Pemanfaatan Kolagen Laut dalam Sistem Penghantaran Obat

Nining Nining

Abstrak

Kolagen laut atau marine collagen merupakan biomaterial yang memiliki potensi besar dalam pemanfaatannya di bidang farmasi karena keberlimpahannya di alam. Penelitian mengenai sistem penghantaran obat dengan carrier kolagen laut telah banyak diteliti dan dilaporkan. Artikel ini merupakan review mengenai studi yang dilakukan dalam pemanfaatan kolagen laut dalam berbagai sistem penghantaran obat. Metode yang digunakan adalah melalui pencarian data jurnal nasional maupun internasional dengan menggunakan mesin pencari berupa Google, Google Scholar, Science Direct, Pubmed dan lainnya. Berdasarkan sumbernya, kolagen laut dikasifikasikan menjadi dua yaitu kolagen yang berasal dari invertebrata dan vertebrata. Biomaterial ini memiliki karakteristik yang unik dari segi kimia, fisika, dan biologi. Sistem penghantaran yang telah dikembangkan dan dilaporkan berupa sistem partikulat, film, gel dan hidrogel, enteric-coating tablet, serta sponge. Pengembangan sistem penghantaran obat lainnya dengan kolagen yang bersumber dari keanekaragaman hayati perikanan dan kelautan Indonesia menjadi peluang dan tantangan di masa yang akan datang.

Kata Kunci

kolagen laut; biomaterial; sistem penghantaran obat

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Referensi

Felician F.F., Xia C., Qi W., Xu H. Collagen from Marine Biological Sources and Medical Applications. Chem Biodivers. 2018;15(5).

Venkatesan J., Anil S., Kim S.K., Shim M.S. Marine fish proteins and peptides for cosmeceuticals: A review. Mar Drugs. 2017;15(5):1–18.

Yang H., Wang H., Zhao Y., Wang H., Zhang H. Effect of heat treatment on the enzymatic stability of grass carp skin collagen and its ability to form fibrils in vitro. J Sci Food Agric. 2015;95(2):329–36.

Barzideh Z., Latiff A.A., Gan C.Y., Benjakul S., Karim A.A. Isolation and characterisation of collagen from the ribbon jellyfish (Chrysaora sp.). Int J Food Sci Technol. 2014;49(6):1490–9.

Pozzolini M., Bruzzone F., Berilli V., Mussino F., Cerrano C., Benatti U., et al. Molecular Characterization of a Nonfibrillar Collagen from the Marine Sponge Chondrosia reniformis Nardo 1847 and Positive Effects of Soluble Silicates on Its Expression. Mar Biotechnol. 2012;14(3):281–93.

Silva T.H., Moreira-Silva J., Marques A.L.P., Domingues A., Bayon Y., Reis R.L. Marine origin collagens and its potential applications. Mar Drugs. 2014;12(12):5881–901.

Hadzik J., Kubasiewicz-Ross P., Kunert-Keil C., Jurczyszyn K., Nawrot-Hadzik I., Dominiak M., et al. A silver carp skin derived collagen in bone defect treatment—A histological study in a rat model. Ann Anat. 2016;208:123–8.

Sorushanova A., Delgado L.M., Wu Z., Shologu N., Kshirsagar A., Raghunath R., et al. The Collagen Suprafamily: From Biosynthesis to Advanced Biomaterial Development. Adv Mater. 2019;31(1):1–39.

Zhuang Y.L., Zhao X., Li B.F. Optimization of antioxidant activity by response surface methodology in hydrolysates of jellyfish (Rhopilema esculentum) umbrella collagen. J Zhejiang Univ Sci B. 2009;10(8):572–9.

Cheng X., Shao Z., Li C., Yu L., Raja M.A., Liu C. Isolation, characterization and evaluation of collagen from jellyfish Rhopilema esculentum kishinouye for use in hemostatic applications. PLoS One. 2017;12(1):1–21.

Khong N.M.H., Yusoff F.M., Jamilah B., Basri M., Maznah I., Chan K.W., et al. Nutritional composition and total collagen content of three commercially important edible jellyfish. Food Chem. 2016;196:953–60.

Langasco R., Cadeddu B., Formato M., Lepedda A.J., Cossu M., Giunchedi P., et al. Natural collagenic skeleton of marine sponges in pharmaceutics: Innovative biomaterial for topical drug delivery. Mater Sci Eng C. 2017;70:710–20.

Wichuda J., Sunthorn C., Busarakum P. Comparison of the properties of collagen ex tracted from dried jellyfish and dried squid. African J Biotechnol. 2016;15(16):642–8.

Nagai T., Suzuki N., Nagashima T. Collagen from common minke whale (Balaenoptera acutorostrata) unesu. Food Chem. 2008;111(2):296–301.

Astiana I., Nurjanah N., Nurhayati T. Characterization of Acid Soluble Collagen from Redbelly Yellowtail Fusilier Fish Skin (Caesio cuning). J Pengolah Has Perikan Indones. 2016;19(1):79–93.

