nbsp;E</span>, <span class="pmbm">Pierini&nbsp;F</span>, <span class="nopmbm">Lanzi&nbsp;M</span>, <span class="nopmbm">Zanelli&nbsp;A</span>, <span class="nopmbm">Gazzano&nbsp;M</span>, <span class="nopmbm">Di&nbsp;Maria&nbsp;F</span>. '''Push–pull thiophene-based small molecules with donor and acceptor units of varying strength for photovoltaic application: Beyond P3HT and PCBM''', ''J&nbsp;Mater Chem&nbsp;C'' <u>9</u>:11216–11228 (2021) [https://doi.org/10.1039/D1TC02641K CrossRef]
* <span class="nopmbm">Cidonio&nbsp;G</span>, <span class="nopmbm">Costantini&nbsp;M</span>, <span class="pmbm">Pierini&nbsp;F</span>, <span class="nopmbm">Scognamiglio&nbsp;C</span>, <span class="nopmbm">Agarwal&nbsp;T</span>, <span class="nopmbm">Barbetta&nbsp;A</span>. '''3D&nbsp;printing of biphasic inks: Beyond single-scale architectural control''', ''J&nbsp;Mater Chem&nbsp;C'' (2021) <u>9</u>:12489–12508  [http://dx.doi.org/10.1039/d1tc02117f CrossRef]
* <span class="nopmbm">Urbanek O</span>, <span class="nopmbm">Wysocka A</span>, <span class="pmbm">Nakielski P</span>, <span class="pmbm">Pierini F</span>, <span class="nopmbm">Jagielska E</span>, <span class="nopmbm">Sabała I</span>. '''<i>Staphylococcus aureus</i> specific electrospun wound dressings: Influence of immobilization technique on antibacterial efficiency of novel enzybiotic''', ''Pharmaceutics'' <u>13</u>(5), 711 (2021) [https://pubmed.ncbi.nlm.nih.gov/34068117 PubMed] [https://doi.org/10.3390/pharmaceutics13050711 CrossRef]
* <span class="nopmbm">La&nbsp;Monac&nbsp;A</span>, <span class="nopmbm">Girard&nbsp;G</span>, <span class="nopmbm">Savoie&nbsp;S</span>, <span class="nopmbm">Bertoni&nbsp;G</span>, <span class="nopmbm">Krachkovskiy&nbsp;S</span>, <span class="nopmbm">Vijh&nbsp;A</span>, <span class="pmbm">Pierini&nbsp;F</span>,<span class="nopmbm"> Rosei&nbsp;F</span>, <span class="nopmbm">Paolella&nbsp;A</span>. '''Synthesis of electrospun NASICON Li<sub>1.5</sub>Al<sub>0.5</sub>Ge<sub>1.5</sub>(PO<sub>4</sub>)<sub>3</sub> solid electrolyte nanofibers by control of germanium hydrolysis''', ''J&nbsp;Electrochem&nbsp;Soc'' <u>168</u>(11):110512 (2021) [https://doi.org/10.1149/1945-7111/ac334a CrossRef]
* <span class="nopmbm">Mahmood&nbsp;MI</span>, <span class="pmbm">Poma&nbsp;AB</span>, <span class="nopmbm">Okazaki K</span>. '''Optimizing Gō-MARTINI coarse-grained model for F-BAR protein on lipid membrane''', ''Front Mol Biosci'', <u>8</u>:619381 [https://pubmed.ncbi.nlm.nih.gov/33693028 PubMed] [https://doi.org/10.3389/fmolb.2021.619381 CrossRef]
* <span class="nopmbm">Wencel&nbsp;A</span>, <span class="nopmbm">Ciezkowska&nbsp;M</span>, <span class="nopmbm">Wisniewska&nbsp;M</span>, <span class="pmbm">Zakrzewska&nbsp;KE</span>, <span class="nopmbm">Pijanowska&nbsp;DG</span>, <span class="nopmbm">Pluta&nbsp;KD</span>. '''Effects of genetically modified human skin fibroblasts, stably overexpressing hepatocyte growth factor, on hepatic functions of cocultured C3A cells''', ''Biotechnol Bioeng'' <u>118</u>(1):72–81 (2021) [https://pubmed.ncbi.nlm.nih.gov/32880912 PubMed] [https://doi.org/10.1002/bit.27551 CrossRef]
