Total lactic acid bacteria, microstructure and texture analysis of probiotic soft cheese with rennet-induced protein gelation

Lola Ayu Istifiani* -  Department of Nutrition, Faculty of Health Sciences, Universitas Brawijaya, Malang, East Java, Indonesia
Rahma Micho Widyanto -  Department of Nutrition, Faculty of Health Sciences, Universitas Brawijaya, Malang, East Java, Indonesia
Iva Tsalissavrina -  Department of Nutrition, Faculty of Health Sciences, Universitas Brawijaya, Malang, East Java, Indonesia
Windi Jinni Erlita -  Department of Nutrition, Faculty of Health Sciences, Universitas Brawijaya, Malang, East Java, Indonesia
Bella Agustina Putri Handayani -  Department of Nutrition, Faculty of Health Sciences, Universitas Brawijaya, Malang, East Java, Indonesia
Consumers are becoming increasingly aware of the importance of choosing healthy probiotic-rich functional foods, such as cheese. Total lactic acid bacteria (LAB) is a crucial measure of success in the development of probiotic soft cheese. Furthermore, it is important to analyze the microstructure and texture of products to determine consumer acceptance. In this study, a randomized block design (RBD) was used with four concentrations of Lactobacillus plantarum FNCC 0026 (0%, 5%, 10%, and 20%). Total LAB was quantified using the total plate count (TPC) method. The microstructure and texture were analyzed using field-emission scanning electron microscopy (FESEM) and a texture profile analyzer (TPA), respectively. In this study, 5% concentration yielded the highest LAB count of 8.054 ± 0.54 log CFU/g (2.0 × 108 CFU/g) and optimal texture attributes. The texture values included hardness (32.41–48.89 N), adhesiveness (0.03–2.65 Nmm), and springiness (0.78–0.83). Furthermore, FESEM analysis revealed no differences in the protein and fat distribution in the microstructure of probiotic soft cheese. These results substantiate the potential of probiotic soft cheese as functional foods. A concentration of 5% Lactobacillus plantarum FNCC 0026 yielded optimal results for total LAB count and texture profile attributes, including hardness, adhesiveness, and springiness.

Keywords : Probiotic cheese, Lactobacillus plantarum, Lactic Acid Bacteria, Scanning Electron Microscope, Texture Profile Analyzer

  1. Aini, M., Rahayuni, S., Mardina, V., Quranayati, & Asiah, N. (2021). Bakteri Lactobacillus spp. dan peranannya bagi kehidupan. Jurnal Jeumpa, 8(2), 614–624. https://doi.org/10.33059/jj.v8i2.3154
  2. Ali, A., & Rahut, D. B. (2019). Healthy foods as proxy for functional foods: Consumers’ awareness, perception and demand for natural functional foods in Pakistan. International Journal of Food Science, 2019, 1–12. https://doi.org/10.1155/2019/6390650
  3. Amar, A., Sukotjo, S., Nurani, D., & Andini, D. (2024). Effect of substituting cow milk with saga bean (Adenanthera pavonina Linn.) milk during the processing of saga soft cheese. Food Research, 8(2), 8–15. https://doi.org/10.26656/fr.2017.8(2).097
  4. Amirus, K., Muhani, N., Sari, F. E., Ashari, H., Saputri, F. A., & Terta, R. L. (2024). Counseling and screening for risk factors for hypercholesterolemia in class II A women’s correctional institutions Bandar Lampung City in 2024. [data tidak tersedia nama jurnal], 8(1), 311–318. [data tidak tersedia DOI]
  5. Andriani, A. D., Lokapirnasari, W. P., Karimah, B., Hidanah, S., Al-Arif, M. A., Soeharsono, & Harijani, N. (2020). Effectivty of probiotic Lactobacillus casei and Lactobacillus rhamnosus as alternate antibiotic growth promoter on cholesterol, low density lipoprotein and high density lipoprotein of broiler chickens. Jurnal Medik Veteriner, 3(1), 114–122. https://doi.org/10.20473/jmv.vol3.iss1.2020.114-122
  6. Anggraini, D., & Hasni, D. (2021). Early detection of hypercholesterolemia in the elderly. Jurnal Abdimas Saintika, 3(2), 7–12. [data tidak tersedia DOI]
