{"id":14137,"date":"2026-06-11T02:23:01","date_gmt":"2026-06-11T02:23:01","guid":{"rendered":"https:\/\/glabridinchina.com\/?p=14137"},"modified":"2026-06-11T02:43:23","modified_gmt":"2026-06-11T02:43:23","slug":"can-glabridin-work-in-water-based-systems","status":"publish","type":"post","link":"https:\/\/glabridinchina.com\/es\/can-glabridin-work-in-water-based-systems\/","title":{"rendered":"\u00bfPuede la Glabridina funcionar en sistemas a base de agua?"},"content":{"rendered":"<div data-elementor-type=\"wp-post\" data-elementor-id=\"14137\" class=\"elementor elementor-14137\" data-elementor-post-type=\"post\">\n\t\t\t\t<div class=\"elementor-element elementor-element-bbfdf4f e-flex e-con-boxed e-con e-parent\" data-id=\"bbfdf4f\" data-element_type=\"container\">\n\t\t\t\t\t<div class=\"e-con-inner\">\n\t\t\t\t<div class=\"elementor-element elementor-element-41feb3c elementor-widget elementor-widget-html\" data-id=\"41feb3c\" data-element_type=\"widget\" data-widget_type=\"html.default\">\n\t\t\t\t\t<script type=\"application\/ld+json\">{\n    \"@context\": \"https:\\\/\\\/schema.org\",\n    \"@type\": \"FAQPage\",\n    \"mainEntityOfPage\": {\n        \"@type\": \"WebPage\",\n        \"@id\": \"https:\\\/\\\/glabridinchina.com\\\/can-glabridin-work-in-water-based-systems\\\/\"\n    },\n    \"about\": {\n        \"@type\": \"ChemicalSubstance\",\n        \"name\": \"Glabridin\",\n        \"alternateName\": \"\\u5149\\u7518\\u8349\\u5b9a\"\n    },\n    \"publisher\": {\n        \"@type\": \"Organization\",\n        \"name\": \"Huatai Bio-Fine Chemical\",\n        \"url\": \"https:\\\/\\\/glabridinchina.com\"\n    },\n    \"mainEntity\": [\n        {\n            \"@type\": \"Question\",\n            \"name\": \"Can glabridin be used in water-based cosmetic systems?\",\n            \"acceptedAnswer\": {\n                \"@type\": \"Answer\",\n                \"text\": \"Yes. Glabridin can be incorporated into water-based systems using two purpose-built grades: the 10% water-soluble powder (hydroxypropyl \\u03b2-cyclodextrin encapsulated, loading capacity 15\\u201318% stably maintained at 10%) and the 1\\u20135% water-soluble liquid grades. Both can be incorporated directly into the aqueous phase. The 10% water-soluble powder is the preferred choice for most aqueous formats \\u2014 it is COSMOS-certified, shows improved photostability compared to unencapsulated glabridin in aqueous systems, and is compatible with toners, essences, hydrogels, and water-based serums.\"\n            }\n        },\n        {\n            \"@type\": \"Question\",\n            \"name\": \"What technology enables glabridin to disperse in water?\",\n            \"acceptedAnswer\": {\n                \"@type\": \"Answer\",\n                \"text\": \"Huatai's 10% water-soluble grade uses hydroxypropyl \\u03b2-cyclodextrin (HP-\\u03b2-CD) inclusion complex technology. HP-\\u03b2-CD has a hydrophilic outer surface and a hydrophobic inner cavity. Glabridin \\u2014 which is inherently lipophilic \\u2014 is encapsulated within the cavity, while the hydrophilic outer surface enables aqueous dispersion. The loading capacity is 15\\u201318%, stably maintained at 10% active content. HP-\\u03b2-CD encapsulation also supports potential improved delivery and may contribute to a more gradual release profile compared to free glabridin.\"\n            }\n        },\n        {\n            \"@type\": \"Question\",\n            \"name\": \"How does HP-\\u03b2-CD encapsulation affect glabridin stability in water?