(en) Yuan Hu, Sudipta Kumar Sinha et Sandeep Patel, « Investigating Hydrophilic Pores in Model Lipid Bilayers Using Molecular Simulations: Correlating Bilayer Properties with Pore-Formation Thermodynamics », Langmuir, vol. 31, no 24, , p. 6615-6631 (PMID25614183, PMCID4934177, DOI10.1021/la504049q, lire en ligne)
(en) Yuan Hu, Xiaorong Liu, Sudipta Kumar Sinha et Sandeep Patel, « Translocation Thermodynamics of Linear and Cyclic Nonaarginine into Model DPPC Bilayer via Coarse-Grained Molecular Dynamics Simulation: Implications of Pore Formation and Nonadditivity », The Journal of Physical Chemistry B, vol. 118, no 10, , p. 2670-2682 (PMID24506488, PMCID3983342, DOI10.1021/jp412600e, lire en ligne)
(en) Maria Lindgren, Xavier Gallet, Ursel Soomets, Mattias Hällbrink, Ebba Bråkenhielm, Margus Pooga, Robert Brasseur et Ülo Langel, « Translocation Properties of Novel Cell Penetrating Transportan and Penetratin Analogues », Bioconjugate Chemistry, vol. 11, no 5, , p. 619-626 (PMID10995204, DOI10.1021/bc990156s, lire en ligne)
(en) Thomas Plénat, Sébastien Deshayes, Sylvie Boichot, Pierre Emmanuel Milhiet, Richard B. Cole, Frédéric Heitz et Christian Le Grimellec, « Interaction of Primary Amphipathic Cell-Penetrating Peptides with Phospholipid-Supported Monolayers », Langmuir, vol. 20, no 21, , p. 9255-9261 (PMID15461515, DOI10.1021/la048622b, lire en ligne)
(en) Sébastien Deshayes, Annie Heitz, May C. Morris, Pierre Charnet, Gilles Divita et Frédéric Heitz, « Insight into the Mechanism of Internalization of the Cell-Penetrating Carrier Peptide Pep-1 through Conformational Analysis », Biochemistry, vol. 43, no 6, , p. 1449-1457 (PMID14769021, DOI10.1021/bi035682s, lire en ligne)
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(en) Elana Hariton-Gazal, Joseph Rosenbluh, Adolf Graessmann, Chaim Gilon et Abraham Loyter, « Direct translocation of histone molecules across cell membranes », Journal of Cell Science, vol. 116, no 22, , p. 4577-4586 (PMID14576351, DOI10.1242/jcs.00757, lire en ligne)
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(en) Pengwei Zhang, Gabriel Monteiro da Silva, Catherine Deatherage, Christopher Burd et Daniel DiMaio, « Cell-Penetrating Peptide Mediates Intracellular Membrane Passage of Human Papillomavirus L2 Protein to Trigger Retrograde Trafficking », Cell, vol. 174, no 6, , p. 1465-1476 (PMID30122350, PMCID6128760, DOI10.1016/j.cell.2018.07.031, lire en ligne)
(en) Maria Lindgren, Mattias Hällbrink, Alain Prochiantz, Ülo Langel, Maria Lindgren, Mattias Hällbrink, Alain Prochiantz et
Ülo Langel, « Cell-penetrating peptides », Trends in Pharmacological Sciences, vol. 21, no 3, , p. 99-103 (PMID10689363, DOI10.1016/s0165-6147(00)01447-4, lire en ligne)
(en) Mathias Lundberg, Sara Wikström et Magnus Johansson, « Cell surface adherence and endocytosis of protein transduction domains », Molecular Therapy, vol. 8, no 1, , p. 143-150 (PMID12842437, DOI10.1016/s1525-0016(03)00135-7, lire en ligne)
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(en) Francesca Milletti, « Cell-penetrating peptides: classes, origin, and current landscape », Drug Discovery Today, vol. 17, nos 15-16, 2012-08-xx, p. 850–860 (DOI10.1016/j.drudis.2012.03.002, lire en ligne, consulté le )
