Profil Luas Glomerulus Ginjal Tikus Wistar Jantan (Rattus Novergicus) Hipertensi yang Diberi Hidrolisat Kolagen Kulit Ikan Gabus (Channa Striata)

The Profile of the Glomerular Area in Male Wistar Rat Kidneys (Rattus Novergicus) with Hypertension Given Collagen Hydrolysate from Snakehead Fish Skin (Channa Striata)

Authors

  • Jeny Ernawati Tambunan Brawijaya University
  • Eddy Suprayitno Universitas Brawijaya
  • Heder Djamaludin Universitas Brawijaya https://orcid.org/0000-0001-7546-1539
  • Nadila Putri Dwi Kayanti Brawijaya University

DOI:

https://doi.org/10.21776/ub.jfmr.2025.009.01.12

Keywords:

Hidrolisat, Ikan Gabus, Kolagen, Luas Glomerulus, Channa Striata, Collagen, Glomerulus

Abstract

Kulit ikan gabus (Channa striata) memiliki kandungan kolagen sekitar 13,60% yang dapat dimanfaatkan sebagai bahan baku produk nutraceutical. Hidrolisat kolagen kulit ikan gabus (Channa striata) diketahui memiliki aktivitas antihipertensi dengan aktivitas penghambatan Angiotensin Converting Enzyme (ACE) sebesar 78%. Penelitian dilaksanakan pada Bulan Maret hingga Mei 2024 di Laboratorium Advance Fakultas Perikanan dan Ilmu Kelautan Universitas Brawijaya, Laboratorium Perekayasaan Hasil Perikanan Fakultas Perikanan dan Ilmu Kelautan Universitas Brawijaya, dan Laboratorium Uji Hewan Farmakologi Universitas Brawijaya. Metode penelitian ini menggunakan Rancangan Acak Kelompok (RAK) dengan jumlah sampel hewan model sebanyak 24 ekor dengan 6 level kelompok perlakuan yakni Kelompok Normal (N); Kelompok Kontrol Positif (K+); Kelompok Kontrol Negatif (K-); Kelompok Perlakuan Dosis Hidrolisat Kolagen Kulit Ikan (P1, P2, P3). Penelitian ini terdiri atas 2 tahap yakni tahap 1 dan tahap 2. Tahap 1 berupa pembuatan dan karakterisasi hidrolisat kolagen kulit ikan gabus (Channa striata) sedangkan tahap 2 berupa analisis aktivitas antihipertensi hidrolisat kolagen kulit ikan gabus (Channa striata) melalui hewan model secara in vivo. Pemberian hidrolisat kolagen kulit ikan gabus (Channa striata) dapat mencegah terjadinya peningkatan luas glomerulus ginjal hewan model serta mencegah terjadinya disfungsi endotel dan injury pada sel endotel dan podosit yang dapat mencegah terjadinya sklerotik glomerulus.

 

Snakehead fish skin (Channa striata) contains about 13.60% collagen, which can be utilized as a raw material for nutraceutical products. Collagen hydrolysate from snakehead fish skin (Channa striata) has been shown to have antihypertensive activity, with an Angiotensin Converting Enzyme (ACE) inhibition activity of 78%. The research was conducted from March to May 2024 at the Advance Laboratory of the Faculty of Fisheries and Marine Science, Brawijaya University, the Fishery Product Engineering Laboratory of the Faculty of Fisheries and Marine Science, Brawijaya University, and the Pharmacological Animal Testing Laboratory of Brawijaya University. The research method used a Completely Randomized Design (CRD) with 24 animal model samples divided into 6 treatment groups: Normal Group (N), Positive Control Group (K+), Negative Control Group (K-), and Treatment Groups with Collagen Hydrolysate from Fish Skin (P1, P2, P3). This study consists of two stages: Stage 1 involves the preparation and characterization of collagen hydrolysate from snakehead fish skin (Channa striata), while Stage 2 involves analyzing the antihypertensive activity of the collagen hydrolysate from snakehead fish skin (Channa striata) in vivo using an animal model. The administration of collagen hydrolysate from snakehead fish skin (Channa striata) can prevent an increase in the glomerular area of the animal model’s kidneys, as well as prevent endothelial dysfunction and injury in endothelial and podocyte cells, which could help prevent glomerulosclerosis.

Author Biography

Jeny Ernawati Tambunan, Brawijaya University

Fisheries Product Technology

References

[1] Ujianti R., Novita, M., & Burhanuddin, A. (2024). Strengthening the Blue Economy through Marine, Coastal Resources and the Social Environment. KnE Social Sciences. https://doi.org/10.18502/kss.v9i6.15304

[2] R. Suwandi and M. Winem, “Proporsi bagian tubuh dan kadar proksimat ikan gabus pada berbagai ukuran,” 2014.

[3] “Nurcahyanti, R., & Suprayitno, E. (2019). The Effect... - Google Scholar.” Accessed: Dec. 17, 2024.

[4] T. M. T. Truong, V. M. Nguyen, T. T. Tran, and T. M. T. Le, “Characterization of acid-soluble collagen from food processing by-products of snakehead fish (Channa striata),” Processes, vol. 9, no. 7, p. 1188, 2021.

[5] D. I. Rohmah and E. Suprayitno, “Effect of Addition of Black Cumin Seed Oil (Nigella sativa) as a Source of Omega-6 on Cork Albumin Powder (Channa Striata) for Wound Closure,” Int. J. Sci. Res. Publ., pp. 656–662, 2020.

