WRAP-based nanoparticles for siRNA delivery: a SAR study and a comparison with lipid-based transfection reagents

被引:0
|
作者
Karidia Konate
Emilie Josse
Milana Tasic
Karima Redjatti
Gudrun Aldrian
Sébastien Deshayes
Prisca Boisguérin
Eric Vivès
机构
[1] PhyMedExp - Université de Montpellier,
[2] INSERM U1046,undefined
[3] CNRS UMR 9214,undefined
[4] CHU Arnaud de Villeneuve,undefined
[5] Sys2Diag,undefined
[6] UMR 9005-CNRS/ALCEDIAG,undefined
关键词
Cell-penetrating peptides; Nanoparticle; siRNA delivery; Structure–activity relationship;
D O I
暂无
中图分类号
学科分类号
摘要
Recently, we designed novel amphipathic cell-penetrating peptides, called WRAP, able to transfer efficiently siRNA molecules into cells. In order to gain more information about the relationship between amino acid composition, nanoparticle formation and cellular internalization of these peptides composed of only three amino acids (leucine, arginine and tryptophan), we performed a structure–activity relationship (SAR) study. First, we compared our WRAP1 and WRAP5 peptides with the C6M1 peptide also composed of the same three amino acids and showing similar behaviors in siRNA transfection. Afterwards, to further define the main determinants in the WRAP activity, we synthesized 13 new WRAP analogues harboring different modifications like the number and location of leucine and arginine residues, the relative location of tryptophan residues, as well as the role of the α-helix formation upon proline insertions within the native WRAP sequence. After having compared the ability of these peptides to form peptide-based nanoparticles (PBNs) using different biophysical methods and to induce a targeted gene silencing in cells, we established the main sequential requirements of the amino acid composition of the WRAP peptide. In addition, upon measuring the WRAP-based siRNA transfection ability into cells compared to several non-peptide transfection agents available on the markets, we confirmed that WRAP peptides induced an equivalent level of targeted gene silencing but in most of the cases with lower cell toxicity as clearly shown in clonogenic assays.
引用
收藏
相关论文
共 50 条
  • [21] SAINTargs, a novel lipid-based targeting device for siRNA delivery
    Leus, Niek G. J.
    Kowalski, Piotr S.
    Asgeirsdottir, Sigridur A.
    Talman, Eduard G.
    Ruiters, Marcel H. J.
    Molema, Grietje
    Kamps, Jan A. A. M.
    DRUG DISCOVERY TODAY, 2010, 15 (23-24) : 1103 - 1103
  • [22] Advances with Lipid-Based Nanosystems for siRNA Delivery to Breast Cancers
    Subhan, Md Abdus
    Filipczak, Nina
    Torchilin, Vladimir P.
    PHARMACEUTICALS, 2023, 16 (07)
  • [23] Dendritic and lipid-based carriers for gene/siRNA delivery (a review)
    Mehrabadi, Fatemeh Sheikhi
    Fischer, Wiebke
    Haag, Rainer
    CURRENT OPINION IN SOLID STATE & MATERIALS SCIENCE, 2012, 16 (06): : 310 - 322
  • [24] Lipid-based DNA/siRNA transfection agents disrupt neuronal bioenergetics and mitophagy
    Napoli, Eleonora
    Liu, Siming
    Marsilio, Ilaria
    Zarbalis, Konstantinos
    Giulivi, Cecilia
    BIOCHEMICAL JOURNAL, 2017, 474 : 3887 - 3902
  • [25] Lipid-Based Liquid Crystalline Nanoparticles Facilitate Cytosolic Delivery of siRNA via Structural Transformation
    He, Shufang
    Fan, Weiwei
    Wu, Na
    Zhu, Jingjing
    Miao, Yunqiu
    Miao, Xiaran
    Li, Feifei
    Zhang, Xinxin
    Gan, Yong
    NANO LETTERS, 2018, 18 (04) : 2411 - 2419
  • [26] Folate-linked lipid-based nanoparticles for synthetic siRNA delivery in KB tumor xenografts
    Yoshizawa, Takashi
    Hattori, Yoshiyuki
    Hakoshima, Motoki
    Koga, Kimiko
    Maitani, Yoshie
    EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2008, 70 (03) : 718 - 725
  • [27] Evaluation of lipid-based reagents to mediate intracellular gene delivery
    Faneca, H
    Simoes, S
    de Lima, MCP
    BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2002, 1567 (1-2): : 23 - 33
  • [28] Combinational use of lipid-based reagents for efficient transfection of primary fibroblasts and hepatoblasts
    Ishiguro, Kazuhiro
    Watanabe, Osamu
    Nakamura, Masanao
    Yamamura, Takeshi
    Matsushita, Masanobu
    Goto, Hidemi
    Hirooka, Yoshiki
    BIOTECHNIQUES, 2017, 63 (01) : 37 - 39
  • [29] Artefactual effects of lipid-based cell transfection reagents on AβPP processing and Aβ production
    Romano, Donna M.
    Dong, Yuanlin
    Hiltunen, Mikko
    Tanzi, Rudolph E.
    Xie, Zhongcong
    AMYLOID-JOURNAL OF PROTEIN FOLDING DISORDERS, 2006, 13 (02): : 86 - 92
  • [30] High efficiency transfection of primary skeletal muscle cells with lipid-based reagents
    Neuhuber, B
    Huang, DI
    Daniels, MP
    Torgan, CE
    MUSCLE & NERVE, 2002, 26 (01) : 136 - 140