Technical Data Sheet (TDS)

Xanthohumol

Xanthohumol is a natural polyphenol derived from hops (Humulus lupulus). This R&D sample presents a liposomal nanoemulsion developed for the assessment of stability, physicochemical characteristics, and further optimization and implementation of innovative products for research and development and commercial applications.

Unavailable
Liposomalny ksantohumol – zaawansowana formulacja liposomalna do zastosowań nutraceutycznych

General Information

Active Ingredient

Xanthohumol extract (≥95%)

Concentration

1% (10 mg/ml)

Sample Volume

10 ml

Technology

Nanoemulsion Formula

Particle Size (DLS)

Available

Stability (Turbiscan)

Available

Status

Evaluation Sample

Storage

5–10°C

Formulation Description

An advanced nanoemulsion formulation with 1% xanthohumol extract (>95%), developed as part of Liposome Factory’s research and development efforts. This sample is intended for evaluating the quality of the formulation and for further development and implementation work.

Testing

DLS

Particle Size

Dynamic Light Scattering (DLS) analysis showed an average nanoparticle size (Z-Average) of 48.21 nm with a polydispersity index (PdI) of 0.206. The result indicates a narrow particle size distribution and high formulation homogeneity. The measurement quality was rated as “Good,” confirming the reliability of the analysis.

Turbiscan

Stability

Turbiscan analysis confirms the high physical stability of the xanthohumol nanoemulsion. Low TSI values and their slow increase over time indicate the absence of significant destabilization processes such as sedimentation, creaming, or particle aggregation.

Cryo-TEM

Structure Imaging

The image obtained by CRYO-TEM (Cryogenic Transmission Electron Microscopy), which allows direct observation of nanostructures in a near-natural state, shows the nanostructures of the xanthohumol-containing nanoemulsion sample. Spherical objects of varying sizes are visible, consistent with DLS analysis results, which showed an average particle size of 48.21 nm (Z-Average). CRYO-TEM analysis enables the assessment of nanoparticle morphology and distribution and complements the physicochemical analyses of the formulation. The obtained results confirm the high quality and homogeneity of the developed nanoemulsion.

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