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Acute Brain Trauma in Mice Followed By Longitudinal Two-photon Imaging
Published on: April 6, 2014
Targeting cell death in vivo in experimental traumatic brain injury by a novel molecular probe
Ayelet Reshef1, Anat Shirvan, Esther Shohami
1NST NeuroSurvival Technologies Ltd., Petach-Tikva, Israel.
Abstract:
Traumatic brain injury (TBI) remains a frequent and major challenge in neurological and neurosurgical practice. Apoptosis may play a role in cerebral tissue damage induced by the traumatic insult, and thus its detection and inhibition may advance patient care. DDC (N,N'-didansyl-L-cystine) is a novel fluorescent probe for detection of apoptotic cells. We now report on the performance of DDC in experimental TBI. Closed head injury was induced in mice by weight-drop. DDC was administered intravenously in vivo. Two hours later, animals were sacrificed, and brain tissue was subjected to fluorescent microcopy, for assessment of DDC uptake, in correlation with histopathological assessment of apoptosis by TUNEL and caspase substrates, and also in correlation with the neurological deficits, as assessed by Neurological Severity Score (NSS). Selective uptake of DDC was observed at the primary site of injury, and also at remote sites. Uptake was at the cellular level, with accumulation of DDC in the cytoplasm. Cells manifesting DDC uptake were confirmed as apoptotic cells by detection of the characteristic apoptotic DNA fragmentation (positive TUNEL staining) and detection of activated caspases. The damaged region stained by DDC fluorescence correlated with the severity of neuronal deficits. Our study confirms the role of apoptosis in TBI, and proposes DDC as a useful tool for its selective targeting and detection in vivo. Such imaging of apoptosis, following future radiolabeling of DDC, may advance care for patients with head injury, by allowing real-time evaluation of the extent of tissue damage, assessment of novel therapeutic strategies, and optimization of treatment for the individual patient.
Insights
N,N'-didansyl-L-cystine (DDC) effectively detects apoptotic cells in traumatic brain injury (TBI) models. This fluorescent probe shows selective uptake in damaged brain tissue, correlating with injury severity and aiding in apoptosis assessment.
Area of Science:
- Neuroscience
- Cell Biology
- Medical Imaging
Background:
- Traumatic brain injury (TBI) presents significant clinical challenges.
- Apoptosis (programmed cell death) is implicated in TBI-induced brain damage.
- Targeting apoptosis could improve patient outcomes.
Purpose of the Study:
- To evaluate the efficacy of N,N"-didansyl-L-cystine (DDC) as a fluorescent probe for detecting apoptosis in an experimental TBI model.
- To correlate DDC uptake with histopathological markers of apoptosis and neurological deficits.
Main Methods:
- Experimental TBI was induced in mice using a weight-drop model.
- DDC was administered intravenously, and brain tissue was analyzed using fluorescent microscopy.
- Apoptosis was assessed via TUNEL staining and caspase activity.
- Neurological deficits were evaluated using the Neurological Severity Score (NSS).
Main Results:
- DDC exhibited selective uptake in brain tissue at primary and remote injury sites.
- DDC accumulation occurred intracellularly, confirming its localization in apoptotic cells.
- DDC-positive cells showed characteristic apoptotic markers (TUNEL, activated caspases).
- DDC fluorescence intensity correlated with the severity of neurological deficits.
Conclusions:
- DDC is a valuable tool for in vivo detection and targeting of apoptosis in TBI.
- This probe facilitates real-time evaluation of tissue damage and therapeutic efficacy.
- Future radiolabeling of DDC may enhance its clinical utility for head injury management.

