scholarly article | Q13442814 |
P356 | DOI | 10.1016/0003-9861(81)90224-1 |
P953 | full work available online at | https://api.elsevier.com/content/article/PII:0003986181902241?httpAccept=text/plain |
https://api.elsevier.com/content/article/PII:0003986181902241?httpAccept=text/xml | ||
P698 | PubMed publication ID | 7305346 |
P2093 | author name string | F. Herz | |
A. Schermer | |||
L. H. Bogart | |||
M. Halwer | |||
P2860 | cites work | Protein measurement with the Folin phenol reagent | Q20900776 |
Induction of placental alkaline phosphatase in choriocarcinoma cells by 5-bromo-2′-deoxyuridine | Q34768860 | ||
Comparison of mitotic phenomena and effects induced by hypertonic solutions in HeLa cells | Q36191470 | ||
Regulation of the induction of alkaline phosphatase in choriocarcinoma cells by sodium butyrate | Q39292979 | ||
Comparison of human alkaline phosphatase isoenzymes. Structural evidence for three protein classes | Q39566518 | ||
Perspectives on alkaline phosphatase isoenzymes | Q39940194 | ||
Elevation of adenosine 3′,5′-cyclic monophosphate in established mammalian cell strains by hypaque (sodium diatrizoate) | Q39962611 | ||
Induction of alkaline phosphatase in choriocarcinoma cells by 1-?-D-arabinofuranosyl-cytosine, mitomycin C, phleomycin, and cyclic nucleotides | Q40084875 | ||
The Ontogony of the Human Placental Glucocorticoid Receptor and Inducibility of Heat-Stable Alkaline Phosphatase* | Q41553925 | ||
Biochemical and Cytochemical Effects of Cytosine Arabinoside (ARA C) and Hydrocortisone on hela cells | Q41593605 | ||
Alkaline phosphatase activity in cultured urinary bladder cancer cells | Q41603025 | ||
Human placental alkaline phosphatase differs from that of other species | Q41700690 | ||
Insulin binding by a cell line (HT 29) derived from human colonic cancer | Q41735174 | ||
Evidence that three structural genes code for human alkaline phosphatases | Q41752072 | ||
Absence of HeLa cell contamination in 169 cell lines derived from human tumors | Q41761715 | ||
Bromodeoxyuridine induced variations in the level of alkaline phosphatase in several human heteroploid cell lines | Q42449233 | ||
Modulation of alkaline phosphatase activity in KB cells by hyperosmolality and prednisolone: Effect on enzyme inhibition by phosphate | Q43665961 | ||
Studies of the protein synthetic activity of lysates from HeLa cells incubated in hypertonic medium | Q43741426 | ||
Alkaline phosphatase in KB cells: Influence of hyperosmoiality and prednisolone on enzyme activity and thermostability | Q43763409 | ||
Coproduction of Regan isoenzyme and carcinoembryonic antigen in HCT-8 cells | Q43842044 | ||
Regulation of alkaline phosphatase activity in IB cells: influence of serum. | Q44433740 | ||
Cell growth and division in hypertonic medium | Q44713261 | ||
Inhibition of human placental-type alkaline phosphatase variants by peptides containing L-leucine | Q45206776 | ||
Increased alkaline phosphatase activity in HeLa cells mediated by aliphatic monocarboxylates and inhibitors of DNA synthesis | Q45730125 | ||
Effect of osmotic pressure, Na+-K+ ratio and medium concentration on the enzyme activity and growth of L cells in suspension culture | Q47939107 | ||
Alkaline phosphatase activity and the regulation of growth in transformed mammalian cells | Q53598902 | ||
A study of adenosine 3':5'-cyclic monophosphate, sodium butyrate and cortisol as inducers of HeLa alkaline phosphatase | Q53715340 | ||
Similarities between alkaline phosphatase and Ca2+ ATPase activities in HeLa cells | Q54546489 | ||
Inhibition of collagen synthesis in cultured cells by hypertonic culture medium | Q58640071 | ||
Hormonal Induction of Alkaline Phosphatase in Human Cells in Tissue Culture | Q58974285 | ||
Alkaline Phosphatase in Cell Cultures of Human Origin | Q59086990 | ||
Enzymologia | Q60094083 | ||