(en) Erez Koren et Vladimir P. Torchilin, « Cell-penetrating peptides: breaking through to the other side », Trends in Molecular Medicine, vol. 18, no 7, 2012-07-xx, p. 385–393 (DOI10.1016/j.molmed.2012.04.012, lire en ligne, consulté le )
(en) Ewerton Cristhian Lima de Oliveira, Kauê Santana, Luiz Josino et Anderson Henrique Lima e Lima, « Predicting cell-penetrating peptides using machine learning algorithms and navigating in their chemical space », Scientific Reports, vol. 11, no 1, 2021-12-xx, p. 7628 (ISSN2045-2322, PMID33828175, PMCIDPMC8027643, DOI10.1038/s41598-021-87134-w, lire en ligne, consulté le )
(en) Kelly M. Stewart, Kristin L. Horton et Shana O. Kelley, « Cell-penetrating Peptides as Delivery Vehicles for Biology and Medicine », Organic & Biomolecular Chemistry, vol. 6, no 13, , p. 2242-2255 (PMID18563254, DOI10.1039/b719950c, lire en ligne)
(en) Kylie M. Wagstaff et David A. Jans, « Protein Transduction: Cell Penetrating Peptides and Their Therapeutic Applications », Current Medicinal Chemistry, vol. 13, no 12, , p. 1371-1387 (PMID16719783, DOI10.2174/092986706776872871, lire en ligne)
(en) Masahiro Okuyama, Heike Laman, Sarah R. Kingsbury, Cristina Visintin, Elisabetta Leo, Kathryn Leigh Eward, Kai Stoeber, Chris Boshoff, Gareth H. Williams et David L. Selwood, « Small-molecule mimics of an α-helix for efficient transport of proteins into cells », Nature Methods, vol. 4, no 2, , p. 153-159 (PMID17220893, DOI10.1038/nmeth997, lire en ligne)
(en) Alexandre Avrameas, Thérèse Ternynck, Faridabano Nato, Gérard Buttin et Stratis Avrameas, « Polyreactive anti-DNA monoclonal antibodies and a derived peptide as vectors for the intracytoplasmic and intranuclear translocation of macromolecules », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 10, , p. 5601-5606 (PMID9576929, PMCID20424, DOI10.1073/pnas.95.10.5601, JSTOR45132, Bibcode1998PNAS...95.5601A, lire en ligne)
(en) Elana Hariton-Gazal, Joseph Rosenbluh, Adolf Graessmann, Chaim Gilon et Abraham Loyter, « Direct translocation of histone molecules across cell membranes », Journal of Cell Science, vol. 116, no 22, , p. 4577-4586 (PMID14576351, DOI10.1242/jcs.00757, lire en ligne)
(en) Pengwei Zhang, Gabriel Monteiro da Silva, Catherine Deatherage, Christopher Burd et Daniel DiMaio, « Cell-Penetrating Peptide Mediates Intracellular Membrane Passage of Human Papillomavirus L2 Protein to Trigger Retrograde Trafficking », Cell, vol. 174, no 6, , p. 1465-1476 (PMID30122350, PMCID6128760, DOI10.1016/j.cell.2018.07.031, lire en ligne)
(en) Joanna B. Opalinska et Alan M. Gewirtz, « Nucleic-acid therapeutics: basic principles and recent applications », Nature Reviews Drug Discoveries, vol. 1, no 7, , p. 503-514 (PMID12120257, DOI10.1038/nrd837, lire en ligne)
(en) Fritz Eckstein, « The versatility of oligonucleotides as potential therapeutics », Expert Opinion on Biological Therapy, vol. 7, no 7, , p. 1021-1034 (PMID17665991, DOI10.1517/14712598.7.7.1021, lire en ligne)
(en) Dan Luo et W. Mark Saltzman, « Synthetic DNA delivery systems », Nature Biotechnology, vol. 18, no 1, , p. 33-37 (PMID10625387, DOI10.1038/71889, lire en ligne)
(en) Eric Vivès, Priscille Brodin et Bernard Lebleu, « A Truncated HIV-1 Tat Protein Basic Domain Rapidly Translocates through the Plasma Membrane and Accumulates in the Cell Nucleus », Journal of Biological Chemistry, vol. 272, no 25, , p. 16010-16017 (PMID9188504, DOI10.1074/jbc.272.25.16010, lire en ligne)
