Farmani Ahmad Reza, Salmeh Mohammad Ali, Golkar Zahra, Moeinzadeh Alaa, Ghiasi Farzaneh Farid, Amirabad Sara Zamani, Shoormeij Mohammad Hasan, Mahdavinezhad Forough, Momeni Simin, Moradbeygi Fatemeh, Ai Jafar, Hardy John G, Mostafaei Amir
Tissue Engineering and Applied Cell Sciences Department, School of Advanced Technologies in Medicine, Tehran University of Medical Sciences, Tehran 14166-34793, Iran.
Tissue Engineering Department, School of Advanced Technologies in Medicine, Fasa University of Medical Sciences, Fasa 74615-168, Iran.
J Funct Biomater. 2022 Sep 24;13(4):162. doi: 10.3390/jfb13040162.
Lithium (Li) is a metal with critical therapeutic properties ranging from the treatment of bipolar depression to antibacterial, anticancer, antiviral and pro-regenerative effects. This element can be incorporated into the structure of various biomaterials through the inclusion of Li chloride/carbonate into polymeric matrices or being doped in bioceramics. The biocompatibility and multifunctionality of Li-doped bioceramics present many opportunities for biomedical researchers and clinicians. Li-doped bioceramics (capable of immunomodulation) have been used extensively for bone and tooth regeneration, and they have great potential for cartilage/nerve regeneration, osteochondral repair, and wound healing. The synergistic effect of Li in combination with other anticancer drugs as well as the anticancer properties of Li underline the rationale that bioceramics doped with Li may be impactful in cancer treatments. The role of Li in autophagy may explain its impact in regenerative, antiviral, and anticancer research. The combination of Li-doped bioceramics with polymers can provide new biomaterials with suitable flexibility, especially as bio-ink used in 3D printing for clinical applications of tissue engineering. Such Li-doped biomaterials have significant clinical potential in the foreseeable future.
锂(Li)是一种具有关键治疗特性的金属,其治疗范围涵盖从双相抑郁症的治疗到抗菌、抗癌、抗病毒以及促进再生等作用。通过将氯化锂/碳酸锂加入聚合物基质或掺杂到生物陶瓷中,这种元素能够被整合到各种生物材料的结构中。锂掺杂生物陶瓷的生物相容性和多功能性为生物医学研究人员和临床医生提供了诸多机遇。锂掺杂生物陶瓷(具备免疫调节能力)已被广泛应用于骨和牙齿再生,并且在软骨/神经再生、骨软骨修复以及伤口愈合方面具有巨大潜力。锂与其他抗癌药物联合使用的协同效应以及锂的抗癌特性,都表明掺杂锂的生物陶瓷在癌症治疗中可能会产生显著效果。锂在自噬中的作用或许能够解释其在再生、抗病毒和抗癌研究中的影响。锂掺杂生物陶瓷与聚合物的结合可以提供具有合适柔韧性的新型生物材料,特别是作为用于组织工程临床应用的3D打印生物墨水。在可预见的未来,此类锂掺杂生物材料具有重大的临床潜力。