Menu
×
John's Island Library
9 a.m. - 8 p.m.
Phone: (843) 559-1945
Main Library
9 a.m. - 8 p.m.
Phone: (843) 805-6930
West Ashley Library
9 a.m. - 7 p.m.
Phone: (843) 766-6635
Wando Mount Pleasant Library
9 a.m. - 8 p.m.
Phone: (843) 805-6888
Village Library
9 a.m. - 6 p.m.
Phone: (843) 884-9741
St. Paul's/Hollywood Library
9 a.m. - 8 p.m.
Phone: (843) 889-3300
Otranto Road Library
9 a.m. - 8 p.m.
Phone: (843) 572-4094
Mt. Pleasant Library
9 a.m. - 8 p.m.
Phone: (843) 849-6161
McClellanville Library
9 a.m. - 6 p.m.
Phone: (843) 887-3699
Keith Summey North Charleston Library
9 a.m. - 8 p.m.
Phone: (843) 744-2489
Hurd/St. Andrews Library
9 a.m. - 8 p.m.
Phone: (843) 766-2546
Folly Beach Library
9 a.m. - 5:30 p.m.
Phone: (843) 588-2001
Edisto Island Library
9 a.m. - 4 p.m.
Phone: (843) 869-2355
Dorchester Road Library
9 a.m. - 8 p.m.
Phone: (843) 552-6466
John L. Dart Library
9 a.m. - 7 p.m.
Phone: (843) 722-7550
Baxter-Patrick James Island
9 a.m. - 8 p.m.
Phone: (843) 795-6679
Bees Ferry West Ashley Library
9 a.m. - 8 p.m.
Phone: (843) 805-6892
Edgar Allan Poe/Sullivan's Island Library
Closed for renovations
Phone: (843) 883-3914
Mobile Library
9 a.m. - 5 p.m.
Phone: (843) 805-6909
Today's Hours
John's Island Library
9 a.m. - 8 p.m.
Phone: (843) 559-1945
Main Library
9 a.m. - 8 p.m.
Phone: (843) 805-6930
West Ashley Library
9 a.m. - 7 p.m.
Phone: (843) 766-6635
Wando Mount Pleasant Library
9 a.m. - 8 p.m.
Phone: (843) 805-6888
Village Library
9 a.m. - 6 p.m.
Phone: (843) 884-9741
St. Paul's/Hollywood Library
9 a.m. - 8 p.m.
Phone: (843) 889-3300
Otranto Road Library
9 a.m. - 8 p.m.
Phone: (843) 572-4094
Mt. Pleasant Library
9 a.m. - 8 p.m.
Phone: (843) 849-6161
McClellanville Library
9 a.m. - 6 p.m.
Phone: (843) 887-3699
Keith Summey North Charleston Library
9 a.m. - 8 p.m.
Phone: (843) 744-2489
Hurd/St. Andrews Library
9 a.m. - 8 p.m.
Phone: (843) 766-2546
Folly Beach Library
9 a.m. - 5:30 p.m.
Phone: (843) 588-2001
Edisto Island Library
9 a.m. - 4 p.m.
Phone: (843) 869-2355
Dorchester Road Library
9 a.m. - 8 p.m.
Phone: (843) 552-6466
John L. Dart Library
9 a.m. - 7 p.m.
Phone: (843) 722-7550
Baxter-Patrick James Island
9 a.m. - 8 p.m.
Phone: (843) 795-6679
Bees Ferry West Ashley Library
9 a.m. - 8 p.m.
Phone: (843) 805-6892
Edgar Allan Poe/Sullivan's Island Library
Closed for renovations
Phone: (843) 883-3914
Mobile Library
9 a.m. - 5 p.m.
Phone: (843) 805-6909
Patron Login
menu
Item request has been placed!
×
Item request cannot be made.
×
Processing Request
Design and Development of Ophthalmic Liposomes from the QbD Perspective.
Item request has been placed!
×
Item request cannot be made.
