PO.CL11.01 · 临床研究
调整肠道微生物组以减轻抗癌治疗引起的心血管毒性
Shifting the gut microbiome to alleviate anti-cancer treatment-induced cardiovascular toxicity
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言:绝经后转移性激素受体阳性(HR+)乳腺癌女性接受芳香化酶抑制剂(AI)或Faslodex(fulvestrant,ICI)联合细胞周期蛋白依赖性激酶4/6抑制剂(CDK4/6i)治疗。尽管乳腺癌预后有所改善,但随访研究表明该联合治疗与心血管毒性相关。既往研究显示,补充Lactobacillus益生菌可改变肠道微生物组、减少乳腺肿瘤发生,并改善绝经引起的心脏代谢综合征。然而,关于Lactobacillus益生菌改善心脏肿瘤学结局的研究有限。
材料/方法:将八周龄雌性BALB/c小鼠(n=60)置于西方饮食。在十周龄时,将同基因4T1.2ER+乳腺癌细胞(1×10⁶个细胞)移植到左侧腹股沟乳腺脂肪垫。待肿瘤达到100 mm³后开始治疗,治疗持续21天。小鼠按肿瘤体积随机分入各治疗组:未治疗对照组、益生菌组(Probx;2×10⁸ CFU Lactobacillus spp.)、Letrozole(AI)+Ribociclib(CDK4/6i)组、Faslodex(ICI)+CDK4/6i组、Probx+AI+CDK4/6i组,或Probx+ICI+CDK4/6i组。每周用卡尺测量肿瘤体积和重量三次。研究结束时进行Vevo心脏超声检查。
结果:在4T1.2ER+乳腺癌动物模型中,在联合治疗(AI或ICI联合CDK4/6i)基础上添加益生菌显著减小了肿瘤体积,验证了该益生菌增强治疗药物抗肿瘤疗效的潜力。此外,我们的心脏数据显示,ICI+CDK4/6i和AI+CDK4/6i治疗组均显著增加了舒张功能障碍参数(E'E和IVRT),而在补充Lactobacillus益生菌的组中这些参数有所降低。我们发现添加Lactobacillus益生菌减少了内分泌靶向治疗+CDK4/6i治疗诱导的心脏纤维化。此外,我们评估了促纤维化的TGF-beta/Smad依赖性通路的表达。我们还确定了各治疗对心脏组织中氧化应激标志物的影响。最后,我们对血浆进行了非靶向代谢组学分析、对心脏组织进行了蛋白质组学分析,以确定Lactobacillus益生菌干预所介导的潜在分子机制。
结论:我们的研究结果表明,CDK4/6i和内分泌靶向治疗促进心脏纤维化沉积并导致舒张功能障碍。然而,补充Lactobacillus益生菌显著改善了治疗疗效、减轻了药物引起的心脏功能障碍,并可能调节促纤维化活性。我们的数据提供了一种可行且易于获得的方法,以应对心脏肿瘤学环境中的药物毒性。
查看英文原文 English abstract
Introduction: Postmenopausal women with metastatic hormone receptor-positive (HR+) breast cancer are treated with either aromatase inhibitors (AIs), or Faslodex (fulvestrant, ICI), in combination with cyclin-dependent kinase 4/6 inhibitors (CDK4/6i). Despite the improvement in breast cancer outcomes, follow-up studies demonstrate the combination treatment is associated with cardiovascular toxicities. Previous studies have shown Lactobacillus probiotics supplementation shifts the gut microbiome, reduces breast tumorigenesis, and improved menopause-induced cardiometabolic syndrome. However, limited studies have investigated Lactobacillus probiotics on improving cardio-oncological outcomes.
Materials/Methods: Eight-week-old female BALB/c mice (n = 60) were placed on a Western diet. At ten weeks of age, syngeneic 4T1.2ER+ breast cancer cells (1 × 10⁶ cells) were transplanted into the left inguinal mammary fat pad. Tumors were allowed to reach 100 mm³ before initiating treatment, which was administered for 21 days. Mice were randomized by tumor volume into treatment groups: untreated control, probiotics (Probx; 2 × 10⁸ CFU Lactobacillus spp.), Letrozole (AI)+Ribociclib (CDK4/6i), Faslodex (ICI)+CDK4/6i, Probx+AI+ CDK4/6i, or Probx+ICI + CDK4/6i. Tumor volume and weight were measured three times weekly using calipers. Vevo cardiac ultrasound was performed at the end of the study.
Results: In the 4T1.2ER+ breast cancer animal model, the addition of probiotics with the combinational therapeutics (AIs or ICI with CDK4/6i) significantly reduced tumor volume validating the potential of the probiotic to increase the anti-tumor efficacy of the therapeutics. Furthermore, our cardiac data displayed both ICI+CDK4/6i and AI+CDK4/6i-treated groups significantly increased diastolic dysfunction parameters (E'E and IVRT) that were reduced in groups supplemented with Lactobacillus probiotics. We show addition of Lactobacillus probiotics reduced cardiac fibrosis induced by endocrine-targeting therapies+CDK4/6i treatment. Additionally, we assessed the expression of pro-fibrotic TGF-beta/Smad-dependent pathway. We also determined the impact of therapies on oxidative stress markers in cardiac tissue. Lastly, we performed untargeted metabolomics on plasma and proteomics on cardiac tissue to determine potential molecular mechanisms mediated by Lactobacillus probiotic interventions.
Conclusion: Our findings highlight CDK4/6i and endocrine-targeting therapies promote cardiac fibrotic deposition and result in diastolic dysfunction. However, Lactobacillus probiotic supplementation significantly improved treatment efficacy, ameliorated drug-induced cardiac dysfunction, and may regulate pro-fibrotic activity. Our data provides a feasible and accessible approach to address drug toxicity in the cardio-oncology setting.
利益披露 Disclosure
Z. Cornelius, None..
A. Wilson, None..
V. Payne, None..
E. Cyrus, None..
K. Y. Clear, None..
D. R. Soto-Pantoja, None..
K. L. Cook, None.