\",\n            \"acceptedAnswer\": {\n                \"@type\": \"Answer\",\n                \"text\": \"HP-\\u03b2-CD encapsulation improves glabridin's photostability in aqueous systems compared to unencapsulated glabridin. Internal stability testing shows the HP-\\u03b2-CD inclusion complex retains approximately 90% of its mass after 4 days of light exposure (Huatai internal stability data). Thermal stability is maintained at approximately 100\\u00b0C processing conditions, making it compatible with standard cosmetic manufacturing temperatures.\"\n            }\n        },\n        {\n            \"@type\": \"Question\",\n            \"name\": \"What is the difference between the 10% water-soluble powder and the 1\\u20135% water-soluble liquid grade?\",\n            \"acceptedAnswer\": {\n                \"@type\": \"Answer\",\n                \"text\": \"The 10% water-soluble powder uses HP-\\u03b2-CD encapsulation technology and is a dry powder that disperses directly in water. It has a 24-month shelf life. The 1\\u20135% liquid grades are pre-dissolved solutions that also incorporate directly in water but contain approved preservatives \\u2014 these should be considered in the overall preservative system of the finished formulation. The liquid grades have a 12-month shelf life. For most water-based applications, the 10% powder is preferred for its higher active concentration, longer shelf life, and absence of added preservatives.\"\n            }\n        },\n        {\n            \"@type\": \"Question\",\n            \"name\": \"Can the water-soluble glabridin grade be used in toners and essences?\",\n            \"acceptedAnswer\": {\n                \"@type\": \"Answer\",\n                \"text\": \"Yes. The 10% water-soluble powder and 1\\u20135% water-soluble liquid grades are both suitable for toners, essences, hydrogels, and water-based serums. Add directly to the water phase or during cool-down. Additional co-solvents are typically not required for the 10% powder grade. For the liquid grades, the included preservatives should be considered in your regulatory documentation and overall preservative system.\"\n            }\n        }\n    ]\n}<\/script>\n\n  <link rel=\"preconnect\" href=\"https:\/\/fonts.googleapis.com\">\n  <link rel=\"preconnect\" href=\"https:\/\/fonts.gstatic.com\" crossorigin>\n  <link href=\"https:\/\/fonts.googleapis.com\/css2?family=Inter:wght@300;400;500;600;700&family=Merriweather:ital,wght@0,400;0,700;1,400&display=swap\" rel=\"stylesheet\">\n\n  <style>\n    :root {\n      --color-bg:           #f9f9f7;\n      --color-surface:      #ffffff;\n      --color-border:       #e5e2d9;\n      --color-text:         #1c1c1a;\n      --color-text-muted:   #6a6760;\n      --color-accent:       #2d5a3d;\n      --color-accent-light: #edf4ef;\n      --color-accent-mid:   #4a7c5f;\n      --color-warn:         #7a4f1e;\n      --color-warn-light:   #fdf4eb;\n      --color-data-bg:      #f3f1ed;\n      --font-heading:       'Merriweather', Georgia, 'Times New Roman', serif;\n      --font-body:          'Inter', -apple-system, BlinkMacSystemFont, 'Segoe UI', Helvetica, Arial, sans-serif;\n      --max-width:          800px;\n      --radius:             6px;\n    }\n\n    *, *::before, *::after { box-sizing: border-box; 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padding: 9px 20px; border-radius: 4px;\n      white-space: nowrap; flex-shrink: 0;\n    }\n\n    .references { margin-top: 44px; padding-top: 24px; border-top: 1px solid var(--color-border); }\n    .references h2 {\n      font-family: var(--font-body); font-size: 12px; font-weight: 700;\n      margin-bottom: 12px; color: var(--color-text-muted); border: none; padding: 0;\n      text-transform: uppercase; letter-spacing: 0.07em;\n    }\n    .references ol { padding-left: 18px; }\n    .references li { font-size: 13px; color: var(--color-text-muted); line-height: 1.6; margin-bottom: 7px; }\n\n    .article-footer {\n      margin-top: 36px; padding-top: 18px; border-top: 1px solid var(--color-border);\n      