PMID-sentid Pub_year Sent_text comp_official_name comp_offsetprotein_name organism prot_offset 29882939-4 2018 As regards S. mutans, the highest activity was shown by adenine at 5 mg mL-1 both in the biofilm inhibition (BI 50%) and biofilm disaggregation tests (BD 20%). Adenine 56-63 L1 cell adhesion molecule Mus musculus 72-76 32032811-6 2020 In this study, two irreversible oxide peaks were obtained from paper-based printed graphene electrode, corresponds to oxidation of guanine (G) and adenine (A) of dsDNA in the linear range of 0.2 pg mL-1 to 5 pg mL-1 with the detection limit of 0.68 pg mL-1 and the sensitivity of 0.00656 mA pg-1 cm-2. Adenine 147-154 L1 cell adhesion molecule Mus musculus 198-202 32032811-6 2020 In this study, two irreversible oxide peaks were obtained from paper-based printed graphene electrode, corresponds to oxidation of guanine (G) and adenine (A) of dsDNA in the linear range of 0.2 pg mL-1 to 5 pg mL-1 with the detection limit of 0.68 pg mL-1 and the sensitivity of 0.00656 mA pg-1 cm-2. Adenine 147-154 L1 cell adhesion molecule Mus musculus 211-215 32032811-6 2020 In this study, two irreversible oxide peaks were obtained from paper-based printed graphene electrode, corresponds to oxidation of guanine (G) and adenine (A) of dsDNA in the linear range of 0.2 pg mL-1 to 5 pg mL-1 with the detection limit of 0.68 pg mL-1 and the sensitivity of 0.00656 mA pg-1 cm-2. Adenine 147-154 L1 cell adhesion molecule Mus musculus 211-215 30502639-7 2019 The fabricated biosensor showed a wide linear response in a PRD concentration range of 1.0-50.0 mug mL-1 depending on both the adenine and guanine base signals. Adenine 127-134 L1 cell adhesion molecule Mus musculus 100-104 30502639-8 2019 The detection limit based on the guanine and adenine signals was 0.3 mug mL-1 and 0.25 mug mL-1, respectively. Adenine 45-52 L1 cell adhesion molecule Mus musculus 73-77 30502639-8 2019 The detection limit based on the guanine and adenine signals was 0.3 mug mL-1 and 0.25 mug mL-1, respectively. Adenine 45-52 L1 cell adhesion molecule Mus musculus 91-95