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Published in: Graefe's Archive for Clinical and Experimental Ophthalmology 11/2017

01-11-2017 | Basic Science

A new strategy to sustained release of ocular drugs by one-step drug-loaded microcapsule manufacturing in hydrogel punctal plugs

Authors: Jiajun Xie, Changjun Wang, Qingyao Ning, Qi Gao, Changyou Gao, Zhongru Gou, Juan Ye

Published in: Graefe's Archive for Clinical and Experimental Ophthalmology | Issue 11/2017

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Abstract

Purpose

To design an injectable hyaluronate (HA)-based hydrogel system that contains drug-loaded microcapsules as resorbable plugs to deliver ocular drugs.

Methods

In-situ drug-loaded, core-shell-structured chitosan (CS)@HA microcapsules were fabricated via HA hydrosol collecting in electrospun bead-rich CS fibers under continuous stirring. An injectable and cytocompatible hydrogel system with different degrees of chemical crosslinking maintained viscoelastic and sustained drug release for a long-term period of time at body temperature in vitro.

Results

With the addition of adipic dihydrazide (ADH) or 1-Ethyl-3-(3-dimethyllaminopropyl) carbodiimide hydrochloride (EDCI), HA hydrosols transited from liquid to solid state at the gel point, with the G′/G″ ratio varying between 1.43 and 5.32 as a function of crosslinker concentration in the hydrogel phase. Ofloxacin (OFL) release from the mechanically mixed hydrosol system (CS-HA-A0-E0) and the micro-encapsulated hydrosol formulation (CS@HA-A0-E0) were respectively over 80% and 51% of the total drug load leaching out within 24 h. As for the drug-mixed hydrogel systems with low (CS-HA-A0.06-E0.15) and high (CS-HA-A0.06-E0.30) crosslinking density, the OFL release rate reached 38.5 and 46.6% respectively, while the micro-encapsulated hydrogel systems with low (CS@HA-A0.06-E0.15) and high (CS@HA-A0.6-E0.30) showed only (11.9 ± 2.7)% and (17.4 ± 3.5)% drug release respectively.