Multiple Effects of Glucocorticoids and Hyperosmolality on Isoenzyme Expression in Cultured KB Cells 2 | Q67267246 | ||
Medium Hypertonicity and Polyribosome Structure in Hela Cells. The Influence of Hypertonicity of the Growth Medium on Polyribosomes in Hela Cells | Q70428659 | ||
Effects of sodium butyrate and dimethylsulfoxide on biochemical properties of human colon cancer cells | Q71140148 | ||
Analysis of growth dynamics and the relationship to the fluctuations in alkaline phosphatase in two strains of cells of HeLa S3 derivation | Q71240462 | ||
Modulation of glucocorticoid effects and steroid receptor binding in butyrate-treated HeLa S3 cells | Q71257433 | ||
INDUCTION OF ALKALINE PHOSPHATASE IN DISPERSED CELL CULTURES BY CHANGES IN OSMOLARITY | Q76581293 | ||
Alkaline phosphatase activity of human cell cultures: Kinetic and physical-chemical properties | Q79408568 | ||
Hormonal regulation of alkaline phosphatase in dispersed cell cultures | Q79452850 | ||
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | colon cancer | Q18555025 |
cancer cell line | Q23058136 | ||
P1104 | number of pages | 11 | |
P304 | page(s) | 581-591 | |
P577 | publication date | 1981-09-01 | |
P1433 | published in | Archives of Biochemistry and Biophysics | Q635818 |
P1476 | title | Alkaline phosphatase in HT-29, a human colon cancer cell line: influence of sodium butyrate and hyperosmolality | |
Alkaline phosphatase in HT-29, a human colon cancer cell line: Influence of sodium butyrate and hyperosmolality | |||
P478 | volume | 210 |
Q84699003 | A fluorescent turn-on probe for the detection of alkaline phosphatase activity in living cells |
Q39185014 | A new fluorometric turn-on assay for alkaline phosphatase and inhibitor screening based on aggregation and deaggregation of tetraphenylethylene molecules |
Q42429579 | A novel quinone-based derivative (DTNQ-Pro) induces apoptotic death via modulation of heat shock protein expression in Caco-2 cells |
Q70387541 | Alkaline phosphatase activity in cultured meningioma cells |
Q39834987 | Alkaline phosphatase isozymes in cultured human cancer cells |
Q40524347 | Biology of human alkaline phosphatases with special reference to cancer |
Q41011016 | Butyrate and the colonocyte. Implications for neoplasia |
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Q40715421 | DTNQ-Pro, a Mimetic Dipeptide, Sensitizes Human Colon Cancer Cells to 5-Fluorouracil Treatment |
Q41467766 | Divergent effects of hyperosmolality on stress-response (heat shock) protein expression in cultured human tumor cells: an immunocytochemical study |
Q41881388 | Effect of human serum on alkaline phosphatase induction in cultured human tumor cells |
Q41647992 | Effect of hyperosmolality on alkaline phosphatase and stress-response protein 27 of MCF-7 breast cancer cells |
Q42738289 | Expression of Ha-ras oncogene p21 protein in relation to the cell cycle of cultured human tumor cells |
Q41690328 | Expression of dipeptidyl aminopeptidase IV during enterocytic differentiation of human colon cancer (Caco-2) cells |
Q41320266 | Induction of heat labile alkaline phosphatase by butyrate in differentiating endometrial cells |
Q41978788 | Influence of butyrate on lipid metabolism, survival, and differentiation of colon cancer cells |
Q102152183 | PRMT1 inhibition induces differentiation of colon cancer cells |
Q39665294 | Peptides from water buffalo cheese whey induced senescence cell death via ceramide secretion in human colon adenocarcinoma cell line. |
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Q41042437 | Sodium butyrate-induced liver-type alkaline phosphatase activity in a small intestinal epithelial cell line, IEC6 |
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Q46953249 | Use of phytochemomics to evaluate the bioavailability and bioactivity of antioxidant peptides of soybean β-conglycinin. |
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