PO.ET09.08 · 实验与分子治疗

优化venetoclax-青蒿素偶联物的连接子以改善水溶性和抗白血病效果

Optimizing the linker of venetoclax-artemisinin conjugates to improve water solubility and antileukemia effects

海报缩略图:优化venetoclax-青蒿素偶联物的连接子以改善水溶性和抗白血病效果
编号 7087 展板 7 时间 4/22 09:00–12:00 区域 Section 13 主讲 Zhang Jingyi, PhD
分会场 Novel Antitumor Agents 3
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作者与单位 Authors & Affiliations

Jingyi Zhang1, Linghui Hou1, Zhenwei Zhang1, Samuel Waxman2, Linxiang Zhao1, Yongkui Jing1

1Shenyang Pharmaceutical University, Shenyang, China,2Samuel Waxman Institute for Aging and Cancer, New York, NY

摘要 Abstract

中文摘要
基于venetoclax的联合疗法被用作老年急性髓系白血病(AML)患者的一线治疗,但由于耐药和复发,缓解时间较短。此前,我们报道了青蒿琥酯通过促进NOXA介导的Mcl-1降解来增强venetoclax诱导的凋亡。通过采用化学偶联方法,我们使用两个碳的亚甲基间隔基将双氢青蒿素(DHA)连接到venetoclax上,得到偶联物A1。A1保持了Bcl-2抑制活性,并克服了Mcl-1/Bcl-xL介导的耐药性。然而,由于其分子尺寸较大,A1的生物利用度和溶解度有限。为解决这些局限性,我们在venetoclax和DHA之间引入了各种聚乙二醇(PEG)单元,生成偶联物A18-A20。这些衍生物的溶解度约为A1的两倍,并在软琼脂实验中对抑制U937细胞集落形成表现出更强的活性。此外,A19和A20在体内显著抑制了肿瘤生长。A19和A20的肿瘤生长抑制率(分别为75.6%和65.8%)显著高于单独使用venetoclax(33.9%)。我们进一步通过引入含氮极性基团修饰了A20的PEG骨架,得到化合物A21-A23。这些修饰进一步提高了水溶性和集落形成抑制活性。这些新型偶联物代表了有前景的下一代venetoclax衍生物,能够克服耐药性。
查看英文原文 English abstract
Venetoclax based combination therapy is utilized as the first-line treatment for elderly acute myeloid leukemia (AML) patients with short remission time due to resistance and relapse. Previously, we reported that artesunate enhanced venetoclax-induced apoptosis by promoting NOXA-mediated degradation of Mcl-1. By employing a chemical conjugation approach, we linked dihydroartemisinin (DHA) to venetoclax using a two-carbon methylene spacer, yielding the conjugate A1. A1 maintains Bcl-2 inhibitory activity and overcomes Mcl-1/Bcl-xL-mediated resistance. However, due to its large molecular size, A1 has limited bioavailability and solubility. To address these limitations, we incorporated various polyethylene glycol (PEG) units between venetoclax and DHA, generating conjugates A18-A20. These derivatives exhibited approximately two-fold greater solubility than A1, and more potent activity to inhibit colony formation of U937 cells in soft agar assays. Moreover, A19 and A20 significantly suppressed tumor growth in vivo. The tumor growth inhibition rates for A19 and A20 (75.6% and 65.8%, respectively) were significantly higher than that of venetoclax alone (33.9%). We further modified the PEG backbone of A20 by incorporating nitrogen-containing polar groups, resulting in compounds A21-A23. These modifications led to further increased aqueous solubility and colony-forming inhibitory activity. These novel conjugates represent promising next-generation venetoclax derivatives capable of overcoming resistance.
利益披露 Disclosure
J. Zhang, None.. L. Hou, None.. Z. Zhang, None.. S. Waxman, None.. L. Zhao, None.. Y. Jing, None.

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