Maria Eduarda Costa Campos, Beatriz Barbosa Cordeiro de Campos, Isabella Maciel Costa, Vinicius Tadeu da Veiga Correia, Cosme Damião Barbosa, José Erick Galindo Gomes, Lara Beatriz Oliveira Mateus, Ana Carolina Nascimento Cidrini Golo, Taynan Jonatha Neves Costa, Bruna Luiza Ferreira Moraes, Washington Azevedo da Silva, Christiano Vieira Pires, Gabriel Augusto Marques Rossi, Cléia Batista Dias, Bruna Maria Salotti Souza
This study evaluated the effects of incorporating potential probiotic strains into Italian-style salami. Three lactic acid bacteria (LAB) strains were tested, including the commercial strain Pediococcus pentosaceus co-cultured with Staphylococcus xylosus (C), as well as the LAB strains Lacticaseibacillus paracasei (GV17), Lactococcus lactis (GV103), and Pediococcus pentosaceus (PP). Preliminary tests were conducted to assess the behavior of these strains under different pH values, NaCl concentrations, and preservative conditions. C, GV17, and GV103 exhibited greater viability at pH 5.0 and 5.5, while a 2% NaCl concentration promoted higher LAB growth rates. The addition of preservatives did not inhibit LAB growth. Weight loss during ripening was gradual and became significant from day 12 onward. GV17 and PP exhibited water activity values above 0.90, whereas all four formulations reached moisture contents below 35% and LAB counts above 8.00 log CFU/g after 25 days of ripening. After 45 days of storage, the LAB count in the GV17 formulation was 6.27 log CFU/g. PP exhibited the lightest internal color among the salami formulations, whereas red intensity was similar across all formulations. The use of autochthonous LAB strains significantly reduced hardness and chewiness. Overall, the new LAB strains demonstrated potential for the development of functional meat products, expanding opportunities for innovation in the food sector.