  7. Astuti, F. D., Setyawardani, T., & Santosa, S. S. (2021). The physical characteristics of cheese made of milk, colostrum and both during the ripening. Journal of the Indonesian Tropical Animal Agriculture, 46(1), 75–83. https://doi.org/10.14710/jitaa.46.1.75-83
  8. Cinar, K., Gulec, H. A., Gunes, G., & Hicsasmaz, Z. (2024). Utilization of retentates for white brined cheese production: Comparative evaluation of physico-chemical and sensory properties. Journal of Food Measurement and Characterization, 18(10), 8397–8407. https://doi.org/10.1007/s11694-024-02808-z
  9. Costabile, A., Buttarazzi, I., Kolida, S., Quercia, S., Baldini, J., Swann, J. R., Brigidi, P., & Gibson, G. R. (2017). An in vivo assessment of the cholesterol-lowering efficacy of Lactobacillus plantarum ECGC 13110402 in normal to mildly hypercholesterolaemic adults. PLOS ONE, 12(12), 1–21. https://doi.org/10.1371/journal.pone.0187964
  10. Deshwal, G. K., Gómez-Mascaraque, L. G., Fenelon, M., & Huppertz, T. (2023). A review on the effect of calcium sequestering salts on casein micelles: From model milk protein systems to processed cheese. Molecules, 28(5), 1–17. https://doi.org/10.3390/molecules28052085
  11. Diza, Y. H., Wahyuningsih, T., & Hermianti, W. (2016). Penentuan jumlah bakteri asam laktat (BAL) dan cemaran mikroba patogen pada yoghurt bengkuang selama penyimpanan. [data tidak tersedia nama jurnal], 6(1), 1–11. [data tidak tersedia DOI]
  12. Emmawati, A., Rizaini, R., & Rahmadi, A. (2021). Perubahan populasi bakteri asam laktat, kapang/khamir, keasaman dan respons sensoris yoghurt durian. Journal of Tropical AgriFood, 2(2), 79–89. https://doi.org/10.35941/jtaf.2.2.2020.5131.79-89
  13. Feeney, E. L., Lamichhane, P., & Sheehan, J. J. (2021). The cheese matrix: Understanding the impact of cheese structure on aspects of cardiovascular health – A food science and a human nutrition perspective. International Journal of Dairy Technology, 74(4), 656–670. https://doi.org/10.1111/1471-0307.12755
  14. Felix, C. R., & Fachrial, E. (2024). Potensi probiotik isolat DNH 16 dalam menurunkan kadar kolesterol secara in vitro. Jurnal Kesehatan Masyarakat, 8(1), 101–112. [data tidak tersedia DOI]
  15. Firoozzare, A., Boccia, F., Yousefian, N., Ghazanfari, S., & Pakook, S. (2024). Understanding the role of awareness and trust in consumer purchase decisions for healthy food and products. Food Quality and Preference, 121, 105275. https://doi.org/10.1016/j.foodqual.2024.105275
  16. Gao, F., Li, D., Li, H., Chen, H., Mao, X., & Wang, P. (2023). Influence of post-heating treatment on the sensory and textural properties of stirred fermented milk. Foods, 12, 3042. https://doi.org/10.3390/foods12163042
  17. Homayouni, A., Ansari, F, Azizi, A., Pourjafar, H., & Madadi, M. (2018). Cheese as a potential food carrier to deliver probiotic microorganisms into the human gut: A review. Current Nutrition & Food Science, 14(1), 1–13. https://doi.org/10.2174/1573401314666180817101526
  18. Juniawati, Usmiati, S., & Damayanthi, E. (2015). Pengembangan keju lemak rendah sebagai pangan fungsional. Jurnal Penelitian dan Pengembangan Pertanian, 34(1), 31–40. https://doi.org/10.21082/jp3.v34n1.2015.p31-40
  19. Kaminarides, S., Litos, I., Massouras, T., & Georgala, A. (2015). The effect of cooking time on curd composition and textural properties of sheep Halloumi cheese. Small Ruminant Research, 125, 106–114. https://doi.org/10.1016/j.smallrumres.2015.01.025
  20. Kasmiyetti, Amri, Z., Hasneli, Rahmayeni, S., & Mushollini, F. (2022). Pengaruh lama penyimpanan terhadap pH dan total bakteri asam laktat yoghurt dengan penambahan sari buah naga merah sebagai minuman fungsional bagi penderita hiperkolesterolemia. Jurnal Teknologi Pangan dan Gizi, 21(2), 87–93. [data tidak tersedia DOI]