×
Processing Request
- Author(s): Pawar K;Pawar K; Shaikh K; Shaikh K
- Source:
Current pharmaceutical design [Curr Pharm Des] 2024; Vol. 30 (30), pp. 2364-2377.- Publication Type:
Journal Article; Review- Language:
English - Source:
- Additional Information
- Source: Publisher: Bentham Science Publishers Country of Publication: United Arab Emirates NLM ID: 9602487 Publication Model: Print Cited Medium: Internet ISSN: 1873-4286 (Electronic) Linking ISSN: 13816128 NLM ISO Abbreviation: Curr Pharm Des Subsets: MEDLINE
- Publication Information: Publication: Saif Zone, Sharjah, U.A.E. : Bentham Science Publishers
Original Publication: Schiphol, The Netherlands : Bentham Science Publishers, c1995- - Subject Terms:
- Abstract: Due to significant lachrymation, drug washing out, and poor adhesion to the lipophilic outer layer of the precorneal and cornea membrane, topical ophthalmic solution drops have poor ocular bioavailability. The rate of transcorneal absorption is impacted in the case of hydrophilic drug molecules as brimonidine tartrate, timolol maleate, cyclosporine, etc. Ophthalmic solution administered in many doses is less patient-compliant. The limitation of multiple-dose and its negative effects can be overcome by the development of delayed- release liposomes. Liposomes are regulatory-approved novel drug delivery systems. Its vesicular form aids in delaying medication release, and its lipidic makeup enables it to stick to the cornea's lipophilic layer. As a result, it will prevent precorneal clearing, extend corneal contact time, and provide sufficient transcorneal absorption. The aim of this review article is to portray the benefits of liposomes for ophthalmic drug delivery and its formulation development in the light of QbD. The review discusses the composition, preparatory methods and quality aspects of ophthalmic liposomes. It then accordingly reasonably proposes the quality target product profile, critical quality attributes, critical material attributes and critical process parameters, involved in liposome development for ophthalmic drug delivery. This review shall help formulation scientists to formulate ophthalmic liposomes of desirable quality.
(Copyright© Bentham Science Publishers; For any queries, please email at [email protected].) - References: López-Cano J.J.; González-Cela-Casamayor M.A.; Andrés-Guerrero V.; Herrero-Vanrell R.; Molina-Martínez I.T.; Liposomes as vehicles for topical ophthalmic drug delivery and ocular surface protection. Expert Opin Drug Deliv 2021,18(7),819-847. (PMID: 10.1080/17425247.2021.187254233412914)
Shen J.; Lu G.W.; Hughes P.; Targeted ocular drug delivery with pharmacokinetic/pharmacodynamic considerations. Pharm Res 2018,35(11),217. (PMID: 10.1007/s11095-018-2498-y30255364)
Pahuja P.; Arora S.; Pawar P.; Ocular drug delivery system: A reference to natural polymers. Expert Opin Drug Deliv 2012,9(7),837-861. (PMID: 10.1517/17425247.2012.69073322703523)
Bravo-Osuna I.; Andrés-Guerrero V.; Pastoriza Abal P.; Molina- Martínez I.T.; Herrero-Vanrell R.; Pharmaceutical microscale and nanoscale approaches for efficient treatment of ocular diseases. Drug Deliv Transl Res 2016,6(6),686-707. (PMID: 10.1007/s13346-016-0336-527766598)
Moisseiev E.; Loewenstein A.; Drug delivery to the posterior segment of the eye. Dev Ophthalmol 2017,58,87-101. (PMID: 10.1159/00045527628351054)
Mannermaa E.; Vellonen K.S.; Urtti A.; Drug transport in corneal epithelium and blood–retina barrier: Emerging role of transporters in ocular pharmacokinetics. Adv Drug Deliv Rev 2006,58(11),1136-1163. (PMID: 10.1016/j.addr.2006.07.02417081648)
Park D.J.J.; Topographic anatomy of the eye, Duane’s foundations of clinical ophthalmology 2006.
