Land-use dynamics in semiarid Brazil can reduce soil carbon (C) stocks and increase COQ emissions. Integrated livestock-forest (ILF) systems may mitigate these effects by improving soil quality and enhancing carbon sequestration. This study evaluated the impact of ILF systems on soil organic matter (SOM) quality and C stocks in Ceara, Brazil. The experiment included four ILF systems: with sorghum (So), forage cactus (Fc), massai grass (Mg), and buffel grass (Bg), arranged at three spacings (7 m, 14 m, and 28 m) between strips of native tree (SNT Caatinga). These systems were compared to native vegetation (NV). Soil samples were collected up to 50 cm depth to assess changes in SOM composition (C, N, delta 13C, delta 15N) and organic matter fractions. Our results showed that, over six years, converting Caatinga into ILF systems increased C and N stocks in the topsoil (0-10 cm) when considering only the SOC of livestock components with Bg and Mg. Systems with Mg and Bg at spacings S28 and S14 were the most effective in increasing SOC, POM, and MAOM fractions and had the highest delta 13C values. In contrast, Fc systems promoted the greatest SOC reductions. Weighted results of livestock and forestry components showed ILF systems to be even more effective, reducing C stock losses even in deeper layers (0-30 and 0-50 cm). ILF systems integrating grasses and Caatinga trees, especially at 14 m and 28 m spacings, show strong potential to enhance SOC stocks, improve soil quality, and support climate change mitigation through sustainable land use.