  21. Kemenkes. (2024). Survei Kesehatan Indonesia (SKI) 2023 dalam angka. Kementerian Kesehatan RI.
  22. Koranteng, B. A., Awodoyin, O. R., Adediran, A. O., & Omojola, A. B. (2021). Physicochemical and sensory characteristics of soft cheese as affected by different salt levels. Nigerian Journal of Animal Production, 48(5), 124–134. https://doi.org/10.51791/njap.v48i5.3193
  23. Krismiyanto, L., Mulyono, Suthama, N., Wicaksono, A. A., Muslimah, M., Setiawan, R. Z., Hanif, A., & Ridwan, F. I. A. F. (2021). Penambahan probiotik dalam ransum mengandung protein mikropartikel dan lemak tinggi terhadap profil lemak darah dan kualitas daging broiler. Jurnal Ilmu Ternak Universitas Padjadjaran, 21(1), 50–57. https://doi.org/10.24198/jit.v21i1.33049
  24. Mardalena. (2016). Fase pertumbuhan isolat bakteri asam laktat (BAL) tempoyak asal Jambi yang disimpan pada suhu kamar. Jurnal Peternakan Indonesia, 11(1), 58–66. [data tidak tersedia DOI]
  25. Marwah, S., Poernomo, A. T., & Hendradi, E. (2023). Study of growth curve of Lactobacillus plantarum FNCC 0026 and its antibacterial activity. Jurnal Farmasi dan Ilmu Kefarmasian Indonesia, 10(1), 38–43. https://doi.org/10.20473/jfiki.v10i12023.38-43
  26. Meghzili, B., Benyahia, F. A., Szkolnicka, K., Aissaoui-Zitoun, O., & Foufou, E. (2024). Soft cheese-making with buttermilk: Physico-chemical, sensory, textural properties, and microstructure characterization. Journal of Food Quality and Hazards Control, 11, 82–93. https://doi.org/10.18502/jfqhc.11.2.15647
  27. Mehta, B. M. (2018). Microstructure of cheese products. In Microstructure of dairy products (pp. 145–179). https://doi.org/10.1002/9781118964194.ch7
  28. Mohammed, S., Eshetu, M., Tadesse, Y., & Hailu, Y. (2019). Rheological properties and shelf life of soft cheese made from camel milk using camel chymosin. Journal of Dairy & Veterinary Sciences, 10(4). https://doi.org/10.19080/jdvs.2019.10.555794
  29. Momin, E. S., Khan, A. A., Kashyap, T., Pervaiz, M. A., Akram, A., Mannan, V., Sanusi, M., & Elshaikh, A. O. (2023). The effects of probiotics on cholesterol levels in patients with metabolic syndrome: A systematic review. Cureus, 15(4). https://doi.org/10.7759/cureus.37567
  30. Mulyani, S., Sunarko, K. M. F., & Setiani, B. E. (2021). Pengaruh lama fermentasi terhadap total asam, total bakteri asam laktat dan warna kefir belimbing manis (Averrhoa carambola). Jurnal Ilmiah Sains, 21(2), 113–118. https://doi.org/10.35799/jis.21.2.2021.31416
  31. Musra, N. I., Yasni, S., & Syamsir, E. (2021). Karakterisasi keju dangke menggunakan enzim papain komersial dan perubahan fisik selama penyimpanan. Jurnal Teknologi dan Industri Pangan, 32(1), 27–35. https://doi.org/10.6066/jtip.2021.32.1.27
  32. Parra-Ocampo, K. A., Martín-Del-Campo, S. T., Montejano-Gaitán, J. G., Zárraga-Alcántar, R., & Cardador-Martínez, A. (2020). Evaluation of biological, textural, and physicochemical parameters of Panela cheese added with probiotics. Foods, 9(10), 1–14. https://doi.org/10.3390/foods9101507
  33. Possas, A., Bonilla-Luque, O. M., & Valero, A. (2021). From cheese-making to consumption: Exploring the microbial safety of cheeses through predictive microbiology models. Foods, 10(2). https://doi.org/10.3390/foods10020355
  34. Prahardhini, D., Rosidi, & Sulistyawan, I. H. (2020). Pengaruh penambahan probiotik terhadap indeks putih telur dan indeks kuning telur pada ayam niaga petelur afkir. [data tidak tersedia nama jurnal], 2(2), 139–146. [data tidak tersedia DOI]
  35. Reale, A., Di Renzo, T., & Coppola, R. (2019). Factors affecting viability of selected probiotics during cheese-making of pasta filata dairy products obtained by direct-to-vat inoculation system. LWT – Food Science and Technology, 116, 108476. https://doi.org/10.1016/j.lwt.2019.108476
  36. Reale, E., Govindasamy-Lucey, S., Lu, Y., Johnson, M. E., Jaeggi, J. J., Molitor, M., & Lucey, J. A. (2022). Slower proteolysis in Cheddar cheese made from high-protein cheese milk is due to an elevated whey protein content. Journal of Dairy Science, 105(12), 9367–9386. https://doi.org/10.3168/jds.2022-22012