Gote V.; Sikder S.; Sicotte J.; Pal D.; Ocular drug delivery: Ppresent innovations and future challenges. J Pharmacol Exp Ther 2019,370(3),602-624. (PMID: 10.1124/jpet.119.25693331072813)
Davies N.M.; Biopharmaceutical considerations in topical ocular drug delivery. Clin Exp Pharmacol Physiol 2000,27(7),558-562. (PMID: 10.1046/j.1440-1681.2000.03288.x10874518)
Rabinovich-Guilatt L.; Couvreur P.; Lambert G.; Dubernet C.; Cationic vectors in ocular drug delivery. J Drug Target 2004,12(9-10),623-633. (PMID: 10.1080/1061186040001591015621688)
Gaudana R; Ananthula HK; Parenky A; Ocular drug delivery. Aaps J 2010,12(3),348-360. (PMID: 10.1208/s12248-010-9183-3)
Bennett L.; Drug delivery to specific compartments of the eye. Ocular Drug Delivery: Advances, Challenges and Applications 2016,37-52.
Barar J.; Javadzadeh A.R.; Omidi Y.; Ocular novel drug delivery: Impacts of membranes and barriers. Expert Opin Drug Deliv 2008,5(5),567-581. (PMID: 10.1517/17425247.5.5.56718491982)
Rodrigues G.A.; Lutz D.; Shen J.; Yuan X.; Shen H.; Cunningham J.; Rivers H.M.; Topical drug delivery to the posterior segment of the eye: Addressing the challenge of preclinical to clinical translation. Pharm Res 2018,35(12),245. (PMID: 10.1007/s11095-018-2519-x30374744)
Bulbake U.; Doppalapudi S.; Kommineni N.; Khan W.; Liposomal formulations in clinical use: An updated review. Pharmaceutics 2017,9(4),12. (PMID: 10.3390/pharmaceutics902001228346375)
Bhattacharjee A.; Das P.J.; Adhikari P.; Marbaniang D.; Pal P.; Ray S.; Mazumder B.; Novel drug delivery systems for ocular therapy: With special reference to liposomal ocular delivery. Eur J Ophthalmol 2019,29(1),113-126. (PMID: 10.1177/112067211876977629756507)
Liposome Drug Products. 2018. Guidance for Industry. US-FDA CDER. Liposome Drug Products: Chemistry, Manufacturing, and Controls; Human Pharmacokinetics and Bioavailability; and Labeling Documentation | FDA. Available from: https://www.fda.gov/regulatory-information/search-fda-guidance-documents/liposome-drug-products-chemistry-manufacturing-and-controls-human-pharmacokinetics-and2018.
Torchilin V.; Liposomes: A Practical Approach 2003,77-101. (PMID: 10.1093/oso/9780199636556.001.0001)
Agarwal R.; Iezhitsa I.; Agarwal P.; Abdul Nasir N.A.; Razali N.; Alyautdin R.; Ismail N.M.; Liposomes in topical ophthalmic drug delivery: An update. Drug Deliv 2016,23(4),1075-1091. (PMID: 10.3109/10717544.2014.94333625116511)
Cheng T.; Li J.; Cheng Y.; Zhang X.; Qu Y.; Triamcinolone acetonide-chitosan coated liposomes efficiently treated retinal edema as eye drops. Exp Eye Res 2019,188,107805. (PMID: 10.1016/j.exer.2019.10780531526807)
Li J.; Cheng T.; Tian Q.; Cheng Y.; Zhao L.; Zhang X.; Qu Y.; A more efficient ocular delivery system of triamcinolone acetonide as eye drop to the posterior segment of the eye. Drug Deliv 2019,26(1),188-198. (PMID: 10.1080/10717544.2019.157112230835587)
Tan G.; Yu S.; Pan H.; Li J.; Liu D.; Yuan K.; Yang X.; Pan W.; Bioadhesive chitosan-loaded liposomes: A more efficient and higher permeable ocular delivery platform for timolol maleate. Int J Biol Macromol 2017,94(Pt A),355-363. (PMID: 10.1016/j.ijbiomac.2016.10.03527760378)
