| Id |
Subject |
Object |
Predicate |
Lexical cue |
| TextSentencer_T1 |
0-79 |
Sentence |
denotes |
Chondroitin sulfates and their binding molecules in the central nervous system. |
| T1 |
0-79 |
Sentence |
denotes |
Chondroitin sulfates and their binding molecules in the central nervous system. |
| TextSentencer_T2 |
80-193 |
Sentence |
denotes |
Chondroitin sulfate (CS) is the most abundant glycosaminoglycan (GAG) in the central nervous system (CNS) matrix. |
| T2 |
80-193 |
Sentence |
denotes |
Chondroitin sulfate (CS) is the most abundant glycosaminoglycan (GAG) in the central nervous system (CNS) matrix. |
| TextSentencer_T3 |
194-452 |
Sentence |
denotes |
Its sulfation and epimerization patterns give rise to different forms of CS, which enables it to interact specifically and with a significant affinity with various signalling molecules in the matrix including growth factors, receptors and guidance molecules. |
| T3 |
194-452 |
Sentence |
denotes |
Its sulfation and epimerization patterns give rise to different forms of CS, which enables it to interact specifically and with a significant affinity with various signalling molecules in the matrix including growth factors, receptors and guidance molecules. |
| TextSentencer_T4 |
453-564 |
Sentence |
denotes |
These interactions control numerous biological and pathological processes, during development and in adulthood. |
| T4 |
453-564 |
Sentence |
denotes |
These interactions control numerous biological and pathological processes, during development and in adulthood. |
| TextSentencer_T5 |
565-735 |
Sentence |
denotes |
In this review, we describe the specific interactions of different families of proteins involved in various physiological and cognitive mechanisms with CSs in CNS matrix. |
| T5 |
565-735 |
Sentence |
denotes |
In this review, we describe the specific interactions of different families of proteins involved in various physiological and cognitive mechanisms with CSs in CNS matrix. |
| TextSentencer_T6 |
736-859 |
Sentence |
denotes |
A better understanding of these interactions could promote a development of inhibitors to treat neurodegenerative diseases. |
| T6 |
736-859 |
Sentence |
denotes |
A better understanding of these interactions could promote a development of inhibitors to treat neurodegenerative diseases. |