(en) Olivier Zelphati et Francis C. Szoka Jr, « Intracellular Distribution and Mechanism of Delivery of Oligonucleotides Mediated by Cationic Lipids », Pharmaceutical Research, vol. 13, no 9, , p. 1367-1372 (PMID8893276, DOI10.1023/a:1016026101195, lire en ligne)
(en) Henry D. Herce et Angel E. Garcia, « Molecular dynamics simulations suggest a mechanism for translocation of the HIV-1 TAT peptide across lipid membranes », Proceedings of the National Academy of Sciences of the United States of America, vol. 104, no 52, , p. 20805-20810 (PMID18093956, PMCID2409222, DOI10.1073/pnas.0706574105, Bibcode2007PNAS..10420805H, lire en ligne)
(en) Yuan Hu, Sudipta Kumar Sinha et Sandeep Patel, « Investigating Hydrophilic Pores in Model Lipid Bilayers Using Molecular Simulations: Correlating Bilayer Properties with Pore-Formation Thermodynamics », Langmuir, vol. 31, no 24, , p. 6615-6631 (PMID25614183, PMCID4934177, DOI10.1021/la504049q, lire en ligne)
(en) Yuan Hu, Xiaorong Liu, Sudipta Kumar Sinha et Sandeep Patel, « Translocation Thermodynamics of Linear and Cyclic Nonaarginine into Model DPPC Bilayer via Coarse-Grained Molecular Dynamics Simulation: Implications of Pore Formation and Nonadditivity », The Journal of Physical Chemistry B, vol. 118, no 10, , p. 2670-2682 (PMID24506488, PMCID3983342, DOI10.1021/jp412600e, lire en ligne)
(en) Yuan Hua et Sandeep Patel, « Thermodynamics of cell-penetrating HIV1 TAT peptide insertion into PC/PS/CHOL model bilayers through transmembrane pores: the roles of cholesterol and anionic lipids », Soft Matter, vol. 12, no 32, , p. 6716-6727 (PMID27435187, DOI10.1039/c5sm01696g, Bibcode2016SMat...12.6716H, lire en ligne)
(en) Maria Lindgren, Xavier Gallet, Ursel Soomets, Mattias Hällbrink, Ebba Bråkenhielm, Margus Pooga, Robert Brasseur et Ülo Langel, « Translocation Properties of Novel Cell Penetrating Transportan and Penetratin Analogues », Bioconjugate Chemistry, vol. 11, no 5, , p. 619-626 (PMID10995204, DOI10.1021/bc990156s, lire en ligne)
(en) Maria Lindgren, Mattias Hällbrink, Alain Prochiantz, Ülo Langel, Maria Lindgren, Mattias Hällbrink, Alain Prochiantz et
Ülo Langel, « Cell-penetrating peptides », Trends in Pharmacological Sciences, vol. 21, no 3, , p. 99-103 (PMID10689363, DOI10.1016/s0165-6147(00)01447-4, lire en ligne)
(en) Mathias Lundberg et Magnus Johansson, « Is VP22 nuclear homing an artifact? », Nature Biotechnology, vol. 19, no 8, , p. 713-714 (PMID11479552, DOI10.1038/90741, lire en ligne)
(en) Mathias Lundberg, Sara Wikström et Magnus Johansson, « Cell surface adherence and endocytosis of protein transduction domains », Molecular Therapy, vol. 8, no 1, , p. 143-150 (PMID12842437, DOI10.1016/s1525-0016(03)00135-7, lire en ligne)
(en) J. Howl, I. D. Nicholl et S. Jones, « The many futures for cell-penetrating peptides: how soon is now? », Biochemical Society Transaction, vol. 35, no 4, , p. 767-769 (PMID17635144, DOI10.1042/BST0350767, lire en ligne)
(en) Thomas Plénat, Sébastien Deshayes, Sylvie Boichot, Pierre Emmanuel Milhiet, Richard B. Cole, Frédéric Heitz et Christian Le Grimellec, « Interaction of Primary Amphipathic Cell-Penetrating Peptides with Phospholipid-Supported Monolayers », Langmuir, vol. 20, no 21, , p. 9255-9261 (PMID15461515, DOI10.1021/la048622b, lire en ligne)