Fan M.; Xu S.; Xia S.; Zhang X.; Effect of different preparation methods on physicochemical properties of salidroside liposomes. J Agric Food Chem 2007,55(8),3089-3095. (PMID: 10.1021/jf062935q17373810)
Strauss G.; Ingenito E.P.; Stabilization of liposome bilayers to freezing and thawing: Effects of cryoprotective agents and membrane proteins. Cryobiology 1980,17(5),508-515. (PMID: 10.1016/0011-2240(80)90062-07438768)
Gouveia S.M.; Tiffany J.M.; Human tear viscosity: An interactive role for proteins and lipids. Biochim Biophys Acta Proteins Proteomics 2005,1753(2),155-163. (PMID: 10.1016/j.bbapap.2005.08.02316236563)
Soriano-Romaní L.; Vicario-de-la-Torre M.; Crespo-Moral M.; López-García A.; Herrero-Vanrell R.; Molina-Martínez I.T.; Diebold Y.; Novel anti-inflammatory liposomal formulation for the pre-ocular tear film: In vitro and ex vivo functionality studies in corneal epithelial cells. Exp Eye Res 2017,154,79-87. (PMID: 10.1016/j.exer.2016.11.01027840060)
Natarajan J.V.; Ang M.; Darwitan A.; Chattopadhyay S.; Wong T.T.; Venkatraman S.S.; Nanomedicine for glaucoma: Liposomes provide sustained release of latanoprost in the eye. Int J Nanomed 2012,7,123-131. (PMID: 22275828)
Rathod S.; Deshpande S.G.; Design and evaluation of liposomal formulation of pilocarpine nitrate. Indian J Pharm Sci 2010,72(2),155-160. (PMID: 10.4103/0250-474X.6501420838517)
Law S.L.; Huang K.J.; Chiang C.H.; Acyclovir-containing liposomes for potential ocular delivery. J Control Release 2000,63(1-2),135-140. (PMID: 10.1016/S0168-3659(99)00192-310640587)
Schaeffer H.E.; Krohn D.L.; Liposomes in topical drug delivery. Investig Ophthalmol. Vis Sci 1982,22,220-227.
Taniguchi K.; Yamamoto Y.; Itakura K.; Miichi H.; Hayashi S.; Assessment of ocular irritability of liposome preparations. J Pharmacobiodyn 1988,11(9),607-611. (PMID: 10.1248/bpb1978.11.6073216282)
Klymchenko A.S.; Oncul S.; Didier P.; Schaub E.; Bagatolli L.; Duportail G.; Mély Y.; Visualization of lipid domains in giant unilamellar vesicles using an environment-sensitive membrane probe based on 3-hydroxyflavone. Biochim Biophys Acta Biomembr 2009,1788(2),495-499. (PMID: 10.1016/j.bbamem.2008.10.01919027712)
Mishra G.P.; Bagui M.; Tamboli V.; Mitra A.K.; Recent applications of liposomes in ophthalmic drug delivery. J Drug Deliv 2011,2011,1-14. (PMID: 10.1155/2011/86373421490757)
Bibi S.; Kaur R.; Henriksen-Lacey M.; McNeil S.E.; Wilkhu J.; Lattmann E.; Christensen D.; Mohammed A.R.; Perrie Y.; Microscopy imaging of liposomes: From coverslips to environmental SEM. Int J Pharm 2011,417(1-2),138-150. (PMID: 10.1016/j.ijpharm.2010.12.02121182914)
Robson A.L.; Dastoor P.C.; Flynn J.; Palmer W.; Martin A.; Smith D.W.; Woldu A.; Hua S.; Advantages and limitations of current imaging techniques for characterizing liposome morphology. Front Pharmacol 2018,9,80. (PMID: 10.3389/fphar.2018.0008029467660)
Mehanna M.M.; El-Kader N.A.; Samaha M.W.; Liposomes as potential carriers for ketorolac ophthalmic delivery: Formulation and stability issues. Braz J Pharm Sci 2017,53(2),1-10. (PMID: 10.1590/s2175-97902017000216127)