font-size: 12px; color: var(--color-text-muted); line-height: 1.6;\n    }\n  <\/style>\n<\/head>\n<body>\n\n  <div class=\"page-wrap\">\n\n    <header class=\"article-header\">\n      <div class=\"tag-row\">\n        <span class=\"tag\">Preguntas Frecuentes<\/span>\n        <span class=\"tag secondary\">Glabridina<\/span>\n        <span class=\"tag secondary\">Sistemas a base de agua<\/span>\n        <span class=\"tag secondary\">HP-\u03b2-CD<\/span>\n      <\/div>\n\n      <p class=\"article-intro\">S\u00ed. La glabridina se puede incorporar en sistemas a base de agua utilizando grados especialmente dise\u00f1ados que permiten la dispersi\u00f3n en ambientes acuosos. Este art\u00edculo cubre la tecnolog\u00eda de encapsulaci\u00f3n HP-\u03b2-CD, las dos opciones de grado compatibles con agua, las consideraciones de estabilidad y las pautas de incorporaci\u00f3n para formatos comunes a base de agua.<\/p>\n      <div class=\"byline\">\n        <span><strong>Huatai Bio-Fine Chemical<\/strong> \u2014 fabricante de activos cosm\u00e9ticos de alta pureza desde 2008<\/span>\n        <span style=\"color:var(--color-border)\">\u00b7<\/span>\n        <span>Publicado 2026<\/span>\n      <\/div>\n    <\/header>\n\n    <article class=\"article-body\">\n\n      <p>S\u00ed. La glabridina se puede incorporar en sistemas a base de agua utilizando grados especialmente dise\u00f1ados que permiten la dispersi\u00f3n en ambientes acuosos. La glabridina est\u00e1ndar es inherentemente lipof\u00edlica; no se disuelve en agua. Huatai ha desarrollado dos familias de grados compatibles con agua que permiten la incorporaci\u00f3n en sistemas acuosos a trav\u00e9s de tecnolog\u00edas de formulaci\u00f3n especializadas, al tiempo que respaldan la estabilidad activa en condiciones de formulaci\u00f3n apropiadas.<\/p>\n\n      <h2>El desaf\u00edo de la solubilidad y su soluci\u00f3n<\/h2>\n\n      <p>La estructura de isoflavano de la glabridina es inherentemente lipof\u00edlica y presenta una solubilidad en agua muy limitada. En sistemas a base de agua, la glabridina no modificada puede ser dif\u00edcil de dispersar uniformemente y puede presentar desaf\u00edos de formulaci\u00f3n como sedimentaci\u00f3n o distribuci\u00f3n no uniforme del activo si no se solubiliza o estabiliza adecuadamente.<\/p>\n\n      <p>Un enfoque tradicional es usar co-solventes como propilenglicol o etanol para mejorar la solubilidad. Sin embargo, los niveles de solvente requeridos pueden ser menos deseables para t\u00f3nicos de piel sensible, esencias o formulaciones de hidrogel donde la suavidad y la comodidad de la piel son consideraciones importantes de formulaci\u00f3n.<\/p>\n\n      <p>La soluci\u00f3n es seleccionar un grado dise\u00f1ado espec\u00edficamente para sistemas de agua.<\/p>\n\n      <h2>Las dos opciones de grado compatibles con agua<\/h2>\n\n      <h3>Opci\u00f3n 1 \u2014 Polvo soluble en agua 10% (encapsulado en HP-\u03b2-CD)<\/h3>\n\n      <p>Este es el grado principal recomendado para aplicaciones a base de agua.<\/p>\n\n      <div class=\"table-wrap\">\n        <table>\n          <thead>\n            <tr><th>Par\u00e1metro<\/th><th>Detalle<\/th><\/tr>\n          <\/thead>\n          <tbody>\n            <tr><td>Forma f\u00edsica<\/td><td>Polvo blanco<\/td><\/tr>\n            <tr><td>Dispersabilidad acuosa<\/td><td>F\u00e1cilmente dispersable en sistemas a base de agua<\/td><\/tr>\n            <tr><td>Contenido activo<\/td><td>Glabridina 10%<\/td><\/tr>\n            <tr><td>Tecnolog\u00eda de encapsulaci\u00f3n<\/td><td>Complejo de inclusi\u00f3n de hidroxipropil \u03b2-ciclodextrina (HP-\u03b2-CD)<\/td><\/tr>\n            <tr><td>Capacidad de carga<\/td><td>15\u201318% (mantenido estable en 10%)<\/td><\/tr>\n            <tr><td>Estabilidad