* <span class="nopmbm">Janczewska&nbsp;M</span>, <span class="nopmbm">Szkop&nbsp;M</span>, <span class="nopmbm">Pikus&nbsp;G</span>, <span class="nopmbm">Kopyra&nbsp;K</span>, <span class="nopmbm">Świątkowska&nbsp;A</span>, <span class="nopmbm">Brygoła&nbsp;K</span>, <span class="nopmbm">Karczmarczyk&nbsp;U</span>, <span class="pmbm">Walczak&nbsp;J</span>, <span class="nopmbm">Żuk&nbsp;MT</span>, <span class="nopmbm">Duszak&nbsp;J</span>, <span class="nopmbm">Ciach&nbsp;T</span>. '''PSMA targeted conjugates based on dextran''', ''Appl&nbsp;Radiat&nbsp;Isot'' <u>167</u>:109439 (2021) [https://doi.org/10.1016/j.apradiso.2020.109439 CrossRef]
* <span class="nopmbm">Boopathi&nbsp;S</span>, <span class="pmbm">Poma&nbsp;AB</span>, <span class="nopmbm">Garduño-Juárez&nbsp;R</span>. '''An overview of several inhibitors for Alzheimer’s disease: Characterization and failure''',  ''Int&nbsp;J&nbsp;Mol&nbsp;Sci'' <u>22</u>:10798 (2021) [https://pubmed.ncbi.nlm.nih.gov/34639140 PubMed] [https://doi.org/10.3390/ijms221910798 CrossRef]
* <span class="nopmbm">Dębska-Vielhaber&nbsp;G</span>, <span class="nopmbm">Miller&nbsp;I</span>, <span class="nopmbm">Peeva&nbsp;V</span>, <span class="nopmbm">Zuschratter&nbsp;W</span>, <span class="pmbm">Walczak&nbsp;J</span>, <span class="nopmbm">Schreiber&nbsp;S</span>, <span class="nopmbm">Petri&nbsp;S</span>, <span class="nopmbm">Machts&nbsp;J</span>, <span class="nopmbm">Vogt&nbsp;S</span>, <span class="nopmbm">Szczepanowska&nbsp;J</span>, <span class="nopmbm">Gellerich&nbsp;FN</span>, <span class="nopmbm">Hermann&nbsp;A</span>, <span class="nopmbm">Vielhaber&nbsp;S</span>, <span class="nopmbm">Kunz&nbsp;WS</span> '''Impairment of mitochondrial oxidative phosphorylation in skin fibroblasts of SALS and FALS patients is rescued by in vitro treatment with ROS scavengers''', ''Exp Neurol'' <u>339</u>:113620 (2021) [https://pubmed.ncbi.nlm.nih.gov/33497646 PubMed] [http://dx.doi.org/10.1016/j.expneurol.2021.113620 CrossRef]
* <span class="nopmbm">Majkut&nbsp;M</span>, <span class="nopmbm">Kwiecińska-Piróg&nbsp;J</span>, <span class="nopmbm">Wszelaczyńska&nbsp;E</span>, <span class="nopmbm">Pobereżny&nbsp;J</span>, <span class="nopmbm">Gospodarek-Komkowska&nbsp;E</span>, <span class="pmbm">Wojtacki&nbsp;K</span>, <span class="nopmbm">Barczak&nbsp;T</span>. '''Antimicrobial activity of heat-treated Polish honeys''', ''Food Chem'' <u>343</u>:128561 (2020) [https://pubmed.ncbi.nlm.nih.gov/33267984 PubMed] [https://dx.doi.org/10.1016/j.foodchem.2020.128561 CrossRef]

Revision as of 13:01, 10 February 2023

Color key: 
Lab-Affiliated Author, External Collaborator


2023

  • Korwek Z, Czerkies M, Jaruszewicz-Błońska J, Prus W, Kosiuk I, Kochańczyk M, Lipniacki T. Non-self RNA rewires IFNβ signaling: A mathematical model of the innate immune response (submitted) bioRxiv
  • Grabowski F, Kochańczyk M, Korwek Z, Czerkies M, Prus W, Lipniacki T. Antagonism between viral infection and innate immunity at the single-cell level (submitted) bioRxiv Data
  • Nałęcz-Jawecki P, Gagliardi PA, Kochańczyk M, Dessauges C, Pertz O, Lipniacki T. The rate of information transmission through the MAPK/ERK signaling pathway stimulated in a pulsatile manner (submitted) bioRxiv Data