Lin J.; Wu H.; Wang Y.; Lin J.; Chen Q.; Zhu X.; Preparation and ocular pharmacokinetics of hyaluronan acid-modified mucoadhesive liposomes. Drug Deliv 2016,23(4),1144-1151. (PMID: 10.3109/10717544.2014.99195225533876)
Taha E.I.; El-Anazi M.H.; El-Bagory I.M.; Bayomi M.A.; Design of liposomal colloidal systems for ocular delivery of ciprofloxacin. Saudi Pharm J 2014,22(3),231-239. (PMID: 10.1016/j.jsps.2013.07.00325061409)
Chetoni P.; Monti D.; Tampucci S.; Matteoli B.; Ceccherini-Nelli L.; Subissi A.; Burgalassi S.; Liposomes as a potential ocular delivery system of distamycin A. Int J Pharm 2015,492(1-2),120-126. (PMID: 10.1016/j.ijpharm.2015.05.05526183332)
Soriano-Romaní L.; Álvarez-Trabado J.; López-García A.; Molina- Martínez I.; Herrero-Vanrell R.; Diebold Y.; Improved in vitro corneal delivery of a thrombospondin-1-derived peptide using a liposomal formulation. Exp Eye Res 2018,167,118-121. (PMID: 10.1016/j.exer.2017.12.00229246497)
Dai Y.; Zhou R.; Liu L.; Lu Y.; Qi J.; Wu W.; Liposomes containing bile salts as novel ocular delivery systems for tacrolimus (FK506): In vitro characterization and improved corneal permeation. Int J Nanomed 2013,8,1921-1933. (PMID: 23690687)
de Sá F.A.P.; Taveira S.F.; Gelfuso G.M.; Lima E.M.; Gratieri T.; Liposomal voriconazole (VOR) formulation for improved ocular delivery. Colloids Surf B Biointerfaces 2015,133,331-338. (PMID: 10.1016/j.colsurfb.2015.06.03626123854)
Khalil M.; Hashmi U.; Riaz R.; Rukh Abbas S.; Chitosan coated liposomes (CCL) containing triamcinolone acetonide for sustained delivery: A potential topical treatment for posterior segment diseases. Int J Biol Macromol 2020,143,483-491. (PMID: 10.1016/j.ijbiomac.2019.10.25631759018)
Li N.; Zhuang C.; Wang M.; Sun X.; Nie S.; Pan W.; Liposome coated with low molecular weight chitosan and its potential use in ocular drug delivery. Int J Pharm 2009,379(1),131-138. (PMID: 10.1016/j.ijpharm.2009.06.02019559775)
Li N.; Zhuang C.Y.; Wang M.; Sui C.G.; Pan W.S.; Low molecular weight chitosan-coated liposomes for ocular drug delivery: In vitro and in vivo studies. Drug Deliv 2012,19(1),28-35. (PMID: 10.3109/10717544.2011.62199422070752)
Zhang J.; Wang S.; Topical use of Coenzyme Q10-loaded liposomes coated with trimethyl chitosan: Tolerance, precorneal retention and anti-cataract effect. Int J Pharm 2009,372(1-2),66-75. (PMID: 10.1016/j.ijpharm.2009.01.00119437594)
Yu S.; Wang Q.M.; Wang X.; Liu D.; Zhang W.; Ye T.; Yang X.; Pan W.; Liposome incorporated ion sensitive in situ gels for opthalmic delivery of timolol maleate. Int J Pharm 2015,480(1-2),128-136. (PMID: 10.1016/j.ijpharm.2015.01.03225615987)
Quinteros D.; Vicario-de-la-Torre M.; Andrés-Guerrero V.; Palma S.; Allemandi D.; Herrero-Vanrell R.; Molina-Martínez I.T.; Hybrid formulations of liposomes and bioadhesive polymers improve the hypotensive effect of the melatonin analogue 5-MCA- NAT in rabbit eyes. PLoS One 2014,9(10),e110344. (PMID: 10.1371/journal.pone.011034425329636)
Shen Y.; Tu J.; Preparation and ocular pharmacokinetics of ganciclovir liposomes. AAPS J 2007,9(3),E371-E377. (PMID: 10.1208/aapsj090304418170984)
Gomez-Ballesteros M; Lopez-Cano JJ; Bravo-Osuna I; Osmoprotectants in hybrid liposome/HPMC systems as potential glaucoma treatment Polymers 2019,11(6),929.