  37. Rolim, F. R. L., Freitas Neto, O. C., Oliveira, M. E. G., Oliveira, C. J. B., & Queiroga, R. C. R. E. (2020). Cheeses as food matrixes for probiotics: In vitro and in vivo tests. Trends in Food Science and Technology, 100, 138–154. https://doi.org/10.1016/j.tifs.2020.04.008
  38. Salvador, D., Acosta, Y., Zamora, A., & Castillo, M. (2022). Rennet-induced casein micelle aggregation models: A review. Foods, 11(9), 1–15. https://doi.org/10.3390/foods11091243
  39. Setiawardani, T., Rahayu, W. P., & Palupi, N. S. (2016). Physicochemical and stability of goat cheese with mono and mixed culture of Lactobacillus plantarum and Lactobacillus rhamnosus. Animal Production, 18(1), 36–42. https://doi.org/10.20884/1.anprod.2016.18.1.533
  40. Sharafi, S., Nateghi, L., & Yousefi, S. (2021). Investigating the effect of pH, different concentrations of glutamate acid and salt on production in low-fat probiotic cheese. Iranian Journal of Microbiology, 13(3), 389–398. https://doi.org/10.18502/ijm.v13i3.6402
  41. Shu, G., Li, C., Chen, H., & Wang, C. (2014). Effect of inoculum and temperature on the fermentation of goat yogurt. Journal of Food Science and Technology, 6(1), 68–71. https://doi.org/10.19026/ajfst.6.3032
  42. Singh, S., Chauhan, A. K., Aparnna, V. P., Prakash, R., Maiti, P., Ranjan, R., & Joshi, P. (2023). Quarg cheese: The impact of fat content change on its microstructure, characterization, rheology, and textural properties. Current Research in Nutrition and Food Science, 11(3), 1061–1073. https://doi.org/10.12944/CRNFSJ.11.3.12
  43. Sionek, B., Szydłowska, A., Küçükgöz, K., & Kołożyn-Krajewska, D. (2023). Traditional and new microorganisms in lactic acid fermentation of food. Fermentation, 9(12), 1–21. https://doi.org/10.3390/fermentation9121019
  44. Sujaya, I. N., Nocianitri, K. A., Aryantini, N. P. D., Nursini, W., Ramona, Y., Orikasa, Y., Kenji, F., Urashima, T., & Oda, Y. (2016). Identifikasi dan karakterisasi bakteri asam laktat isolat susu segar sapi Bali. Jurnal Veteriner, 17(2), 155–167. https://doi.org/10.19087/jveteriner.2016.17.2.155
  45. Sulistyo, B., Chairunnisa, H., & Wulandari, E. (2018). Pengaruh penggunaan kombinasi enzim papain dan jus lemon sebagai koagulan terhadap kadar air, berat rendemen, dan nilai kesukaan fresh cheese. Jurnal Ilmu Ternak, 18(1), 8–15. https://doi.org/10.24198/jit.v18i1.15299
  46. Takagi, H., Nakano, T., Aoki, T., & Tanimoto, M. (2022). Temperature dependence of the casein micelle structure in the range of 10–40 °C: An in-situ SAXS study. Food Chemistry, 393, 133389. https://doi.org/10.1016/j.foodchem.2022.133389
  47. Trimudita, R. F., & Djaenudin. (2021). Enkapsulasi probiotik Lactobacillus sp. menggunakan dua tahap proses. Jurnal Serambi Engineering, 6(2), 1832–1841. https://doi.org/10.32672/jse.v6i2.2883
  48. Vigneux, M. P. B., Villeneuve, W., Pouliot, Y., & Britten, M. (2022). Increasing the proportion of homogenised fat in cheese milk: Effect on cheese-making properties. International Dairy Journal, 126, 105254. https://doi.org/10.1016/j.idairyj.2021.105254
  49. Yunus, Y., & Zubaidah, E. (2015). Pengaruh konsentrasi sukrosa dan lama fermentasi terhadap viabilitas L. casei selama penyimpanan beku velva pisang Ambon. Jurnal Pangan dan Agroindustri, 3(2), 303–312. [data tidak tersedia DOI]
  50. Zakariah, M. A., Malaka, R., Laga, A., Ako, A., Zakariah, M., & Mauliah, F. U. (2022). Quality and storage time of traditional Dangke cheese inoculated with indigenous lactic acid bacteria isolated from Enrekang District, South Sulawesi, Indonesia. Biodiversitas, 23(6), 3270–3276. https://doi.org/10.13057/biodiv/d230656
  51. Zheng, Y., Liu, Z., & Mo, B. (2016). Texture profile analysis of sliced cheese in relation to chemical composition and storage temperature. Journal of Chemistry, 2016, 8690380. https://doi.org/10.1155/2016/8690380

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