• Tidak ada hasil yang ditemukan

DAFTAR PUSTAKA Adahoun, M. A., Al-Akhras, M. A. H., Jaafar, M. S., & Bououdina, M. (2017). Enhanced anti-cancer and antimicrobial activities of

N/A
N/A
Protected

Academic year: 2022

Membagikan "DAFTAR PUSTAKA Adahoun, M. A., Al-Akhras, M. A. H., Jaafar, M. S., & Bououdina, M. (2017). Enhanced anti-cancer and antimicrobial activities of"

Copied!
7
0
0

Teks penuh

(1)

DAFTAR PUSTAKA

Adahoun, M. A., Al-Akhras, M. A. H., Jaafar, M. S., & Bououdina, M. (2017).

Enhanced anti-cancer and antimicrobial activities of curcumin nanoparticles.

Artificial Cells, Nanomedicine and Biotechnology, 45(1), 98–107.

https://doi.org/10.3109/21691401.2015.1129628

Adams, G. D. J., Cook, I., & Ward, K. R. (2015). Chapter 4 The Principles of Freeze-Drying. 1257, 121–143. https://doi.org/10.1007/978-1-4939-2193-5 Ahmad, M. U., Ali, S. M., & Ahmad, I. (2012). Applications of nanotechnology in

pharmaceutical development. In Lipids in Nanotechnology. AOCS Press.

https://doi.org/10.1016/B978-0-9818936-7-9.50010-X

Ahmad, S., Minhas, M. U., Ahmad, M., Sohail, M., Abdullah, O., & Badshah, S. F.

(2018). Preparation and Evaluation of Skin Wound Healing Chitosan-Based Hydrogel Membranes. AAPS PharmSciTech, 19(7), 3199–3209.

https://doi.org/10.1208/s12249-018-1131-z

Alana, L., Sari, R., & Apridamayanti, P. (2017). Penentuan Nilai FICI Kombinasi Ekstrak Etanol Kulit Daun Lidah Buaya (Aloe vera (L) Burm.f) dan Gentamisin Sulfat Terhadap Bakteri Escherichia coli. Traditional Medicine

Journal, 22 (3), 175–181.

http://psr.ui.ac.id/index.php/journal/article/view/3695

Alnashi, B., & Fattah, A. A. A. (2016). Antimicrobial Activity of Raw and Nano Turmeric Powder Extracts. Middle East Journal of Applied Sciences, 06(04), 787–796.

Arulmoorthy, M. P., Anbarasi, G., Srinivasan, M., & Vishnupriya, B. (2020).

Biosynthesis and characterization of chitosan based hydrogel: A potential in vitro wound healing agent. Materials Today: Proceedings, xxxx.

https://doi.org/10.1016/j.matpr.2020.07.186

Azizah, M. (2020). Aktivitas Antimikroba nanopartikel temu mangga (Curcuma mangga) Tersalut Kitosan secara In Vitro. Universitas Islam Negeri Maulana Malik Ibrahim.

Balouiri, M., Sadiki, M., & Ibnsouda, S. K. (2016). Methods for in vitro evaluating antimicrobial activity: A review. Journal of Pharmaceutical Analysis, 6(2), 71–79. https://doi.org/10.1016/j.jpha.2015.11.005

(2)

Bhawana, Basniwal, R. K., Buttar, H. S., Jain, V. K., & Jain, N. (2011). Curcumin nanoparticles: Preparation, characterization, and antimicrobial study. Journal of Agricultural and Food Chemistry, 59(5), 2056–2061.

https://doi.org/10.1021/jf104402t

Boleng, D. T. (2015). Bakteriologi Konsep-Konsep Dasar. UMM Press.

Bonin, M., Sreekumar, S., Cord-landwehr, S., & Moerschbacher, B. M. (2020).

Preparation of Defined Chitosan Oligosaccharides Using Chitin Deacetylases.