(en) Sébastien Deshayes, Sabine Gerbal-Chaloin, May C. Morris, Gudrun Aldrian-Herrada, Pierre Charnet, Gilles Divita et Frédéric Heitz, « On the mechanism of non-endosomial peptide-mediated cellular delivery of nucleic acids », Biochimica et Biophysica Acta (BBA) - Biomembranes, vol. 1667, no 2, , p. 141-147 (PMID15581849, DOI10.1016/j.bbamem.2004.09.010, lire en ligne)
(en) Sébastien Deshayes, Annie Heitz, May C. Morris, Pierre Charnet, Gilles Divita et Frédéric Heitz, « Insight into the Mechanism of Internalization of the Cell-Penetrating Carrier Peptide Pep-1 through Conformational Analysis », Biochemistry, vol. 43, no 6, , p. 1449-1457 (PMID14769021, DOI10.1021/bi035682s, lire en ligne)
elsevier.com
linkinghub.elsevier.com
(en) Francesca Milletti, « Cell-penetrating peptides: classes, origin, and current landscape », Drug Discovery Today, vol. 17, nos 15-16, 2012-08-xx, p. 850–860 (DOI10.1016/j.drudis.2012.03.002, lire en ligne, consulté le )
(en) Erez Koren et Vladimir P. Torchilin, « Cell-penetrating peptides: breaking through to the other side », Trends in Molecular Medicine, vol. 18, no 7, 2012-07-xx, p. 385–393 (DOI10.1016/j.molmed.2012.04.012, lire en ligne, consulté le )
harvard.edu
ui.adsabs.harvard.edu
(en) Alexandre Avrameas, Thérèse Ternynck, Faridabano Nato, Gérard Buttin et Stratis Avrameas, « Polyreactive anti-DNA monoclonal antibodies and a derived peptide as vectors for the intracytoplasmic and intranuclear translocation of macromolecules », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 10, , p. 5601-5606 (PMID9576929, PMCID20424, DOI10.1073/pnas.95.10.5601, JSTOR45132, Bibcode1998PNAS...95.5601A, lire en ligne)
(en) Henry D. Herce et Angel E. Garcia, « Molecular dynamics simulations suggest a mechanism for translocation of the HIV-1 TAT peptide across lipid membranes », Proceedings of the National Academy of Sciences of the United States of America, vol. 104, no 52, , p. 20805-20810 (PMID18093956, PMCID2409222, DOI10.1073/pnas.0706574105, Bibcode2007PNAS..10420805H, lire en ligne)
(en) Yuan Hua et Sandeep Patel, « Thermodynamics of cell-penetrating HIV1 TAT peptide insertion into PC/PS/CHOL model bilayers through transmembrane pores: the roles of cholesterol and anionic lipids », Soft Matter, vol. 12, no 32, , p. 6716-6727 (PMID27435187, DOI10.1039/c5sm01696g, Bibcode2016SMat...12.6716H, lire en ligne)
ingentaconnect.com
(en) Kylie M. Wagstaff et David A. Jans, « Protein Transduction: Cell Penetrating Peptides and Their Therapeutic Applications », Current Medicinal Chemistry, vol. 13, no 12, , p. 1371-1387 (PMID16719783, DOI10.2174/092986706776872871, lire en ligne)
issn.org
portal.issn.org
(en) Ewerton Cristhian Lima de Oliveira, Kauê Santana, Luiz Josino et Anderson Henrique Lima e Lima, « Predicting cell-penetrating peptides using machine learning algorithms and navigating in their chemical space », Scientific Reports, vol. 11, no 1, 2021-12-xx, p. 7628 (ISSN2045-2322, PMID33828175, PMCIDPMC8027643, DOI10.1038/s41598-021-87134-w, lire en ligne, consulté le )
jbc.org
(en) Eric Vivès, Priscille Brodin et Bernard Lebleu, « A Truncated HIV-1 Tat Protein Basic Domain Rapidly Translocates through the Plasma Membrane and Accumulates in the Cell Nucleus », Journal of Biological Chemistry, vol. 272, no 25, , p. 16010-16017 (PMID9188504, DOI10.1074/jbc.272.25.16010, lire en ligne)
jstor.org