  • Jaruszewicz-Błońska J, Kosiuk I, Prus W, Lipniacki T. A plausible identifiable model of the canonical NF-κB signaling pathway (submitted) bioRxiv
  • Rinoldi C, Ziai Y, Zargarian SS, Nakielski P, Zembrzycki K, Haghighat Bayan MA, Zakrzewska A, Fiorelli R, Lanzi M, Kostrzewska-Księżyk A, Czajkowski R, Kublik E, Kaczmarek L, Pierini F. In vivo chronic brain cortex signal recording based on a soft conductive hydrogel biointerface, ACS Appl Mater Interfaces (accepted) CrossRef
  • Paradiso A, Volpi M, Rinoldi C, Celikkin N, Contessi Negrini N, Bilgen M, Dallera G, Pierini F, Costantini M, Święszkowski W, Farè S. In vitro functional models for human liver diseases and drug screening: beyond animal testing, Biomater Sci (accepted) CrossRef
  • Wang M, Du J, Li M, Pierini F, Li X, Yu J, Ding B. In-situ forming double-crosslinked hydrogels with highly dispersed short fibers for treatment of irregular wounds, Biomater Sci (accepted) CrossRef
  • Quadretti D, Marinelli M, Salatelli E, Pierini F, Zanelli A, Lanzi M. Effects of water/alcohol soluble cationic polythiophenes as cathode interlayers for eco-friendly solar cells, Macromol Chem Phys (accepted) CrossRef


2022

  • Topolewski P, Zakrzewska KE, Walczak J, Nienałtowski K, Müller-Newen G, Singhand A, Komorowski M. Phenotypic variability, not noise, accounts for most of the cell-to-cell heterogeneity in IFN-γ and oncostatin M signaling responses, Sci Signal (2022) PubMed CrossRef
  • Zaremba D, Błoński S, Korczyk PM. Concentration on demand – a microfluidic system for precise adjustment of the content of single droplets, Chem Eng J 430(3):132935 (2022) CrossRef | PDF
  • Czerkies M, Kochańczyk M, Korwek Z, Prus W, Lipniacki T. Respiratory syncytial virus protects bystander cells against influenza A virus infection by triggering secretion of type I and type III interferons, J Virol 96:22 e01341-22 (2022) PubMed CrossRef bioRxiv
  • Grabowski F, Kochańczyk M, Lipniacki T. The spread of SARS-CoV-2 variant Omicron with the doubling time of 2.0–3.3 days can be explained by immune evasion, Viruses 14(2):294 (2022) PubMed CrossRef medRxiv | PDF Correspondence
  • Mines RC, Lipniacki T, Shen X. Slow nucleosome dynamics set the transcriptional speed limit and induce RNA polymerase II traffic jams and bursts, PLOS Comput Biol 18(2):e1009811 (2022) PubMed CrossRef
  • Rabcuka J, Blonski S, Meli A, Sowemimo-Coker S, Zaremba D, Stephenson D, Dzieciatkowska M, Nerguizian D, Cardigan R, Korczyk PM, Smethurst PA, D'Alessandro A, Swietach P. Metabolic reprogramming under hypoxic storage preserves faster oxygen unloading from stored red blood cells, Blood Adv 6(18):5415–5428 (2022) PubMed CrossRef
  • Banerjee M, Lipniacki T, d’Onofrio A, Volpert A. Epidemic model with strain-dependent transmission rate, Commun Nonlinear Sci Numer Simul 114:106641 (2022) CrossRef
  • Zakrzewska A, Haghighat Bayan MA, Nakielski P, Petronella F, De Sio L, Pierini F. Nanotechnology transition roadmap toward multifunctional stimuli-responsive face masks, ACS Appl Mater Interfaces 14(41):46123–46144 (2022) PubMed CrossRef
