{"id":48518,"date":"2025-06-17T00:00:00","date_gmt":"2025-06-17T00:00:00","guid":{"rendered":"https:\/\/discover.restek.com\/uncategorized\/semi-synthetic-cannabinoids-more-isomers\/"},"modified":"2026-01-23T21:32:12","modified_gmt":"2026-01-23T21:32:12","slug":"semi-synthetic-cannabinoids-more-isomers","status":"publish","type":"post","link":"https:\/\/discover.restek.com\/de\/blog-fr\/gnbl4789\/semi-synthetic-cannabinoids-more-isomers","title":{"rendered":"Semi-Synthetic Cannabinoids: More Isomers!"},"content":{"rendered":"\n<p>Over the past several years, \u03948-THC has made headlines as a popular \u201clegal\u201d alternative to \u03949-THC. The rise in popularity of \u03948-THC led to a new analytical challenge for toxicology laboratories\u2014differentiating between the \u03948 and \u03949 isomer forms. For labs performing this testing by LC-MS\/MS, complete separation of these isomers and their metabolites is necessary for accurate quantitation. While HPLC stationary phases like Biphenyl and C18 have traditionally been used for toxicological analysis of cannabinoids, they lack the selectivity needed to adequately separate these isomers. The Raptor FluoroPhenyl column has emerged as a superior choice for analyzing THC isomers in biological matrices. The unique selectivity of this column allows for \u03948-THC, \u03949-THC, and their isomeric metabolites to be fully resolved. In the application note <a href=\"https:\/\/discover.restek.com\/application-notes\/lc-ms-ms-analysis-of-thc-isomers-and-metabolites-in-whole-blood-and-urine\" data-type=\"link\" data-id=\"https:\/\/discover.restek.com\/application-notes\/lc-ms-ms-analysis-of-thc-isomers-and-metabolites-in-whole-blood-and-urine\">LC-MS\/MS Analysis of THC Isomers &amp; Metabolites in Whole Blood and Urine<\/a>, we share complete LC-MS\/MS workflows using this column for the analysis of both blood and urine matrices.<\/p>\n\n\n\n<p>Recently, there have been quite a few new cannabinoids emerging on the market. These new compounds are often called semi-synthetic cannabinoids. This name comes from the fact that many of these compounds are found in low abundance in cannabis or hemp, so they are made synthetically and sold as naturally occurring, or their chemical structure is slightly modified to produce a new substance entirely. Earlier this year, The Center for Forensic Science Research &amp; Education (CFSRE) added a semi-synthetic cannabinoids category to their <a href=\"https:\/\/www.cfsre.org\/nps-discovery\/scope-recommendations\" target=\"_blank\" rel=\"noreferrer noopener\">quarterly scope recommendations<\/a>, which highlights new and emerging drugs that laboratories should consider adding to their panels. As these compounds become more prominent, toxicology labs may look to add these new cannabinoids into to their \u03948\/\u03949-THC analysis method.<\/p>\n\n\n\n<p>Adding new compounds to a pre-existing method can be easier said than done, especially when isomers are involved. The method conditions may need to be adjusted to include the new compounds, while also ensuring the rest of the analytes in the method still perform as expected. In some cases, the addition of new analytes may necessitate extending the analytical runtime.<\/p>\n\n\n\n<p>In the following work, we looked to add six semi-synthetic cannabinoids to an existing method that was developed for the analysis of \u03948-THC, \u03949-THC, and their hydroxy and carboxy metabolites. The method is described in the application note mentioned above for whole blood analysis. The six semi-synthetic cannabinoids (9(R)-HHC, 9(S)-HHC, \u039410-THC, THC-O-Acetate, THCP, and CBDP) were identified by the CFSRE as current scope recommendations. 9(R)-HHC and 9(S)-HHC are epimers, while THCP and CBDP are isomers. \u039410-THC is another isomer of \u03948-THC and \u03949-THC.<\/p>\n\n\n\n<p>A sample containing 100 ng\/mL of the analytes was run using the original method conditions. The method conditions and the resulting chromatogram are shown below.<\/p>\n\n\n<div class=\"wp-block-custom-chromatogram-article-top\"><div class=\"chromatogram-article-placeholder\"><div class=\"figure-heading\">Figure 1. Original method conditions and chromatogram including new semi-synthetic cannabinoids.<\/div><div class='chromatogram-article-inner-full'><div class=\"chromatogram-article-inner\">\n\n<figure class=\"wp-block-table\"><table style=\"border-width:1px\"><tbody><tr><td><strong>Column<\/strong><\/td><td colspan=\"3\">Raptor FluoroPhenyl 100 x 3 mm, 2.7 \u00b5m (cat.