Literature DB >> 32067500

Formulation strategies to modulate drug release from poloxamer based in situ gelling systems.

Hani Abdeltawab1, Darren Svirskis1, Manisha Sharma1.   

Abstract

Introduction: Poloxamer based in situ gelling systems offer numerous advantages in drug delivery; however, their application as prolonged-release delivery platforms is limited mainly due to their weak mechanical properties and the interconnected aqueous network causing fast gel erosion and drug diffusion.Area covered: The focus of this review is to provide an insightful discussion on the formulation strategies that can be employed to sustain/prolong the drug release from poloxamer based in situ gelling systems. The review also outlines the formulation factors, influencing drug release from these systems.Expert opinion: The nature, composition, and concentration of poloxamers are the most critical factors in defining the rate of drug release from an in situ gelling matrix. Hydrophobic gel matrices have compact micellar arrangements resulting in slow diffusion and erosion. Depending on the intended clinical application, gel characteristics can be modulated, either by physical blending or by chemical crosslinking with additive materials, to slow release and improve residence time at the administration site. Incorporating drug-loaded particles into poloxamer gels sustains drug release by creating multiple rate-limiting release barriers. Chemical modification of poloxamers appears to be a promising strategy to obtain prolonged sustained release for parenteral application without compromising the rheological properties of the formulation.

Entities:  

Keywords:  Poloxamers; extended release; formulation strategies; in situ gelling systems; modulating release profile; sustained drug delivery; thermo-responsive

Mesh:

Substances:

Year:  2020        PMID: 32067500     DOI: 10.1080/17425247.2020.1731469

Source DB:  PubMed          Journal:  Expert Opin Drug Deliv        ISSN: 1742-5247            Impact factor:   6.648


  6 in total

Review 1.  Poloxamer-Based Scaffolds for Tissue Engineering Applications: A Review.

Authors:  Naiyu Cui; Chun-Yu Dai; Xuran Mao; Xun Lv; Yue Gu; Eui-Seok Lee; Heng-Bo Jiang; Yunhan Sun
Journal:  Gels       Date:  2022-06-08

2.  Sustained Delivery of Lactoferrin Using Poloxamer Gels for Local Bone Regeneration in a Rat Calvarial Defect Model.

Authors:  Young Eun Park; Kaushik Chandramouli; Maureen Watson; Mark Zhu; Karen E Callon; Donna Tuari; Hani Abdeltawab; Darren Svirskis; David Shaun Musson; Manisha Sharma; Jillian Cornish
Journal:  Materials (Basel)       Date:  2021-12-28       Impact factor: 3.623

3.  Injectable In Situ Gelling System for Sustained Nicotine Delivery as a Replacement Therapy for Smoking Cessation.

Authors:  Eileen Hulambukie; Hani Abdeltawab; Sanjukta Duarah; Darren Svirskis; Manisha Sharma
Journal:  Gels       Date:  2022-02-12

4.  Melting Point Depression of Poly(ethylene oxide)-Poly(propylene oxide)-Poly(ethylene oxide) Triblock Polymers in Supercritical Carbon Dioxide in the Presence of Menthol as a Solid Co-Plasticiser.

Authors:  Vivek Trivedi; Adejumoke Lara Ajiboye; Nichola J Coleman; Ruchir Bhomia; Marion Bascougnano
Journal:  Polymers (Basel)       Date:  2022-07-11       Impact factor: 4.967

5.  Increasing the Hydrophobic Component of Poloxamers and the Inclusion of Salt Extend the Release of Bupivacaine from Injectable In Situ Gels, While Common Polymer Additives Have Little Effect.

Authors:  Hani Abdeltawab; Darren Svirskis; Andrew G Hill; Manisha Sharma
Journal:  Gels       Date:  2022-08-02

6.  Chitosan/Pluronic F127 Thermosensitive Hydrogel as an Injectable Dexamethasone Delivery Carrier.

Authors:  Jomarien García-Couce; Miriela Tomás; Gastón Fuentes; Ivo Que; Amisel Almirall; Luis J Cruz
Journal:  Gels       Date:  2022-01-07
  6 in total

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