Enhanced oral insulin delivery with charge-reversible lipid nanoparticles

被引:0
|
作者
Oyama, Dai [1 ,2 ]
Matayoshi, Katsuki [1 ]
Kanetaka, Soya [1 ]
Nitta, Chiori [1 ]
Koide, Hiroyuki [1 ]
Minami, Keiko [3 ]
Asai, Tomohiro [1 ]
机构
[1] Univ Shizuoka, Lab Med Biochem, Sch Pharmaceut Sci, 52-1 Yada,Suruga Ku, Shizuoka 4228526, Japan
[2] Astellas Pharma Inc, CMC Prod Management, PPM JP1, 2-5-1 Nihonbashi Honcho,Chuo Ku, Tokyo 1038411, Japan
[3] Setsunan Univ, Fac Pharmaceut Sci, 45-1 Nagaotoge Cho, Hirakata, Osaka 5730101, Japan
关键词
Dioleoylglycerophosphate-diethylenediamine; Charge-reversible; Lipid nanoparticles; Oral insulin delivery; pH-responsive; Streptozocin-induced diabetic mice; LIPOSOMES;
D O I
10.1016/j.bbrc.2025.151420
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
Oral insulin has therapeutic advantages, as it can mimic the endogenous insulin pathway and relieve patients from daily self-injections. Among the many investigated oral insulin delivery systems, lipid nanoparticle (LNP)-based drug delivery systems are considered promising platforms for improving oral insulin absorption due to their unique in vivo properties and high design flexibility. However, challenges such as toxicity and low oral bioavailability persist. Dioleoylglycerophosphate-diethylenediamine (DOP-DEDA) is a pH-responsive and charge-reversible lipid for cytosolic cargo delivery. In this study, an insulin-encapsulated DOP-DEDA-based LNP (Ins-LNP) system was developed to achieve highly biocompatible and efficient oral insulin delivery. The Ins-LNPs exhibited a positive charge at gastrointestinal pH levels of 1.2 and 6.8, suggesting enhanced stability in the acidic stomach environment and facilitating efficient absorption in the small intestine. In addition, they are noncationic at a physiological pH level of 7.4, indicating low toxicity. PEGylated Ins-LNPs had a particle size of 125.4 nm, a polydispersity index of 0.047, and an encapsulation efficiency of 57.2 %. PEGylated Ins-LNPs maintained their particle characteristics for more than 2 h in simulated gastrointestinal fluid containing digestive enzymes. They also retained 89 %, 51 %, and 44 % of insulin for 60 min in simulated gastrointestinal/physiological fluid at pH levels of 1.2, 6.8, and 7.4, respectively. Furthermore, in vivo studies using streptozocin-induced diabetic mice demonstrated a pronounced and sustained hypoglycemic effect following oral administration, characterized by a similar to 40 % reduction in blood glucose levels for over 10 h, indicative of an optimal pharmacodynamic profile. This favorable pharmacodynamic profile may mitigate the risk of clinically relevant hypoglycemia, enhancing patient compliance and overall treatment outcomes. Consequently, this research presents a promising LNP system for oral insulin delivery.
引用
收藏
页数:7
相关论文
共 50 条
  • [21] Glucose-Responsive Charge-Switchable Lipid Nanoparticles for Insulin Delivery
    Liu, Yun
    Wang, Yanfang
    Yao, Yuejun
    Zhang, Juan
    Liu, Wei
    Ji, Kangfan
    Wei, Xinwei
    Wang, Yuanwu
    Liu, Xiangsheng
    Zhang, Shiming
    Wang, Jinqiang
    Gu, Zhen
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2023, 62 (20)
  • [22] Charge-Reversible Multifunctional HPMA Copolymers for Mitochondrial Targeting
    Wang, Fengling
    Sun, Wei
    Li, Lian
    Li, Lijia
    Liu, Yuanyuan
    Zhang, Zhi-rong
    Huang, Yuan
    ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (33) : 27563 - 27574
  • [23] Design and Investigation of Alginate Coated Solid Lipid Nanoparticles for Oral Insulin Delivery
    Koland, Marina
    Anchan, Rakshitha Bhaskar
    Mukund, Sawan Ghetia
    Mulleria, Sindhoor Shridharan
    INDIAN JOURNAL OF PHARMACEUTICAL EDUCATION AND RESEARCH, 2021, 55 (02) : 383 - 394
  • [24] Glargine insulin loaded lipid nanoparticles: Oral delivery of liquid and solid oral dosage forms
    Muntoni, Elisabetta
    Anfossi, Laura
    Milla, Paola
    Marini, Elisabetta
    Ferraris, Chiara
    Capucchio, Maria T.
    Colombino, Elena
    Segale, Lorena
    Porta, Massimo
    Battaglia, Luigi
    NUTRITION METABOLISM AND CARDIOVASCULAR DISEASES, 2021, 31 (02) : 691 - 698
  • [25] Silica nanoparticles on the oral delivery of insulin
    Tan, Xinyi
    Liu, Xiaolin
    Zhang, Yan
    Zhang, Hongjuan
    Lin, Xiaoyang
    Pu, Chenguang
    Gou, Jingxin
    He, Haibing
    Yin, Tian
    Zhang, Yu
    Tang, Xing
    EXPERT OPINION ON DRUG DELIVERY, 2018, 15 (08) : 805 - 820
  • [26] POLYMERIC NANOPARTICLES FOR ORAL DELIVERY OF INSULIN
    不详
    MEDICAL-SURGICAL JOURNAL-REVISTA MEDICO-CHIRURGICALA, 2019, 123 (03): : 390 - 390
  • [27] Charge-reversible crosslinked nanoparticle for pro-apoptotic peptide delivery and synergistic photodynamic cancer therapy
    Qu, Haijing
    Chen, Han
    Cheng, Wei
    Pan, Yuqing
    Duan, Zhiran
    Wang, Yanjun
    Liang, Xing-Jie
    Xue, Xiangdong
    NANO RESEARCH, 2023, 16 (12) : 13267 - 13282
  • [28] Lipid nanoparticles as vehicles for oral delivery of insulin and insulin analogs: preliminary ex vivo and in vivo studies
    Elisabetta Muntoni
    Elisabetta Marini
    Nahid Ahmadi
    Paola Milla
    Corrado Ghè
    Alessandro Bargoni
    Maria Teresa Capucchio
    Elena Biasibetti
    Luigi Battaglia
    Acta Diabetologica, 2019, 56 : 1283 - 1292
  • [29] Lipid nanoparticles as vehicles for oral delivery of insulin and insulin analogs: preliminary ex vivo and in vivo studies
    Muntoni, Elisabetta
    Marini, Elisabetta
    Ahmadi, Nahid
    Milla, Paola
    Ghe, Corrado
    Bargoni, Alessandro
    Capucchio, Maria Teresa
    Biasibetti, Elena
    Battaglia, Luigi
    ACTA DIABETOLOGICA, 2019, 56 (12) : 1283 - 1292
  • [30] In situ rearranged multifunctional lipid nanoparticles via synergistic potentiation for oral insulin delivery
    Chu, Chenxiao
    Deng, Yaxin
    Liu, Hongbing
    Wei, Mingli
    Xu, Xiaohong
    Gou, Jingxin
    He, Haibing
    Yin, Tian
    Zhang, Yu
    Tang, Xing
    INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2023, 636