{"id":{"repo_id":"odu","oai_identifier":"oai:digitalcommons.odu.edu:biomedicalsciences_etds-1049"},"canonical_url":"https://search.dev.ndltd.org/etd/odu/oai:digitalcommons.odu.edu:biomedicalsciences_etds-1049","repository":{"repo_id":"odu","name":"Old Dominion University","base_url":"https://digitalcommons.odu.edu/do/oai/"},"display":{"title":"The Antitumor Agent, Arglabin-DMA, Preferentially Induces Apoptosis in Human Colon Tumor Cells","abstract":"<p>Arglabin-DMA, an analog of farnesyl pyrophosphate (FPP), reportedly inhibits farnesyltransferase (FTase) directly by competitively blocking the binding of Ras protein and its posttranslational modification, as suggested in previous studies. But, the mechanisms by which Arglabin-DMA inhibits tumor growth <em>in vivo</em> and <em>in vitro</em> are still relatively poorly characterized. To determine the mechanism by which this drug inhibits tumor growth, the effects of Arglabin-DMA in two human colon tumor cell lines (mutant K-<em>ras</em> HCT 116 and wild-type <em>ras</em> HT-29) were explored on cell proliferation, apoptosis, and cell cycle kinetics <em>in vitro</em>. In cell viability studies, we showed that Arglabin-DMA had striking morphological and physiological effects on the two human colon tumor cell lines, possibly more so than those of other anticancer drugs. Also, Arglabin-DMA exhibited less harm to normal cells (Hs27) which retained their potential for cell growth. An add-back experiment showed that Arglabin-DMA had no effect on the isoprenoid biosynthetic pathway. The drug not only affects the mutant K-<em>ras</em> human colon tumor cell line, but also the wild-type <em>ras</em> human colon tumor cell line. It may therefore inhibit one or more non-Ras proteins to exert its antitumor effects. Gel electrophoresis, TUNEL assay, Annexin V assay, apoptosis dye-uptake assay, and morphological criteria were used to characterize apoptosis. Adherent cells and freely floating detached cells in Arglabin-DMA treatment were treated as two distinct populations We demonstrated that the detached cells caused by Arglabin-DMA exposure exhibited increased apoptosis in a p53-independent manner. Cell cycle effects were studied using flow cytometry. After Arglabin-DMA was added, the proportion of the two human colon tumor cells in G<sub>2</sub>/M phase increased, indicating a block in either G<sub>2</sub> or M phase. We conclude that Arglabin-DMA has specific cytotoxic effects in two human colon tumor cell lines, and less cytotoxicity to normal cells. It induces arrest at the G<sub>2</sub>/M phase of the cell cycle. After treatment with Arglabin-DMA, rounded and detached cells enter apoptosis. This mechanism may be analogous to \"anoikis,\" which is the induction of apoptosis in response to loss of cell contact. The utility of this drug in combating cancer remains an attractive, though complex possibility.</p>","abstract_html":"&lt;p&gt;Arglabin-DMA, an analog of farnesyl pyrophosphate (FPP), reportedly inhibits farnesyltransferase (FTase) directly by competitively blocking the binding of Ras protein and its posttranslational modification, as suggested in previous studies. But, the mechanisms by which Arglabin-DMA inhibits tumor growth &lt;em&gt;in vivo&lt;/em&gt; and &lt;em&gt;in vitro&lt;/em&gt; are still relatively poorly characterized. To determine the mechanism by which this drug inhibits tumor growth, the effects of Arglabin-DMA in two human colon tumor cell lines (mutant K-&lt;em&gt;ras&lt;/em&gt; HCT 116 and wild-type &lt;em&gt;ras&lt;/em&gt; HT-29) were explored on cell proliferation, apoptosis, and cell cycle kinetics &lt;em&gt;in vitro&lt;/em&gt;. In cell viability studies, we showed that Arglabin-DMA had striking morphological and physiological effects on the two human colon tumor cell lines, possibly more so than those of other anticancer drugs. Also, Arglabin-DMA exhibited less harm to normal cells (Hs27) which retained their potential for cell growth. An add-back experiment showed that Arglabin-DMA