Breijyeh, Z., Jubeh, B., & Karaman, R. (2020). Resistance of gram-positive bacteria to current antibacterial agents and overcoming approaches. Molecules, 25(12).

https://doi.org/10.3390/molecules25122888

Carroll, K. C., Morse, S. A., Mietzner, T., & miller, S. (2017). Mikrobiologi Kedokteran Jawetz, Melnick & Adelberg (D. Allen, C. Handoko, L. Agustina, R. B. Hariyanto, R. E. Sadikin, Sonia, & E. Y. Astrid (eds.); 27th ed.). EGC.

CLSI. (2014). M100-S24 Performance Standards for Antimicrobial (Issue January).

Damayanti, S. S., Komala, O., & Effendi, E. M. (2020). Identifikasi Bakteri Dari Pupuk Organik Cair Isi Rumen Sapi. Ekologia, 18(2), 63–71.

https://doi.org/10.33751/ekol.v18i2.1627

Delfira, R., Fajri, R. R., Sagita, D., & Pratama, S. (2020). Pola Kuman Di Ruangan Intensive Care Unit ( ICU ) Rumah Sakit X Kota Jambi The pattern of germs in the intensive care unit ( ICU ) of the hospital unit X the city of Jambi. 6(1), 221–236.

Delost, M. D. (2018). Mikrobiologi Diagnostik (A. Permana, I. Latifah, & Suyana (eds.); Bahasa Ind). EGC.

Dustgania, A., Farahania, E. V., & Imanib, M. (2008). Preparation of Chitosan Nanoparticles Loaded by Dexamethasone Sodium Phosphate. Iranian Journal of Pharmaceutical Sciences, 4(2), 111–114.

Gopal, J., Muthu, M., & Chun, S. (2016). Bactericidal Property of Macro-, Micro- and Nanocurcumin: An Assessment. Arabian Journal for Science and Engineering, 41(6), 2087–2093. https://doi.org/10.1007/s13369-015-1834-3 Herdiana, Y., Handaresta, D., Joni, I., Wathoni, N., & Muchtaridi, M. (2020).

Synthesis of nano-α mangostin based on chitosan and Eudragit S 100. Journal

(3)

of Advanced Pharmaceutical Technology and Research, 11(3), 95–100.

https://doi.org/10.4103/japtr.JAPTR_182_19

Huber, D., Tegl, G., Mensah, A., Beer, B., Baumann, M., Borth, N., Sygmund, C., Ludwig, R., & Guebitz, G. M. (2017). A Dual-Enzyme Hydrogen Peroxide Generation Machinery in Hydrogels Supports Antimicrobial Wound Treatment. ACS Applied Materials and Interfaces, 9(18), 15307–15316.

https://doi.org/10.1021/acsami.7b03296

Juliantoni, Y., Hajrin, W., & Subaidah, W. A. (2020). Nanoparticle Formula Optimization of Juwet Seeds Extract (Syzygium cumini) using Simplex Lattice Design Method. Jurnal Biologi Tropis, 20(3), 416.

https://doi.org/10.29303/jbt.v20i3.2124

Kartika, R. W. (2017). Pengelolaan Gangren Kaki Diabetik. 44(1), 18–22.

Kurniawan, L. B., Esa, T., & Sennang, N. (2011). Clinical Pathology And Majalah Patologi Klinik Indonesia dan Laboratorium Medik.

Mahendrawati, H. P., Nugraheni, P. S., & Ustadi. (2019). Pengaruh Penambahan Larutan Nanokitosan Terhadap Mutu Surimi Ikan Manyung (Aurius spp.).

332–341.

Manu, K. R., Tangkonda, E., & Gelolodo, M. A. (2019). Isolasi dan identifikasi terhadap bakteri penyebab mastitis pada sapi perah di Desa Benlutu Kecamatan Batu Putih Kabupaten Timor Tengah Selatan. E-Jurnal.Undana, 2(2), 10–19.

