In the last decades, many research groups have experimented the synthesis of hydroxyapatite (HA) for bone tissue application obtaining products with different shapes and dimensions. This review aims to summarise and critically analyse the most used methods to prepare physiologic-like nano-HA, in the form of plates or rods, similar to theHApresent in the human bones. Moreover, mesoporous HA has gained increasing interest in the biomedical field due its pecualiar structural features, such as high surface area and accessible mesoporous volume, which is known to confer enhanced biological behaviour and the possibility to act as nanocarriers of functional agents for bone-related therapies. For this reason, more recent studies related to the synthesis of mesoporous HA, with physiological-like morphology, are also considered in this review. Since a wide class of surfactant molecules plays an essential role both in the shape and size control ofHAcrystals and in the formation of mesoporosity, a section devoted to the mechanisms of action of several surfactants is also provided.

Biomimetic and mesoporous nano-hydroxyapatite for bone tissue application: a short review / Molino, Giulia; Palmieri, MARIA CHIARA; Montalbano, Giorgia; Fiorilli, SONIA LUCIA; VITALE BROVARONE, Chiara. - In: BIOMEDICAL MATERIALS. - ISSN 1748-6041. - 15:(2020). [10.1088/1748-605X/ab5f1a]

Biomimetic and mesoporous nano-hydroxyapatite for bone tissue application: a short review

Giulia Molino;Maria Chiara Palmieri;Giorgia Montalbano;Sonia Fiorilli;Chiara Vitale-Brovarone
2020

Abstract

In the last decades, many research groups have experimented the synthesis of hydroxyapatite (HA) for bone tissue application obtaining products with different shapes and dimensions. This review aims to summarise and critically analyse the most used methods to prepare physiologic-like nano-HA, in the form of plates or rods, similar to theHApresent in the human bones. Moreover, mesoporous HA has gained increasing interest in the biomedical field due its pecualiar structural features, such as high surface area and accessible mesoporous volume, which is known to confer enhanced biological behaviour and the possibility to act as nanocarriers of functional agents for bone-related therapies. For this reason, more recent studies related to the synthesis of mesoporous HA, with physiological-like morphology, are also considered in this review. Since a wide class of surfactant molecules plays an essential role both in the shape and size control ofHAcrystals and in the formation of mesoporosity, a section devoted to the mechanisms of action of several surfactants is also provided.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2798735