Hosny K.M.; Ciprofloxacin as ocular liposomal hydrogel. AAPS PharmSciTech 2010,11(1),241-246. (PMID: 10.1208/s12249-009-9373-420151337)
Feghhi M.; Sharif Makhmalzadeh B.; Farrahi F.; Akmali M.; Hasanvand N.; Anti-microbial effect and in vivo ocular delivery of ciprofloxacin-loaded liposome through rabbit’s eye. Curr Eye Res 2020,45(10),1245-1251. (PMID: 10.1080/02713683.2020.172877732045531)
Ghareb M D.F.; Development and in vitro/in vivo evaluation of liposomal gels for the sustained ocular delivery of latanoprost. J Clin Exp Ophthalmol 2015,6(1),2. (PMID: 10.4172/2155-9570.1000390)
Dong Y.; Dong P.; Huang D.; Mei L.; Xia Y.; Wang Z.; Pan X.; Li G.; Wu C.; Fabrication and characterization of silk fibroin-coated liposomes for ocular drug delivery. Eur J Pharm Biopharm 2015,91,82-90. (PMID: 10.1016/j.ejpb.2015.01.01825643990)
Hathout R.M.; Mansour S.; Mortada N.D.; Guinedi A.S.; Liposomes as an ocular delivery system for acetazolamide: In vitro and in vivo studies. AAPS PharmSciTech 2007,8(1),E1-E12. (PMID: 10.1208/pt080100117408209)
Zhang J.; Liang X.; Li X.; Guan Z.; Liao Z.; Luo Y.; Luo Y.; Ocular delivery of cyanidin-3-glycoside in liposomes and its prevention of selenite-induced oxidative stress. Drug Dev Ind Pharm 2016,42(4),546-553. (PMID: 10.3109/03639045.2015.108886726393779)
Shimokawa T.; Fukuta T.; Inagi T.; Kogure K.; Protective effect of high-affinity liposomes encapsulating astaxanthin against corneal disorder in the in vivo rat dry eye disease model. J Clin Biochem Nutr 2020,66(3),224-232. (PMID: 10.3164/jcbn.19-10232523249)
Mehanna M.M.; Elmaradny H.A.; Samaha M.W.; Mucoadhesive liposomes as ocular delivery system: Physical, microbiological, and in vivo assessment. Drug Dev Ind Pharm 2010,36(1),108-118. (PMID: 10.3109/0363904090309975119656004)
Chen H.; Pan H.; Li P.; Wang H.; Wang X.; Pan W.; Yuan Y.; The potential use of novel chitosan- coated deformable liposomes in an ocular drug delivery system. Colloids Surf B Biointerfaces 2016,143,455-462. (PMID: 10.1016/j.colsurfb.2016.03.06127037783)
Elsana H.; Olusanya T.O.B.; Carr-wilkinson J.; Darby S.; Faheem A.; Elkordy A.A.; Evaluation of novel cationic gene based liposomes with cyclodextrin prepared by thin film hydration and microfluidic systems. Sci Rep 2019,9(1),15120. (PMID: 10.1038/s41598-019-51065-431641141)
Gonzalez Gomez A.; Syed S.; Marshall K.; Hosseinidoust Z.; Liposomal nanovesicles for efficient encapsulation of staphylococcal antibiotics. ACS Omega 2019,4(6),10866-10876. (PMID: 10.1021/acsomega.9b0082531460184)
Elbialy N.S.; Abdol-Azim B.M.; Shafaa M.W.; El Shazly L.H.; El Shazly A.H.; Khalil W.A.; Enhancement of the ocular therapeutic effect of prednisolone acetate by liposomal entrapment. J Biomed Nanotechnol 2013,9(12),2105-2116. (PMID: 10.1166/jbn.2013.171124266264)
Assil K.K.; Frucht-Perry J.; Ziegler E.; Schanzlin D.J.; Schneiderman T.; Weinreb R.N.; Tobramycin liposomes. Single subconjunctival therapy of pseudomonal keratitis. Invest Ophthalmol Vis Sci 1991,32(13),3216-3220. (PMID: 1748553)
Briuglia M.L.; Rotella C.; McFarlane A.; Lamprou D.A.; Influence of cholesterol on liposome stability and on in vitro drug release. Drug Deliv Transl Res 2015,5(3),231-242. (PMID: 10.1007/s13346-015-0220-825787731)
