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Research Articles

Optimization of PLGA-DSPE hybrid nano-micelles with enhanced hydrophobic capacity for curcumin delivery

, ORCID Icon, , , &
Pages 843-855 | Received 23 Jun 2023, Accepted 26 Sep 2023, Published online: 06 Oct 2023

References

  • Adrar N, Bahadori F, Ceylan FD, Topçu G, Bedjou F, Capanoglu E. 2021. Stability evaluation of interdigitated liposomes prepared with a combination of 1, 2‐d istearoyl‐sn‐glycero‐3‐phosphocholine and 1, 2‐dilauroyl‐sn‐glycero‐3‐phosphocholine. J Chem Tech Biotech. 96(9):2537–2546. doi:10.1002/jctb.6793.
  • Aggarwal BB, Shishodia S, Takada Y, Banerjee S, Newman RA, Bueso-Ramos CE, Price JE. 2005. Curcumin suppresses the paclitaxel-induced nuclear factor-κB pathway in breast cancer cells and inhibits lung metastasis of human breast cancer in nude mice. Clin Cancer Res. 11(20):7490–7498. doi:10.1158/1078-0432.CCR-05-1192.
  • Ahmed L, Atif R, Eldeen TS, Yahya I, Omara A, Eltayeb M. 2019. Study the use of nanoparticles as a drug delivery system based on mathematical models for controlled release. Int J Eng Technol. 8:52–56.
  • Ashjari M, Khoee S, Mahdavian AR, Rahmatolahzadeh R. 2012. Self-assembled nanomicelles using PLGA–PEG amphiphilic block copolymer for insulin delivery: a physicochemical investigation and determination of CMC values. J Mater Sci Mater Med. 23(4):943–953. doi:10.1007/s10856-012-4562-1.
  • Bahadori F, Dag A, Durmaz H, Cakir N, Onyuksel H, Tunca U, Topcu G, Hizal G. 2014. Synthesis and characterization of biodegradable amphiphilic star and Y-shaped block copolymers as potential carriers for vinorelbine. Polymers. 6(1):214–242. doi:10.3390/polym6010214.
  • Bahadori F, Eskandari Z, Ebrahimi N, Bostan MS, Eroğlu MS, Oner ET. 2019. Development and optimization of a novel PLGA-Levan based drug delivery system for curcumin, using a quality-by-design approach. Eur J Pharm Sci. 138:105037. doi:10.1016/j.ejps.2019.105037.
  • Bahadori F, Topçu G, Eroğlu MS, Önyüksel H. 2014. A new lipid-based nano formulation of vinorelbine. AAPS PharmSciTech. 15(5):1138–1148. doi:10.1208/s12249-014-0146-3.
  • Barichello JM, Morishita M, Takayama K, Nagai T. 1999. Encapsulation of hydrophilic and lipophilic drugs in PLGA nanoparticles by the nanoprecipitation method. Drug Dev Ind Pharm. 25(4):471–476. doi:10.1081/ddc-100102197.
  • Ceylan S, Bahadori F, Akbas F. 2020. Engineering of siRNA loaded PLGA nano-particles for highly efficient silencing of GPR87 gene as a target for pancreatic cancer treatment. Pharm Dev Technol. 25(7):855–864. doi:10.1080/10837450.2020.1745232.
  • Chawla V, Chawla PA, Dhiman A. 2021. Lipid-polymer hybrid nanocarriers for delivering cancer therapeutics. In: Dua K, Mehta M, de Jesus Andreoli Pinto T et al., editors. Advanced drug delivery systems in the management of cancer. Elsevier; p. 343–350.
  • Chereddy KK, Coco R, Memvanga PB, Ucakar B, Des Rieux A, Vandermeulen G, Préat V. 2013. Combined effect of PLGA and curcumin on wound healing activity. J Control Release. 171(2):208–215. doi:10.1016/j.jconrel.2013.07.015.
  • Choi BH, Kim CG, Lim Y, Shin SY, Lee YH. 2008. Curcumin down-regulates the multidrug-resistance mdr1b gene by inhibiting the PI3K/Akt/NFκB pathway. Cancer Lett. 259(1):111–118. doi:10.1016/j.canlet.2007.10.003.
  • Danhier F, Ansorena E, Silva JM, Coco R, Le Breton A, Préat V. 2012. PLGA-based nanoparticles: an overview of biomedical applications. J Control Release. 161(2):505–522. doi:10.1016/j.jconrel.2012.01.043.
