4.7 Review

Nanocelluloses as skin biocompatible materials for skincare, cosmetics, and healthcare: Formulations, regulations, and emerging applications

期刊

CARBOHYDRATE POLYMERS
卷 278, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.carbpol.2021.118956

关键词

Spherical cellulose nanoparticles; Cellulose nanocrystals; Cellulose nanofibers; Bacterial cellulose; Cellulose nanoyarn; Cellulose hydrogels; Wearable sensors; Skin regeneration

资金

  1. Egypt-France Joint Driver (Imhotep) [43990SF]
  2. Joint Egyptian Japanese Scientific Cooperation (JEJSC) [42811]
  3. Irish Research Council [GOIPD/2020/340]

向作者/读者索取更多资源

This review discusses the recent developments, market trends, safety assessments, and regulations of different types of nanocellulose used in skincare, cosmetics, and healthcare, highlighting their specific properties and potential applications. The challenges and perspectives for industrial breakthrough in this field are also addressed, emphasizing the optimization of production and processing conditions.
Nowadays, skin biocompatible products are fast-growing markets for nanocelluloses with increasing number of patents published in last decade. This review highlights recent developments, market trends, safety assessments, and regulations for different nanocellulose types (i.e. nanoparticles, nanocrystals, nanofibers, nanoyarns, bac-terial nanocellulose) used in skincare, cosmetics, and healthcare. The specific properties of nanocelluloses for skincare include high viscosity and shear thinning properties, surface functionality, dispersion stability, water -holding capacity, purity, and biocompatibility. Depending on their morphology (e.g. size, aspect ratio, geome-try, porosity), nanocelluloses can be used as formulation modifiers, moisturizers, nanofillers, additives, mem-branes, and films. Nanocellulose composite particles were recently developed as carriers for bioactive compounds or UV-blockers and platforms for wound healing and skin sensors. As toxicological assessment de-pends on morphologies and intrinsic properties, stringent regulation is needed from the testing of efficient nanocellulose dosages. The challenges and perspectives for an industrial breakthrough are related to optimiza-tion of production and processing conditions.

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