Ren T.; Lin X.; Zhang Q.; You D.; Liu X.; Tao X.; Gou J.; Zhang Y.; Yin T.; He H.; Tang X.; Encapsulation of azithromycin ion pair in liposome for enhancing ocular delivery and therapeutic efficacy on dry eye. Mol Pharm 2018,15(11),4862-4871. (PMID: 10.1021/acs.molpharmaceut.8b0051630251864)
Altamirano-Vallejo J.C.; Navarro-Partida J.; Gonzalez-De la Rosa A.; Hsiao J.H.; Olguín-Gutierrez J.S.; Gonzalez-Villegas A.C.; Keller B.C.; Bouzo-Lopez L.; Santos A.; Characterization and pharmacokinetics of triamcinolone acetonide-loaded liposomes topical formulations. J Ocul Pharmacol Ther 2018,34(5),416-425. (PMID: 10.1089/jop.2017.009929584529)
Gonzalez-De la Rosa A.; Navarro-Partida J.; Altamirano-Vallejo J.C.; Hernandez-Gamez A.G.; Garcia-Bañuelos J.J.; Armendariz-Borunda J.; Santos A.; Novel triamcinolone acetonide-loaded liposomes topical formulation for the treatment of cystoid macular edema after cataract surgery: A pilot study. J Ocul Pharmacol Ther 2019,35(2),106-115. (PMID: 10.1089/jop.2018.010130614750)
Moustafa M.A.; Elnaggar Y.S.R.; El-Refaie W.M.; Abdallah O.Y.; Hyalugel-integrated liposomes as a novel ocular nanosized delivery system of fluconazole with promising prolonged effect. Int J Pharm 2017,534(1-2),14-24. (PMID: 10.1016/j.ijpharm.2017.10.00728987453)
D’Souza G.G.M.; Liposomes: Methods and protocols. Methods in Molecular Biology 2017,1522.
Silvius J.R.; Thermotropic phase transitions of pure lipids in model membranes and their modifications by membrane proteins. Lipid-Protein Interactions 1982.
Marsh D.; Thermodynamics of phospholipid self-assembly. Biophys J 2012,102(5),1079-1087. (PMID: 10.1016/j.bpj.2012.01.04922404930)
Angelini G.; Campestre C.; Boncompagni S.; Gasbarri C.; Liposomes entrapping β-cyclodextrin/ibuprofen inclusion complex: Role of the host and the guest on the bilayer integrity and microviscosity. Chem Phys Lipids 2017,209,61-65. (PMID: 10.1016/j.chemphyslip.2017.09.00428986064)
Lu W-L.; Qi X-R.; Liposome-based drug delivery systems. Biomaterial Engineering 2021. (PMID: 10.1007/978-3-662-49320-5)
Thassu D.; Deleers M.; Pathak Y.; Nanoparticulate drug delivery systems 2007,89. (PMID: 10.1201/9781420008449)
Handel T.; Methods in enzymology 2005,97.
Cortesi R.; Esposito E.; Gambarin S.; Telloli P.; Menegatti E.; Nastruzzi C.; Preparation of liposomes by reverse-phase evaporation using alternative organic solvents. J Microencapsul 1999,16(2),251-256. (PMID: 10.1080/02652049928922010080118)
Otake K.; Shimomura T.; Goto T.; Imura T.; Furuya T.; Yoda S.; Takebayashi Y.; Sakai H.; Abe M.; Preparation of liposomes using an improved supercritical reverse phase evaporation method. Langmuir 2006,22(6),2543-2550. (PMID: 10.1021/la051654u16519453)
Kirby C.; Gregoriadis G.; Dehydration-rehydration vesicles: A simple method for high yield drug entrapment in liposomes. Nat Biotechnol 1984,2(11),979-984. (PMID: 10.1038/nbt1184-979)
Rewar S.; Singh C.J.; Bansal B.K.; A vital role of liposome’s on controlled and novel drug delivery. Int J Pharm Biol Arch 2014,5,51-63.