Conclusions

A one-step in-situ drug-capsulizing method is developed to fabricate a resorbable hydrogel punctal plug with extended drug release. The chemistry of the crosslinking reaction involves the formation of highly biocompatible HA derivatives. Thus, the hydrogel can be used directly in the tear drainage canalicular system.
Literature
1.
go back to reference Patel HA, Patel JK, Patel KN, Patel RR (2010) Ophthalmic drug delivery system—a review. Der Pharmacia Lettre 2:100–115 Patel HA, Patel JK, Patel KN, Patel RR (2010) Ophthalmic drug delivery system—a review. Der Pharmacia Lettre 2:100–115
2.
go back to reference Ahmed I (2003) The noncorneal route in ocular drug delivery. In: Ak M (ed) Drugs and the pharmaceutical sciences. Marcel Dekker, New York, pp 335–363 Ahmed I (2003) The noncorneal route in ocular drug delivery. In: Ak M (ed) Drugs and the pharmaceutical sciences. Marcel Dekker, New York, pp 335–363
3.
go back to reference Kass MA, Hodapp E, Gordon M et al (1982) Part I. Patient administration of eyedrops: interview. Ann Ophthalmol 14:775–779PubMed Kass MA, Hodapp E, Gordon M et al (1982) Part I. Patient administration of eyedrops: interview. Ann Ophthalmol 14:775–779PubMed
6.
go back to reference Wei CP, Anderson JA, Leopold I (1978) Ocular absorption and metabolism of topically applied epinephrine and a dipivalyl ester of epinephrine. Invest Ophthalmol Vis Sci 17:315–321PubMed Wei CP, Anderson JA, Leopold I (1978) Ocular absorption and metabolism of topically applied epinephrine and a dipivalyl ester of epinephrine. Invest Ophthalmol Vis Sci 17:315–321PubMed
8.
go back to reference Hellberg MR, Ke T-L, Haggard K et al (2004) The hydrolysis of the prostaglandin analog prodrug bimatoprost to 17-phenyl-trinor PGF2α by human and rabbit ocular tissue. J Ocul Pharmacol Ther 19:97–103. doi:10.1089/108076803321637627 CrossRef Hellberg MR, Ke T-L, Haggard K et al (2004) The hydrolysis of the prostaglandin analog prodrug bimatoprost to 17-phenyl-trinor PGF2α by human and rabbit ocular tissue. J Ocul Pharmacol Ther 19:97–103. doi:10.​1089/​1080768033216376​27 CrossRef
9.
go back to reference Aikawa T, Ito S, Shinohara M et al (2015) A drug formulation using an alginate hydrogel matrix for efficient oral delivery of the manganese porphyrin-based superoxide dismutase mimic. Biomater Sci 3:861–869. doi:10.1039/C5BM00056D CrossRefPubMed Aikawa T, Ito S, Shinohara M et al (2015) A drug formulation using an alginate hydrogel matrix for efficient oral delivery of the manganese porphyrin-based superoxide dismutase mimic. Biomater Sci 3:861–869. doi:10.​1039/​C5BM00056D CrossRefPubMed
12.
go back to reference Tang J, Li L, Howard CB et al (2015) Preparation of optimized lipid-coated calcium phosphate nanoparticles for enhanced in vitro gene delivery to breast cancer cells. J Mater Chem B 3:6805–6812. doi:10.1039/C5TB00912J CrossRef Tang J, Li L, Howard CB et al (2015) Preparation of optimized lipid-coated calcium phosphate nanoparticles for enhanced in vitro gene delivery to breast cancer cells. J Mater Chem B 3:6805–6812. doi:10.​1039/​C5TB00912J CrossRef
13.
go back to reference Liu F, He X, Zhang J et al (2015) Controllable synthesis of polydopamine nanoparticles in microemulsions with pH-activatable properties for cancer detection and treatment. J Mater Chem B 3:6731–6739CrossRef Liu F, He X, Zhang J et al (2015) Controllable synthesis of polydopamine nanoparticles in microemulsions with pH-activatable properties for cancer detection and treatment. J Mater Chem B 3:6731–6739CrossRef
21.
go back to reference Yang H-Y, FUJISHIMA H, Toda I et al (1997) Lacrimal punctal occlusion for the treatment of superior limbic keratoconjunctivitis. Am J Ophthalmol 124:80–87CrossRefPubMed Yang H-Y, FUJISHIMA H, Toda I et al (1997) Lacrimal punctal occlusion for the treatment of superior limbic keratoconjunctivitis. Am J Ophthalmol 124:80–87CrossRefPubMed
23.
go back to reference Rumelt S, Remulla H, Rubin PAD (1997) Silicone punctal plug migration resulting in dacryocystitis and canaliculitis. Cornea 16:377CrossRefPubMed Rumelt S, Remulla H, Rubin PAD (1997) Silicone punctal plug migration resulting in dacryocystitis and canaliculitis. Cornea 16:377CrossRefPubMed
25.
go back to reference Taban M, Chen B, Perry JD (2006) Update on punctal plugs. Compr Ophthalmol Updat 7:205–212 Taban M, Chen B, Perry JD (2006) Update on punctal plugs. Compr Ophthalmol Updat 7:205–212
26.
go back to reference Ye J, Wang C, Su P et al (2010) Biochemically active hydrosol as a means of collecting electrospun microcapsules for drug delivery. J Mater Chem 20:9025–9028. doi:10.1039/C0JM02581J CrossRef Ye J, Wang C, Su P et al (2010) Biochemically active hydrosol as a means of collecting electrospun microcapsules for drug delivery. J Mater Chem 20:9025–9028. doi:10.​1039/​C0JM02581J CrossRef