t\u00e9rmica<\/td><td>Descomposici\u00f3n lenta mantenida a ~100\u00b0C<\/td><\/tr>\n            <tr><td>Fotoestabilidad<\/td><td>~10% de p\u00e9rdida de masa durante 4 d\u00edas de exposici\u00f3n a la luz (datos de estabilidad interna de Huatai)<\/td><\/tr>\n            <tr><td>Duraci\u00f3n<\/td><td>24 meses<\/td><\/tr>\n            <tr><td>Estado COSMOS<\/td><td>Certificado<\/td><\/tr>\n          <\/tbody>\n        <\/table>\n      <\/div>\n\n      <p><strong>C\u00f3mo funciona:<\/strong> El HP-\u03b2-CD tiene una superficie exterior hidrof\u00edlica y una cavidad interior hidrof\u00f3bica. La glabridina se encapsula dentro de la cavidad hidrof\u00f3bica del HP-\u03b2-CD para formar un complejo de inclusi\u00f3n. Cuando se dispersa en agua, todo el complejo se vuelve dispersable en agua, lo que permite la formaci\u00f3n de una dispersi\u00f3n acuosa estable. El sistema resultante puede aparecer como una dispersi\u00f3n clara a ligeramente opalescente dependiendo de la concentraci\u00f3n y las condiciones de formulaci\u00f3n.<\/p>\n\n      <p>M\u00e1s all\u00e1 de la dispersabilidad en agua, la encapsulaci\u00f3n con HP-\u03b2-CD proporciona dos beneficios de rendimiento potenciales adicionales:<\/p>\n      <ul>\n        <li><strong>Potencial mejora de la entrega:<\/strong> El HP-\u03b2-CD puede mejorar la entrega de activos encapsulados al mejorar su dispersabilidad en agua y su solubilidad aparente.<\/li>\n        <li><strong>Potencial comportamiento de liberaci\u00f3n controlada:<\/strong> La inclusi\u00f3n de HP-\u03b2-CD puede contribuir a un perfil de liberaci\u00f3n m\u00e1s gradual en comparaci\u00f3n con la glabridina libre.<\/li>\n      <\/ul>\n\n      <figure class=\"figure\">\n        <img decoding=\"async\" src=\"https:\/\/glabridinchina.com\/wp-content\/uploads\/2026\/06\/glabridin_hpbcd_permeation.png\"\n             alt=\"Gr\u00e1fico lineal que muestra la cantidad de permeaci\u00f3n acumulada de GLA frente a GLA-HP-\u03b2-CD durante 12 horas, con GLA-HP-\u03b2-CD mostrando una mayor permeaci\u00f3n en todo momento\">\n        <figcaption>Fig. 1 \u2014 Perfil de la cantidad de permeaci\u00f3n acumulativa de glabridina (GLA) y complejo de inclusi\u00f3n de glabridina HP\u2013\u03b2\u2013CD. El GLA\u2013HP\u2013\u03b2\u2013CD muestra una mayor permeaci\u00f3n acumulativa en todos los puntos de tiempo. Datos: datos internos de Huatai.<\/figcaption>\n      <\/figure>\n\n      <h3>Opci\u00f3n 2 \u2014 1\u20135% Grados L\u00edquidos Solubles en Agua<\/h3>\n\n      <p>Concentrados l\u00edquidos predissolvidos disponibles en dos variantes:<\/p>\n\n      <div class=\"table-wrap\">\n        <table>\n          <thead>\n            <tr><th>Variante<\/th><th>Color<\/th><th>Preservativo<\/th><\/tr>\n          <\/thead>\n          <tbody>\n            <tr><td>l\u00edquido incoloro a amarillo p\u00e1lido<\/td><td>Incoloro<\/td><td>Contiene conservante aprobado<\/td><\/tr>\n            <tr><td>L\u00edquido de color marr\u00f3n rojizo a marr\u00f3n oscuro<\/td><td>Marr\u00f3n<\/td><td>Contiene conservante aprobado<\/td><\/tr>\n          <\/tbody>\n        <\/table>\n      <\/div>\n\n      <p>Ambas variantes son sistemas predissolvidos compatibles con el agua y se pueden a\u00f1adir directamente a la fase acuosa. La consideraci\u00f3n clave de la formulaci\u00f3n: <strong>estos grados contienen conservantes aprobados<\/strong>. El conservante incluido debe considerarse en el sistema conservante general de la formulaci\u00f3n terminada y declararse en la documentaci\u00f3n regulatoria.<\/p>\n\n      <p>Los grados l\u00edquidos 1\u20135% son muy adecuados para formulaciones donde se prefiere un concentrado predissolvido y listo para usar, especialmente \u00fatil para la preparaci\u00f3n de lotes peque\u00f1os o para marcas sin infraestructura de pesaje de polvos.