PROCESSING OF SQUID (Loligo sp.) CARTILAGE WASTE AS ANTIBACTERIAL HANDWASH

Authors

  • Nabiyl Ahmad Fawzy MIPA Department, MAN 2 Makassar city, Makassar, South Sulawesi, Indonesia
  • Nurhikma Awaluddin Faculty of Pharmacy, Megarezky University, Makassar, South Sulawesi, Indonesia
  • Muntasir, Pharmacy, Faculty of Medicine and Veterinary Medicine, Nusa Cendana University, Kupang, NTT, Indonesia

DOI:

https://doi.org/10.61942/msj.v2i1.103

Keywords:

Squid cartilage (Loligo sp.), Chitosan, Handwash, Antibacterial

Abstract

Squid cartilage (Loligo sp.) is known to contain chitosan compounds that have antibacterial activity. This study aims to formulate chitosan from squid cartilage (Loligo sp.) in the form of handwash preparations with concentrations of 0.1%, 0.2%, and 0.3% which are physically and chemically stable, and see the optimum concentration in inhibiting bacterial growth.  The method used is laboratory experiments through three stages of extraction, namely deproteination, demineralization, and deacetylation as well as physical quality tests and ability tests before and after cycling tests which include organoleptic tests, homogeneity tests, pH tests, viscosity tests, foam height tests and antibacterial activity tests against Staphylococcus aureus and Escherichia coli bacteria by the method of sumuran. The results obtained based on the ANOVA test on Staphylococcus aureus bacteria are 0.000 and on Escherichia coli bacteria are 0.000.  Chitosan from squid cartilage (Loligo sp.) can be formulated in the form of a handwash preparation and the most effective concentration in inhibiting Staphylococcus aureus and Escherichia coli is a concentration of 0.3%.

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References

Adha, H. D., Sumijan, S., & Nurcahyo, G. W. 2021. Expert System in Analyzing Human Skin Allergies with Certainty Factor Method. Journal of Information Systems and Technology, 239-244.

Afrozi, A. S. 2017. Soap Production from Waste Palm Oil and Extraction of Lemongrass Leaves Using Semi Education Method. Journal of Chemical Engineering Sciences, 1(1), 1-10.

Ammar, I., & Maaroof, R. 2019. First Record of The Squid Sepioteuthis Lessoniana Ferussac, 1831 in the Syrian Coastal Water. Journal of Agriculture and Environmental Science, 6(1).

Dimpudus, S., Yamlean, P., & Yudistira, A. 2017. Formulation of Liquid Antiseptic Soap Preparation with Musfiroh Extract.

Fitri, D. 2020. Formulation of Liquid Body Soap Preparation with Ethanol Extract of Jackfruit Fruit (Artocarpus heterophyllus Lam.). IONTech, 01(01), 26-32.

Fitriana, Y. A. N., Fatimah, V. A. N., & Fitri, A. S. 2020. Antibacterial Activity of Betel Leaf: Minimum Inhibitory Concentration (MIC) and Minimum Bactericidal Concentration (MBC) Tests. Sainteks, 16(2).

Ida. 2019. Review Article: Various Pharmacological Activities of Ethanol Compounds from Impatiens balsamina L. Flowers and Their Effectiveness against Staphylococcus aureus Bacteria in vitro. Jurnal Pharmacon, 6(3), 208-215.

Marieta, A., & Musfiroh, I. 2019. Review Article: Various Pharmacological Activities of Chitosan Compounds. Farmaka, 17(2), 105-106.

Mursal, I. L. P. 2017. Effect of Demineralization Temperature Variation on Yield Value and Surface Morphology in Synthesized Chitosan from Squid Bone Waste. Pharma Xplore: Journal of Pharmaceutical Sciences, 4(2), 63-68.

Nahrowi, M., & Fitriyanto, N. A. 2018. Study of Efficacy and Safety of Topical Herbal Creams from Turmeric Extract (Curcuma domestica Val.) in Psoriasis Therapy. Sainteks, 15(2).

Nugraha, R., Darsono, L., & Nurhayati, E. (2018). Extraction and Identification of Antibacterial Compounds in Snakehead Fish (Channa striata) Waste. Sainteks, 15(1).

Pangaribuan, Y., Sumiwi, S. A., & Susanto, S. A. 2020. Formulation of Herbal Soap with Lime Leaf Extract (Citrus hystrix DC.) and Its Antibacterial Activity Test against Staphylococcus aureus. Pharmacon, 9(1), 11-19.

Pradana, Y. R., & Musfiroh, I. 2020. Formulation of Antibacterial Hand Sanitizer Gel with Ethanol Extract of Betel Leaf (Piper betle L.) and Green Tea Leaf (Camellia sinensis). Jurnal Teknologi Laboratorium, 9(1), 22-29. (June 28, 2022, 14:00 WITA)

Pratiwi, D., & Wibowo, L. H. 2020. Antibacterial Activity of N-Hexane Extract of Celosia argentea L. Leaves against Staphylococcus aureus. Sainteks, 17(2).

Puspitasari, R. 2021. Antioxidant Activity and Total Flavonoid Content of Ethanol Extract from Houttuynia cordata Thunb Leaves. Natural Sciences, 10(1).