(en) Alexandre Avrameas, Thérèse Ternynck, Faridabano Nato, Gérard Buttin et Stratis Avrameas, « Polyreactive anti-DNA monoclonal antibodies and a derived peptide as vectors for the intracytoplasmic and intranuclear translocation of macromolecules », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 10, , p. 5601-5606 (PMID9576929, PMCID20424, DOI10.1073/pnas.95.10.5601, JSTOR45132, Bibcode1998PNAS...95.5601A, lire en ligne)
nature.com
(en) Ewerton Cristhian Lima de Oliveira, Kauê Santana, Luiz Josino et Anderson Henrique Lima e Lima, « Predicting cell-penetrating peptides using machine learning algorithms and navigating in their chemical space », Scientific Reports, vol. 11, no 1, 2021-12-xx, p. 7628 (ISSN2045-2322, PMID33828175, PMCIDPMC8027643, DOI10.1038/s41598-021-87134-w, lire en ligne, consulté le )
(en) Masahiro Okuyama, Heike Laman, Sarah R. Kingsbury, Cristina Visintin, Elisabetta Leo, Kathryn Leigh Eward, Kai Stoeber, Chris Boshoff, Gareth H. Williams et David L. Selwood, « Small-molecule mimics of an α-helix for efficient transport of proteins into cells », Nature Methods, vol. 4, no 2, , p. 153-159 (PMID17220893, DOI10.1038/nmeth997, lire en ligne)
(en) Joanna B. Opalinska et Alan M. Gewirtz, « Nucleic-acid therapeutics: basic principles and recent applications », Nature Reviews Drug Discoveries, vol. 1, no 7, , p. 503-514 (PMID12120257, DOI10.1038/nrd837, lire en ligne)
(en) Dan Luo et W. Mark Saltzman, « Synthetic DNA delivery systems », Nature Biotechnology, vol. 18, no 1, , p. 33-37 (PMID10625387, DOI10.1038/71889, lire en ligne)
(en) Mathias Lundberg et Magnus Johansson, « Is VP22 nuclear homing an artifact? », Nature Biotechnology, vol. 19, no 8, , p. 713-714 (PMID11479552, DOI10.1038/90741, lire en ligne)
nih.gov
ncbi.nlm.nih.gov
(en) Ewerton Cristhian Lima de Oliveira, Kauê Santana, Luiz Josino et Anderson Henrique Lima e Lima, « Predicting cell-penetrating peptides using machine learning algorithms and navigating in their chemical space », Scientific Reports, vol. 11, no 1, 2021-12-xx, p. 7628 (ISSN2045-2322, PMID33828175, PMCIDPMC8027643, DOI10.1038/s41598-021-87134-w, lire en ligne, consulté le )
(en) Kelly M. Stewart, Kristin L. Horton et Shana O. Kelley, « Cell-penetrating Peptides as Delivery Vehicles for Biology and Medicine », Organic & Biomolecular Chemistry, vol. 6, no 13, , p. 2242-2255 (PMID18563254, DOI10.1039/b719950c, lire en ligne)
(en) Kylie M. Wagstaff et David A. Jans, « Protein Transduction: Cell Penetrating Peptides and Their Therapeutic Applications », Current Medicinal Chemistry, vol. 13, no 12, , p. 1371-1387 (PMID16719783, DOI10.2174/092986706776872871, lire en ligne)
(en) Masahiro Okuyama, Heike Laman, Sarah R. Kingsbury, Cristina Visintin, Elisabetta Leo, Kathryn Leigh Eward, Kai Stoeber, Chris Boshoff, Gareth H. Williams et David L. Selwood, « Small-molecule mimics of an α-helix for efficient transport of proteins into cells », Nature Methods, vol. 4, no 2, , p. 153-159 (PMID17220893, DOI10.1038/nmeth997, lire en ligne)
(en) Alexandre Avrameas, Thérèse Ternynck, Faridabano Nato, Gérard Buttin et Stratis Avrameas, « Polyreactive anti-DNA monoclonal antibodies and a derived peptide as vectors for the intracytoplasmic and intranuclear translocation of macromolecules », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 10, , p. 5601-5606 (PMID9576929, PMCID20424, DOI10.1073/pnas.95.10.5601, JSTOR45132, Bibcode1998PNAS...95.5601A, lire en ligne)
