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Subependymal glycosaminoglycan networks in adult and developing rat brain

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Summary

Histochemical studies of normal adult rat brain indicate two types of glycosaminoglycans in the subependymal region of the lateral ventricle. One network is characterized by an affinity for the cationic dyes alcian blue, aldehyde fuchsin and colloidal iron. These reactions occur at pH 1.0 and at 0.5–0.3 M concentration of MgCl2, which suggests that this material is chondroitin sulfate. The other system is identified by metachromasia with toluidine blue and a loss of PAS staining following sulfation. These findings are consistent with non-sulfated and non-anionic acid mucopolysaccharides. In developing rat brain the differential development of these networks enhances their separate identity. The metachromatic network is present at least by the 10th postnatal day but the polyanionic electrolytes cannot be identified until the 16th to the 22nd days. The possible functional importance of these systems is discussed.

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References

  • Banõs G, Daniel PM, Pratt OE (1978) The effect of age upon the entry of some amino acids into the brain, and their incorporation into cerebral protein. Dev Med Child Neurol 20:335–336

    Google Scholar 

  • Blasberg R, Patlak C, Fenstermacher JD (1975) Intrathecal chemotherapy: brain tissue profiles after ventriculo-cisternal perfusion. J Pharmacol Exp Ther 195:73–83

    Google Scholar 

  • Bondareff W, Pysh JJ (1968) Distribution of the extracellular space during postnatal maturation of rat cerebral cortex. Anat Rec 160:773–778

    Google Scholar 

  • Brenner BM, Hostetter TH, Humes HD (1978) Molecular basis of proteinuria of glomerular origin. N Engl J Med 298:826–833

    Google Scholar 

  • Brightman MW (1965) The distribution within the brain of ferritin injected intocerebrospinal fluid compartments. J Cell Biol 26:99–123

    Google Scholar 

  • Caulfield JP (1979) Alterations in the distribution of alcian blue staining fibrillar anionic sites in the glomerular basement basement membranes in aminonucleoside nephrosis. Lab Invest 40:503–511

    Google Scholar 

  • Cserr HF, Cooper N, Milhorat TH (1977) Flow of cerebral interstitial fluid as indicated by the removal of extracellular markers from rat caudate nucleus. Exp Eye Res Suppl pp 461–473

  • Curran RC, Clark AF, Lovell D (1965) Acid mucopolysaccharides in electron microscopy. The use of the colloidal iron method. J Anat 99:427–434

    Google Scholar 

  • Fenstermacher JD, Patlak CS (1976) The movements of water and solutes in the brains of mammals. In: Pappius H, Feindel W (eds) Dynamics of Brain Edema. Springer, Berlin Heidelberg New York, pp 88–94

    Google Scholar 

  • Ferguson RK, Woodbury, DM (1969) Penetration of 14C-inulin and 14C-sucrose into brain, cerebrospinal fluid, and skeletal muscle of developing rats. Exp Brain Res 7:181–194

    Google Scholar 

  • Hale CW (1946) Histochemical demonstration of acid polysaccharides in animal tissues. Nature 157:802

    Google Scholar 

  • James AE, Burns B, Flor WF, Strecker E, Merz T, Mitchel B, Price D (1975) Pathophysiology of chronic communicating hydrocephalus in dogs (canis familiaris). J Neurol Sci 24:151–178

    Google Scholar 

  • Kanwar YW, Farquhar MG (1979) Anionic sites in the glomerular basement membrane. J Cell Biol 81:137–153

    Google Scholar 

  • Leonhardt H, Desaga U (1975) Recent observations on ependyma and subependymal basement membranes. Acta Neurochir 31:153–159

    Google Scholar 

  • Lev R, Spicer SS (1964) Specific staining of sulphate groups with alcian blue at low pH. J Histochem Cytochem 12:309

    Google Scholar 

  • McManus JFA (1948) Histological and histochemical uses of periodic acid. Stain Technol 23:99–108

    Google Scholar 

  • Mowry RW (1978) Aldehyde fuchsin staining, direct or after oxidation: problems and remedies, with special reference to human pancreatic B cells, pituitaries, and elastic fibers. Stain Technol 53:141–154

    Google Scholar 

  • Mowry RW (1958) Improved procedure for the staining of acidic polysaccharides by Muller's colloidal (hydrous) ferric oxide and its combination with the Feulgen and the periodic acid-schiff reactions. Lab Invest 7:566–576

    Google Scholar 

  • Mowry RW (1958a) Observations on the use of sulfuric acid in ether for the sulfation of hydroxyl groups in tissue sections. J Histochem Cytochem 6:82–83

    Google Scholar 

  • Puchtler H, Meloan S, Waldrop FS (1979) Aldehyde-fuchsin: historical and chemical considerations. Histochemistry 60:113–123

    Google Scholar 

  • Purdy JL, Bondy SC (1976) Blood-brain barrier: Selective changes during maturation. Neuroscience 1:125–129

    Google Scholar 

  • Rall DP, Oppelt WW, Patlak CS (1962) Extracellular space of brain as determined by diffusion of inulin from the ventricular system. Life Sci 1:43–48

    Google Scholar 

  • Scott JE (1973) Affinity, competition and specific interactions in the biochemistry of polyelectrolytes. Biochem Soc Trans 1:787–806

    Google Scholar 

  • Scott JE, Dorling J (1965) Differential staining of acid glycosaminoglycans (mucopolysaccharides) by alcian blue in salt solutions. Histochemie 5:221–233

    Google Scholar 

  • Torack RM, Finke EH (1971) Evidence for a sequestration of function within the area postrema based on scanning electron microscopy and the penetration of horseradish peroxidase. Z Zellforsch Mikrosk Anat 18:85–96

    Google Scholar 

  • Wald A, Hochwald GM, Gandhi M (1978) Evidence for the movement of fluid, macromolecules and ions from the brain extracellular space to the CSF. Brain Res 151:283–290

    Google Scholar 

Download references

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Torack, R.M., Grawe, L. Subependymal glycosaminoglycan networks in adult and developing rat brain. Histochemistry 68, 55–65 (1980). https://doi.org/10.1007/BF00498501

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