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https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4289909/
To overcome the ocular drug delivery barriers and improve ocular bioavailability, various conventional and novel drug delivery systems have been developed such as emulsion, ointments, suspensions, aqueous gels, nanomicelles, nanoparticles, liposomes, dendrimers, implants, contact lenses, nanosuspensions, microneedles, and in situ ...Author: Ashaben Patel, Kishore Cholkar, Vibhuti Agrahari, Ashim K Mitra
https://www.sciencedirect.com/science/article/pii/S0168365919300239
Long-acting sustained intraocular drug delivery provides promising solutions, such as Vitrasert® from Bausch & Lomb, an intravitreal biodegradable polymeric implant made from poly(D,L-lactic co glycolic acid) (PLGA), and can be used as a guiding reference to formulate sustained delivery systems.Author: Shwetha Iyer, Shwetha Iyer, Ahmed E. Radwan, Ali Hafezi-Moghadam, Padma Malyala, Mansoor Amiji
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3306122/
Dec 26, 2010 · One study demonstrated the potential use of liposomes for intraocular drug delivery. 41 The authors evaluated the use of vasoactive intestinal peptide (VIP) for treatment of intravitreal inflammation. This neuropeptide interacts with many cell types associated with inflammation, including endothelial cells, macrophages and lymphocytes.Author: Nahid Haghjou, Masoud Soheilian, Mohammad Jafar Abdekhodaie
https://pubs.acs.org/doi/10.1021/acs.nanolett.9b02596
In a retinoblastoma-bearing mice model, topical instillation of 8VP/siRNA efficiently inhibited the protein expression of intraocular tumor without toxicity. MVP is advantageous over the commercial transfection reagent in safety and efficiency, and therefore provides a …Author: Kuan Jiang, Yang Hu, Xin Gao, Changyou Zhan, Yanyu Zhang, Shengyu Yao, Cao Xie, Gang Wei, Weiyue Lu
https://www.aao.org/annual-meeting-video/intraocular-drug-delivery-systems
Dr. Jonathan Myers discusses sustained-release drug delivery, which has the potential to eliminate compliance problems. Additionally, intraocular delivery might reduce topical side effects and allow much lower total dosages of medication.
https://www.astp.com/lioli/
The lioli™ IOL Delivery System is a truly unique IOL delivery system that utilizes the innovative LubriMATRIX™ treatment technology specifically designed and developed to enable a safer, simpler and more effective intraocular lens (IOL) delivery. LubriMATRIX™ protects the IOL from damage during cataract surgery.Location: 9 Linnell Cir Billerica, MA 01821 United States
https://dexycu.com/delivery-method/
References 1. DEXYCU ® (dexamethasone intraocular suspension) 9% full U.S. Prescribing Information. EyePoint Pharmaceuticals, Inc. December 2018. 2. Data on file. EyePoint Pharmaceuticals, Inc. 3. Donnenfeld E, Holland E. Dexamethasone intracameral drug-delivery suspension for inflammation associated with cataract surgery: a randomized, placebo-controlled, phase III trial.
https://www.persistencemarketresearch.com/market-research/intraocular-lens-delivery-system-market.asp
Intraocular Lens Delivery System Market. Intraocular Lens Delivery System market report offers accurate region-wise market projections and forecasts, market share, size, segment-wise analysis, regulatory framework assessment, opportunities and challenges for stakeholders, and impact of key industry trends.3.6/5(35)
https://www.marketwatch.com/press-release/intraocular-lens-delivery-system-market-size-share-2020-to-2025-industry-overview-growth-revenue-supply-demand-and-shortage-trends-demand-overview-forecast-says-marketreportsworldcom-2020-03-19
Mar 19, 2020 · (2020- 2025) Intraocular Lens Delivery System Market, Global Research report presents a top to bottom analysis of the Intraocular Lens Delivery System market growth, size, share, classifications ...
https://www.ondrugdelivery.com/biodegradable-implants-sustained-intraocular-delivery-small-large-molecules/
Citation: Thakur R, Jones D, “Biodegradeable Implants for Sustained Intraocular Delivery of Small and Large Molecules”. ONdrugDelivery Magazine, Issue 82 (Jan 2018), pp 28-31.
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