(en) Elana Hariton-Gazal, Joseph Rosenbluh, Adolf Graessmann, Chaim Gilon et Abraham Loyter, « Direct translocation of histone molecules across cell membranes », Journal of Cell Science, vol. 116, no 22, , p. 4577-4586 (PMID14576351, DOI10.1242/jcs.00757, lire en ligne)
(en) Pengwei Zhang, Gabriel Monteiro da Silva, Catherine Deatherage, Christopher Burd et Daniel DiMaio, « Cell-Penetrating Peptide Mediates Intracellular Membrane Passage of Human Papillomavirus L2 Protein to Trigger Retrograde Trafficking », Cell, vol. 174, no 6, , p. 1465-1476 (PMID30122350, PMCID6128760, DOI10.1016/j.cell.2018.07.031, lire en ligne)
(en) Joanna B. Opalinska et Alan M. Gewirtz, « Nucleic-acid therapeutics: basic principles and recent applications », Nature Reviews Drug Discoveries, vol. 1, no 7, , p. 503-514 (PMID12120257, DOI10.1038/nrd837, lire en ligne)
(en) Fritz Eckstein, « The versatility of oligonucleotides as potential therapeutics », Expert Opinion on Biological Therapy, vol. 7, no 7, , p. 1021-1034 (PMID17665991, DOI10.1517/14712598.7.7.1021, lire en ligne)
(en) Dan Luo et W. Mark Saltzman, « Synthetic DNA delivery systems », Nature Biotechnology, vol. 18, no 1, , p. 33-37 (PMID10625387, DOI10.1038/71889, lire en ligne)
(en) Eric Vivès, Priscille Brodin et Bernard Lebleu, « A Truncated HIV-1 Tat Protein Basic Domain Rapidly Translocates through the Plasma Membrane and Accumulates in the Cell Nucleus », Journal of Biological Chemistry, vol. 272, no 25, , p. 16010-16017 (PMID9188504, DOI10.1074/jbc.272.25.16010, lire en ligne)
(en) Olivier Zelphati et Francis C. Szoka Jr, « Intracellular Distribution and Mechanism of Delivery of Oligonucleotides Mediated by Cationic Lipids », Pharmaceutical Research, vol. 13, no 9, , p. 1367-1372 (PMID8893276, DOI10.1023/a:1016026101195, lire en ligne)
(en) Henry D. Herce et Angel E. Garcia, « Molecular dynamics simulations suggest a mechanism for translocation of the HIV-1 TAT peptide across lipid membranes », Proceedings of the National Academy of Sciences of the United States of America, vol. 104, no 52, , p. 20805-20810 (PMID18093956, PMCID2409222, DOI10.1073/pnas.0706574105, Bibcode2007PNAS..10420805H, lire en ligne)
(en) Yuan Hu, Sudipta Kumar Sinha et Sandeep Patel, « Investigating Hydrophilic Pores in Model Lipid Bilayers Using Molecular Simulations: Correlating Bilayer Properties with Pore-Formation Thermodynamics », Langmuir, vol. 31, no 24, , p. 6615-6631 (PMID25614183, PMCID4934177, DOI10.1021/la504049q, lire en ligne)
(en) Yuan Hu, Xiaorong Liu, Sudipta Kumar Sinha et Sandeep Patel, « Translocation Thermodynamics of Linear and Cyclic Nonaarginine into Model DPPC Bilayer via Coarse-Grained Molecular Dynamics Simulation: Implications of Pore Formation and Nonadditivity », The Journal of Physical Chemistry B, vol. 118, no 10, , p. 2670-2682 (PMID24506488, PMCID3983342, DOI10.1021/jp412600e, lire en ligne)
(en) Yuan Hua et Sandeep Patel, « Thermodynamics of cell-penetrating HIV1 TAT peptide insertion into PC/PS/CHOL model bilayers through transmembrane pores: the roles of cholesterol and anionic lipids », Soft Matter, vol. 12, no 32, , p. 6716-6727 (PMID27435187, DOI10.1039/c5sm01696g, Bibcode2016SMat...12.6716H, lire en ligne)