  • Eskandari Z, Bahadori F, Yenigun VB, Demiray M, Eroğlu MS, Kocyigit A, Oner ET. 2021. Levan enhanced the NF-κB suppression activity of an oral nano PLGA-curcumin formulation in breast cancer treatment. Int J Biol Macromol. 189:223–231. doi:10.1016/j.ijbiomac.2021.08.115.
  • Gardikis K, Hatziantoniou S, Viras K, Demetzos C. 2006. Effect of a bioactive curcumin derivative on DPPC membrane: a DSC and Raman spectroscopy study. Thermochim Acta. 447(1):1–4. doi:10.1016/j.tca.2006.03.007.
  • Jobin C, Bradham CA, Russo MP, Juma B, Narula AS, Brenner DA, Sartor RB. 1999. Curcumin blocks cytokine-mediated NF-κB activation and proinflammatory gene expression by inhibiting inhibitory factor I-κB kinase activity. J Immunol. 163(6):3474–3483. doi:10.4049/jimmunol.163.6.3474.
  • Kang BK, Chon SK, Kim SH, Jeong SY, Kim MS, Cho SH, Lee HB, Khang G. 2004. Controlled release of paclitaxel from microemulsion containing PLGA and evaluation of anti-tumor activity in vitro and in vivo. Int J Pharm. 286(1–2):147–156. doi:10.1016/j.ijpharm.2004.08.008.
  • Korsmeyer R, Gurny R, Doelker E, Buri P, Peppas N. 1983. Mechanisms of potassium chloride release from compressed, hydrophilic, polymeric matrices: effect of entrapped air. J Pharm Sci. 72(10):1189–1191. doi:10.1002/jps.2600721021.
  • Kumari A, Yadav SK, Yadav SC. 2010. Biodegradable polymeric nanoparticles based drug delivery systems. Colloids Surf B Biointerfaces. 75(1):1–18. doi:10.1016/j.colsurfb.2009.09.001.
  • Li Y, Duan J, Xia H, Li Y, Shu B, Duan W. 2022. Macromolecules in polysorbate 80 for injection: an important cause of anaphylactoid reactions. BMC Pharmacol Toxicol. 23(1):52. doi:10.1186/s40360-022-00591-5.
  • Lü J-M, Wang X, Marin-Muller C, Wang H, Lin PH, Yao Q, Chen C. 2009. Current advances in research and clinical applications of PLGA-based nanotechnology. Expert Rev Mol Diagn. 9(4):325–341. doi:10.1586/erm.09.15.
  • Maeda H. 2012. Macromolecular therapeutics in cancer treatment: the EPR effect and beyond. J Control Release. 164(2):138–144. doi:10.1016/j.jconrel.2012.04.038.
  • Maja L, Željko K, Mateja P. 2020. Sustainable technologies for liposome preparation. J Supercrit Fluids. 165:104984. doi:10.1016/j.supflu.2020.104984.
  • Manju S, Sreenivasan K. 2011. Conjugation of curcumin onto hyaluronic acid enhances its aqueous solubility and stability. J Colloid Interface Sci. 359(1):318–325. doi:10.1016/j.jcis.2011.03.071.
  • Marques DR, Santos L, Schopf LF, Fraga J. 2013. Analysis of poly (lactic-co-glycolic acid)/poly (isoprene) polymeric blend for application as biomaterial. Polímeros. 23(5):579–584. doi:10.4322/polimeros.2013.099.
  • Mhlwatika Z, Aderibigbe BA. 2018. Polymeric nanocarriers for the delivery of antimalarials. Molecules. 23(10):2527. doi:10.3390/molecules23102527.
  • Nair B. 1998. Final report on the safety assessment of polyvinyl alcohol. Int J Toxicol. 17(5_suppl):67–92.
  • Oliveira MB, Villa Nova M, Bruschi ML. 2018. A review of recent developments on micro/nanostructured pharmaceutical systems for intravesical therapy of the bladder cancer. Pharm Dev Technol. 23(1):1–12. doi:10.1080/10837450.2017.1312441.
  • Paramera EI, Konteles SJ, Karathanos VT. 2011. Microencapsulation of curcumin in cells of Saccharomyces cerevisiae. Food Chem. 125(3):892–902. doi:10.1016/j.foodchem.2010.09.063.
