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Agbeboh, N. I., Oladele, I. O., Daramola, O. O., Adediran, A. A., Olasukanmi, O. O., &

Tanimola, M. O. (2020). Environmentally sustainable processes for the synthesis of hydroxyapatite. Heliyon, 6(4), 1-13.

Agrawal, K., Singh, G., Puri, D., & Prakash, S. (2011). Synthesis and characterization of hydroxyapatite powder by sol-gel method for biomedical application. Journal of Minerals & Materials Characterization & Engineering, 10(8), 727-734.

Ahmed, T. A., Wu, L., Younes, M., & Hincke, M. (2021). Biotechnological Applications of Eggshell: Recent Advances. Frontiers in Bioengineering and Biotechnology, 9, 1-19.

Awasthi, S., Pandey, S. K., Arunan, E., & Srivastava, C. (2021). A review on hydroxyapatite coatings for the biomedical applications: Experimental and theoretical

perspectives. Journal of Materials Chemistry B, 9(2), 228-249.

Badenes, S. M., Fernandes-Platzgummer, A., Rodrigues, C. A. V., Diogo, M. M., Da Silva, C.

L., & Cabral, J. M. S. (2016). Microcarrier culture systems for stem cell manufacturing. In Stem Cell Manufacturing, 77-104

Baskaran, M., Rokiah, H., Othman, S., Salim, H., Masatoshi, S., & Tomoko, S. (2015).

Optimization of Press Temperature and Time For Binderless particleboard Manufactured From Oil Palm Trunk Biomass at Different Thickness Levels. Materials Today Communications 3, 87-88.

Basso, A., & Serban, S. (2019). Industrial applications of immobilized enzymes—A review. Molecular Catalysis, 479, 110607.

Bezerra, M.A., Santelli, R.E., Oliveira, E.P., Villar, L.S. & Escaleira, L.A. (2008). Response Surface Methodology (RSM) as a tool for Optimatization in Analytical Chemistry.

Talanta 76(5), 965-977.

Bose, S., & Saha, S. K. (2003). Synthesis and characterization of hydroxyapatite nanopowders by emulsion technique. Chemistry of materials, 15(23), 4464-4469.

Buchan, S. A., Chung, H., Brown, K. A., Austin, P. C., Fell, D. B., Gubbay, J., & Kwong, J.

(2022). Effectiveness of COVID-19 vaccines against Omicron or Delta infection. medRxiv, 1-19.

Chen, B. H., Chen, K. I., Ho, M. L., Chen, H. N., Chen, W. C., & Wang, C. K. (2009). Synthesis of calcium phosphates and porous hydroxyapatite beads prepared by emulsion method. Materials Chemistry and Physics, 113(1), 365-371.

Datta, S., Christena, L. R., & Rajaram, Y. R. S. (2013). Enzyme immobilization: an overview on techniques and support materials. 3 Biotech, 3(1), 1-9.

Dergaa, I., Abdelrahman, H., Varma, A., Yousfi, N., Souissi, A., Ghram, A., ... & Farzian, S.

(2021). COVID-19 vaccination, herd immunity and the transition toward normalcy:

challenges with the upcoming sports events. Annals of Applied Sport Science, 9(3), 2- 11.

Earl, J. S., Wood, D. J., & Milne, S. J. (2006, February). Hydrothermal synthesis of hydroxyapatite. In Journal of Physics: Conference Series (Vol. 26, No. 1, p. 064). IOP Publishing.

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Ebrahimi, S., Stephen Sipaut@ Mohd Nasri, C., & Bin Arshad, S. E. (2021). Hydrothermal synthesis of hydroxyapatite powders using Response Surface Methodology (RSM). Plos one, 16(5), e0251009.

European Pharmacopoeia (5th ed.). (2005). Strasbourg: Councill of Europe, European Directorate for the Quality of Medicine & Healthcare: Author.

Fadila, R., Fadli, A., & Yenti, S. R. (2019). Sintesis Hidroksiapatit Menggunakan Metode Wet Mechanochemical dengan Variasi Waktu Reaksi dan Rasio Bola Penggiling. Jom FTEKNIK, 6(1), 1-6.

