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51. Creating a Dialogic Environment for Transformative Science Teaching Practices: Towards an Inclusive Education for Science

54. Natural versus conventional production of Spanish white wines: an exploratory study

58. LONG-TERM IMPACT OF MAIZE AGROECOLOGICAL MANAGEMENT ON BACTERIAL COMMUNITIES AND SOIL HEALTH IN THE ARID NORTH OF MEXICO

61. Makerspaces for Inclusive Education

63. Bridging the Printed or Digital Controversy: A Meta-Analysis of the Impact of Digital and Print Resources on College Students' Reading Comprehension.

64. Bacteria in the blood of healthy stray dogs infested by ticks in northern Mexico.

65. Metodología activa y digitalizada en L2: Efecto en el rendimiento académico.

66. PROGRAMA DE BIENESTAR EMOCIONAL PARA ADOLESCENTES DE VILADECANS

70. Actualización en la restricción del movimiento de la columna vertebral, en el traumatismo pediátrico: ¿qué nos dicen las guías ATLS-10º edición?

71. Model code approach to the SLS design of FRP reinforced concrete elements

72. Pervaporation of the low ethanol content extracting stream generated from the dealcoholization of red wine by membrane osmotic distillation

74. Supplementary data for Natural versus conventional production of Spanish white wines: an exploratory study

75. Natural versus conventional production of Spanish white wines: an exploratory study

76. Efecto del tipo de elaboración de vinos blancos españoles: vino natural vs convencional

77. Improvement in the EFL Learning Process in VET Studies. A Structural Equations Model of Affective Variables: English Language Anxiety, Willingness to Communicate and Self-efficacy in English.

79. Supplementary Figure Legend from Snail1-Dependent Activation of Cancer-Associated Fibroblast Controls Epithelial Tumor Cell Invasion and Metastasis

80. Supplementary Figure 5 from Functional Heterogeneity of Cancer-Associated Fibroblasts from Human Colon Tumors Shows Specific Prognostic Gene Expression Signature

81. Supplementary Methods from Proteome Profiling of Cancer-Associated Fibroblasts Identifies Novel Proinflammatory Signatures and Prognostic Markers for Colorectal Cancer

82. Figure S7 from β-Cryptoxanthin Synergistically Enhances the Antitumoral Activity of Oxaliplatin through ΔNP73 Negative Regulation in Colon Cancer

85. Supplementary figure legends from β-Cryptoxanthin Synergistically Enhances the Antitumoral Activity of Oxaliplatin through ΔNP73 Negative Regulation in Colon Cancer

86. Supplementary Table S3 from LOXL2 Is Highly Expressed in Cancer-Associated Fibroblasts and Associates to Poor Colon Cancer Survival

87. Supplementary Methods from LOXL2 Is Highly Expressed in Cancer-Associated Fibroblasts and Associates to Poor Colon Cancer Survival

88. Supplementary Table 4 from Functional Heterogeneity of Cancer-Associated Fibroblasts from Human Colon Tumors Shows Specific Prognostic Gene Expression Signature

90. Supplementary Figure 3 from Functional Heterogeneity of Cancer-Associated Fibroblasts from Human Colon Tumors Shows Specific Prognostic Gene Expression Signature

91. Supplementary Figure 4 from Functional Heterogeneity of Cancer-Associated Fibroblasts from Human Colon Tumors Shows Specific Prognostic Gene Expression Signature

92. Supplementary Figures 1 - 5 from Proteome Profiling of Cancer-Associated Fibroblasts Identifies Novel Proinflammatory Signatures and Prognostic Markers for Colorectal Cancer

93. Supplementary Table 3 from Functional Heterogeneity of Cancer-Associated Fibroblasts from Human Colon Tumors Shows Specific Prognostic Gene Expression Signature

94. Supplementary Table 1 from Proteome Profiling of Cancer-Associated Fibroblasts Identifies Novel Proinflammatory Signatures and Prognostic Markers for Colorectal Cancer

95. Supplementary Table 4 from Proteome Profiling of Cancer-Associated Fibroblasts Identifies Novel Proinflammatory Signatures and Prognostic Markers for Colorectal Cancer

96. Supplementary figures S1-7 from LOXL2 Is Highly Expressed in Cancer-Associated Fibroblasts and Associates to Poor Colon Cancer Survival

97. Supplementary Table 2 from Proteome Profiling of Cancer-Associated Fibroblasts Identifies Novel Proinflammatory Signatures and Prognostic Markers for Colorectal Cancer

98. Supplementary Table 3 from Proteome Profiling of Cancer-Associated Fibroblasts Identifies Novel Proinflammatory Signatures and Prognostic Markers for Colorectal Cancer

99. Supplementary Figure 1 from Functional Heterogeneity of Cancer-Associated Fibroblasts from Human Colon Tumors Shows Specific Prognostic Gene Expression Signature

100. Supplementary Methods, Figure Legends, Tables 1 - 2 from Functional Heterogeneity of Cancer-Associated Fibroblasts from Human Colon Tumors Shows Specific Prognostic Gene Expression Signature

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