had no effect on the isoprenoid biosynthetic pathway. The drug not only affects the mutant K-&lt;em&gt;ras&lt;/em&gt; human colon tumor cell line, but also the wild-type &lt;em&gt;ras&lt;/em&gt; human colon tumor cell line. It may therefore inhibit one or more non-Ras proteins to exert its antitumor effects. Gel electrophoresis, TUNEL assay, Annexin V assay, apoptosis dye-uptake assay, and morphological criteria were used to characterize apoptosis. Adherent cells and freely floating detached cells in Arglabin-DMA treatment were treated as two distinct populations We demonstrated that the detached cells caused by Arglabin-DMA exposure exhibited increased apoptosis in a p53-independent manner. Cell cycle effects were studied using flow cytometry. After Arglabin-DMA was added, the proportion of the two human colon tumor cells in G&lt;sub&gt;2&lt;/sub&gt;/M phase increased, indicating a block in either G&lt;sub&gt;2&lt;/sub&gt; or M phase. We conclude that Arglabin-DMA has specific cytotoxic effects in two human colon tumor cell lines, and less cytotoxicity to normal cells. It induces arrest at the G&lt;sub&gt;2&lt;/sub&gt;/M phase of the cell cycle. After treatment with Arglabin-DMA, rounded and detached cells enter apoptosis. This mechanism may be analogous to &quot;anoikis,&quot; which is the induction of apoptosis in response to loss of cell contact. The utility of this drug in combating cancer remains an attractive, though complex possibility.&lt;/p&gt;","abstract_has_math":false,"creators":["Kwon, Sung Wook"],"institution":null,"degree_name":"Doctor of Philosophy (PhD)","degree_level":"Dissertation","degree_discipline":null,"degree_department":null,"school":null,"contributors":["Christopher J. Osgood","James H. Yuan","Lloyd Wolfinbarger","Mark S. Elliot"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2005,"date_issued":"2005-04-01T08:00:00Z","date_published":"2005-04-01T08:00:00Z","updated_at":"2026-07-24T03:34:46Z","subjects":["Apoptosis","Arglabin-DMA","Cell cycle arrest","Colon cancer","Tumor cells","Cell Biology","Molecular Biology","Oncology"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[{"key":"dc:identifier","label":"Identifier","values":["9781109719895"],"render_values":[{"text":"9781109719895","href":null,"code":true}]}]},"links":{"outbound_url":"https://digitalcommons.odu.edu/biomedicalsciences_etds/41","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Christopher J. Osgood","James H. Yuan","Lloyd Wolfinbarger","Mark S. 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But, the mechanisms by which Arglabin-DMA inhibits tumor growth <em>in vivo</em> and <em>in vitro</em> are still relatively poorly characterized. To determine the mechanism by which this drug inhibits tumor growth, the effects of Arglabin-DMA in two human colon tumor cell lines (mutant K-<em>ras</em> HCT 116 and wild-type <em>ras</em> HT-29) were explored on cell proliferation, apoptosis, and cell cycle kinetics <em>in vitro</em>. In cell viability studies, we showed that Arglabin-DMA had striking morphological and physiological effects on the two human colon tumor cell lines, possibly more so than those of other anticancer drugs. Also, Arglabin-DMA exhibited less harm to normal cells (Hs27) which retained their potential for cell growth. An add-back experiment showed that Arglabin-DMA had no effect on the isoprenoid biosynthetic pathway. The drug not only affects the mutant K-<em>ras</em> human colon tumor cell line, but also the wild-type <em>ras</em> human colon tumor cell line. It may therefore inhibit one or more non-Ras proteins to exert its antitumor effects. Gel electrophoresis, TUNEL assay, Annexin V assay, apoptosis dye-uptake assay, and morphological criteria were used to characterize apoptosis. Adherent cells and freely floating detached cells in Arglabin-DMA treatment were treated as two distinct populations We demonstrated that the detached cells caused by Arglabin-DMA exposure exhibited increased apoptosis in a p53-independent