Fadli, A., Rahmi, D, Y., Huda, F., & Pertiwi, M, D. (2016). Teknologi microcarrier di dalam aplikasi biomedik: Review. Seminar Nasional Teknik Kimia– Teknologi Oleo Petro Kimia Indonesia, 1907-0500.

Fihri, A., Len, C., Varma, R. S., & Solhy, A. (2017). Hydroxyapatite: A review of syntheses, structure and applications in heterogeneous catalysis. Coordination Chemistry Reviews, 347, 48-76.

Fujii, S., Okada, M., Nishimura, T., Sugimoto, T., Maeda, H., Hamasaki, H., & Nakamura, Y.

(2013). Hydroxyapatite-coated poly (ϵ-caprolactone) microspheres fabricated via a Pickering emulsion route: effect of fabrication parameters on diameter and chemical composition. Composite Interfaces, 20(1), 45-56.

GE Healthcare. (2013). Microcarrier Cell Culture Principles and Methods. Sweden: GE Healthcare Bio-Sciences.

Gouveia, D. S., Bressiani, A. H. A., & Bressiani, J. C. (2006). Phosphoric acid rate addition effect in the hydroxyapatite synthesis by neutralization method. In Materials science forum (Vol. 530, pp. 593-598). Trans Tech Publications Ltd.

Güldiken, M. (2014). Simvastatin loaded porous hydroxyapatite based microcarriers for bone tissue engineering (Master's thesis, Middle East Technical University).

Guo, X., Yan, H., Zhao, S., Li, Z., Li, Y., & Liang, X. (2013). Effect of calcining temperature on particle size of hydroxyapatite synthesized by solid-state reaction at room temperature. Advanced Powder Technology, 24(6), 1034-1038.

Gupta, P. (2020). A review: Epidemiology, pathogenesis and prospect in developing vaccines for novel Coronavirus (COVID-19). Indian Journal of Tuberculosis, 68(1), 1-23.

Gyorgy, S, N., Karoly, Z., Fazekas, P., Nemeth, P., Bodis, E., Menyha, A., Kotai, L., & Klebert, S. (2019). Effect of the reaction temperature on the morphology of nanosized HAp.

Thermal Analysis & Calorimetry, 138(1), 145–151.

Haris, A., Fadli, A., & Yenti, S, R. (2016). Sintesis hidroksiapatit dari imbah tulang sapi menggunakan metode presipitasi dengan variasi rasio Ca/P dan konsentrasi H3PO4.

JOM FTEKNIK, 3(2), 1-10.

Haruda, M. S., & Yenti, S. R. (2016). Pengaruh Ph Dan Waktu Reaksi Pada Sintesis Hidroksiapatit Dari Tulang Sapi Dengan Metode Presipitasi. Jom FTEKNIK, 3(1), 1-7 Hassan, M.E., Tamer, T.M., & Omer, A.M. (2016). Methods of Enzyme Immobilization.

International Journal of Current Pharmaceutical Review and Research, 7(6), 385-392.

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Hayati, R., & Astuti. (2015). Sintesis Nanopartikel Silika Dari Pasir Pantai Purus Padang Sumatera Barat Dengan Metode Kopresipitasi. Jurnal Fisika Unand, 4(3).

Ishii, T., Saito, H., Komizu, Y., Tomoshige, R., & Matsushita, T. (2016). Effects of macroporous hydroxyapatite carriers on the growth and function of human hepatoblasts derived from fetal hepatocytes. Journal of bioscience and bioengineering, 122(2), 240-245.

Islam, M.A., Alam, M.R., & Hannan, M.O. (2012). Multiresponse Optimization Based on Stastical Response Surface Methodology and Desirability Function for the production of Particleboard. Composites Part B : Engineering 43(2), 861-868.

Jeong, J., Kim, J. H., Shim, J. H., Hwang, N. S., & Heo, C. Y. (2019). Bioactive calcium phosphate materials and applications in bone regeneration. Biomaterials research, 23(1), 1-11.

Kehoe, S., Ardhaoui, M., & Stokes, J. (2011). Design of experiments study of hydroxyapatite synthesis for orthopaedic application using fractional factorial design. Material Engineering & Performance, 20(8), 2011-1423.