# 9319A1E)<\/td><\/tr><tr><td><strong>Mobile Phase A<\/strong><\/td><td colspan=\"3\">Water, 0.1% formic acid<\/td><\/tr><tr><td><strong>Mobile Phase B<\/strong><\/td><td colspan=\"3\">Methanol, 0.1% formic acid<\/td><\/tr><tr><td><strong>Column Temperature<\/strong><\/td><td colspan=\"3\">40\u00b0C<\/td><\/tr><tr><td><strong>Flow Rate<\/strong><\/td><td colspan=\"3\">0.8 mL\/min<\/td><\/tr><tr><td rowspan=\"9\"><strong>Gradient<\/strong><\/td><td>Time (min)<\/td><td>%A<\/td><td>%B<\/td><\/tr><tr><td>0.00<\/td><td>36<\/td><td>64<\/td><\/tr><tr><td>6.50<\/td><td>36<\/td><td>64<\/td><\/tr><tr><td>6.60<\/td><td>32<\/td><td>68<\/td><\/tr><tr><td>13.00<\/td><td>32<\/td><td>68<\/td><\/tr><tr><td>13.10<\/td><td>0<\/td><td>100<\/td><\/tr><tr><td>14.00<\/td><td>0<\/td><td>100<\/td><\/tr><tr><td>14.10<\/td><td>36<\/td><td>64<\/td><\/tr><tr><td>16.00<\/td><td>36<\/td><td>64<\/td><\/tr><\/tbody><\/table><\/figure>\n\n\n\n<figure class=\"wp-block-image\"><img decoding=\"async\" src=\"https:\/\/discover.restek.com\/wp-content\/uploads\/blog-semi-synthetic-cannabinoids-1.jpg\" alt=\"\" title=\"-\"><\/figure>\n\n<\/div><\/div><\/div>\n\n\n<div style=\"height:25px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n\n<p>When analyzed using the original method conditions, all the critical pairs are resolved. However, THCP and THC-O-Acetate are highly retained and do not elute until around 14 minutes, while the gradient is ramped up to 100% mobile phase B. A hold at 100% organic is often implemented to elute or \u201cwash\u201d everything off the column, such as hydrophobic or very lipophilic components from the matrix. This step helps to reduce carryover in the next sample. It is not ideal to have analytes eluting in this area, as hydrophobic matrix components can co-elute and cause interference. The method parameters were adjusted to improve the performance of these analytes, while still maintaining separation of all critical pairs. The adjusted method conditions and resulting chromatogram are shown below.<\/p>\n\n\n<div class=\"wp-block-custom-chromatogram-article-top\"><div class=\"chromatogram-article-placeholder\"><div class=\"figure-heading\">Figure 2. Adjusted method conditions and chromatogram.<\/div><div class='chromatogram-article-inner-full'><div class=\"chromatogram-article-inner\">\n\n<figure class=\"wp-block-table\"><table style=\"border-width:1px\"><tbody><tr><td><strong>Column<\/strong><\/td><td colspan=\"3\">Raptor FluoroPhenyl 100 x 3 mm, 2.7 \u00b5m (cat.# 9319A1E)<\/td><\/tr><tr><td><strong>Mobile Phase A<\/strong><\/td><td colspan=\"3\">Water, 0.1% formic acid<\/td><\/tr><tr><td><strong>Mobile Phase B<\/strong><\/td><td colspan=\"3\">Methanol, 0.1% formic acid<\/td><\/tr><tr><td><strong>Column Temperature<\/strong><\/td><td colspan=\"3\">30\u00b0C<\/td><\/tr><tr><td><strong>Flow Rate<\/strong><\/td><td colspan=\"3\">0.8 mL\/min<\/td><\/tr><tr><td rowspan=\"10\"><strong>Gradient<\/strong><\/td><td>Time (min)<\/td><td>%A<\/td><td>%B<\/td><\/tr><tr><td>0.00<\/td><td>34<\/td><td>66<\/td><\/tr><tr><td>5.50<\/td><td>34<\/td><td>66<\/td><\/tr><tr><td>5.60<\/td><td>30<\/td><td>70<\/td><\/tr><tr><td>10.50<\/td><td>30<\/td><td>70<\/td><\/tr><tr><td>11.00<\/td><td>15<\/td><td>85<\/td><\/tr><tr><td>13.00<\/td><td>0<\/td><td>100<\/td><\/tr><tr><td>14.00<\/td><td>0<\/td><td>100<\/td><\/tr><tr><td>14.10<\/td><td>34<\/td><td>66<\/td><\/tr><tr><td>16.00<\/td><td>34<\/td><td>66<\/td><\/tr><\/tbody><\/table><\/figure>\n\n\n\n<figure class=\"wp-block-image\"><img decoding=\"async\" src=\"https:\/\/discover.restek.com\/wp-content\/uploads\/blog-semi-synthetic-cannabinoids-2.jpg\" alt=\"\" title=\"-\"><\/figure>\n\n<\/div><\/div><\/div>\n\n\n<div style=\"height:25px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n\n<p>When analyzed using the adjusted method conditions, THCP and THC-O-Acetate elute at an earlier retention time, before the hold step at 100% B. All critical pairs are still resolved. This was achieved by lowering the column temperature (30\u00b0C vs. 40\u00b0C), which improved separation between the critical pairs, and altering the elution gradient. All six semi-synthetic cannabinoids were successfully incorporated into a method for \u03948\/9-THC and metabolites, without having to extend the runtime.