manner. Cell cycle effects were studied using flow cytometry. After Arglabin-DMA was added, the proportion of the two human colon tumor cells in G<sub>2</sub>/M phase increased, indicating a block in either G<sub>2</sub> or M phase. We conclude that Arglabin-DMA has specific cytotoxic effects in two human colon tumor cell lines, and less cytotoxicity to normal cells. It induces arrest at the G<sub>2</sub>/M phase of the cell cycle. After treatment with Arglabin-DMA, rounded and detached cells enter apoptosis. This mechanism may be analogous to \"anoikis,\" which is the induction of apoptosis in response to loss of cell contact. The utility of this drug in combating cancer remains an attractive, though complex possibility.</p>"]},{"key":"dc:title","label":"Title","values":["The Antitumor Agent, Arglabin-DMA, Preferentially Induces Apoptosis in Human Colon Tumor Cells"]}]}],"canonical_facts":{"dc:contributor":["Christopher J. Osgood","James H. Yuan","Lloyd Wolfinbarger","Mark S. Elliot"],"dc:creator":["Kwon, Sung Wook"],"dc:date.available":["2019-05-09T07:00:00Z"],"dc:description.abstract":["<p>Arglabin-DMA, an analog of farnesyl pyrophosphate (FPP), reportedly inhibits farnesyltransferase (FTase) directly by competitively blocking the binding of Ras protein and its posttranslational modification, as suggested in previous studies. But, the mechanisms by which Arglabin-DMA inhibits tumor growth <em>in vivo</em> and <em>in vitro</em> are still relatively poorly characterized. To determine the mechanism by which this drug inhibits tumor growth, the effects of Arglabin-DMA in two human colon tumor cell lines (mutant K-<em>ras</em> HCT 116 and wild-type <em>ras</em> HT-29) were explored on cell proliferation, apoptosis, and cell cycle kinetics <em>in vitro</em>. In cell viability studies, we showed that Arglabin-DMA had striking morphological and physiological effects on the two human colon tumor cell lines, possibly more so than those of other anticancer drugs. Also, Arglabin-DMA exhibited less harm to normal cells (Hs27) which retained their potential for cell growth. An add-back experiment showed that Arglabin-DMA had no effect on the isoprenoid biosynthetic pathway. The drug not only affects the mutant K-<em>ras</em> human colon tumor cell line, but also the wild-type <em>ras</em> human colon tumor cell line. It may therefore inhibit one or more non-Ras proteins to exert its antitumor effects. Gel electrophoresis, TUNEL assay, Annexin V assay, apoptosis dye-uptake assay, and morphological criteria were used to characterize apoptosis. Adherent cells and freely floating detached cells in Arglabin-DMA treatment were treated as two distinct populations We demonstrated that the detached cells caused by Arglabin-DMA exposure exhibited increased apoptosis in a p53-independent manner. Cell cycle effects were studied using flow cytometry. After Arglabin-DMA was added, the proportion of the two human colon tumor cells in G<sub>2</sub>/M phase increased, indicating a block in either G<sub>2</sub> or M phase. We conclude that Arglabin-DMA has specific cytotoxic effects in two human colon tumor cell lines, and less cytotoxicity to normal cells. It induces arrest at the G<sub>2</sub>/M phase of the cell cycle. After treatment with Arglabin-DMA, rounded and detached cells enter apoptosis. This mechanism may be analogous to \"anoikis,\" which is the induction of apoptosis in response to loss of cell contact. The utility of this drug in combating cancer remains an attractive, though complex possibility.</p>"],"dc:identifier":["9781109719895","https://digitalcommons.odu.edu/biomedicalsciences_etds/41"],"dc:subject":["Apoptosis","Arglabin-DMA","Cell cycle arrest","Colon cancer","Tumor cells","Cell Biology","Molecular Biology","Oncology"],"dc:title":["The Antitumor Agent, Arglabin-DMA, Preferentially Induces Apoptosis in Human Colon Tumor Cells"],"thesis:degree_level":["Dissertation"],"thesis:degree_name":["Doctor of Philosophy (PhD)"]},"updated_at":"2026-07-24T03:34:46Z"}