Frimpong Esther, Bulusu Raviteja, Okoro Joy, Inkoom Andriana, Ndemazie Nkafu, Rogers Sherise, Zhu Xue, Han Bo, Agyare Edward
College of Pharmacy and Pharmaceutical Sciences, Florida A&M University, Tallahassee, FL, United States.
College of Pharmacy and Pharmaceutical Sciences, Florida A&M University, Tallahassee, FL, United States; Department of Internal Medicine, Richmond University Medical Center, Staten Island, NY, United States.
Eur J Pharm Sci. 2024 May 1;196:106754. doi: 10.1016/j.ejps.2024.106754. Epub 2024 Mar 29.
The present study proposed modification of 5-FU by conjugation with an acyl chloride and a 5-membered heterocyclic ring to improve its in-vitro cytotoxicity and metabolic stability. XYZ-I-71 and XYZ-I-73 were synthesized by introducing a tetrahydrofuran ring on 5-fluorocytosine (a precursor of 5-FU) and conjugation with octanoyl chloride and lauroyl chloride, respectively. The structure of the synthesized compounds was validated using NMR and micro-elemental analysis. The antiproliferative activity of the analogs was determined against MiaPaCa-2, PANC-1, and BxPC-3 pancreatic cancer cells. The analog's stability in human liver microsomes was quantified by HPLC. We found that the XYZ-I-73 (IC 3.6 ± 0.4 μM) analog was most effective against MiaPaCa-2 cells compared to XYZ-I-71(IC 12.3 ± 1.7 μM), GemHCl (IC 24.2 ± 1.3 μM), Irinotecan (IC 10.1 ± 1.5 μM) and 5-FU (IC 13.2 ± 1.1 μM). The antiproliferative effects of this analog in Miapaca-2 cells is evident based on it having a 7-fold,3-fold, and 4-fold increased cytotoxic effect over Gem-HCl, Irinotecan, and 5-FU, respectively. On the other hand, XYZ-I-71 exhibited a 2-fold increased cytotoxic effect over Gem-HCl but a comparable cytotoxic effect to 5-FU and Irinotecan in MiaPaCa-2 cells. A similar trend of higher XYZ-I-73 inhibition was observed in PANC-1 and BxPC-3 cultures. For 48-h MiaPaCa-2 cell migration studies, XYZ-I-73 (5 μM) significantly reduced migration (# of migrated cells, 168 ± 2.9), followed by XYZ-I-71(315±2.1), Gem-HCl (762±3.1) and 5-FU (710 ± 3.2). PARP absorbance studies demonstrated significant inhibition of PARP expression of XYZ-I-73 treated cells compared to 5-FU, GemHCl, and XYZ-I-71. Further, BAX and p53 expressions were significantly increased in cells treated with XYZ-I-73 compared to 5-FU, GemHCl, and XYZ-I-71. In-vitro, metabolic stability studies showed that 80 ± 5.9% of XYZ-I-71 and XYZ-I-73 remained intact after 2 h exposure in liver microsomal solution compared to 5-FU. The XYZ-I-73 analog demonstrated a remarkable cytotoxic effect and improved in-vitro metabolic stability over the selected standard drugs and may have potential anticancer activity against pancreatic cancer.
本研究提出通过与酰氯和五元杂环共轭来修饰5-氟尿嘧啶(5-FU),以提高其体外细胞毒性和代谢稳定性。通过在5-氟胞嘧啶(5-FU的前体)上引入四氢呋喃环并分别与辛酰氯和月桂酰氯共轭,合成了XYZ-I-71和XYZ-I-73。使用核磁共振(NMR)和微量元素分析对合成化合物的结构进行了验证。测定了这些类似物对MiaPaCa-2、PANC-1和BxPC-3胰腺癌细胞的抗增殖活性。通过高效液相色谱(HPLC)对类似物在人肝微粒体中的稳定性进行了定量分析。我们发现,与XYZ-I-71(IC 12.3±1.7μM)、吉西他滨盐酸盐(IC 24.2±1.3μM)、伊立替康(IC 10.1±1.5μM)和5-FU(IC 13.2±1.1μM)相比,XYZ-I-73类似物(IC 3.6±0.4μM)对MiaPaCa-2细胞最有效。该类似物在Miapaca-2细胞中的抗增殖作用明显,其细胞毒性作用分别比吉西他滨盐酸盐、伊立替康和5-FU增加了7倍、3倍和4倍。另一方面,XYZ-I-71在MiaPaCa-2细胞中的细胞毒性作用比吉西他滨盐酸盐增加了2倍,但与5-FU和伊立替康的细胞毒性作用相当。在PANC-1和BxPC-3培养物中也观察到了类似的XYZ-I-73抑制作用更高的趋势。在48小时的MiaPaCa-2细胞迁移研究中,XYZ-I-73(5μM)显著降低了迁移率(迁移细胞数,168±2.9),其次是XYZ-I-71(315±2.1)、吉西他滨盐酸盐(762±3.1)和5-FU(710±3.2)。聚ADP核糖聚合酶(PARP)吸光度研究表明,与5-FU、吉西他滨盐酸盐和XYZ-I-71相比,XYZ-I-73处理的细胞中PARP表达受到显著抑制。此外,与5-FU、吉西他滨盐酸盐和XYZ-I-71相比,用XYZ-I-73处理的细胞中BAX和p53表达显著增加。体外代谢稳定性研究表明,与5-FU相比,XYZ-I-71和XYZ-I-73在肝微粒体溶液中暴露2小时后,80±5.9%保持完整。XYZ-I-73类似物显示出显著的细胞毒性作用,并且与所选标准药物相比,体外代谢稳定性有所提高,可能对胰腺癌具有潜在的抗癌活性。