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Chlorotoxin, a scorpion-derived peptide, specifically binds to gliomas and tumors of neuroectodermal origin
Susan A Lyons1, Jeffrey O'Neal, Harald Sontheimer
1TransMolecular, Inc., Birmingham, Alabama 35294, USA.
Abstract:
Highly migratory neuroectodermal cells share a common embryonic origin with cells of the central nervous system (CNS). They include enteric, parasympathetic, sympathoadrenal, and sensory neurons of the peripheral nervous system, Schwann cells, melanocytes, endocrine cells, and cells forming connective tissue of the face and neck. Because of their common embryologic origin, these cells and the tumors that derive from them can share genetic and antigenic phenotypes with gliomas, tumors derived from CNS glia. We recently discovered that chlorotoxin (ClTx), a 4-kD peptide purified from Leiurus quinquestriatus scorpion, is a highly specific marker for glioma cells in biopsy tissues (Soroceanu et al. Cancer Res 58:4871-4879, 1998) that can target tumors in animal models. We report on the specificity of ClTx as a marker for tumors of neuroectodermal origin that include peripheral neuroectodermal tumors (PNET) and gliomas. Specifically, we histochemically stained frozen and paraffin tissue sections of human biopsy tissues from 262 patients with a synthetically manufactured and biologically active ClTx bearing an N-terminal biotin. The vast majority (74 of 79) of primary human brain tumors investigated showed abundant binding of ClTx with greater than 90% ClTx-positive cells in each section. By comparison, 32 biopsies of uninvolved brain used for comparison were largely ClTx-negative, with only a few isolated reactive astrocytes showing some ClTx binding. However, as with gliomas, the vast majority of PNETs examined showed specific ClTx binding (31 of 34). These include medulloblastomas (4 of 4), neuroblastomas (6 of 7), ganglioneuromas (4 of 4), melanomas (7 of 7), adrenal pheochromocytomas (5 of 6), primitive PNET (1), small cell lung carcinoma (2 of 3), and Ewing's sarcoma (2 of 2). Under identical staining conditions, normal tissues from brain, skin, kidney, and lung were consistently negative for ClTx. These results suggest that chlorotoxin is a reliable and specific histopathological marker for tumors of neuroectodermal origin and that chlorotoxin derivatives with cytolytic activity may have therapeutic potential for these cancers.
Insights
Chlorotoxin (ClTx) effectively marks neuroectodermal tumors, including gliomas and peripheral neuroectodermal tumors (PNETs), in human biopsy tissues. This finding suggests ClTx
Area of Science:
- Neuroscience and Oncology
- Molecular Biology and Pathology
Background:
- Neuroectodermal cells, originating from the central nervous system (CNS), give rise to various peripheral nervous system cells and tumors.
- Gliomas and peripheral neuroectodermal tumors (PNETs) share common embryologic origins and can exhibit similar genetic and antigenic phenotypes.
- Chlorotoxin (ClTx), a peptide from Leiurus quinquestriatus scorpion venom, has shown promise as a specific marker for glioma cells.
Purpose of the Study:
- To evaluate the specificity of chlorotoxin (ClTx) as a histopathological marker for a broad range of neuroectodermal tumors.
- To assess the diagnostic utility of ClTx in distinguishing tumor tissues from normal tissues.
Main Methods:
- Histochemical staining of frozen and paraffin-embedded human biopsy tissue sections from 262 patients using biotinylated chlorotoxin (ClTx).
- Comparative analysis of ClTx binding in various primary human brain tumors, peripheral neuroectodermal tumors (PNETs), and normal tissues (brain, skin, kidney, lung).
- Quantitative assessment of ClTx-positive cells within stained tissue sections.
Main Results:
- A high percentage (74 of 79) of primary human brain tumors and (31 of 34) PNETs demonstrated significant ClTx binding.
- Normal brain tissue showed minimal ClTx binding, primarily on isolated reactive astrocytes.
- Normal tissues from brain, skin, kidney, and lung were consistently negative for ClTx under identical staining conditions.
Conclusions:
- Chlorotoxin (ClTx) is a reliable and specific histopathological marker for tumors of neuroectodermal origin, including gliomas and PNETs.
- The findings support the potential of ClTx and its derivatives as diagnostic tools and therapeutic agents for neuroectodermal cancers.