27.
go back to reference State Drug Administration Jinan Medical Device Quality Supervision and Inspection (2003) Center GB/T 16886.5 Biological evaluation of medical devices—Part 5: Tests for cytotoxicity: In-vitro methods, Beijing State Drug Administration Jinan Medical Device Quality Supervision and Inspection (2003) Center GB/T 16886.5 Biological evaluation of medical devices—Part 5: Tests for cytotoxicity: In-vitro methods, Beijing
28.
go back to reference Kumar A, Malviya R, Sharma PK (2011) Recent trends in ocular drug delivery: a short review. Eur J Appl Sci 3:86–92 Kumar A, Malviya R, Sharma PK (2011) Recent trends in ocular drug delivery: a short review. Eur J Appl Sci 3:86–92
29.
go back to reference Pasut G, Veronese FM (2012) State of the art in PEGylation: the great versatility achieved after forty years of research. J Control Release 161:461–472CrossRefPubMed Pasut G, Veronese FM (2012) State of the art in PEGylation: the great versatility achieved after forty years of research. J Control Release 161:461–472CrossRefPubMed
31.
32.
go back to reference la Fuente DM, Raviña M, Paolicelli P et al (2010) Chitosan-based nanostructures: a delivery platform for ocular therapeutics. Adv Drug Deliv Rev 62:100–117CrossRefPubMed la Fuente DM, Raviña M, Paolicelli P et al (2010) Chitosan-based nanostructures: a delivery platform for ocular therapeutics. Adv Drug Deliv Rev 62:100–117CrossRefPubMed
33.
go back to reference Moore AR, Willoughby DA (1995) Hyaluronan as a drug delivery system for diclofenac: a hypothesis for mode of action. Int J Tissue React 17:153–156PubMed Moore AR, Willoughby DA (1995) Hyaluronan as a drug delivery system for diclofenac: a hypothesis for mode of action. Int J Tissue React 17:153–156PubMed
35.
go back to reference Ye J, Zhang H, Wu H et al (2012) Cytoprotective effect of hyaluronic acid and hydroxypropyl methylcellulose against DNA damage induced by thimerosal in Chang conjunctival cells. Graefes Arch Clin Exp Ophthalmol 250:1459–1466. doi:10.1007/s00417-012-2087-4 CrossRefPubMed Ye J, Zhang H, Wu H et al (2012) Cytoprotective effect of hyaluronic acid and hydroxypropyl methylcellulose against DNA damage induced by thimerosal in Chang conjunctival cells. Graefes Arch Clin Exp Ophthalmol 250:1459–1466. doi:10.​1007/​s00417-012-2087-4 CrossRefPubMed
36.
go back to reference Thierry B, Kujawa P, Tkaczyk C et al (2005) Delivery platform for hydrophobic drugs: prodrug approach combined with self-assembled multilayers. J Am Chem Soc 127:1626–1627. doi:10.1021/ja045077s CrossRefPubMed Thierry B, Kujawa P, Tkaczyk C et al (2005) Delivery platform for hydrophobic drugs: prodrug approach combined with self-assembled multilayers. J Am Chem Soc 127:1626–1627. doi:10.​1021/​ja045077s CrossRefPubMed
38.
41.
go back to reference Pouyani T, Harbison GS, Prestwich GD (1994) Novel hydrogels of hyaluronic acid: synthesis, surface morphology, and solid-state NMR. J Am Chem Soc 116:7515–7522. doi:10.1021/ja00096a007 CrossRef Pouyani T, Harbison GS, Prestwich GD (1994) Novel hydrogels of hyaluronic acid: synthesis, surface morphology, and solid-state NMR. J Am Chem Soc 116:7515–7522. doi:10.​1021/​ja00096a007 CrossRef
42.
go back to reference Vercruysse KP, Marecak DM, Marecek JF, Prestwich GD (1997) Synthesis and in vitro degradation of new polyvalent hydrazide cross-linked hydrogels of hyaluronic acid. Bioconjug Chem 8:686–694. doi:10.1021/bc9701095 CrossRefPubMed Vercruysse KP, Marecak DM, Marecek JF, Prestwich GD (1997) Synthesis and in vitro degradation of new polyvalent hydrazide cross-linked hydrogels of hyaluronic acid. Bioconjug Chem 8:686–694. doi:10.​1021/​bc9701095 CrossRefPubMed
45.
go back to reference Hoare TR, Kohane DS (2008) Hydrogels in drug delivery: progress and challenges. Polymer 49:1993–2007CrossRef Hoare TR, Kohane DS (2008) Hydrogels in drug delivery: progress and challenges. Polymer 49:1993–2007CrossRef
Metadata
Title
A new strategy to sustained release of ocular drugs by one-step drug-loaded microcapsule manufacturing in hydrogel punctal plugs
Authors
Jiajun Xie
Changjun Wang
Qingyao Ning
Qi Gao
Changyou Gao
Zhongru Gou
Juan Ye
Publication date
01-11-2017
Publisher
Springer Berlin Heidelberg
Published in
Graefe's Archive for Clinical and Experimental Ophthalmology / Issue 11/2017
Print ISSN: 0721-832X
Electronic ISSN: 1435-702X
DOI
https://doi.org/10.1007/s00417-017-3755-1

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