Mardliyati, E., Muttaqien, S. El, & Setyawati, D. R. (2012). Sintesis Nanopartikel Kitosan- Trypoly phosphate dengan Metode Gelasi Ionik : Pengaruh Konsentrasi dan Rasio Volume terhadap Karakteristik Partikel. Prosiding Pertemuan Ilmiah Ilmu Pengetahuan Dan Teknologi Bahan, 90–93.

Martien, R., Adhyatmika, Irianto, I. D. K., Farida, V., & Sari, D. P. (2012).

Perkembangan teknologi nanopartikel sebagai sistem penghantaran obat.

Majalah Farmaseutik, 8(1), 133–144.

Moura, L. I. F., Dias, A. M. A., Leal, E. C., Carvalho, L., De Sousa, H. C., &

Carvalho, E. (2014). Chitosan-based dressings loaded with neurotensin - An efficient strategy to improve early diabetic wound healing. Acta Biomaterialia, 10(2), 843–857. https://doi.org/10.1016/j.actbio.2013.09.040

(4)

Muhamad, Z. K. (2014). Uin syarif hidyatullah jakarta. September.

Muller, R. H., & Keck, C. M. (2004). Challenges and solutions for the delivery of biotech drugs - A review of drug nanocrystal technology and lipid nanoparticles. Journal of Biotechnology, 113(1–3), 151–170.

https://doi.org/10.1016/j.jbiotec.2004.06.007

NanoComposix. (2012). Zeta Potential Analysis of Nanoparticles (Vol. 11).

NanoComposix.

No, D. S., Algburi, A., Huynh, P., Moret, A., Ringard, M., Comito, N., Drider, D., Takhistov, P., & Chikindas, M. L. (2017). Antimicrobial efficacy of curcumin nanoparticles against Listeria monocytogenes is mediated by surface charge.

Journal of Food Safety, 37(4), 1–5. https://doi.org/10.1111/jfs.12353

Nugraheni, I. A., Setianah, H., Wibowo, D. S., Bioteknologi, P. S., Sains, F., Yogyakarta, U. A., Ika, K., & Nugraheni, A. (2021). Aktivitas Antibakteri Dari Bakteri Endofit Asal Akar Ciplukan ( Physalis Angulata L .) Terhadap Staphylococcus Aureus Dan Escherichia Coli ( Physalis Angulata L .) For Staphylococcus Aureus And Escherichia coli. 13(1), 48–55.

https://doi.org/10.23917/biomedika.v13i1.11009

Nur, A., & Marissa, N. (2016). Gambaran Bakteri Ulkus Diabetikum di Rumah Sakit Zainal Abidin dan Meuraxa Tahun 2015. Buletin Penelitian Kesehatan, 44(3), 187–196. https://doi.org/10.22435/bpk.v44i3.5048.187-196

Otta, S., Kumar, N., Debata, Bichitrananda, & Swain. (2014). Health and Research.

1(2), 2–4. https://doi.org/10.4103/cjhr.cjhr

Palisoa, Z., & Ernawati, A. (2020). Pola Resistensi Bakteri Pada Ulkus Diabetik.

September, 140–143.

Prastika, D. D., Setiawan, B., Saputro, A. L., Yudaniayanti, I. S., Wibawati, P. A.,

& Fikri, F. (2020). Pengaruh Kitosan Udang Secara Topikal Terhadap Kepadatan Kolagen dalam Penyembuhan Luka Eksisi pada Tikus Putih. Jurnal Medik Veteriner, 3(1), 101. https://doi.org/10.20473/jmv.vol3.iss1.2020.101- 107

Priyadarsini, K. I. (2014). The chemistry of curcumin: From extraction to therapeutic agent. Molecules, 19(12), 20091–20112.

https://doi.org/10.3390/molecules191220091

(5)

Rahmawati, N., Sudjarwo, E., & Widodo, E. (2014). Uji aktivitas antibakteri ekstrak herbal terhadap bakteri Escherichia coli. Jurnal Ilmu-Ilmu Peternakan, 24(3), 24–31.