<\/p>\n\n      <h2>Fotoestabilidad en Agua: La Ventaja de la Encapsulaci\u00f3n<\/h2>\n\n      <p>En sistemas acuosos, la glabridina no encapsulada puede ser m\u00e1s susceptible a la fotodegradaci\u00f3n. En agua, el entorno polar puede aumentar la susceptibilidad de los grupos hidroxilo fen\u00f3licos a la degradaci\u00f3n oxidativa, y la ausencia de antioxidantes de fase lip\u00eddica (como la tocoferol cuando est\u00e1 presente) puede reducir la protecci\u00f3n antioxidante.<\/p>\n\n      <p>La encapsulaci\u00f3n con HP-\u03b2-CD puede ayudar a abordar este problema. Las pruebas de estabilidad interna del complejo de inclusi\u00f3n de HP-\u03b2-CD muestran:<\/p>\n\n      <div class=\"table-wrap\">\n        <table>\n          <thead>\n            <tr><th>Condici\u00f3n<\/th><th>Complejo de HP-\u03b2-CD y Glabridina<\/th><th>Fuente<\/th><\/tr>\n          <\/thead>\n          <tbody>\n            <tr>\n              <td>Exposici\u00f3n a la luz, 4 d\u00edas<\/td>\n              <td>~10% p\u00e9rdida de masa<\/td>\n              <td>Datos de estabilidad interna de Huatai<\/td>\n            <\/tr>\n            <tr>\n              <td>T\u00e9rmico (procesamiento a ~100 \u00b0C)<\/td>\n              <td>Descomposici\u00f3n lenta<\/td>\n              <td>Datos de estabilidad interna de Huatai<\/td>\n            <\/tr>\n          <\/tbody>\n        <\/table>\n      <\/div>\n\n      <figure class=\"figure\">\n        <img decoding=\"async\" src=\"https:\/\/glabridinchina.com\/wp-content\/uploads\/2026\/06\/glabridin_hpbcd_photostability.png\"\n             alt=\"Gr\u00e1fico lineal que muestra la tasa de descomposici\u00f3n del complejo de inclusi\u00f3n de glabridina HP-\u03b2-CD durante 4 d\u00edas de exposici\u00f3n a la luz, alcanzando aproximadamente el 10-11% en los d\u00edas 3-4\">\n        <figcaption>Fig. 2 \u2014 Fotostabilidad del complejo de inclusi\u00f3n de glabridina HP\u2013\u03b2\u2013CD. La tasa de descomposici\u00f3n se mantiene por debajo de 11% despu\u00e9s de 4 d\u00edas de exposici\u00f3n a la luz. Datos: Datos de estabilidad interna de Huatai.<\/figcaption>\n      <\/figure>\n\n      <p>La cavidad de la ciclodextrina puede encapsular la mol\u00e9cula de glabridina, reduciendo su exposici\u00f3n a la luz y al entorno acuoso circundante, lo que puede ayudar a mejorar la estabilidad en comparaci\u00f3n con la forma no encapsulada.<\/p>\n\n      <p>Para el envasado del producto terminado, se aplican las mismas reglas independientemente del grado: el envasado protector contra rayos UV u opaco es particularmente importante para los formatos transparentes a base de agua (por ejemplo, t\u00f3nicos y esencias) para ayudar a minimizar la degradaci\u00f3n inducida por la luz durante el almacenamiento y el uso.<\/p>\n\n      <h2>Directrices de incorporaci\u00f3n para sistemas a base de agua<\/h2>\n\n      <h3>Polvo 10% soluble en agua<\/h3>\n      <ol>\n        <li>A\u00f1adir directamente a la fase acuosa a temperatura ambiente hasta 40 \u00b0C; agitar hasta que est\u00e9 completamente disperso.<\/li>\n        <li>Normalmente no se requiere un solubilizante adicional.<\/li>\n        <li>Nivel de uso objetivo: ajustar seg\u00fan el sistema de formulaci\u00f3n y el nivel activo objetivo: el grado 10% proporciona flexibilidad para una gama de concentraciones activas.<\/li>\n        <li>Verificar el pH final una vez completadas todas las adiciones de enfriamiento; pH objetivo 4.0\u20135.5.<\/li>\n      <\/ol>\n\n      <h3>Grados l\u00edquidos 1\u20135% solubles en agua<\/h3>\n      <ol>\n        <li>A\u00f1adir directamente a la fase acuosa o durante el enfriamiento.<\/li>\n        <li>El conservante incluido debe considerarse en el sistema conservante general.