• Journal of Inorganic Materials
  • Vol. 36, Issue 9, 981 (2020)
Yutong ZHU, Peijie TAN, Hai LIN*, Xiangdong ZHU, and Xingdong ZHANG
Author Affiliations
  • National Engineering Research Center for Biomaterials, Sichuan University, Chengdu 610064, China
  • show less
    DOI: 10.15541/jim20210020 Cite this Article
    Yutong ZHU, Peijie TAN, Hai LIN, Xiangdong ZHU, Xingdong ZHANG. Injectable Hyaluronan/Hydroxyapatite Composite: Preparation, Physicochemical Property and Biocompatibility[J]. Journal of Inorganic Materials, 2020, 36(9): 981 Copy Citation Text show less
    References

    [1] G DE VRIES C, E GEERTSMA R. Clinical data on injectable tissue fillers: a review. Expert Review of Medical Devices, 10, 835-853(2013).

    [2] E ORTIZ A, J AHLUWALIA, S SONG S et al. Analysis of U.S. food and drug administration data on soft-tissue filler complications. Dermatologic Surgery, 46, 958-961(2020).

    [3] W BUCK D, M ALAM, S KIM J Y. Injectable fillers for facial rejuvenation: a review. Journal of Plastic, Reconstructive & Aesthetic Surgery, 62, 11-18(2009).

    [4] J ALIJOTAS-REIG, T FERNÁNDEZ-FIGUERAS M, L PUIG. Inflammatory, immune-mediated adverse reactions related to soft tissue dermalfillers. Seminars in Arthritis and Rheumatism, 43, 241-258(2013).

    [5] S BRANDT F, A CAZZANIGA. Hyaluronic acid gel fillers in the management of facial aging. Clinical Interventions in Aging, 3, 153-159(2008).

    [6] P SHARMA, S SHARMA. Comparative study of a new dermal filler uma jeunesse and juvéderm. Journal of Cosmetic Dermatology, 10, 118-125(2011).

    [7] R YANG, L TAN, L CEN et al. An injectable scaffold based on crosslinked hyaluronic acid gel for tissue regeneration. RSC Advances, 6, 16838-16850(2016).

    [8] C CHOI S, A YOO M, Y LEE S et al. Modulation of biomechanical properties of hyaluronic acid hydrogels by crosslinking agents. Journal of Biomedical Materials Research Part A, 103, 3072-3080(2015).

    [9] J YEOM, H BHANG S, S KIM B et al. Effect of cross-linking reagents for hyaluronic acid hydrogel dermal fillers on tissue augmentation and regeneration. Bioconjugate Chemistry, 21, 240-247(2010).

    [10] V LOGHEM J, A YUTSKOVSKAYA Y, P WERSCHLER W. Calcium hydroxylapatite: over a decade of clinical experience. Journal of Clinical and Aesthetic Dermatology, 8, 38-49(2015).

    [11] H GRAIVIER M, S BASS L, M BUSSO et al. Calcium hydroxylapatite (radiesse) for correction of the mid- and lower face: consensus recommendations. Plastic & Reconstructive Surgery, 120, 55S-66S(2007).

    [12] J EMER, H SUNDARAM. Aesthetic applications of calcium hydroxylapatite volumizing filler: an evidence-based review and discussion of current concepts. Journal of Drugs in Dermatology Jdd., 12, 1345-1354(2013).

    [13] Y LIU, H WU Y, H LIN et al. Study on an injectable biomedical paste using cross-linked sodium hyaluronate as a carrier of hydroxyapatite particles. Carbohydrate Polymers, 195, 378-386(2018).

    [14] P REDBORD K, M BUSSO, W HANKO C. Soft-tissue augmentation with hyaluronic acid and calcium hydroxyl apatite fillers. Dermatologic Therapy, 24, 71-81(2011).

    [15] J EVIATAR, C LO, J KIRSZROT. Radiesse: advanced techniques and applications for a unique and versatile implant. Plastic and Reconstructive Surgery, 136, 164S-170S(2015).

    [16] H JEONG S, F FAN Y, U BAEK J et al. Long-lasting and bioactive hyaluronic acid-hydroxyapatite composite hydrogels for injectable dermal fillers: physical properties and in vivo durability. Journal of Biomaterials Applications, 31, 464-474(2016).

    [17] A FAKHARI, C BERKLAND. Applications and emerging trends of hyaluronic acid in tissue engineering, as a dermal filler and in osteoarthritis treatment. Acta Biomaterialia, 9, 7081-7092(2013).