Ranjan, A. P., Mukerjee, A., Helson, L., & Vishwanatha, J. K. (2012). Scale up, optimization and stability analysis of Curcumin C3 complex-loaded nanoparticles for cancer therapy. Journal of Nanobiotechnology, 10, 1–18.

https://doi.org/10.1186/1477-3155-10-38

Rizvi, S. A. A., & Saleh, A. M. (2018). Applications of nanoparticle systems in drug delivery technology. Saudi Pharmaceutical Journal, 26(1), 64–70.

https://doi.org/10.1016/j.jsps.2017.10.012

Rollando. (2019). Senyawa Antibakteri dari Fungsi Endofit.

Rosli, N. A., Hasham, R., Aziz, A. A., & Aziz, R. (2015). Formulation and characterization of nanostructured lipid carrier encapsulated Zingiber zerumbet oil using ultrasonication technique. 11(1), 16–23.

Safitri, R., & Novel, S. S. (2010). Medium Analisis Mikroorganisme (Isolasi dan Kultur). Trans Info Media.

Saleh, Y., Nasr, A., Zaki, H., Mohamed, M., & Kandile, nadia. (2016). Extraction and Characterization of Chitosan from Shrimp Shells (Egypt : case study).

Journal of Scientific Research in Science, 33(part1), 396–407.

https://doi.org/10.21608/jsrs.2016.17145

Setiabudy, R., & Gan. (1995). Pengantar Antimikroba”, Dalam Farmakologi dan Terapi (Keempat). Fakultas Kedokteran, Universitas Indonesia Ganiswara.

Shahzad, S., Yar, M., & Anwar, S. (2015). Chitosan-based electrospun nanofibrous mats , hydrogels and cast films : novel anti-bacterial wound dressing matrices.

https://doi.org/10.1007/s10856-015-5462-y

Suhartati, R., & Virgianti, D. P. (2015). Daya Hambat Ekstrak Etanol 70% Daun Ashitaba (Angelica Keiskei) Terhadap Bakteri Staphylococcus Aureus Yang Diisolasi Dari Luka Diabetes. Kesehatan Bakti Tunas Husada, 14.

Sulistianingsih, Runtuboi, D. p., & Waworuntu, lucky v. (2014). Sensitivitas Antibiotik Terhadap Bakteri yang di Isolasi dari Ulkus Diabetika di RSUD Abepura , Kota Jayapura. Jurnal Biologi Papua, 6(2), 53–59.

Sutanto, T. (2017). Diabetes Deteksi, Pencegahan, Pengobatan. Buku Pintar.

(6)

Thariq, M. R. A., Fadli, A., Rahmat, A., & Handayani, R. (2016). Pengembangan Kitosan Terkini pada Berbagai Aplikasi Kehidupan : Review. December.

Umawiranda, P., & Cahyaningrum, S. (2014). Enkapsulasi Pirazinamid Menggunakan Alginat Dan Kitosan. Journal of Chemistry, 3(3), 146–152.

http://jurnalmahasiswa.unesa.ac.id/index.php/unesa-journal-of- chemistry/article/download/9808/9568

Wahyuni, R., Halim, A., & Trifalmila, R. (2014). Uji Pengaruh Surfaktan Tween 80 dan Span 80 Terhadap Solubilisasi Dekstrometorfan Hidrobromida. Jurnal Farmasi Higea, 6(1), 1–10.