  • Marinelli M, Lanzi M, Pierini F, Ziai Y, Zanelli A, Quadretti D, Di Maria F, Salatelli E. Ionic push–pull polythiophenes: A further step towards eco-friendly BHJ organic solar cells, Polymers 14(19):3965 (2022) PubMed CrossRef
  • Ziai Y, Petronella F, Rinoldi C, Nakielski P, Zakrzewska A Kowalewski TA, Augustyniak W, Li X, Calogero A, Sabała I, Ding B, De Sio L, Pierini F. Chameleon-inspired multifunctional plasmonic nanoplatforms for biosensing applications, NPG Asia Mater 14:18 (2022) CrossRef
  • de Amorim Filho EC, Moreira RA, Santos FAN The Euler characteristic and topological phase transitions in complex systems, J Phys: Complexity 3:025003 (2022) CrossRef
  • Nakielski P, Rinoldi C, Pruchniewski M, Pawłowska S, Gazińska M, Strojny B, Rybak D, Jezierska-Woźniak K, Urbanek O, Denis P, Sinderewicz E, Czelejewska W, Staszkiewicz-Chodor J, Grodzik M, Ziai Y, Barczewska M, Maksymowicz W, Pierini F. Laser-assisted fabrication of injectable nanofibrous cell carriers, Small 18(2):e2104971 (2022) PubMed CrossRef
  • Liu Z, Moreira RA, Dujmović A, Liu H, Yang B, Poma AB, Nash MA. Mapping mechanostable pulling geometries of a therapeutic anticalin/CTLA-4 protein complex, Nano Lett 22(1):179–187 (2022) PubMed CrossRef
  • Liu Y, Wang Q, Liu X, Nakielski P, Pierini F, Li X, Yu J, Ding B. Highly adhesive, stretchable and breathable gelatin methacryloyl-based nanofibrous hydrogels for wound dressings, ACS Appl Bio Mater 5(3):1047–1056 (2022) PubMed CrossRef
  • Liguori A, Pandini S, Rinoldi C, Zaccheroni N, Pierini F, Focarete ML, Gualandi C. Thermo-active smart electrospun nanofibers, Macromol Rapid Commun 2100694 (2022) CrossRef | PDF
  • Glaeser JD, Bao X, Kaneda G, Avalos P, Behrens P, Salehi K, Da X, Chen A, Castaneda C, Nakielski P, Jiang W, Tawackoli W, Sheyn D. iPSC-neural crest derived cells embedded in 3D printable bio-ink promote cranial bone defect repair, Sci Rep 12:18701 (2022) PubMed CrossRef
  • Ziai Y, Rinoldi C, Nakielski P, De Sio L, Pierini F. Smart plasmonic hydrogels based on gold and silver nanoparticles for biosensing application, Curr Opin Biomed Eng 24:100413 (2022) CrossRef
  • Mahiout LA, Kaźmierczak B, Volpert V. Viral infection spreading and mutation in cell culture, Mathematics 10(2):256 (2022) CrossRef | PDF
  • La Monaca A, Girard G, Savoie S, Krachkovskiy S, Veillette R, Pierini F, Ashok V, Rosei F, Paolella A. Influence of TiIV substitution on the properties of a Li1.5Al0.5Ge1.5(PO4)3 nanofiber-based solid electrolyte, Nanoscale 14:5094–5101 (2022) PubMed CrossRef
  • Cantor D, Wojtacki K. Effects of friction and spacing on the collaborative behavior of domino toppling, Phys Rev Appl 17:064021 (2022) CrossRef
  • Komorowski M. Making sense of BMP signaling complexity, Cell Syst 13(5):349–351 (2022) PubMed CrossRef


2021

  • Błoński S, J Aureille, S Badawi, D Zaremba, L Pernet, A Grichine, S Fraboulet, PM Korczyk, P Recho, Ch Guilluy, ME Dolega. Direction of epithelial folding defines impact of mechanical forces on epithelial state, Dev Cell 56:3222–3234 (2021) [1] CrossRef
  • M Koehler, A Ray, RA Moreira, B Juniku, AB Poma, D Alsteens. Molecular insights into receptor binding energetics and neutralization of SARS-CoV-2 variants, Nat Commun 12(1):6977 (2021) PubMed CrossRef
