Chang Thomas M S
Artificial Cells and Organs Research Centre, Faculty of Medicine, McGill University, Montreal, Quebec, Canada.
Artif Cells Blood Substit Immobil Biotechnol. 2012 Jun;40(3):197-9. doi: 10.3109/10731199.2012.662408. Epub 2012 Mar 13.
The first experimental artificial red blood cells have all three major functions of red blood cells (rbc). However, the first practical one is a simple polyhemoglobin (PolyHb) that only has an oxygen-carrying function. This is now in routine clinical use in South Africa and Russia. An oxygen carrier with antioxidant functions, PolyHb-catalase-superoxide dismutase, can fulfill two of the three functions of rbc. Even more complete is one with all three functions of rbc in the form of PolyHb-catalase-superoxide dismutase-carbonic anhydrase. The most advanced ones are nanodimension artificial rbc with either PEG-lipid membrane or PEG-PLA polymer membrane. Extensions into oxygen therapeutics include a PolyHb-tyrosinase that suppresses the growth of melanoma in a mice model. Another is a PolyHb-fibrinogen that is an oxygen carrier with platelet-like function. Research has now extended well beyond the original research on artificial rbc into many areas of artificial cells. These include nanoparticles, nanotubules, lipid vesicles, liposomes, polymer-tethered lipid vesicles, polymersomes, microcapsules, bioencapsulation, nanocapules, macroencapsulation, synthetic cells, and others. These are being used in nanotechnology, nanomedicine, regenerative medicine, enzyme/gene therapy, cell/stem cell therapy, biotechnology, drug delivery, hemoperfusion, nanosensers, and even by some groups in agriculture, industry, aquatic culture, nanocomputers, and nanorobotics.
首批实验性人工红细胞具备红细胞的所有三项主要功能。然而,首个实用的人工红细胞是一种简单的多聚血红蛋白(PolyHb),它仅具有携带氧气的功能。目前这种多聚血红蛋白在南非和俄罗斯已投入常规临床应用。一种具有抗氧化功能的氧载体,即多聚血红蛋白 - 过氧化氢酶 - 超氧化物歧化酶,能够实现红细胞三项功能中的两项。功能更为完备的是以多聚血红蛋白 - 过氧化氢酶 - 超氧化物歧化酶 - 碳酸酐酶形式存在的具备红细胞所有三项功能的氧载体。最为先进的是具有聚乙二醇 - 脂质膜或聚乙二醇 - 聚乳酸聚合物膜的纳米级人工红细胞。氧疗法的拓展应用包括一种在小鼠模型中能抑制黑色素瘤生长的多聚血红蛋白 - 酪氨酸酶。另一种是具有类似血小板功能的氧载体多聚血红蛋白 - 纤维蛋白原。如今,相关研究已远远超出了最初对人工红细胞的研究范畴,拓展到了人工细胞的诸多领域。这些领域包括纳米颗粒、纳米管、脂质囊泡、脂质体、聚合物连接脂质囊泡、聚合物囊泡、微胶囊、生物包封、纳米胶囊、宏观包封、合成细胞等等。它们正被应用于纳米技术、纳米医学、再生医学、酶/基因治疗、细胞/干细胞治疗、生物技术、药物递送、血液灌流、纳米传感器,甚至一些团队还将其应用于农业、工业、水产养殖、纳米计算机和纳米机器人领域。