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Description

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admin (19653 pt) 2024-Sep-25 14:03

Sarcocapnos Crassifolia Callus Lysate is derived from the callus tissue of the Sarcocapnos crassifolia plant, which is known for its unique regenerative properties. This lysate is utilized in cosmetics for its skin-repairing, moisturizing, and soothing effects. It is particularly beneficial for improving skin texture and hydration, making it a valuable ingredient in various skincare formulations.

Chemical Composition and Structure

The chemical composition of Sarcocapnos Crassifolia Callus Lysate includes:

  • Proteins: Contribute to skin repair and regeneration.
  • Peptides: Promote hydration and improve skin elasticity.
  • Vitamins and Minerals: Provide essential nutrients that support overall skin health.

Structurally, the lysate is a complex mixture of bioactive compounds that work synergistically to enhance skin vitality and resilience.

Physical Properties

  • Appearance: Typically a translucent to cloudy liquid.

  • Solubility: Soluble in water; may vary based on formulation.

  • pH: Generally neutral to slightly acidic, depending on processing.

  • Odor: Mild and characteristic of plant extracts.

  • Stability: Stable under normal storage conditions; should be protected from light and moisture.

Production Process

  • Cultivation: The callus tissue of Sarcocapnos crassifolia is cultivated under controlled conditions to promote growth.

  • Lysis: The tissue is then lysed to release bioactive compounds.

  • Purification: The resulting lysate undergoes purification to concentrate the beneficial components and remove impurities.

  • Formulation: The purified lysate is incorporated into cosmetic products to enhance their moisturizing and skin-repairing properties.

Applications

  • Medical: Used in topical formulations for its skin-repairing and regenerative effects.

  • Cosmetics: Commonly found in serums, creams, and masks aimed at improving skin texture and hydration.

INCI Functions:

Skin conditioning agent. It is the mainstay of topical skin treatment as it has the function of restoring, increasing or improving skin tolerance to external factors, including melanocyte tolerance. The most important function of the conditioning agent is to prevent skin dehydration, but the subject is rather complex and involves emollients and humectants that can be added in the formulation.

  • Food: Not typically used in food products; primarily utilized in personal care applications.

  • Industrial Uses: May be used in formulations requiring natural extracts with beneficial properties.

Environmental and Safety Considerations

Sarcocapnos Crassifolia Callus Lysate is generally regarded as safe for use in cosmetics when applied according to recommended guidelines. It is well-tolerated by most skin types, including sensitive skin. Responsible sourcing and formulation practices are essential to ensure that the ingredient is free from harmful contaminants and produced sustainably.

References__________________________________________________________________________

Fernández-Poyatos, M. D. P., Zengin, G., Salazar-Mendías, C., Ruiz-Medina, A., Sinan, K. I., & Llorent-Martínez, E. J. (2020). Study on Three Sarcocapnos Species as Potential Sources of Bioactive Compounds: Relation between Phenolic Content and Bioactivity by Multivariate Analysis. Journal of Analytical Methods in Chemistry, 2020(1), 8885169.

Abstract. In this work, we report the phenolic composition and bioactivity of the aerial parts of three species of Sarcocapnos (S. enneaphylla, S. pulcherrima, and S. saetabensis) to study their potential as sources of bioactive compounds to revalorize them and contribute to the conservation of these plant species. Samples were collected in different locations in the province of Jaén (southeast of Spain), and qualitative and quantitative analyses of phenolic compounds were performed by high-performance liquid chromatography with diode array and mass spectrometry detection. S. enneaphylla presented the highest concentration of phenolic compounds (58 mg/g DE). The most abundant compound in S. enneaphylla and S. saetabensis was rutin (35 mg/g DE and 11.7 mg/g DE, respectively), whereas isorhamnetin-O-rutinoside was dominant in S. pulcherrima (11.5 mg/g DE). Several assays were performed to evaluate the potential bioactivity of the three species of Sarcocapnos. These assays included antioxidant and radical scavenging (ABTS and DPPH), reducing power (CUPRAC and FRAP), phosphomolybdenum and metal chelating, and enzyme inhibitory activity (acetylcholinesterase, amylase, butyrylcholinesterase, glucosidase, and tyrosinase). In general, all methanolic extracts presented the highest phenolic and flavonoid contents, as well as the highest radical scavenging, antioxidant, and enzyme inhibitory properties. This relationship between phenolics and bioactivity was confirmed by multivariate analysis.

Suau, R., Cabezudo, B., Valpuesta, M., Posadas, N., Diaz, A., & Torres, G. (2005). Identification and quantification of isoquinoline alkaloids in the genus Sarcocapnos by GC‐MS. Phytochemical Analysis: An International Journal of Plant Chemical and Biochemical Techniques, 16(5), 322-327.

López, S., Tojo, E., Blanco, O., Villaverde, M. C., & Castedo, L. (1991). Alkaloids from spanish Sarcocapnos species. Phytochemistry, 30(4), 1175-1182.

Abstract. The alkaloid contents of the five Spanish varieties of the genus Sarcocapnos (Fumariaceae) are compared. Nine main isoquinoline types have been identified, cularine alkaloids being the most abundant group in all the species.