GARCIA URIOSTEGUI, LORENA
CIENCIAS DE LA VIDA · Nivel 2
Desde 2004 es Researcher en SECIHTI-Universidad de Guadalajara
Researcher and Professor with over 14 years of experience leading multidisciplinary projects in advanced materials and green nanotechnology. Recognized for driving high-impact biomedical and environmental innovations through strong international collaborations, competitive funding, and graduate student mentorship. Core Research Areas: —Targeted...
Researcher and Professor with over 14 years of experience leading multidisciplinary projects in advanced materials and green nanotechnology. Recognized for driving high-impact biomedical and environmental innovations through strong international collaborations, competitive funding, and graduate student mentorship.
Core Research Areas:
—Targeted Drug Delivery: Engineering smart core-shell systems (mesoporous silica and stimuli-responsive polymers) for controlled therapeutic release.
—Regenerative Biomaterials: Developing organic–inorganic hybrids from natural polymers for bone regeneration and wound healing.
—Sustainable Nanofabrication: Advanced green synthesis of mesoporous particles via microwave-assisted methods and gamma radiation.
— Biomass Valorization: Circular-economy approaches for extracting and modifying polysaccharides from agro-industrial byproducts.
Información*
| Nombre | LORENA GARCIA URIOSTEGUI |
|---|---|
| Área | BIOLOGÍA Y QUÍMICA |
| Campo | CIENCIAS DE LA VIDA |
| Disciplina | POLÍMEROS Y MATERIALES |
| Especialidad | OTRAS |
| CVU | 204673 |
| Institución | |
|---|---|
| Dependencia | NO APLICA |
| Entidad | NO APLICA |
| Nivel | 2 |
| Vigencia | Inicio: 01/01/2024 |
| Fin: 31/12/2028 |
* Información del primer trimestre de 2026.
Fuente: SECIHTI.
Últimas publicaciones Scopus
- 2026
- Gamma irradiation-assisted synthesis of mesoporous silica nanoparticles: Role of radiolysis in structure and surface development Microporous and Mesoporous Materials · Vol. 413 Article
- Structural and physicochemical insights into pH-responsive poly(DEAEMA-co-HEMA)-grafted mesoporous silica nanoparticles Applied Surface Science · Vol. 733 Article
- A vNAR-based hybrid nanobiosensor for rapid and selective HbA1c detection: a step forward in next-generation diabetes diagnosis Nanoscale · Vol. 18 Article
- Drug delivery systems based on polysaccharides and inorganic nanoparticles: A comprehensive review on their therapeutic applications and recent advances Next Materials · Vol. 11 Review
- 2025
- Preparation of thermo-responsive antimicrobial hydrogel from agave bagasse xylan-net-oxazoline and phosphate mesoporous silica SBA-15 International Journal of Biological Macromolecules · Vol. 320 Article