<\/p>\n\n\n\n<div style=\"height:100px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n        <div class=\"cpb\">\n            <h3 class=\"cpb-heading\">Products Mentioned<\/h3>\n            <hr class=\"cpb-heading-underline\" \/>\n            <div class=\"cpb-list\">\n                                    <div class=\"cpb-item\">\n                        <div class=\"cpb-col cpb-col--left\">\n                            <a class=\"cpb-catalog\" target=\"_blank\" rel=\"noopener noreferrer\" href=\"https:\/\/de.restek.com\/p\/9319A1E\">                                Catalog No. 9319A1E                            <\/a>                        <\/div>\n                        <div class=\"cpb-col cpb-col--middle\">\n                            <div class=\"cpb-title\">Raptor FluoroPhenyl, 2.7 \u00b5m, 100&#215;3.0 mm HPLC-S\u00e4ule<\/div>\n                        <\/div>\n                        <div class=\"cpb-col cpb-col--right\">\n                                                            <a class=\"cpb-view-btn\" target=\"_blank\" rel=\"noopener noreferrer\" href=\"https:\/\/de.restek.com\/p\/9319A1E\">Produkt anzeigen<\/a>\n                                                    <\/div>\n                    <\/div>\n                            <\/div>\n        <\/div>\n        \n\n\n<div style=\"height:100px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n","protected":false},"excerpt":{"rendered":"<p>We look at adding six semi-synthetic cannabinoids to an existing method that was developed for the analysis of &Delta;8-THC, &Delta;9-THC, and their hydroxy and carboxy metabolites.<\/p>\n","protected":false},"author":13,"featured_media":0,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"_kad_blocks_custom_css":"","_kad_blocks_head_custom_js":"","_kad_blocks_body_custom_js":"","_kad_blocks_footer_custom_js":"","_kadence_starter_templates_imported_post":false,"_kad_post_transparent":"","_kad_post_title":"","_kad_post_layout":"","_kad_post_sidebar_id":"","_kad_post_content_style":"","_kad_post_vertical_padding":"","_kad_post_feature":"","_kad_post_feature_position":"","_kad_post_header":false,"_kad_post_footer":false,"footnotes":""},"categories":[791],"tags":[],"industries-application":[2279,2198],"post-badge":[],"resource-type":[],"product-library":[],"resource-technique":[2318,2320],"hf_cat_post":[623],"ppma_author":[432],"class_list":["post-48518","post","type-post","status-publish","format-standard","hentry","category-blog-fr","industries-application-cannabis-fr","industries-application-cannabis-medical-recreatif","resource-technique-chromatographie-en-phase-liquide","resource-technique-spectrometrie-de-masse-ms"],"acf":[],"taxonomy_info":{"category":[{"value":791,"label":"Blog"}],"industries-application":[{"value":2279,"label":"Cannabis"},{"value":2198,"label":"Cannabis 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MS","avatar_url":{"url":"https:\/\/discover.restek.com\/wp-content\/uploads\/people-berkland-haley.jpg","url2x":"https:\/\/discover.restek.com\/wp-content\/uploads\/people-berkland-haley.jpg"},"0":null,"1":"","2":"","3":"","4":"","5":"","6":"","7":"","8":""}],"_links":{"self":[{"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/posts\/48518","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/users\/13"}],"replies":[{"embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/comments?post=48518"}],"version-history":[{"count":4,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/posts\/48518\/revisions"}],"predecessor-version":[{"id":84374,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/posts\/48518\/revisions\/84374"}],"wp:attachment":[{"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/media?parent=48518"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/categories?post=48518"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/tags?post=48518"},{"taxonomy":"industries-application","embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/industries-application?post=48518"},{"taxonomy":"post-badge","embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/post-badge?post=48518"},{"taxonomy":"resource-type","embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/resource-type?post=48518"},{"taxonomy":"product-library","embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/product-library?post=48518"},{"taxonomy":"resource-technique","embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/resource-technique?post=48518"},{"taxonomy":"hf_cat_post","embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/hf_cat_post?post=48518"},{"taxonomy":"author","embeddable":true,"href":"https:\/\/discover.restek.com\/de\/wp-json\/wp\/v2\/ppma_author?post=48518"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}