Arginine-α, β-dehydrophenylalanine Dipeptide Nanoparticles for pH-Responsive Drug Delivery

被引:16
作者
Singh, Pankaj Kumar [1 ]
Chibh, Sonika [1 ]
Dube, Taru [1 ]
Chauhan, Virander Singh [2 ]
Panda, Jiban Jyoti [1 ]
机构
[1] Inst Nano Sci & Technol, Phase 10,Sect 64, Mohali 160062, Punjab, India
[2] Int Ctr Genet Engn & Biotechnol, New Delhi 110067, India
关键词
acidic microenvironment; dipeptide nanoparticles; pH-triggered release; self-assembly; AMPHOTERICIN-B; DOXORUBICIN; CURCUMIN; HEART; ADRIAMYCIN; MECHANISMS; NANOFIBERS; TOXICITY; VEHICLES; SYSTEMS;
D O I
10.1007/s11095-017-2299-8
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Purpose Nanoparticles (NPs) exhibiting responsiveness towards pH variations in organs, tissue microenvironments and cellular compartments can significantly add on to the drug delivery potential. Here, we have developed NPs from an amphipathic dipeptide, Arginine-alpha, beta-dehydrophenylalanine (R Delta F), and tried to explore their pH responsive drug delivery potential in various cancer cells. Methods R Delta F-NPs were architectured by harnessing the process of molecular self-assembly followed by the assessment of effect of pH on NPs morphology using zetasizer, SEM and CD. FTIR and PXRD analysis of the dipeptide and doxorubicin (Dox) were carried out for compatibility assessment followed by encapsulation of Dox in R Delta F-NPs. R.F-Dox-NPs were evaluated for pH dependent release as well as for in-vitro cellular internalization and efficacy in cancer cells. Results R Delta F self-assembled to form monodispersed particles at pH 7. SEM analysis revealed a loss of overall particle morphology along with particle aggregation at highly acidic and basic pH respectively. The NPs demonstrated a slow and sustained release behaviour at pH 7 (97.64 +/- 4.71% after 36 h) in comparison to pH 2 (90.27 +/- 1.45% after 8 h) and pH 10 (96.39 +/- 3.87% after 12 h). In-vitro efficacy studies carried-out in various cancer cells revealed that R Delta F-Dox-NPs exhibited higher efficacy with 1.65, 1.95 and 13.34 fold lower IC50 values in comparison to Dox in C6, HCT-116 and AGS cell lines. Conclusions R Delta F-Dox-NPs with higher drug release at acidic pH, enhanced internalization in cancer cells along with higher cytotoxic potential can act as effective pH responsive drug delivery systems.
引用
收藏
页数:11
相关论文
共 50 条
[41]   pH-responsive chitosan copolymer synthesized via click chemistry for design of polymeric nanoparticles for targeted drug delivery [J].
Antoniraj, Mariya Gover ;
Kumari, Henry Linda Jeeva ;
Shanmugarathinam, A. ;
Kandasamy, Ruckmani .
CARBOHYDRATE RESEARCH, 2024, 542
[42]   Design and characterization of neurodurable gellan-xanthan pH-responsive hydrogels for controlled drug delivery [J].
Ramburrun, Poornima ;
Kumar, Pradeep ;
Choonara, Yahya E. ;
du Toit, Lisa C. ;
Pillay, Viness .
EXPERT OPINION ON DRUG DELIVERY, 2017, 14 (03) :291-306
[43]   Multifunctioning pH-Responsive Nanoparticles from Hierarchical Self-Assembly of Polymer Brush for Cancer Drug Delivery [J].
Shen, Youqing ;
Zhan, Yihong ;
Tang, Jianbin ;
Xu, Peisheng ;
Johnson, Patrick A. ;
Radosz, Maciej ;
Van Kirk, Edward A. ;
Murdoch, William J. .
AICHE JOURNAL, 2008, 54 (11) :2979-2989
[44]   Smart pH-responsive magnetic graphene quantum dots nanocarriers for anticancer drug delivery of curcumin [J].
Zadeh, Elham Seyyedi ;
Ghanbari, Narges ;
Salehi, Zeinab ;
Derakhti, Sorour ;
Amoabediny, Ghassem ;
Akbari, Maryam ;
Tokmedash, Mohammad Asadi .
MATERIALS CHEMISTRY AND PHYSICS, 2023, 297
[45]   pH-Responsive mineralized nanoparticles as stable nanocarriers for intracellular nitric oxide delivery [J].
Lee, Hong Jae ;
Kim, Da Eun ;
Park, Dong Jin ;
Choi, Gi Hyun ;
Yang, Dal-Nim ;
Heo, Jung Sun ;
Lee, Sang Cheon .
COLLOIDS AND SURFACES B-BIOINTERFACES, 2016, 146 :1-8
[46]   pH-responsive high stability polymeric nanoparticles for targeted delivery of anticancer therapeutics [J].
Palanikumar, L. ;
Al-Hosani, Sumaya ;
Kalmouni, Mona ;
Nguyen, Vanessa P. ;
Ali, Liaqat ;
Pasricha, Renu ;
Barrera, Francisco N. ;
Magzoub, Mazin .
COMMUNICATIONS BIOLOGY, 2020, 3 (01)
[47]   pH-responsive hydrogels with dispersed hydrophobic nanoparticles for the delivery of hydrophobic therapeutic agents [J].
Schoener, Cody A. ;
Hutson, Heather N. ;
Peppas, Nicholas A. .
POLYMER INTERNATIONAL, 2012, 61 (06) :874-879
[48]   Biodegradable and pH-Responsive Nanoparticles Designed for Site-Specific Delivery in Agriculture [J].
Hill, Megan R. ;
MacKrell, Elliot J. ;
Forsthoefel, Carl P. ;
Jensen, Shaun P. ;
Chen, Mingsheng ;
Moore, Gloria A. ;
He, Zhenli L. ;
Sumerlin, Brent S. .
BIOMACROMOLECULES, 2015, 16 (04) :1276-1282
[49]   Application of pH-Responsive Fucoidan/Chitosan Nanoparticles to Improve Oral Quercetin Delivery [J].
Barbosa, Ana Isabel ;
Costa Lima, Sofia A. ;
Reis, Salette .
MOLECULES, 2019, 24 (02)
[50]   In Vitro Drug Release and Biocatalysis from pH-Responsive Gold Nanoparticles Synthesized Using Doxycycline [J].
Kazmi, Syed Akif Raza ;
Qureshi, Muhammad Zahid ;
Ali, Shaukat ;
Masson, Jean-Francois .
LANGMUIR, 2019, 35 (49) :16266-16274