PO.CL05.11 · 临床研究
靶向mesothelin的纳米抗体-药物偶联物治疗胰腺癌
Mesothelin-targeted nanobody-drug conjugates to treat pancreatic cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
开发能够穿透胰腺导管腺癌(PDAC)肿瘤微环境(TME)致密基质的靶向疗法,对于改善胰腺癌患者预后至关重要。我们使用噬菌体展示技术发现了一种骆驼VHH纳米抗体(A101),它能有效结合mesothelin(MSLN),这是一种在PDAC中表达的癌症抗原。利用带有MMAE有效载荷的A101 VHH纳米抗体,我们生成了纳米抗体-药物偶联物(NDC),相比现有的生物疗法,它可通过增强对PDAC TME的肿瘤穿透和改善药代动力学分布而具有优势,同时最大限度减少全身毒性。
A101纳米抗体的结构通过计算预测,并运行分子动力学模拟以理解其与MSLN的相互作用。设计了位点特异性修饰,合成了小型连接子-MMAE分子,然后使用马来酰亚胺化学将其生物偶联到修饰后的A101纳米抗体上。这些构建体中使用的化学连接子为缬氨酸-瓜氨酸、甘氨酸-脯氨酸和AB(一种新型小分子)。通过生物膜层干涉试验测试了NDC与MSLN的结合。还使用小鼠和人PDAC细胞系评估了内化和细胞活力。最后,在MSLN+和MSLN敲除(MLSN-KO)皮下小鼠PDAC肿瘤模型中检测了体内活性,以确定每种疗法的疗效和特异性。
我们发现,修饰后的A101纳米抗体保留了对人(K D = 18 nM)和小鼠(K D = 5.6 nM)MSLN的结合。A101 NDC在内化进入MSLN+细胞与同基因MSLN-KO细胞之间显示出统计学上显著的差异。此外,NDC在体外有效杀伤PDAC细胞系(IC 50 = 20-200纳摩尔)。在小鼠中,A101-AB-MMAE NDC(以20 mg/kg,每周3次给药)在MSLN+肿瘤中显示出最有前景的肿瘤生长抑制作用,并且与测试的其他A101-NDC相比具有最高的特异性,在类似的MSLN-KO肿瘤中显示出有限的疗效。
我们合成了基于A101的NDC,具有高亲和力的MSLN结合和在PDAC细胞系中有前景的抗肿瘤活性。我们的初步动物研究提示,A101-AB-MMAE偶联物(具有一种新型的仅在细胞内可切割的连接子),相比测试的其他使用已知连接子的基于A101的NDC具有更优的疗效和特异性。未来的研究将在原位人源化MSLN小鼠PDAC模型中探索A101-AB-MMAE的活性,以评估安全性、生物分布和抗肿瘤疗效。
查看英文原文 English abstract
Development of targeted therapies that can penetrate the dense stroma of the pancreatic ductal adenocarcinoma (PDAC) tumor microenvironment (TME) is essential to improve outcomes for pancreatic cancer patients. We have discovered a camel VHH nanobody (A101) using phage display, which effectively binds to mesothelin (MSLN), a cancer antigen that is expressed in PDAC. Using the A101 VHH nanobody with an MMAE payload, we generated nanobody-drug conjugates (NDCs) that can be advantageous compared to existing biologic therapies by enhancing tumor penetration through the PDAC TME and improving pharmacokinetic distribution, while minimizing systemic toxicity.
The structure of the A101 nanobody was computationally predicted and molecular dynamic simulations were run to understand its interaction with MSLN. Site-specific modifications were engineered and small linker-MMAE molecules were synthesized, then bioconjugated to the modified A101 nanobody using maleimide chemistry. The chemical linkers used in these constructs were valine-citrulline, glycine-proline, and AB (a novel small molecule). The NDCs were tested for binding to MSLN via bio-layer interferometry assays. Internalization and cell viability were also assessed using mouse and human PDAC cell lines. Finally, in vivo activity was assayed in MSLN+ and MSLN knockout (MLSN-KO) subcutaneous mouse PDAC tumor models to determine efficacy and specificity of each therapeutic.
We found that modified A101 nanobody retains binding to human (K D = 18 nM) and mouse (K D = 5.6 nM) MSLN. A101 NDCs displayed a statistically significant difference in internalization into MSLN+ as compared to isogenic MSLN-KO cells. Additionally, the NDCs efficiently killed PDAC cell lines in vitro (IC 50 = 20-200 nanomolar). In mice, the A101-AB-MMAE NDC (at 20 mg/kg, 3x per week) displayed the most promising inhibition of tumor growth in MSLN+ tumors and had the highest specificity compared to other A101-NDCs tested, showing limited efficacy in analogous MSLN-KO tumors.
We have synthesized A101-based NDCs with high-affinity MSLN binding and promising anti-tumor activity in PDAC cell lines. Our preliminary animal studies suggest that the A101-AB-MMAE conjugate, which has a novel exclusively intracellular cleavable linker, has superior efficacy and specificity compared to other A101-based NDCs tested with known linkers. Future studies will explore A101-AB-MMAE activity in orthotopic humanized MSLN mouse models of PDAC to assess safety, biodistribution, and anti-tumor efficacy.
利益披露 Disclosure
N. Dutta, None..
R. Misteli, None.
J. Hong,
National Institutes of Health Patent.
J. Becher, None..
F. Corzana Lopez, None.
C. Alewine,
Minneamrita Other, Drug-only support for clinical trials.
ProDa Other, Drug-only support for clinical trials.
AstraZeneca Other, Drug-only support for clinical trials.
HCW Biologics Other, Cooperative research and development agreement.
M. Ho,
National Institutes of Health Patent.
G. Bernardes,
Basinnov Life Sciences (FHC Group) Other, Scientific Advisor.
Vesto Therapeutics Inc. g., Board of Directors, non-salaried role).
AstraZeneca Other, Collaborative Research and Development Agreement.