Puspitasari, R., Jannah, F., & Siswanto,

Putra, S. P., Setyowati, E., & Damayanti, D. 2019. Antibacterial Activity of Essential Oil from Pluchea indica L. Leaves against Staphylococcus aureus. Pharmacon, 8(1), 21-28.

R. 2021. Antioxidant Activity of Water Extract from Mangosteen (Garcinia mangostana L.) Pericarp and Antibacterial Activity against Staphylococcus aureus. Natural Sciences, 10(1).

Ridwan, M., & Rahmawati, F. 2019. Formulation of Cream Preparation with Starfruit Extract (Averrhoa carambola L.) and Curcuminoid Extract (Curcuma longa L.) as an Anti-Aging Agent. Jurnal Teknologi Laboratorium, 8(2), 38-45.

Sari, R. K., & Sumaryono, W. 2021. Antibacterial Activity of Ethanol Extract from Cymbopogon citratus Stapf Leaves against Staphylococcus aureus. Sainteks, 18(2).

Sari, R. K., & Sumaryono, W. 2022. Antibacterial Activity of Ethanol Extract from Cymbopogon citratus Stapf Leaves against Staphylococcus aureus. Sainteks, 19(2).

Sari, R. K., Sumaryono, W., & Hartono, A. 2021. Antibacterial Activity of Ethanol Extract from Guava (Psidium guajava L.) Leaves against Staphylococcus aureus. Sainteks, 18(2).

Septiani, D., & Yunita, E. 2021. Formulation and Antibacterial Activity of Cream Containing Extract of Turmeric (Curcuma domestica Val.) and Aloe Vera (Aloe barbadensis Mill.) against Staphylococcus aureus. Sainteks, 18(2).

Sihite, S. Y., & Sholikhah, E. N. (2018). Antibacterial Activity Test of Jengkol (Archidendron pauciflorum Benth) Seeds Extract against Staphylococcus aureus and Escherichia coli. Sainteks, 15(2).

Silvia, D., & Hanafi, M. 2019. Antibacterial Activity of Essential Oil from Basil Leaves (Ocimum basilicum L.) against Staphylococcus aureus. Pharmacon, 8(1), 13-20.

Simanjuntak, P., & Suyatna, F. D. 2020. Antibacterial Activity Test of Red Ginger Rhizome (Zingiber officinale var. Rubrum) Extract against Staphylococcus aureus and Escherichia coli. Sainteks, 17(2).

Sinambela, D. M. D., & Indrati, R. 2020. Antibacterial Activity of Ethanol Extract from Curcuma mangga Val. Rhizome against Staphylococcus aureus. Pharmacon, 9(1), 36-41.

Subroto, E. M., & Nisyawati, N. 2018. Antibacterial Activity Test of N-Hexane Extract from Lime Peel (Citrus aurantifolia Swingle) against Staphylococcus aureus and Escherichia coli. Sainteks, 15(2).

Suciati, & Amalia, A. 2020. Antibacterial Activity of Ethanol Extract from Red Betel Leaf (Piper crocatum Ruiz & Pav.) against Staphylococcus aureus. Sainteks, 17(2).

Supriyanto, Y., & Suharto, R. 2020. Antibacterial Activity of Ethanol Extract from Turmeric (Curcuma domestica Val.) Rhizome against Staphylococcus aureus. Sainteks, 17(2).

Widyawati, T., & Mun'im, A. 2019. The Effectiveness of Curcuma longa L. Extract as an Antibacterial Agent against Staphylococcus aureus. Pharmacon, 8(1), 41-46.

Wijaya, Y. P., & Tanjung, M. 2019. Antibacterial Activity Test of Ethanol Extract from Indian Bay Leaves (Syzygium polyanthum Wight) against Staphylococcus aureus and Escherichia coli. Sainteks, 16(2).

Yulianti, I., & Puspitasari, R. 2019. Antibacterial Activity Test of Ethanol Extract from Jengkol (Archidendron pauciflorum Benth) Seeds against Staphylococcus aureus. Pharmacon, 8(1), 5- 12.

Book:

Adelberg, Jawetz, & Melnick. 2017. Medical Microbiology (27th ed.). Jakarta: Medical Book Publishers EGC.

Ahmad Najib. 2018. Extraction of Natural Compounds. (1st ed., 1st Printing). Yogyakarta.

Hartutik., Irsyamawati, A., Sjofjan, O., Mashudi., & Natsir, M. H. 2019. Livestock Feed Processing Technology. Malang: Depublish.

Kuswiyanto. 2016. Virology Textbook for Health Analysis. Jakarta: EGC.

Thesis, Dissertation:

Amira, K. J. 2021. Formulation of Serum Preparation from Starfruit Extract (Averrhoa bilimbi L.) against Propionibacterium acnes Bacteria in vitro (Doctoral dissertation, Stikes Karya Putra Bangsa Tulungagung).

Mursal, I. L. P. 2017. Effect of Demineralization Temperature Variation on Yield Value and Surface Morphology in Synthesized Chitosan from Squid Bone Waste. Pharma Xplore: Journal of Pharmaceutical Sciences, 4(2), 63-68.

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Published

26-02-2024

How to Cite

Fawzy, N. A., Awaluddin, N., & Muntasir,. (2024). PROCESSING OF SQUID (Loligo sp.) CARTILAGE WASTE AS ANTIBACTERIAL HANDWASH. MSJ : Majority Science Journal, 2(1), 279–287. https://doi.org/10.61942/msj.v2i1.103