Results 311 to 320 of about 5,914,882 (359)
Some of the next articles are maybe not open access.
1973
Studies in vitro of oncogenic agents have attained an ever increasing importance mainly because of the precision and ease by which events at the cellular and sub-cellular level can be followed. This article will examine the relevance of such data for the understanding of a much more complicated process — the development of spontaneous malignant tumors ...
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Studies in vitro of oncogenic agents have attained an ever increasing importance mainly because of the precision and ease by which events at the cellular and sub-cellular level can be followed. This article will examine the relevance of such data for the understanding of a much more complicated process — the development of spontaneous malignant tumors ...
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Nature, 1946
IN 1935, Gautheret1 published an account of in vitro grafts he had obtained between fragments of cambium of Populus nigra, Salix caprea and other trees, excised and cultured on artificial media. In attempting to repeat this work, I encountered some difficulties when tissues freshly removed from the plant were employed.
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IN 1935, Gautheret1 published an account of in vitro grafts he had obtained between fragments of cambium of Populus nigra, Salix caprea and other trees, excised and cultured on artificial media. In attempting to repeat this work, I encountered some difficulties when tissues freshly removed from the plant were employed.
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2003
Graft formation in plants involves the severing of the vascular system with consequent loss of water and solute transport throughout the plant. This transport must be restored to prevent death resulting from nutrient starvation or dessication.
M, Parkinson, C M, O'Neill, P J, Dix
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Graft formation in plants involves the severing of the vascular system with consequent loss of water and solute transport throughout the plant. This transport must be restored to prevent death resulting from nutrient starvation or dessication.
M, Parkinson, C M, O'Neill, P J, Dix
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Transwell In Vitro Cell Migration and Invasion Assays.
Methods in molecular biology, 2023C. R. Justus +3 more
semanticscholar +1 more source
2017
???????????????? ?????????????? ???????????? ?????? ???????????????????? ?????????????????????????? ?????????????????? ???????????????? ?????????????????? in vitro ?? ?????????????????????????? ???? ???????????????????????? ?????????????????? ?????????????????????? ???????????????????? ??????????????????. ???????????????????????? ???????????????????????
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???????????????? ?????????????? ???????????? ?????? ???????????????????? ?????????????????????????? ?????????????????? ???????????????? ?????????????????? in vitro ?? ?????????????????????????? ???? ???????????????????????? ?????????????????? ?????????????????????? ???????????????????? ??????????????????. ???????????????????????? ???????????????????????
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Emerging ELISA Derived Technologies for in vitro Diagnostics
Trends in Analytical Chemistry (TrAC), 2022P. Peng +8 more
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Drug Safety, 1990
The development of in vitro models is advancing rapidly, with the application of cell culture methods as an alternative to animals in toxicological screening; non-cellular systems are also being used. Any screening test, whether for detecting irritants, carcinogens or teratogens should be well validated against known animal studies.
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The development of in vitro models is advancing rapidly, with the application of cell culture methods as an alternative to animals in toxicological screening; non-cellular systems are also being used. Any screening test, whether for detecting irritants, carcinogens or teratogens should be well validated against known animal studies.
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Trends in Biochemical Sciences, 1992
Understanding the basis of specificity in an intermolecular interaction is a common if difficult task; designing a specific intermolecular interaction is much more challenging. A new technique is described that has applications to both problems, at least with regard to nucleic acids.
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Understanding the basis of specificity in an intermolecular interaction is a common if difficult task; designing a specific intermolecular interaction is much more challenging. A new technique is described that has applications to both problems, at least with regard to nucleic acids.
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