  • Passerini N, Craig D. 2001. An investigation into the effects of residual water on the glass transition temperature of polylactide microspheres using modulated temperature DSC. J Control Release. 73(1):111–115. doi:10.1016/s0168-3659(01)00245-0.
  • Sepahi S, Kiaei L, Kiaei M, Ghorani-Azam A. 2023. A systematic review of emerging technologies to enhance the treatment of ovarian cancer. Pharm Dev Technol. 28(7):660–677. doi:10.1080/10837450.2023.2233588.
  • Shaikh J, Ankola D, Beniwal V, Singh D, Kumar MR. 2009. Nanoparticle encapsulation improves oral bioavailability of curcumin by at least 9-fold when compared to curcumin administered with piperine as absorption enhancer. Eur J Pharm Sci. 37(3–4):223–230. doi:10.1016/j.ejps.2009.02.019.
  • Shen L, Liu C-C, An C-Y, Ji H-F. 2016. How does curcumin work with poor bioavailability? Clues from experimental and theoretical studies. Sci Rep. 6(1):1–10. doi:10.1038/srep20872.
  • Singh S, Aggarwal BB. 1995. Activation of transcription factor NF-κB is suppressed by curcumin (diferuloylmethane)(∗). J Biol Chem. 270(42):24995–25000. doi:10.1074/jbc.270.42.24995.
  • Song Z, Feng R, Sun M, Guo C, Gao Y, Li L, Zhai G. 2011. Curcumin-loaded PLGA-PEG-PLGA triblock copolymeric micelles: preparation, pharmacokinetics and distribution in vivo. J Colloid Interface Sci. 354(1):116–123. doi:10.1016/j.jcis.2010.10.024.
  • Sufi SA, Hoda M, Pajaniradje S, Mukherjee V, Coumar SM, Rajagopalan R. 2020. Enhanced drug retention, sustained release, and anti-cancer potential of curcumin and indole-curcumin analog-loaded polysorbate 80-stabilizied PLGA nanoparticles in colon cancer cell line SW480. Int J Pharm. 588:119738. doi:10.1016/j.ijpharm.2020.119738.
  • Tønnesen H, Másson M, Loftsson T. 2002. Studies of curcumin and curcuminoids. XXVII. Cyclodextrin complexation: solubility, chemical and photochemical stability. Int J Pharm. 244(1–2):127–135. doi:10.1016/s0378-5173(02)00323-x.
  • Vatansever O, Bahadori F, Bulut S, Eroglu MS. 2023. Coating with cationic inulin enhances the drug release profile and in vitro anticancer activity of lecithin-based nano drug delivery systems. Int J Biol Macromol. 237:123955. doi:10.1016/j.ijbiomac.2023.123955.
  • Wang F, Bronich TK, Kabanov AV, Rauh RD, Roovers J. 2005. Synthesis and evaluation of a star amphiphilic block copolymer from poly (ε-caprolactone) and poly (ethylene glycol) as a potential drug delivery carrier. Bioconjug Chem. 16(2):397–405. doi:10.1021/bc049784m.
  • Xia D, Quan P, Piao H, Piao H, Sun S, Yin Y, Cui F. 2010. Preparation of stable nitrendipine nanosuspensions using the precipitation–ultrasonication method for enhancement of dissolution and oral bioavailability. Eur J Pharm Sci. 40(4):325–334. doi:10.1016/j.ejps.2010.04.006.
  • Yallapu MM, Jaggi M, Chauhan SC. 2010. β-Cyclodextrin-curcumin self-assembly enhances curcumin delivery in prostate cancer cells. Colloids Surf B Biointerfaces. 79(1):113–125. doi:10.1016/j.colsurfb.2010.03.039.
  • Zheng C, Zheng M, Gong P, Jia D, Zhang P, Shi B, Sheng Z, Ma Y, Cai L. 2012. Indocyanine green-loaded biodegradable tumor targeting nanoprobes for in vitro and in vivo imaging. Biomaterials. 33(22):5603–5609. doi:10.1016/j.biomaterials.2012.04.044.
  • Zou L-Q, Peng S-F, Liu W, Gan L, Liu W-L, Liang R-H, Liu C-M, Niu J, Cao Y-L, Liu Z, et al. 2014. Improved in vitro digestion stability of (−)-epigallocatechin gallate through nanoliposome encapsulation. Food Res Int. 64:492–499. doi:10.1016/j.foodres.2014.07.042.

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