Recent trends in stabilizing protein structure upon encapsulation and release from bioerodible polymers

Современные тенденции стабилизации структуры белков при инкапсуляции и высвобождении из биоэродируемых полимеров
Caroline Pérez, Ingrid J. Castellanos, Henry R. Costantino, Wasfi Al‐Azzam, Kai Griebenow
2002-03-01

bioerodible polymersprotein stabilizationsolid-in-oil-in-oil techniquesustained-release dosage formswater-in-oil-in-water emulsion
Sustained release of pharmaceutical proteins from biocompatible polymers offers new opportunities in the treatment and prevention of disease. The manufacturing of such sustained-release dosage forms, and also the release from them, can impose substantial stresses on the chemical integrity and native, three-dimensional structure of proteins. Recently, novel strategies have been developed towards elucidation and amelioration of these stresses. Non-invasive technologies have been implemented to investigate the complex destabilization pathways that can occur. Such insights allow for rational approaches to protect proteins upon encapsulation and release from bioerodible systems. Stabilization of proteins when utilizing the most commonly employed procedure, the water-in-oil-in-water (w/o/w) double emulsion technique, requires approaches that are based mainly on either increasing the thermodynamic stability of the protein or preventing contact of the protein with the destabilizing agent (e.g. the water/oil interface) by use of various additives. However, protein stability is still often problematic when using the w/o/w technique, and thus alternative methods have become increasingly popular. These methods, such as the solid-in-oil-in-oil (s/o/o) and solid-in-oil-in-water (s/o/w) techniques, are based on the suspension of dry protein powders in an anhydrous organic solvent. It has become apparent that protein structure in the organic phase is stabilized because the protein is "rigidified" and therefore unfolding and large protein structural perturbations are kinetically prohibited. This review focuses on strategies leading to the stabilization of protein structure when employing these different encapsulation procedures.
1
For water-in-oil-in-water double emulsions, stabilization primarily involves increasing protein thermodynamic stability or preventing protein contact with destabilizing interfaces using additives.
2
In anhydrous organic phases, dry protein powders are stabilized through kinetic rigidification that limits unfolding and large structural perturbations.
3
Non-invasive technologies elucidate complex protein destabilization pathways, enabling rational stabilization strategies during encapsulation and release.
4
Protein stability remains problematic with double-emulsion processing, motivating alternative solid-in-oil-in-oil and solid-in-oil-in-water encapsulation methods.
5
Sustained-release protein manufacturing and release from bioerodible polymers can substantially compromise chemical integrity and native three-dimensional structure.

Pharmaceutical proteins encapsulated in and released from bioerodible biocompatible polymers

Strategies and mechanisms for stabilizing protein chemical integrity and native three-dimensional structure during encapsulation and release, including protection from interfacial and process-induced stresses

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2002-03-01
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Authors
Caroline Pérez
Ingrid J. Castellanos
Henry R. Costantino
Wasfi Al‐Azzam
Kai Griebenow
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