  • Kochańczyk M & Lipniacki T. Pareto-based evaluation of national responses to COVID-19 pandemic shows that saving lives and protecting economy are non-trade-off objectives, Sci Rep 11:2425 (2021)  PubMed CrossRef medRxiv | PDF GitHub
  • Grabowski F, Preibisch G, Giziński S, Kochańczyk M, Lipniacki T. SARS-CoV-2 Variant of Concern 202012/01 has about twofold replicative advantage and acquires concerning mutations, Viruses 13(3):392 (2021) PubMed CrossRef medRxiv | PDF
  • Zaremba D, Błoński S, Korczyk PM. Integration of capillary–hydrodynamic logic circuitries for built-in control over multiple droplets in microfluidic networks, Lab Chip 21:1771 (2021) PubMed CrossRef
  • Kaźmierczak B & Sneyd J. Speed of traveling waves for monotone reaction–diffusion systems as a function of diffusion coefficients, Physica D: Nonlin Phenom 424:132940 (2021) CrossRef
  • Nienałtowski K, Rigby RE, Walczak J, Zakrzewska KE, Głów E, Rehwinkel J, Komorowski M. Fractional response analysis reveals logarithmic cytokine responses in cellular populations, Nat Commun 12:4175 (2021) PubMed CrossRef
  • Topolewski P & Komorowski M. Information-theoretic analyses of cellular strategies for achieving high signaling capacity — dynamics, cross-wiring and heterogeneity of cellular states, Curr Opin Syst Biol 27:100352 (2021) CrossRef
  • Fiebelkow J, Guendel A, Guendel B, Mehwald N, Jetka T, Komorowski M, Waldherr S, Schaper F, Dittrich A. The tyrosine phosphatase SHP2 increases robustness and information transfer within IL-6-induced JAK/STAT signalling, Cell Commun Signal 19:94 (2021) PubMed CrossRef
  • Poma A, Thu TTM, Tu LA, Hu C-K, Li MS. Nanomechanical stability of Aβ tetramers and fibril-like structures: Molecular dynamics simulations, J Phys Chem B 125(28):7628−7637 (2021) PubMed CrossRef
  • Piechocka IK, Keary S, Sosa-Costa A, Lau L, Mohan N, Stanisavljevic J, Borgman KJE, Lakadamyali M, Manzo C, Garcia-Parajo MF. Shear forces induce ICAM-1 nanoclustering onendothelial cells that impact on T-cell migration, Biophys J 120:2644–2656 (2021) PubMed CrossRef
  • Rinoldi C, Lanzi M, Fiorelli R, Nakielski P, Zembrzycki K, Kowalewski T, Urbanek O, Grippo V, Jezierska-Woźniak  K, Maksymowicz W, Camposeo A, Bilewicz R, Pisignano D, Sanai N, Pierini F. Three-dimensional printable conductive semi-interpenetrating polymer network hydrogel for neural tissue applications, Biomacromolecules 22(7):3084–3098 (2021) PubMed CrossRef | PDF
  • Rinoldi C, Zargarian SS, Nakielski P, Li X, Liguori A, Petronella G, Presutti D, Wang Q, Costantini M, De Sio L, Gualandi C, Ding B, Pierini F. Nanotechnology-assisted RNA delivery: From nucleic acid therapeutics to COVID-19 vaccines, Small Meth 5(9):2100402 (2021) PubMed CrossRef
  • Haghighat Bayan MA, Taromi FA, Lanzi  M, Pierini F. Enhanced efficiency in hollow core electrospun nanofiber-based organic solar cells, Sci Rep 11:21144 (2021) PubMed CrossRef
  • Lanzi M & Pierini F. Efficient and thermally stable BHJ solar cells based on a soluble hydroxy-functionalized regioregular polydodecylthiophene, React Funct Polym 158:104803 (2021) CrossRef