Kim, T,W.,Ahn, W, B., Kim, J, M., Kim, J, H.,Kim, T, H.,Perez, R, A., & Jang, H, S. (2020).

Combined delivery of two different bioactive factors incorporated in hydroxyapatite microcarrier for bone regeneration. Tissue Engineering & Regenerative Medicine Society, 17(5), 607-624.

Kosachan, N., Jaroenworaluck, A., Jiemsirilers, S., Jinawath, S., & Stevens, R. (2015).

Hydroxyapatite nanoparticles formed under a wet mechanochemical method. Journal of Biomedical Materials Research Part B: Applied Biomaterials, 105(3), 679-688.

Lee, I. H., Lee, J. A., Lee, J. H., Heo, Y. W., & Kim, J. J. (2020). Effects of pH and reaction temperature on hydroxyapatite powders synthesized by precipitation. Journal of the Korean Ceramic Society, 57(1), 56-64.

Li, B., Wang, X., Wang, Y., Gou, W., Yuan, X., Peng, J., & Lu, S. (2015). Past, present, and future of microcarrier-based tissue engineering. Journal of Orthopaedic

Translation, 3(2), 51-57.

Liu, C., Yue, H., Wei, S., & Jinghua, C. (2001). Kinetics of Hydroxyapatite Precipitation at pH 10 to 11. Biomaterials, 22, 301-306.

Lugo, R.V., Karthik, T. V. K., Mendoza-Anaya, D., Rubio-Rosas, E., Villaseñor Cerón, L. S., Reyes-Valderrama, M. I., & Salinas-Rodríguez, E. (2018). Wet chemical synthesis of nanocrystalline hydroxyapatite flakes: Effect of pH and sintering temperature on structural and morphological properties. Royal Society open science, 5(8), 180962.

Luo, X., Niu, Y., Fu, X., Lin, Q., Liang, H., Liu, L., & Li, N. (2021). Large-Scale Microcarrier Culture of Chinese Perch Brain Cell for Viral Vaccine Production in a Stirred Bioreactor. Vaccines, 9(9), 1-13.

Malau, N, D., & Adinugraha, F. (2020). Penentuan suhu kalsinasi optimum CaO dari cangkang telur bebek dan cangkang telur burung puyuh. EduMatSains, 4(2), 193-202.

Malda, J., & Frondoza, C. G. (2006). Microcarriers in the engineering of cartilage and bone. Trends in biotechnology, 24(7), 299-304.

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Manalu, J., Soegijono, B., & Indrani, D. J. (2015). Characterization of hydroxyapatite derived from bovine bone. Asian Journal of Applied Sciences, 3(4).

Mazumder, S., Nayak, A. K., Ara, T. J., & Hasnain, M. S. (2019). Hydroxyapatite composites for dentistry. Applications of Nanocomposite Materials in Dentistry, 123-143.

Melde, B. J., & Stein, A. (2002). Periodic macroporous hydroxyapatite-containing calcium phosphates. Chemistry of materials, 14(8), 3326-3331.

Mohamad, N. R., Marzuki, N. H. C., Buang, N. A., Huyop, F., & Wahab, R. A. (2015). An overview of technologies for immobilization of enzymes and surface analysis techniques for immobilized enzymes. Biotechnology & Biotechnological Equipment, 29(2), 205-220.

Neira, I. S., Guitián, F., Taniguchi, T., Watanabe, T., & Yoshimura, M. (2008). Hydrothermal synthesis of hydroxyapatite whiskers with sharp faceted hexagonal morphology. Journal of Materials Science, 43(7), 2171-2178.

Nurlaela, A., Dewi, S, U., Dahlan, K., & Soejoko, D, S. (2014). Pemanfaatan limbah cangkang telur ayam dan bebek sebagai sumber kalsium untuk sintesismineral tulang.

Pendidikan Fisika Indonesia, 10(1), 81-85.

Owuamanam, S., & Cree, D. (2020). Progress of bio-calcium carbonate waste eggshell and seashell fillers in polymer composites: a review. Composites Science, 4(70), 1-22.