    [18] K BOULLE, R GLOGAU, T KONO et al. A review of the metabolism of 1,4-butanediol diglycidyl ether-crosslinked hyaluronic acid dermal fillers. Dermatologic Surgery, 39, 1758-1766(2013).

    [19] H PAN H, H TAO J, T WU et al. Molecular simulation of water behaviours on hydroxyapatite crystal faces. Chinese Journal of Inorganic Chemistry, 22, 1392-1400(2006).

    [20] Z DAI, J RONHOLM, P TIAN Y et al. Sterilization techniques for biodegradable scaffolds in tissue engineering applications. J. Tissue Eng., 7, 1-13(2016).

    [21] R GALANTE, A PINTO T J, R COLACO et al. Sterilization of hydrogels for biomedical applications: a review. J. Biomed. Mater. Res., B6, 106(2017).

    [22] J WENDE F, S COHIL, I NORD L et al. 1D NMR methods for determination of degree of cross-linking and BDDE substitution positions in HA hydrogels. Carbohyd. Polym, 157, 1525-1530(2017).

    [23] J HARIDAS, J ROSEMARY M. Effect of steam sterilization and biocompatibility studies of hyaluronic acid hydrogel for viscosupplementation. Polymer Degradation and Stability, 163, 220-227(2019).

    [24] D FENG X. Study on the mechanism of initial dark oxidation of ether. Chemical Journal of Chinese Universities, 19, 1181-1183(1998).

    [25] F LÓPEZ J, A DEGLESNE P, R ARROYO et al. Detection of a new reaction by-product in BDDE cross-linked autoclaved hyaluronic acid hydrogels by LC-MS analysis. Medical Devices: Evidence and Research, 11, 367-376(2018).

    [26] J BAEK, F FAN Y, H JEONG S et al. Facile strategy involving low-temperature chemical cross-linking to enhance the physical and biological properties of hyaluronic acid hydrogel. Carbohyd. Polym., 202, 545-553(2018).

    [27] D FERRY J. Viscoelastic Properties of Polymers, 2nd edition. New York: Wiley-Interscience, 8, 595(1970).

    [28] R BARBUCCI, S LAMPONI, A BORZACCHIELLO et al. Hyaluronic acid hydrogel in the treatment of osteoarthritis. Biomaterials, 23, 4503-4513(2002).

    [29] W CHANG J, Y KOO W, K KIM E et al. Facial rejuvenation using a mixture of calcium hydroxylapatite filler and hyaluronic acid filler. Journal of Craniofacial Surgery, 31, e18-e21(2020).

    [30] A WIBOWO, M KAPOOR K, G PHILIPP-DORMSTON W. Reversal of post-filler vision loss and skin ischaemia with high-dose pulsed hyaluronidase injections. Aesthetic Plastic Surgery, 43, 1337-1344(2019).

    [31] W KIM D, S YOON E, H JI Y et al. Vascular complications of hyaluronic acid fillers and the role of hyaluronidase in management. Journal of Plastic, Reconstructive & Aesthetic Surgery, 64, 1590-1595(2011).

    [32] T TANO, K ONO, Y HIRATSUKA et al. Retinal vessel diameters in a Japanese population: the locomotive syndrome and health outcome in Aizu cohort study. Acta Ophthalmologica, 94, 431-441(2016).

    [33] M WANG, W LI, Y ZHANG et al. Comparison of intra-arterial and subcutaneous testicular hyaluronidase injection treatments and the vascular complications of hyaluronic acid filler. Dermatologic Surgery, 43, 246-254(2017).

    [34] S OHBA, Y SUMITA, M UMEBAYASHI et al. Onlay bone augmentation on mouse calvarial bone using a hydroxyapatite/ collagen composite material with total blood or platelet-rich plasma. Arch. Oral. Biol., 61, 23-27(2016).

    [35] W FLINT P, L CORIO R, W CUMMINGS C. Comparison of soft tissue response in rabbits following laryngeal implantation with hydroxylapatite, silicone rubber, and Teflon. Ann. Oto. Rhinol. Laryn., 106, 399-407(1997).

    [36] O REBELLATO P R, S TORRE D, C RASTELLI G J et al. Calcium hydroxylapatite for collagen biostimulation in the neck. Int. J. Dermatol. Venereology Leprosy Sci., 3, 27-31(2020).

    Yutong ZHU, Peijie TAN, Hai LIN, Xiangdong ZHU, Xingdong ZHANG. Injectable Hyaluronan/Hydroxyapatite Composite: Preparation, Physicochemical Property and Biocompatibility[J]. Journal of Inorganic Materials, 2020, 36(9): 981
    Download Citation