Exact(3)
The use of nanoparticles as formulation components of topical drug delivery systems for the skin has been widely investigated in the literature.
A mixture experimental design was used to investigate how formulation components of the hybrid alkyd acrylic resin affect the properties of the hybrid dispersion in terms of the viscosity of the dispersion, particle size, hydrolytic stability, and coating performance, namely gloss and film hardness.
In this formulation, components of an empowerment intervention should be designed to enable people to maximise their potential to progress along this continuum [ 20].
Similar(57)
In this study, we combined a high-throughput screening method, differential scanning fluorimetry (DSF), with design of experiments (DoE) methodology to evaluate the effects of several formulation components on the thermostability of granulocyte colony stimulating factor (G-CSF).
A mixture experimental design with five independent variables (X1: oil, X2: surfactant, X3: catechin, X4: cosurfactant and X5: water) was developed, and the response surface methodology was used to study the effect of formulation components on physiochemical characteristics and penetration capacity of a catechin-loaded microemulsion, and to obtain an optimal microemulsion formulation.
The influence of formulation components on the physical, mechanical and optical properties of hot melt thermoplastic road markings was studied.
The purpose of this study was to evaluate the influence of formulation components on the physicochemical factors and biological function involved in the development and optimization of newly designed nanoparticles for orally dosed insulin.
Design of experiment and statistical analyses were applied to evaluate the effects of several formulation components on the thermal and colloidal stability for a series of monoclonal antibody (mAb) formulations.
The formulation components on the aerosolisation characteristics of spray-dried powders were investigated through the use of various amount of leucine, lactose and mannitol.
Formulation components consisting of 0.1% Triton X-114 as a wetter, 0.1% gelatine 280 Bloom (Gelita AG, Goeppingen, Germany) as a humectant, 1% sugar beet molasses as nutrient and 1% titanium dioxide as a UV protection agent were autoclaved for 20 min at 121°C.
In summary, how the specific properties of formulation components are directly linked to aerosolisation performance of DPI systems is highlighted in this article.
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Justyna Jupowicz-Kozak
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