Tissue-Engineered Therapeutics for Lymphatic Regeneration: Solutions for Myocardial Infarction and Secondary Lymphedema.

IF 10 2区 医学 Q1 ENGINEERING, BIOMEDICAL
Alvis Chiu, Joseph M Rutkowski, Qixu Zhang, Feng Zhao
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引用次数: 0

Abstract

The lymphatic system, which regulates inflammation and fluid homeostasis, is damaged in various diseases including myocardial infarction (MI) and breast-cancer-related lymphedema (BCRL). Mounting evidence suggests that restoring tissue fluid drainage and clearing excess immune cells by regenerating damaged lymphatic vessels can aid in cardiac repair and lymphedema amelioration. Current treatments primarily address symptoms rather than underlying causes due to a lack of regenerative therapies, highlighting the importance of the lymphatic system as a promising novel therapeutic target. Here cutting-edge research on engineered lymphatic tissues, growth factor therapies, and cell-based approaches designed to enhance lymphangiogenesis and restore lymphatic function is explored. Special focus is placed on how therapies with potential for immediate lymphatic reconstruction, originally designed for treating BCRL, can be applied to MI to augment cardiac repair and reduce heart failure risk. The integration of these novel treatments can significantly improve patient outcomes by promoting lymphatic repair, preventing pathological remodeling, and offering new avenues for managing lymphatic-associated diseases.

淋巴再生的组织工程疗法:心肌梗死和继发性淋巴水肿的解决方案。
调节炎症和体液平衡的淋巴系统在各种疾病中受损,包括心肌梗死(MI)和乳腺癌相关淋巴水肿(BCRL)。越来越多的证据表明,通过再生受损淋巴管来恢复组织液引流和清除多余的免疫细胞有助于心脏修复和淋巴水肿的改善。由于缺乏再生疗法,目前的治疗主要针对症状而不是根本原因,突出了淋巴系统作为一个有希望的新治疗靶点的重要性。在这里,我们探索了工程淋巴组织、生长因子疗法和基于细胞的方法的前沿研究,这些方法旨在增强淋巴管生成和恢复淋巴功能。特别关注的是,最初设计用于治疗BCRL的具有立即淋巴重建潜力的疗法如何应用于心肌梗死,以增强心脏修复并降低心力衰竭风险。这些新疗法的整合可以通过促进淋巴修复,防止病理性重塑,并为管理淋巴相关疾病提供新的途径,显著改善患者的预后。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advanced Healthcare Materials
Advanced Healthcare Materials 工程技术-生物材料
CiteScore
14.40
自引率
3.00%
发文量
600
审稿时长
1.8 months
期刊介绍: Advanced Healthcare Materials, a distinguished member of the esteemed Advanced portfolio, has been dedicated to disseminating cutting-edge research on materials, devices, and technologies for enhancing human well-being for over ten years. As a comprehensive journal, it encompasses a wide range of disciplines such as biomaterials, biointerfaces, nanomedicine and nanotechnology, tissue engineering, and regenerative medicine.
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