Perez, R., El-Fiqi, A., Park, J. H., Kim, T. H., Kim, J. H., & Kim, H. W. (2014). Bioactive inorganic microcarrier with protein delivery designed for bone tissue engineering.

Journal of Tissue Engineering and Regenerative Medicine. 8, 226-226.

Pertiwi, M. D., Ahmad, F., & Drastinawati. (2017). Pembuatan Microcarrier Berbahan Baku Hidroksiapatit Menggunakan Metode Protein Foaming-Starch Consolidation. JOM FTEKNIK 4(2). 1-5.

Pu'ad, N. M., Haq, R. A., Noh, H. M., Abdullah, H. Z., Idris, M. I., & Lee, T. C. (2018).

Synthesis method of hydroxyapatite: A review. Materials Today: Proceedings, 29, 1- 7.

Purnama, E. F., Nikmatin, S., & Langenati, R. (2006). Pengaruh Suhu Reaksi Terhadap Derajat Kristalinitas Dan Komposisi Hidroksiapatit Dibuat Dengan Mediaair Dan Cairan Tubuh Buatan (Synthetic Body Fluid). Jurnal Sains Materi Indonesia, 154-159.

Purwasasmita, B. S., & Gultom, R. S. (2008). Sintesis dan karakterisasi serbuk hidroksiapatit skala sub-mikron menggunakan metode presipitasi. Bionatura, 10(2).

Qalbi, T., Azis, Y., Helwani, Z. (2018). Sintesis hidroksiapatit melalui precipitated calcium carbonate (PCC) cangkang telur ayam ras dengan metode presipitasi pada variasi konsentrasi pelarut HNO3 dan rasio Ca/P . JOM FTEKNIK, 5(1), 2-5.

Rahmi, D. Y., Fadli, A., & Amri, I. (2017). Pembuatan Macroporous Microcarrier Berbahan Baku Hydroxyapatite Menggunakan Kuning Telur sebagai Agen Pembentuk Pori.

JOM FTEKNIK, 4(2), 1-7.

Rodrigues, M.E., Costa, A.C., Fernandes, P., Henriques, M., Cunnah, P., Melton, D.W.,

Azeredo, J., Oliveira, R. (2013). Evaluation of Macroporous and Microporous Carriers

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for CHO-K1 Cell Growth and Monoclonal Antibody Production. Journal Microbiology Biotechnology. 23(9), 1308-1321.

Saha, P., & Rao, B.K. V. (2021). Immobilization as a powerful bioremediation tool for abatement of dye pollution: A review. Environmental Reviews, 29(2), 277-299.

Sakka, S., Bouaziz, J., & Ayed, F. B. (2013). Mechanical properties of biomaterials based on calcium phosphates and bioinert oxides for applications in biomedicine. Advances in Biomaterials Science and Biomedical Applications, 23-50.

Salas,T. P., del Monte Martinez, A., Cutiño Avila, B., Rodriguez Colinas, B., Alcalde, M.,‐ ‐ ‐ Ballesteros, A. O., & Plou, F. J. (2011). Immobilized biocatalysts: Novel approaches and tools for binding enzymes to supports.

Saltz, A., & Kandalam, U. (2016). Mesenchymal stem cells and alginate microcarriers for craniofacial bone tissue engineering: A review. Journal of biomedical materials research Part A, 104(5), 1276-1284.

Sanosh, K. P., Chu, M. C., Balakrishnan, A., Kim, T. N., & Cho, S. J. (2009). Preparation and characterization of nano-hydroxyapatite powder using sol-gel technique. Bulletin of Materials Science, 32(5), 465-470.

Santos, M. H., Oliveira, M. D., Souza, L. P. D. F., Mansur, H. S., & Vasconcelos, W. L. (2004).

Synthesis control and characterization of hydroxyapatite prepared by wet precipitation process. Materials Research, 7(4), 625-630.

Sari, M., Hening, P., Ana, I. D., & Yusuf, Y. (2021). Bioceramic hydroxyapatite-based scaffold with a porous structure using honeycomb as a natural polymeric Porogen for bone tissue engineering. Biomaterials Research, 25(2), 1-13.