Ehrlich H., Deutzmann R., Brunner E., Cappellini E., Koon H., Solazzo C., et al. Mineralization of the metre-long biosilica structures of glass sponges is templated on hydroxylated collagen. Nat Chem. 2010;2(12):1084–8.

Schmidt M.M., Dornelles R.C.P., Mello R.O., Kubota E.H., Mazutti M.A., Kempka A.P., et al. Collagen extraction process. Int Food Res J. 2016;23(3):913–22.

Nagai T., Worawattanamateekul W., Suzuki N., Nakamura T., Ito T., Fujiki K., et al. Isolation and characterization of collagen from rhizostomous jellyfish (Rhopilema asamushi). Food Chem. 2000;70(2):205–8.

Zhang J., Duan R., Huang L., Song Y., Regenstein J.M. Characterisation of acid-soluble and pepsin-solubilised collagen from jellyfish (Cyanea nozakii Kishinouye). Food Chem. 2014;150:22–6.

Silva J.C., Barros A.A., Aroso I.M., Fassini D., Silva T.H., Reis R.L., et al. Extraction of Collagen/Gelatin from the Marine Demosponge Chondrosia reniformis (Nardo, 1847) Using Water Acidified with Carbon Dioxide-Process Optimization. Ind Eng Chem Res. 2016;55(25):6922–30.

Hemanth Kumar M., Spandana V., Poonam T.. Extraction and Determination of Collagen Peptide and Its Clinical Importance from Tilapia Fish Scales (Oreochromis Niloticus). Vol. 2, Research Journal of Pharmacy. 2011.

Hashim P., Mohd Ridzwan M.S., Bakar J., Mat Hashim D. Collagen in food and beverage industries. Int Food Res J. 2015;22(1):1–8.

Yamada S., Yamamoto K., Ikeda T., Yanagiguchi K., Hayashi Y.. Potency of fish collagen as a scaffold for regenerative medicine. Biomed Res Int. 2014;2014(3).

Swatschek D., Schatton W., Kellermann J., Müller W.E.G., Kreuter J. Marine sponge collagen: Isolation, characterization and effects on the skin parameters surface-pH, moisture and sebum. Eur J Pharm Biopharm. 2002;53(1):107–13.

Friess W. Collagen-Biomaterial for drug delivery. Eur J Pharm Biopharm. 1998;45(2):113–36.

Lim Y., Ok Y., Hwang S., Kwak J., Yoon S.. Applications Marine Collagen as A Promising Biomaterial for. 2019;

Calejo M.T., Almeida A.J., Fernandes AI. Exploring a new jellyfish collagen in the production of microparticles for protein delivery. J Microencapsul. 2012;29(6):520–31.

Nicklas M., Schatton W., Heinemann S., Hanke T., Kreuter J. Preparation and characterization of marine sponge collagen nanoparticles and employment for the transdermal delivery of 17β-estradiol-hemihydrate SCNPs for dermal delivery of estradiol. Drug Dev Ind Pharm. 2009;35(9):1035–42.

Swatschek D., Schatton W., Müller W.E.G., Kreuter J. Microparticles derived from marine sponge collagen (SCMPs): preparation, characterization and suitability for dermal delivery of all-trans retinol. Eur J Pharm Biopharm. 2002;54(2):125–33.

Guo H., Hong Z., Yi R. Core-Shell Collagen Peptide Chelated Calcium/Calcium Alginate Nanoparticles from Fish Scales for Calcium Supplementation. J Food Sci. 2015;80(7):N1595–601.

Vigneswari S., Murugaiyah V., Kaur G., Abdul Khalil H.P.S., Amirul A.A. Biomacromolecule immobilization: Grafting of fish-scale collagen peptides onto aminolyzed P(3HB-co-4HB) scaffolds as a potential wound dressing. Biomed Mater. 2016;11(5):55009.

Veeruraj A., Arumugam M., Ajithkumar T., Balasubramanian T. Isolation and characterization of drug delivering potential of type-I collagen from eel fish Evenchelys macrura. J Mater Sci Mater Med. 2012;23(7):1729–38.

Wang W., Itoh S., Aizawa T., Okawa A., Sakai K., Ohkuma T., et al. Development of an injectable chitosan/marine collagen composite gel. Biomed Mater. 2010;5(6).

Nicklas M., Schatton W., Heinemann S., Hanke T., Kreuter J. Enteric coating derived from marine sponge collagen Enteric coating derived from marine sponge collagen. Drug Dev Ind Pharm. 2009;35(11):1384–8.

Muthukumar T., Prabu P., Ghosh K., Sastry T.P. Fish scale collagen sponge incorporated with Macrotyloma uniflorum plant extract as a possible wound/burn dressing material. Colloids Surfaces B Biointerfaces. 2014;113:207–12.

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