Center for Evidence-Based and Translational Medicine, Department of Urology, Zhongnan Hospital of Wuhan University, Wuhan, 430071, Hubei, China.
Jiangsu Key Laboratory of Medical Science and Laboratory Medicine, School of Medicine, Jiangsu University, Zhenjiang, 212013, Jiangsu, China.
J Nanobiotechnology. 2022 Jun 21;20(1):295. doi: 10.1186/s12951-022-01497-4.
With rich carboxyl groups in the side chain, biodegradable polymalic acid (PMLA) is an ideal delivery platform for multifunctional purposes, including imaging diagnosis and targeting therapy. This polymeric material can be obtained via chemical synthesis, or biological production where L-malic acids are polymerized in the presence of PMLA synthetase inside a variety of microorganisms. Fermentative methods have been employed to produce PMLAs from biological sources, and analytical assessments have been established to characterize this natural biopolymer. Further functionalized, PMLA serves as a versatile carrier of pharmaceutically active molecules at nano scale. In this review, we first delineate biosynthesis of PMLA in different microorganisms and compare with its chemical synthesis. We then introduce the biodegradation mechanism PMLA, its upscaled bioproduction together with characterization. After discussing advantages and disadvantages of PMLA as a suitable delivery carrier, and strategies used to functionalize PMLA for disease diagnosis and therapy, we finally summarize the current challenges in the biomedical applications of PMLA and envisage the future role of PMLA in clinical nanomedicine.
具有丰富侧链羧基的可生物降解聚苹果酸(PMLA)是一种多功能的理想递送平台,包括成像诊断和靶向治疗。这种聚合材料可以通过化学合成获得,也可以通过生物生产获得,即在各种微生物中存在 PMLA 合成酶的情况下聚合 L-苹果酸。发酵方法已被用于从生物来源生产 PMLA,并建立了分析评估来表征这种天然生物聚合物。进一步功能化的 PMLA 可作为纳米级药物活性分子的多功能载体。在这篇综述中,我们首先描述了不同微生物中 PMLA 的生物合成,并将其与化学合成进行了比较。然后,我们介绍了 PMLA 的生物降解机制、规模化生物生产及其特性。在讨论了 PMLA 作为合适的递药载体的优缺点以及对 PMLA 进行功能化以用于疾病诊断和治疗的策略之后,我们最后总结了 PMLA 在生物医学应用中的当前挑战,并展望了 PMLA 在临床纳米医学中的未来作用。