Shavandi, A., Bekhit, A. E. D. A., Sun, Z. F., & Ali, A. (2015). A review of synthesis methods, properties and use of hydroxyapatite as a substitute of bone. Journal of Biomimetics, Biomaterials and Biomedical Engineering, 25, 98-117.

Shih, W. J., Wang, M. C., & Hon, M. H. (2005). Morphology and crystallinity of the nanosized hydroxyapatite synthesized by hydrolysis using cetyltrimethylammonium bromide (CTAB) as a surfactant. Journal of Crystal Growth, 275(1-2), e2339-e2344.

Simmonds, N. W. (1994). Natural rubber: biology, cultivation and technology. Edited by mr sethuraj and nm matthew. Amsterdam and New York: Elsevier (1992). Experimental Agriculture, 30(2), 265-265.

Sopyan, I., Singh, R., & Hamdi, M. (2008). Synthesis of nano sized hydroxyapatite powder using sol-gel technique and its conversion to dense and porous bodies.

Suryadi. (2011). Sintesis dan Karakterisasi Biomaterial Hidroksiapatit dengan Proses

Pengendapan Kimia Basah. Tesis, Depok: Fakultas Teknik, Universitas Indonesia.

Tanjung, M. A., Yelmida, A., Komalasari. (2018). Efek Temperatur Terhadap Bentuk Partikel Hidroksiapatit dari Precipitated Calcium Carbonate (PCC) Kulit Telur Itik Melalui Metode Presipitasi. Jom FTEKNIK, 5(2), 1-5.

Tavassoli, H.,Javadpour, J., Taheri, M., Mehrjou, M., Koushki, N., Arianpour, F.,Majidi, M., Mobarakeh, J, I.,Negahdari, B., Chan, P., Warkiani, M, E., & Bonakdar, S. (2018).

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Incorporation of nanoalumina improves mechanical properties and osteogenesis of hydroxyapatite bioceramics. American Chemical Society Biomaterial Sciens Engineering, 4, 1324−1336.

Utara, S., & Klinkaewnarong, J. (2015). Sonochemical synthesis of nano-hydroxyapatite using natural rubber latex as a templating agent. Ceramics International, 41(10), 14860- 14867.

Wakaki, M., Yazaki, S., & Sunada, Y. (2009). Study on calcifying treatments of hydroxyapatite (HAp) using calcifying promotion solution. In Lasers in Dentistry XV (Vol. 7162, pp.

119-126). SPIE.

Wardani, N. S., Fadli, A., & Irdoni, I. (2015). Sintesis Hidroksiapatit dari Cangkang Telur dengan Metode Presipitasi. JOM FTEKNIK, 2(1), 1-6.

Wardoyo, F. A., & Aprilia, I.K. (2017). Imobilisasi Enzim Lipase Pada Padatan Pendukung Zeolit Alam. In PROSIDING SEMINAR NASIONAL & INTERNASIONAL 1(1).

Warnock, J. & Al-Rubeai, M. (2005). Production of Biologicsfrom Animal Cell Cultures.

Applicationsof Cell Immobilisation Biotechnology . 8, 423-438.

Webler, G, D., Rodrigues, W, C., Silva, A, E, S., Silva, A, O, S., Fonseca, E, J, S., Degenhardt, M, F, S., Oliveira, C, L, P., Otubo, L., & Barros Filho, D, A. (2018). Use of

micrometric latex beads to improve the porosity of hydroxyapatite obtained by chemical coprecipitation method. Applied Surface Science, 436(3), 141–151.

World Health Organization (WHO). (2020). Coronavirus Disease (COVID-19). Diakses pada tanggal 8 April 2022. https://www.who.int/health-topics/coronavirus.

Yeong, K. C. B., Wang, J., & Ng, S. C. (2001). Mechanochemical synthesis of nanocrystalline hydroxyapatite from CaO and CaHPO4. Biomaterials, 22(20), 2705-2712.

Yuliana. (2020). Corona Virus Diseases (Covid-19); Sebuah Tinjauan Literatur. Wellness and Healthy Magazine, 1-6.

Zhou, Z., Wu, W., Fang, J., & Yin, J. (2020). Polymer-based porous microcarriers as cell delivery systems for applications in bone and cartilage tissue

engineering. International Materials Reviews, 66(2), 77-113.

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