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Detection of Changes in Immunohistochemical Stains Caused by Postmortem Delay and Fixation Time
Yasmin Lundström1, Patrik Lundström1, Svetlana N Popova1,2
1Department of Immunology, Genetics and Pathology.
Insights
Postmortem delay (PMD) and fixation time (FT) significantly impact immunohistochemical (IHC) staining results. These variables, crucial for autopsy and research tissues, introduce unpredictable variations in IHC outcomes.
Area of Science:
- Neuroscience
- Pathology
- Biomedical Research
Background:
- Immunohistochemistry (IHC) is vital for diagnosing and researching surgical and postmortem tissues.
- Standardizing IHC protocols is challenging due to variables like postmortem delay (PMD) and fixation time (FT).
Purpose of the Study:
- To systematically evaluate the impact of PMD and FT on IHC staining outcomes.
- To establish a reliable model for assessing IHC reliability in tissues with varying characteristics.
Main Methods:
- Pig brain tissues were subjected to controlled PMD (refrigeration) and FT (formalin fixation).
- Tissue microarrays (TMAs) were created and stained with 13 antibodies against neuronal and glial antigens.
- The influence of PMD and FT on immunoreactivity and TMA core integrity was analyzed.
Main Results:
- Prolonged PMD affected immunoreactivity for 5 antibodies; prolonged FT affected 2 antibodies.
- No predictable relationship was found between PMD/FT and specific staining outcomes.
- TMA core loss was mainly linked to pretreatment and tissue type (gray/white matter).
Conclusions:
- PMD and FT are critical, unpredictable variables affecting IHC results, especially in autopsy samples.
- The developed model is essential for evaluating IHC reliability when comparing postmortem, surgical, and experimental tissues.
- Consideration of PMD and FT is recommended for accurate interpretation of IHC data.
Abstract:
In this study, we have systematically assessed the influence of postmortem delay (PMD) and fixation time (FT) on the immunohistochemical (IHC) staining outcome. The IHC method is frequently applied on surgical and postmortem samples in diagnostics and research. To replicate the routine situation, brain tissues from pigs were exposed to either storage in a refrigerator (+8°C), that is, PMD (1 to 168 h), or fixed in 10% buffered formalin, that is, FT (18 to 94 d). Subsequently, the tissue was routinely processed into paraffin blocks to enable construction of tissue microarrays (TMA). Sections cut from the TMA blocks were stained applying 13 different antibodies directed against neuronal and glial antigens. Immunoreactivity applying 5 antibodies was influenced by prolonged PMD and applying 2 antibodies by prolonged FT. None of the staining outcomes related to the PMD or FT were predictable. Loss of TMA cores during processing was primarily influenced by pretreatment and by tissue characteristics (gray/white matter). The test model described here confirmed that these 2 variables, PMD and FT, indeed influence the IHC outcome. The PMD and FT are particularly of importance while assessing tissue samples obtained at autopsy. The result above is also of importance while comparing the IHC outcomes seen in the postmortem setting (various PMD/FT) with surgical samples or with IHC outcome seen in experimental animal setting (controlled PMD/FT). Thus, we suggest that the test model described here is considered when assessing the reliability of the IHC outcome when analyzing tissues with various characteristics.
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