  • De Sio L, Ding B, Focsan M, Kogermann K, Pascoal-Faria P, Petronella F, Mitchell G, Zussmann E, Pierini F. Personalized reusable face masks with smart nano‐assisted destruction of pathogens for COVID‐19: A visionary road, Chem Eur J 27(20):6112–6130 (2021) PubMed CrossRef
  • Lanzi M, Quadretti D, Marinelli M, Ziai Y, Salatelli E, Pierini F. Influence of the active layer structure on the photovoltaic performance of water-soluble polythiophene-based solar cells, Polymers 13(10):1640 (2021) PubMed CrossRef
  • Guglielmelli A, Pierini F, Tabiryan N, Umeton C, Bunning TJ, De Sio L. Thermoplasmonics with gold nanoparticles: A new weapon in modern optics and biomedicine, Adv Photonics Res 2000198 (2021) CrossRef
  • Marinelli M, Candini A, Monti F, Boschi A, Zangoli M, Salatelli E, Pierini F, Lanzi M, Zanelli A, Gazzano M, Di Maria F. Push–pull thiophene-based small molecules with donor and acceptor units of varying strength for photovoltaic application: Beyond P3HT and PCBM, J Mater Chem C 9:11216–11228 (2021) CrossRef
  • Cidonio G, Costantini M, Pierini F, Scognamiglio C, Agarwal T, Barbetta A. 3D printing of biphasic inks: Beyond single-scale architectural control, J Mater Chem C (2021) 9:12489–12508 CrossRef
  • Urbanek O, Wysocka A, Nakielski P, Pierini F, Jagielska E, Sabała I. Staphylococcus aureus specific electrospun wound dressings: Influence of immobilization technique on antibacterial efficiency of novel enzybiotic, Pharmaceutics 13(5), 711 (2021) PubMed CrossRef
  • La Monac A, Girard G, Savoie S, Bertoni G, Krachkovskiy S, Vijh A, Pierini F, Rosei F, Paolella A. Synthesis of electrospun NASICON Li1.5Al0.5Ge1.5(PO4)3 solid electrolyte nanofibers by control of germanium hydrolysis, J Electrochem Soc 168(11):110512 (2021) CrossRef
  • Mahmood MI, Poma AB, Okazaki K. Optimizing Gō-MARTINI coarse-grained model for F-BAR protein on lipid membrane, Front Mol Biosci, 8:619381 PubMed CrossRef
  • Wencel A, Ciezkowska M, Wisniewska M, Zakrzewska KE, Pijanowska DG, Pluta KD. Effects of genetically modified human skin fibroblasts, stably overexpressing hepatocyte growth factor, on hepatic functions of cocultured C3A cells, Biotechnol Bioeng 118(1):72–81 (2021) PubMed CrossRef
  • Janczewska M, Szkop M, Pikus G, Kopyra K, Świątkowska A, Brygoła K, Karczmarczyk U, Walczak J, Żuk MT, Duszak J, Ciach T. PSMA targeted conjugates based on dextran, Appl Radiat Isot 167:109439 (2021) CrossRef
  • Boopathi S, Poma AB, Garduño-Juárez R. An overview of several inhibitors for Alzheimer’s disease: Characterization and failure, Int J Mol Sci 22:10798 (2021) PubMed CrossRef
  • Dębska-Vielhaber G, Miller I, Peeva V, Zuschratter W, Walczak J, Schreiber S, Petri S, Machts J, Vogt S, Szczepanowska J, Gellerich FN, Hermann A, Vielhaber S, Kunz WS Impairment of mitochondrial oxidative phosphorylation in skin fibroblasts of SALS and FALS patients is rescued by in vitro treatment with ROS scavengers, Exp Neurol 339:113620 (2021) PubMed CrossRef
  • Majkut M, Kwiecińska-Piróg J, Wszelaczyńska E, Pobereżny J, Gospodarek-Komkowska E, Wojtacki K, Barczak T. Antimicrobial activity of heat-treated Polish honeys, Food Chem 343:128561 (2020) PubMed CrossRef