Jaafar-Maalej C.; Diab R.; Andrieu V.; Elaissari A.; Fessi H.; Ethanol injection method for hydrophilic and lipophilic drug-loaded liposome preparation. J Liposome Res 2010,20(3),228-243. (PMID: 10.3109/0898210090334792319899957)
Dua J.S.; Liposome: Methods of preparation and applications. Int J Pharm Stud Res 2013,14-20.
Mendez R.; Banerjee S.; Sonication-based basic protocol for liposome synthesis. Methods Mol Biol 2017,1609,255-260. (PMID: 10.1007/978-1-4939-6996-8_2128660588)
Lapinski M.M.; Castro-Forero A.; Greiner A.J.; Ofoli R.Y.; Blanchard G.J.; Comparison of liposomes formed by sonication and extrusion: Rotational and translational diffusion of an embedded chromophore. Langmuir 2007,23(23),11677-11683. (PMID: 10.1021/la702096317939695)
Weissig V.; Liposomes, methods in molecular biology 2010,29.
Weissig V.; Liposomes, methods in molecular biology 2010,445.
Magotoshi M.; Abu-Zaid S.S.; Noriaki T.; Size and permeability of liposomes extruded through polycarbonate membranes. Int J Pharm 1983,17(2-3),215-224. (PMID: 10.1016/0378-5173(83)90034-0)
van Swaay D.; deMello A.; Microfluidic methods for forming liposomes. Lab Chip 2013,13(5),752-767. (PMID: 10.1039/c2lc41121k23291662)
Sackmann E.K.; Fulton A.L.; Beebe D.J.; The present and future role of microfluidics in biomedical research. Nature 2014,507(7491),181-189. (PMID: 10.1038/nature1311824622198)
Williams M.S.; Longmuir K.J.; Yager P.; A practical guide to the staggered herringbone mixer. Lab Chip 2008,8(7),1121-1129. (PMID: 10.1039/b802562b18584088)
Cheung C.C.L.; Al-Jamal W.T.; Sterically stabilized liposomes production using staggered herringbone micromixer: Effect of lipid composition and PEG-lipid content. Int J Pharm 2019,566,687-696. (PMID: 10.1016/j.ijpharm.2019.06.03331212051)
Carugo D.; Bottaro E.; Owen J.; Stride E.; Nastruzzi C.; Liposome production by microfluidics: Potential and limiting factors. Sci Rep 2016,6(1),25876. (PMID: 10.1038/srep2587627194474)
Li H.; Liu Y.; Zhang Y.; Fang D.; Xu B.; Zhang L.; Chen T.; Ren K.; Nie Y.; Yao S.; Song X.; Liposomes as a novel ocular delivery system for brinzolamide: In vitro and in vivo studies. AAPS PharmSciTech 2016,17(3),710-717. (PMID: 10.1208/s12249-015-0382-126335415)
Abdel-Rhaman M.S.; Soliman W.; Habib F.; Fathalla D.; A new long-acting liposomal topical antifungal formula: Human clinical study. Cornea 2012,31(2),126-129. (PMID: 10.1097/ICO.0b013e318221cf1222138587)
Mehanna M.M.; Elmaradny H.A.; Samaha M.W.; Ciprofloxacin liposomes as vesicular reservoirs for ocular delivery: Formulation, optimization, and in vitro characterization. Drug Dev Ind Pharm 2009,35(5),583-593. (PMID: 10.1080/0363904080246802419031311) - Contributed Indexing: Keywords: Liposomes; critical quality attributes.; formulation; ophthalmic; quality by design; quality target product profile
- Accession Number: 0 (Liposomes)
0 (Ophthalmic Solutions) - Publication Date: Date Created: 20240718 Date Completed: 20241002 Latest Revision: 20241002
- Publication Date: 20241002
- Accession Number: 10.2174/0113816128302570240627113909
- Accession Number: 39021195
- Source:
Contact CCPL
Copyright 2022 Charleston County Public Library Powered By EBSCO Stacks 3.3.0 [350.3] | Staff Login
No Comments.