Metabolite-Based Modification of Poly(L-lysine) for Improved Gene Delivery

被引:18
|
作者
Urello, Morgan A. [1 ]
Xiang, Lucia [1 ]
Colombo, Raffaele [1 ]
Ma, Alexander [2 ]
Joseph, Augustine [2 ]
Boyd, Jonathan [1 ]
Peterson, Norman [3 ]
Gao, Changshou [1 ]
Wu, Herren [1 ]
Christie, R. James [1 ]
机构
[1] AstraZeneca, Antibody Discovery & Prot Engn R&D, Gaithersburg, MD 20878 USA
[2] SynChem Inc, Elk Grove Village, IL 60007 USA
[3] AstraZeneca Biopharmaceut R&D, Translat Sci, Gaithersburg, MD 20878 USA
关键词
POLYPLEX MICELLES; LINEAR POLYETHYLENIMINE; ACID; TRANSFECTION; PROTONATION; CATIOMERS; PATHWAYS; POLYMER;
D O I
10.1021/acs.biomac.0c00614
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Synthetic gene delivery systems employ multiple functions to enable safe and effective transport of DNA to target cells. Here, we describe metabolite-based poly(L-lysine) (PLL) modifiers that improve transfection by imparting both pH buffering and nanoparticle stabilization functions within a single molecular unit. PLL modifiers were based on morpholine (M), morpholine and niacin (MN), or thiomorpholine (TM). PLL modification with (MN) or (TM) imparted buffering function over the pH range of 57 both in solution and live cells and enhanced the stability of PLL DNA nanoparticles, which exhibited higher resistance to polyanion exchange and prolonged blood circulation. These properties translated into increased transfection efficiency in vitro coupled with reduced toxicity compared to unmodified PLL and PLL(M). Furthermore, PEG-PLL(MN) DNA nanoparticles transfected muscle tissue in vivo for >45 days following intramuscular injection. These polymer modifiers demonstrate the successful design of multifunctional units that improve transfection of synthetic gene delivery systems while maintaining biocompatibility.
引用
收藏
页码:3596 / 3607
页数:12
相关论文
共 50 条
  • [1] Glycopolymer modification on physicochemical and biological properties of poly(L-lysine) for gene delivery
    Zhou, Dezhong
    Li, Congxin
    Hu, Yuling
    Zhou, Hao
    Chen, Jiatong
    Zhang, Zhengpu
    Guo, Tianying
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2012, 50 (04) : 965 - 973
  • [2] Novel poly(L-lysine) particles for gene delivery
    Zhang, Xin
    Ma, Guang-Hui
    Su, Zhi-Guo
    Benkirane-Jessel, Nadia
    JOURNAL OF CONTROLLED RELEASE, 2011, 152 : E182 - E184
  • [3] A tetra(L-lysine)-grafted poly(organophosphazene) for gene delivery
    Jun, Yong Joo
    Kim, Jung Hee
    Choi, Su Jin
    Lee, Hwa Jeong
    Jun, Moo Jin
    Sohn, Youn Soo
    BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2007, 17 (11) : 2975 - 2978
  • [4] Click modification of helical amylose by poly(L-lysine) dendrons for non-viral gene delivery
    Pang, Jia-Dong
    Zhuang, Bao-Xiong
    Mai, Kaijin
    Chen, Ru-Fu
    Wang, Jie
    Zhang, Li-Ming
    MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2015, 49 : 485 - 492
  • [5] Structural advantage of dendritic poly(L-lysine) for gene delivery into cells
    Yamagata, Masato
    Kawano, Takahito
    Shiba, Kouhei
    Mori, Takeshi
    Katayama, Yoshiki
    Niidome, Takuro
    BIOORGANIC & MEDICINAL CHEMISTRY, 2007, 15 (01) : 526 - 532
  • [6] Poly(L-lysine) nanostructured particles for gene delivery and hormone stimulation
    Zhang, Xin
    Oulad-Abdelghani, Mustapha
    Zelkin, Alexander N.
    Wang, Yajun
    Haikel, Youssef
    Mainard, Didier
    Voegel, Jean-Claude
    Caruso, Frank
    Benkirane-Jessel, Nadia
    BIOMATERIALS, 2010, 31 (07) : 1699 - 1706
  • [7] Effects of the Physicochemical, Colloidal, and Biological Characteristics of Different Polymer Structures between α-Poly(L-lysine) and ε-Poly(L-lysine) on Polymeric Gene Delivery
    Kim, Kyoungnam
    Ryu, Kitae
    Choi, Yeon Su
    Cho, Yong-Yeon
    Lee, Joo Young
    Lee, Hye Suk
    Kang, Han Chang
    BIOMACROMOLECULES, 2018, 19 (07) : 2483 - 2495
  • [8] Structural Advantage of Dendritic poly(L-lysine) in Gene Delivery In Vitro and In Vivo
    Niidome, Takuro
    Yamagata, Masato
    Iida, Takayuki
    Kawano, Takahito
    Shiba, Kouhei
    Katayama, Yoshiki
    MOLECULAR THERAPY, 2006, 13 : S72 - S72
  • [9] Polyethylenimine-grafted copolymer of poly(L-lysine) and poly(ethylene glycol) for gene delivery
    Dai, Jian
    Zou, Seyin
    Pei, Yuanyuan
    Cheng, Du
    Ai, Hua
    Shuai, Xintao
    BIOMATERIALS, 2011, 32 (06) : 1694 - 1705
  • [10] mPEG-dendritic poly(l-lysine) cationic copolymers for efficient gene delivery
    Sheng, Ruilong
    Xia, Kejia
    Chen, Jian
    Xu, Yuhong
    Cao, Amin
    JOURNAL OF CONTROLLED RELEASE, 2013, 172 (01) : E112 - E112