<\/li>\n        <li>Confirme la identidad y concentraci\u00f3n del conservante con el COA del proveedor antes de finalizar la declaraci\u00f3n del conservante.<\/li>\n        <li>Verificar el pH final una vez completadas todas las adiciones de enfriamiento; pH objetivo 4.0\u20135.5.<\/li>\n      <\/ol>\n\n      <h3>Refuerzo de la estabilidad para sistemas a base de agua<\/h3>\n      <ul>\n        <li>Incluir un quelante met\u00e1lico en la fase acuosa: EDTA dis\u00f3dico (0,05\u20130,11 TP3T) o fitato de sodio (0,1\u20130,51 TP3T) para sistemas compatibles con COSMOS.<\/li>\n        <li>Utilizar una fase acuosa tamponada (\u00e1cido c\u00edtrico\/citrato de sodio o \u00e1cido l\u00e1ctico\/lactato de sodio) para mantener la estabilidad del pH durante la vida \u00fatil.<\/li>\n        <li>El embalaje protector contra los rayos UV u opaco es especialmente importante para los formatos transparentes a base de agua (por ejemplo, t\u00f3nicos y esencias) para ayudar a minimizar la degradaci\u00f3n inducida por la luz durante el almacenamiento y el uso.<\/li>\n      <\/ul>\n\n      <h2>Formatos aplicables a base de agua<\/h2>\n\n      <div class=\"table-wrap\">\n        <table>\n          <thead>\n            <tr><th>Formato<\/th><th>Grado recomendado<\/th><th>Notas<\/th><\/tr>\n          <\/thead>\n          <tbody>\n            <tr>\n              <td>T\u00f3nico \/ Agua facial<\/td>\n              <td>Polvo hidrosoluble al 101 TP3T o l\u00edquido hidrosoluble al 1\u201351 TP3T<\/td>\n              <td>Incorporaci\u00f3n acuosa directa; normalmente no se requieren co-disolventes adicionales<\/td>\n            <\/tr>\n            <tr>\n              <td>Hidrogel<\/td>\n              <td>Polvo 10% soluble en agua<\/td>\n              <td>Dispersar en la fase acuosa antes de la adici\u00f3n del agente gelificante<\/td>\n            <\/tr>\n            <tr>\n              <td>S\u00e9rum a base de agua<\/td>\n              <td>Polvo 10% soluble en agua<\/td>\n              <td>Posible alta carga de activos; ajustar el nivel de uso seg\u00fan el objetivo<\/td>\n            <\/tr>\n            <tr>\n              <td>Esencia para mascarilla de l\u00e1mina<\/td>\n              <td>Polvo hidrosoluble al 101 TP3T o l\u00edquido hidrosoluble al 1\u201351 TP3T<\/td>\n              <td>Adecuado para formulaciones de esencia de mascarilla de l\u00e1mina acuosa<\/td>\n            <\/tr>\n            <tr>\n              <td>Agua micelar<\/td>\n              <td>1\u201351% l\u00edquido soluble en agua<\/td>\n              <td>Formato predissolto adecuado para formulaciones de limpieza micelar acuosa<\/td>\n            <\/tr>\n          <\/tbody>\n        <\/table>\n      <\/div>\n\n      <div class=\"callout\">\n        <p>Cada lote se env\u00eda con COA, TDS y SDS\/MSDS. Pruebas adicionales disponibles bajo petici\u00f3n.<\/p>\n      <\/div>\n\n      <!-- Related -->\n      <div class=\"related-section\">\n        <h2>Recursos relacionados<\/h2>\n        <div class=\"related-links\">\n          <a class=\"related-link\" href=\"https:\/\/glabridinchina.com\/es\/glabridin\/\">\n            <span>Gu\u00eda de Glabridina para Formulaci\u00f3n Cosm\u00e9tica \u2014 Referencia T\u00e9cnica Completa<br>\n            <small style=\"color:var(--color-text-muted);font-weight:400\">Matriz de grado completo, datos de tecnolog\u00eda HP-\u03b2-CD y protocolos de formulaci\u00f3n<\/small><\/span>\n            <span class=\"related-link-arrow\">\u2192<\/span>\n          <\/a>\n          <a class=\"related-link\" href=\"https:\/\/glabridinchina.com\/es\/why-does-glabridin-discolor-in-emulsions-huatai-bio-fine-chemical\/\">\n            <span>\u00bfPor qu\u00e9 la Glabridina se decolora en las emulsiones?