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Effect of Addition Turmeric Powder (Curcuma domestica) on the Beef Patty: Physicochemical Properties and Microbial Profile Aprini, Gita; Kirana, Fiala Lokarita; Mubarok, Fajar
Jurnal Ilmu dan Teknologi Hasil Ternak Vol. 21 No. 1 (2026)
Publisher : Faculty of Animal Science Universitas Brawijaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.21776/ub.jitek.2026.021.01.4

Abstract

The purpose of this study was to determine the effect of turmeric powder addition on physicochemical properties and microbial profile of beef patty. The method used was a completely randomised design (CRD) consisting of 4 treatments with 4 replicates. The research treatments with the use of turmeric powder were P0 as a control treatment without the addition of turmeric powder, P1 (0.5 %), P2 (1 %), P3 (1.5 %). The result showed that the additions of turmeric powder (Curcuma domestica) did not gave significant effect (p < 0.05) on WHC, fat content, moisture content, water activity (Aw), color L* and a* of the beef patties, TPC and Mold, WHC with an average (55.04-56.72%), fat content (3.95-4.32%), moisture content (60.2819-61.5104%), Aw (0.9480-0.9488), color L* (37.27-39.66), color a* (13.39-18.56), TPC (6.0095-7.0878 CFU/g), and mold (1.4039 ± 0.3065 log CFU/g). The result showed that the additions of turmeric powder have a significant effect (p < 0.05) on pH, with an average pH (5.92-6.02). The result showed that the additions of turmeric powder were highly significant effect (p < 0.01) on yeast and color b* of beef patties, with an average yeast (1.4771-2.9790 CFU/g), color b* 21.84-29.25. The addition of turmeric powder can stabilize the physicochemical properties and microbial profile of beef patty.
Indonesian Local Plant Proteases as Rennet Alternatives: Sources, Mechanisms, Coagulation Performance, and Technological Challenges Saleha, Rischa; Apriliyani, Mulia Winirsya; Azkarahman, Aldyon Restu; Dafista, Dela; Wiryawan, Dimas; Mamduh, Muhamad Fadly Ilal; Kuncoro, Kristian Hadi; Ghiffari, Imam; Siagian, Maruahal Hari Gautama; Aprini, Gita
Jurnal Ilmu dan Teknologi Hasil Ternak Vol. 21 No. 2 (2026)
Publisher : Faculty of Animal Science Universitas Brawijaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.21776/

Abstract

Enzymatic coagulation determines curd formation and strongly influences cheese quality. Animal rennet remains the reference coagulant because chymosin hydrolyzes ?-casein with high substrate selectivity. Dependence on imported rennet, halal traceability requirements, production costs, and product diversification has increased interest in plant-derived coagulants from domestic resources. This descriptive review evaluates papaya, ginger, pineapple, moringa, biduri, jackfruit, and several Ficus species available or cultivable in Indonesia. The review examines plant organs, protease classes, milk-clotting activity, proteolytic activity, casein selectivity, optimum conditions, curd properties, cheese quality, safety, and application readiness. Papaya latex provides the strongest evidence for practical use through dangke production, although papain requires activity-based dosing and strict control of contact time. Ginger zingibain shows potential for coagulation at relatively high temperatures. Pineapple bromelain supports fresh cheese production and agro-industrial by-product valorization. Moringa proteases show promising ?-casein selectivity, but product-scale validation remains limited. Biduri proteases have been applied in local soft cheese, while jackfruit and Ficus latex remain less selective than conventional rennet. Plant-derived coagulants therefore require application-specific optimization, partial purification, residual activity control, and quality standards based on milk-clotting-to-proteolytic activity ratios. Successful adoption depends on matching each protease with appropriate cheese types and validating performance, safety, consistency, and scalability in Indonesia.