AbstractThe purpose of this study was to develop poloxamer (P407)-based in-situ thermogellable hydrogels with reducing concentration of P407 by adding hypromellose (HPMC) and with enhancing mucoadhesion of resulting hydrogels by adding hyaluronic acid (HA) for prolonging ocular delivery of hydroxypropyl-β-cyclodextrin (HPβCD)-solubilized testosterone (TES). Results demonstrated that 0.5% TES solution was successfully solubilized with adding 10% HPβCD. Non-gellable 13% P407 sol became in-situ gellable with adding 2.0-2.5% HPMC and mucoadhesibility was further imporved with adding 0.3% HA-L (low MW) or HA-H (high MW). Optimized 0.5% HPβCD-solubilized TES P407-based thermogellable hydrogels with enhancement of mucoadhesion for prolonging ocula...
AbstractThe present study aimed to prepare a chemically and physically stable formulation of doxycyc...
[[abstract]]Poloxamers are negatively temperature-sensitive hydrogels and their hydrophilic groups i...
Poloxamer P407 (P407) is a Food and Drug Administration approved triblock copolymer; its hydrogels s...
Poor bioavailability of eye drops is a well-known issue, which can be improved by increasing the res...
Objective: This work was conducted to develop and evaluate Poloxamer 407-HPMC K50M based in situ gel...
The influence of hyaluronic acid (HA) on the gelation properties of poloxamers blends has been studi...
<div><p></p><p>Development of efficient ocular drug delivery systems was still a challenging task. T...
The aim of the present work was to obtain an ophthalmic delivery system with improved mechanical and...
Objective: The purpose of this study was to develop an in situ ocular gel of ofloxacin which aimed t...
Poloxamer thermoresponsive gels are widely explored in controlled drug delivery. Nevertheless, these...
Conjunctivitis is an inflammation of the conjunctiva, which covers the white part of the eyeball. It...
Purpose: To overcome the problems of low bioavailability of the drug associated with the short pre-c...
The purpose of this study was to develop poloxamer-based in-situ gel of chloramphenicol aiming to in...
Poor bioavailability is one of the most significant problems in the delivery of the ocular drug syst...
In the present study, a novel in situ forming thermosensitive hydrogel system was investigated as a ...
AbstractThe present study aimed to prepare a chemically and physically stable formulation of doxycyc...
[[abstract]]Poloxamers are negatively temperature-sensitive hydrogels and their hydrophilic groups i...
Poloxamer P407 (P407) is a Food and Drug Administration approved triblock copolymer; its hydrogels s...
Poor bioavailability of eye drops is a well-known issue, which can be improved by increasing the res...
Objective: This work was conducted to develop and evaluate Poloxamer 407-HPMC K50M based in situ gel...
The influence of hyaluronic acid (HA) on the gelation properties of poloxamers blends has been studi...
<div><p></p><p>Development of efficient ocular drug delivery systems was still a challenging task. T...
The aim of the present work was to obtain an ophthalmic delivery system with improved mechanical and...
Objective: The purpose of this study was to develop an in situ ocular gel of ofloxacin which aimed t...
Poloxamer thermoresponsive gels are widely explored in controlled drug delivery. Nevertheless, these...
Conjunctivitis is an inflammation of the conjunctiva, which covers the white part of the eyeball. It...
Purpose: To overcome the problems of low bioavailability of the drug associated with the short pre-c...
The purpose of this study was to develop poloxamer-based in-situ gel of chloramphenicol aiming to in...
Poor bioavailability is one of the most significant problems in the delivery of the ocular drug syst...
In the present study, a novel in situ forming thermosensitive hydrogel system was investigated as a ...
AbstractThe present study aimed to prepare a chemically and physically stable formulation of doxycyc...
[[abstract]]Poloxamers are negatively temperature-sensitive hydrogels and their hydrophilic groups i...
Poloxamer P407 (P407) is a Food and Drug Administration approved triblock copolymer; its hydrogels s...