(en) Maria Lindgren, Xavier Gallet, Ursel Soomets, Mattias Hällbrink, Ebba Bråkenhielm, Margus Pooga, Robert Brasseur et Ülo Langel, « Translocation Properties of Novel Cell Penetrating Transportan and Penetratin Analogues », Bioconjugate Chemistry, vol. 11, no 5, , p. 619-626 (PMID10995204, DOI10.1021/bc990156s, lire en ligne)
(en) Maria Lindgren, Mattias Hällbrink, Alain Prochiantz, Ülo Langel, Maria Lindgren, Mattias Hällbrink, Alain Prochiantz et
Ülo Langel, « Cell-penetrating peptides », Trends in Pharmacological Sciences, vol. 21, no 3, , p. 99-103 (PMID10689363, DOI10.1016/s0165-6147(00)01447-4, lire en ligne)
(en) Mathias Lundberg et Magnus Johansson, « Is VP22 nuclear homing an artifact? », Nature Biotechnology, vol. 19, no 8, , p. 713-714 (PMID11479552, DOI10.1038/90741, lire en ligne)
(en) Mathias Lundberg, Sara Wikström et Magnus Johansson, « Cell surface adherence and endocytosis of protein transduction domains », Molecular Therapy, vol. 8, no 1, , p. 143-150 (PMID12842437, DOI10.1016/s1525-0016(03)00135-7, lire en ligne)
(en) J. Howl, I. D. Nicholl et S. Jones, « The many futures for cell-penetrating peptides: how soon is now? », Biochemical Society Transaction, vol. 35, no 4, , p. 767-769 (PMID17635144, DOI10.1042/BST0350767, lire en ligne)
(en) Thomas Plénat, Sébastien Deshayes, Sylvie Boichot, Pierre Emmanuel Milhiet, Richard B. Cole, Frédéric Heitz et Christian Le Grimellec, « Interaction of Primary Amphipathic Cell-Penetrating Peptides with Phospholipid-Supported Monolayers », Langmuir, vol. 20, no 21, , p. 9255-9261 (PMID15461515, DOI10.1021/la048622b, lire en ligne)
(en) Sébastien Deshayes, Sabine Gerbal-Chaloin, May C. Morris, Gudrun Aldrian-Herrada, Pierre Charnet, Gilles Divita et Frédéric Heitz, « On the mechanism of non-endosomial peptide-mediated cellular delivery of nucleic acids », Biochimica et Biophysica Acta (BBA) - Biomembranes, vol. 1667, no 2, , p. 141-147 (PMID15581849, DOI10.1016/j.bbamem.2004.09.010, lire en ligne)
(en) Sébastien Deshayes, Annie Heitz, May C. Morris, Pierre Charnet, Gilles Divita et Frédéric Heitz, « Insight into the Mechanism of Internalization of the Cell-Penetrating Carrier Peptide Pep-1 through Conformational Analysis », Biochemistry, vol. 43, no 6, , p. 1449-1457 (PMID14769021, DOI10.1021/bi035682s, lire en ligne)
(en) Alexandre Avrameas, Thérèse Ternynck, Faridabano Nato, Gérard Buttin et Stratis Avrameas, « Polyreactive anti-DNA monoclonal antibodies and a derived peptide as vectors for the intracytoplasmic and intranuclear translocation of macromolecules », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 10, , p. 5601-5606 (PMID9576929, PMCID20424, DOI10.1073/pnas.95.10.5601, JSTOR45132, Bibcode1998PNAS...95.5601A, lire en ligne)
(en) Henry D. Herce et Angel E. Garcia, « Molecular dynamics simulations suggest a mechanism for translocation of the HIV-1 TAT peptide across lipid membranes », Proceedings of the National Academy of Sciences of the United States of America, vol. 104, no 52, , p. 20805-20810 (PMID18093956, PMCID2409222, DOI10.1073/pnas.0706574105, Bibcode2007PNAS..10420805H, lire en ligne)
portlandpress.com
(en) J. Howl, I. D. Nicholl et S. Jones, « The many futures for cell-penetrating peptides: how soon is now? », Biochemical Society Transaction, vol. 35, no 4, , p. 767-769 (PMID17635144, DOI10.1042/BST0350767, lire en ligne)
rsc.org
pubs.rsc.org
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