Cross-linked collagen surface for cell culture that is stable, uniform, and optically superior to conventional surfaces
- 1 March 1985
- journal article
- Published by Springer Nature in In Vitro Cellular & Developmental Biology - Plant
- Vol. 21 (3) , 189-194
- https://doi.org/10.1007/bf02621357
Abstract
A new type of collagen surface for use with cultures of peripheral nervous system cells is described. Collagen is derivatized to plastic culture dishes by a cross-linking reagent, 1-cyclohexyl-3-(2-morpholinoethyl)-carbodiimide-metho-p-toluenesulfonate (carbodiimide), to form a uniform and durable surface for cell attachment and growth that allows dry storage, long-term culture, and improved microscopy. Surfaces of collagen derivatized to plastic were compared to surfaces of adsorbed or ammonia-polymerized collagen in terms of collagen binding and detachment, growth by dorsal root ganglion cells, and electron microscopy appearances. Derivatized collagen surfaces retained more collagen and showed much less evidence of degradation and cellular damage over periods of many weeks than did conventional adsorbed surfaces. Long-term survival of cells on derivatized collagen was far superior to that on the other surfaces, with almost 90% of cultures still viable after 10 wk. Transmission electron microscopy showed an organized layer of single fibrils that supported cell growth well, and scanning electron microscopy demonstrated an increased uniformity of derivatized collagen surfaces compared to ammoniated collagen surfaces. Applications for this improved substrate surface are discussed.Keywords
This publication has 19 references indexed in Scilit:
- Adhesive specificity of developing cerebellar cells on lectin substrataDevelopmental Biology, 1981
- Growth of adult rat superior cervical ganglion explants in serum-free mediaBrain Research, 1981
- Mechanism of retraction of the trailing edge during fibroblast movement.The Journal of cell biology, 1981
- Serum-free cell culture: a unifying approachCell, 1980
- Protein synthesis requires cell-surface contact while nuclear events respond to cell shape in anchorage-dependent fibroblastsCell, 1980
- Evidence that contact with connective tissue matrix is required for normal interaction between Schwann cells and nerve fibers.The Journal of cell biology, 1978
- Role of cell shape in growth controlNature, 1978
- Possible roles for cell-to-substratum adhesion in neuronal morphogenesisDevelopmental Biology, 1975
- Modified Thiocarbohydrazide Procedure for Scanning Electron Microscopy: Routine use for Normal, Pathological, or Experimental TissuesStain Technology, 1975
- Studies on the transplantation of spinal cord tissue in the rat. I. The development of a culture system for hemisections of embryonic spinal cordBrain Research, 1973