[6] M. H. Khirzin, S. Sukarno, N. D. Yuliana, Y. N. Fawzya, and E. Chasanah, “Aktivitas inhibitor enzim pengubah angiotensin (ACE) dan antioksidan peptida kolagen dari teripang gama (Stichopus variegatus),” J. Pascapanen Dan Bioteknol. Kelaut. Dan Perikan., vol. 10, no. 1, pp. 27–35, 2015.

[7] M. Elvira and N. Anggraini, “Faktor-faktor yang berhubungan dengan kejadian hipertensi,” J. Akad. Baiturrahim Jambi, vol. 8, no. 1, pp. 78–89, 2019.

[8] Hultström, M. (2012). Development of structural kidney damage in spontaneously hypertensive rats. Journal of Hypertension, 30, 1087-1091. https://doi.org/10.1097/HJH.0b013e328352b89a

[9] Wijaya, J. C., & Yunianta, Y. (2015). Pengaruh penambahan enzim bromelin terhadap sifat kimia dan organoleptik tempe gembus (kajian konsentrasi dan lama inkubasi dengan enzim). Jurnal pangan dan agroindustri, 3(1), 96-107.

[10] “[AOAC]. Association of Official Analytical Chemists.... - Google Scholar.” Accessed: Dec. 17, 2024. [Online].

[11] S. M. Rutherfurd, “Methodology for determining degree of hydrolysis of proteins in hydrolysates: a review,” J. AOAC Int., vol. 93, no. 5, pp. 1515–1522, 2010.

[12] A. Susanty, “Pengaruh Waktu Hidrolisis terhadap Karakteristik Hidrolisat Protein Ikan Toman (Channa micropeltes) Asal DAS Kalimantan Timur,” Indones. J. Ind. Res., pp. 463–475, 2021.

[13] Ilham, D., Dewita, D., & Karnila, R. (2019). Characteristics of hydrolysate protein from malong fish (congresox talabon) which hydrolized by using papain enzyme. Berkala Perikanan Terubuk, 47(2), 186-193.

[14] Muyassaroh, M., Dewi, R. K., & Minah, F. N. (2020). Penentuan kadar protein pada spirulina platensis menggunakan metode lowry dan kjeldahl. Jurnal Teknik Kimia UPN Veteran Jatim, 15(1), 493333.

[15] S. D. Astuti et al., “Kandungan Asam Amino Ikan Kerapu (Epinephelus merra) Menggunakan Kromatografi Penukar Ion,” FISHIANA J. Mar. Fish., vol. 2, no. 1, pp. 16–22, 2023.

[16] I.-J. Jensen, J. Eysturskarð, M. Madetoja, and K.-E. Eilertsen, “The potential of cod hydrolyzate to inhibit blood pressure in spontaneously hypertensive rats,” Nutr. Res., vol. 34, no. 2, pp. 168–173, 2014.

[17] S. F. Noer and N. A. Irfayanti, “Aktivitas Antihipertensi Ekstrak Etanol Daun Alpukat (Persea americana Mill.) Pada Tikus Putih (Rattus norvegicus),” Media Farm., vol. 19, no. 2, pp. 87–95, 2023.

[18] S. J. Juanda and S. I. Edo, “Histopatologi insang, hati dan usus ikan lele (Clarias gariepinus) di kota kupang, nusa tenggara timur (Gill, Liver and Gut’s Histopathology of Catfish (Clarias gariepinus) in Kota Kupang, East West Nusa),” Saintek Perikan. Indones. J. Fish. Sci. Technol., vol. 14, no. 1, pp. 23–29, 2018.

[19] B. F. Pamungkas, M. A. Supriyadi, and R. Indrati, “Ekstraksi dan karakterisasi kolagen larut asam dan pepsin dari sisik haruan (Channa striatus) kering,” J. Pengolah. Has. Perikan. Indones., vol. 21, no. 3, pp. 513–521, 2018.

[20] R. Agustin, D. R. Arta, and R. Nofita, “Pengecilan Ukuran Partikel Dan Karakterisasi kolagen dari Kulit Ikan Gabus (Channa Striata) Dengan Metode Ball Milling,” JSFK J. Sains Farm. Klin., vol. 10, no. 1, pp. 44–53, 2023.

[21] S. Choonpicharn, S. Jaturasitha, N. Rakariyatham, N. Suree, and H. Niamsup, “Antioxidant and antihypertensive activity of gelatin hydrolysate from Nile tilapia skin,” J. Food Sci. Technol., vol. 52, no. 5, pp. 3134–3139, May 2015, doi: 10.1007/s13197-014-1581-6.

[22] M. Zikrillah, M. Muharja, R. F. Darmayanti, M. W. I. Batuthoh, and A. I. Khamil, “Metode baru perhitungan viskositas intrinsik dan berat molekul polihidroksialkanoat untuk produksi plastik biodegradable,” J. Penelit. IPTEKS, vol. 8, no. 2, pp. 188–195, 2023.

[23] F. Yanti, N. Dharmayanti, and S. Suryanti, “Aktivitas Antioksidan Kolagen dari Kulit Ikan Patin (Pangasius sp.) dengan Enzim Bromelin Kasar Kulit Nanas (Ananas comosus L.),” J. Pengolah. Has. Perikan. Indones., vol. 25, no. 1, pp. 88–96, 2022.

[24] M. D. Pratiwi, “Pengaruh Pemberian Vitamin A Terhadap Luas Glomerulus Ginjal Tikus Model Diabetes Melitus Tipe 2,” PhD Thesis, Universitas Brawijaya, 2017. Accessed: Dec. 17, 2024. [Online]. Available: http://repository.ub.ac.id/8377/

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Published

2025-03-25

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