<br>\n            <small style=\"color:var(--color-text-muted);font-weight:400\">Diagn\u00f3stico de estabilidad aplicable a todos los tipos de sistemas<\/small><\/span>\n            <span class=\"related-link-arrow\">\u2192<\/span>\n          <\/a>\n          <a class=\"related-link\" href=\"https:\/\/glabridinchina.com\/es\/how-to-stabilize-glabridin-in-cosmetic-formulations\/\">\n            <span>\u00bfC\u00f3mo estabilizar la glabridina en formulaciones cosm\u00e9ticas?<br>\n            <small style=\"color:var(--color-text-muted);font-weight:400\">Protocolo de estabilizaci\u00f3n completo, incluidas las consideraciones de la fase acuosa<\/small><\/span>\n            <span class=\"related-link-arrow\">\u2192<\/span>\n          <\/a>\n          <a class=\"related-link\" href=\"https:\/\/glabridinchina.com\/es\/what-ph-range-does-glabridin-require-in-cosmetic-formulations\uff1f\/\">\n            <span>\u00bfQu\u00e9 rango de pH requiere la Glabridina en formulaciones cosm\u00e9ticas?<br>\n            <small style=\"color:var(--color-text-muted);font-weight:400\">Selecci\u00f3n de tampones para sistemas acuosos<\/small><\/span>\n            <span class=\"related-link-arrow\">\u2192<\/span>\n          <\/a>\n        <\/div>\n      <\/div>\n\n      <!-- CTA -->\n      <div class=\"cta-box\">\n        <div class=\"cta-box-text\">\n          <strong>Solicitar muestras, COA o consulta t\u00e9cnica<\/strong>\n          glabridinchina.com \u00b7 jelly@huataibio.com \u00b7 +86 17868678161\n        <\/div>\n        <a class=\"cta-btn\" href=\"https:\/\/glabridinchina.com\/es\/Parsley-Extract\/\">Cont\u00e1ctenos \u2192<\/a>\n      <\/div>\n\n      <!-- References -->\n      <div class=\"references\">\n        <h2>Referencias<\/h2>\n        <ol>\n          <li>Ao M, Shi Y, Cui Y, Guo W, Wang J, Yu L. Factores que influyen en la estabilidad de la glabridina. <em>Natural Product Communications<\/em>, Vol. 5(12), 1907\u20131912, 2010. DOI: 10.1177\/1934578X1000501214. PMID: 21299118.<\/li>\n          <li>Yokota T, Nishio H, Kubota Y, Mizoguchi M. El efecto inhibidor de la glabridina de extractos de regaliz en la melanog\u00e9nesis y la inflamaci\u00f3n. <em>Pigment Cell Research<\/em>, 11(6), 355\u2013361, 1998. DOI: 10.1111\/j.1600-0749.1998.tb00494.x.<\/li>\n          <li>Huatai Bio-Fine Chemical. Datos de estabilidad interna del complejo de inclusi\u00f3n de glabridina soluble en agua. Patente de invenci\u00f3n china ZL202111026952.7, concedida el 28 de abril de 2023.<\/li>\n        <\/ol>\n      <\/div>\n\n      <div class=\"article-footer\">\n        <p>Para formuladores cosm\u00e9ticos profesionales y audiencias de I+D. No constituye asesoramiento regulatorio.<br>\n        Publicado en 2026 \u2014 Huatai Bio-Fine Chemical, Xi'an, Shaanxi, China.<\/p>\n      <\/div>\n\n    <\/article>\n  <\/div>\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t<\/div>","protected":false},"excerpt":{"rendered":"<p>Preguntas frecuentes Sistemas a base de agua de glabridina HP-\u03b2-CD S\u00ed. La glabridina se puede incorporar en sistemas a base de agua utilizando grados especialmente dise\u00f1ados que permiten la dispersi\u00f3n en ambientes acuosos. Este art\u00edculo cubre\u2026<\/p>","protected":false},"author":8,"featured_media":5795,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[414],"tags":[],"class_list":["post-14137","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-troubleshooting-faq"],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v23.8 (Yoast SEO v24.2) - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Can Glabridin Work in Water-Based Systems? | Huatai Bio-Fine Chemical<\/title>\n<meta name=\"description\" content=\"Glabridin can be incorporated into water-based systems using purpose-built HP-\u03b2-CD encapsulated and pre-dissolved liquid grades. 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