Wang, L., Hu, C., & Shao, L. (2017). The antimicrobial activity of nanoparticles:

Present situation and prospects for the future. International Journal of Nanomedicine, 12, 1227–1249. https://doi.org/10.2147/IJN.S121956

Wang, T. Y., & Chen, J. X. (2019). Effects of Curcumin on Vessel Formation Insight into the Pro-and Antiangiogenesis of Curcumin. Evidence-Based Complementary and Alternative Medicine, 2019.

https://doi.org/10.1155/2019/1390795

Younes, I., & Rinaudo, M. (2015). Chitin and chitosan preparation from marine sources. Structure, properties and applications. Marine Drugs, 13(3), 1133–

1174. https://doi.org/10.3390/md13031133

Younes, I., Sellimi, S., Rinaudo, M., Jellouli, K., & Nasri, M. (2014). Influence of acetylation degree and molecular weight of homogeneous chitosans on antibacterial and antifungal activities. International Journal of Food Microbiology, 185, 57–63. https://doi.org/10.1016/j.ijfoodmicro.2014.04.029 Yudhasasmita, S., & Puspito Nugroho, A. (2017). Sintesis dan Aplikasi

Nanopartikel Kitosan Sebagai Adsorben Cd dan Antibakteri Koliform.

Biogenesis: Jurnal Ilmiah Biologi, 5(1), 42–48.

https://doi.org/10.24252/bio.v5i1.3432

Yuliasari, S., Fardiaz, D., Andarwulan, N., & Yuliani, S. (2014). Karakteristik Nanoemulsi Minyak Sawit Merah Yang Diperkaya Beta Karoten. Jurnal

Penelitian Tanaman Industri, 20(3), 111.

https://doi.org/10.21082/jlittri.v20n3.2014.111-121

Zhang, H. L., Wu, S. H., Tao, Y., Zang, L. Q., & Su, Z. Q. (2010). Preparation and

(7)

characterization of water-soluble chitosan nanoparticles as protein delivery system. Journal of Nanomaterials, 2010. https://doi.org/10.1155/2010/898910 Zhu, Y., Cankova, Z., Iwanaszko, M., Lichtor, S., Mrksich, M., & Ameer, G. A.

(2018). Potent laminin-inspired antioxidant regenerative dressing accelerates wound healing in diabetes. Proceedings of the National Academy of Sciences of the United States of America, 115(26), 6816–6821.

https://doi.org/10.1073/pnas.1804262115

Zorofchian Moghadamtousi, S., Abdul Kadir, H., Hassandarvish, P., Tajik, H., Abubakar, S., & Zandi, K. (2014). A review on antibacterial, antiviral, and antifungal activity of curcumin. BioMed Research International, 2014.

https://doi.org/10.1155/2014/186864

Referensi

Dokumen terkait

Statistika deskriptif digunakan untuk melihat bagaimana desa-desa di Provinsi Jawa Tengah tersebar menurut status desa pada tahun 2018 dan tahun 2019, perubahan

Sehingga, tujuan dari penelitian ini adalah pengembangan metoda deteksi residu raktopamin pada daging sapi menggunakan KCSM dan aplikasinya untuk mengetahui keberadaan

Adapun, sampelnya terdiri dari 22 siswa kelas pembelajaran berbasis masalah (kelompok eksperimen) dan 22 siswa kelas konvensional (kelompok kontrol) yang

Dapat dilihat pada lampiran 3 tingkat pengetahuan masyarakat tentang Dagusibu Obat di Desa Ndetundora III yang berpengetahuan kurang berjumlah 66

Sözel temsiller yoluyla verilen ve boyutlar arası geçişlerinin gerektiği problemlerde, öğrencilerinden sözel problemlerin görsel temsili, ek çizim ve boyut

M DG7 bertujuan untuk memastikan kemampanan alam sekitar dengan (i) menggabungkan prinsip-prinsip pembangunan yang mampan ke dalam dasar dan program negara serta mencegah

Kebijakan tersebut merupakan penentuan seberapa banyak keuntungan yang akan dibagikan kepada pemegang saham, dimana keuntungan yang diperoleh pemegang saham tersebut akan

Untuk mengetahui apakah Profitabilitas berpengaruh terhadap kebijakan dividen pada sektor perusahaan infrastruktur, utilitas, dan trasnportasi yang terdaftar di BEI..