Tsukigawa Kenji, Imoto Shuhei, Yamasaki Keishi, Nishi Koji, Tsutsumi Toshihiko, Yokoyama Shoko, Ishima Yu, Otagiri Masaki
Faculty of Pharmaceutical Sciences, Sojo University, 4-22-1 Ikeda, Nishi-ku, Kumamoto 860-0082, Japan.
DDS Research Institute, Sojo University, 4-22-1 Ikeda, Nishi-ku, Kumamoto 860-0082, Japan.
Pharmaceuticals (Basel). 2020 Dec 30;14(1):22. doi: 10.3390/ph14010022.
In a previous study, we reported on the development of a synthetic polymer conjugate of pirarubicin (THP) that was formed via an acid-labile hydrazone bond between the polymer and the THP. However, the synthetic polymer itself was non-biodegradable, which could lead to unexpected adverse effects. Human serum albumin (HSA), which has a high biocompatibility and good biodegradability, is also a potent carrier for delivering antitumor drugs. The objective of this study was to develop pH-sensitive HSA conjugates of THP (HSA-THP), and investigate the release of THP and the cytotoxicity under acidic conditions in vitro for further clinical development. HSA-THP was synthesized by conjugating maleimide hydrazone derivatives of THP with poly-thiolated HSA using 2-iminothiolane, via a thiol-maleimide coupling reaction. We synthesized two types of HSA-THP that contained different amounts of THP (HSA-THP2 and HSA-THP4). Free THP was released from both of the HSA conjugates more rapidly at an acidic pH, and the rates of release for HSA-THP2 and HSA-THP4 were similar. Moreover, both HSA-THPs exhibited a higher cytotoxicity at acidic pH than at neutral pH, which is consistent with the effective liberation of free THP under acidic conditions. These findings suggest that these types of HSA-THPs are promising candidates for further development.
在之前的一项研究中,我们报道了通过聚合物与吡柔比星(THP)之间的酸不稳定腙键形成的吡柔比星合成聚合物缀合物。然而,合成聚合物本身不可生物降解,这可能会导致意想不到的不良影响。人血清白蛋白(HSA)具有高生物相容性和良好的生物降解性,也是递送抗肿瘤药物的有效载体。本研究的目的是开发pH敏感的THP-HSA缀合物(HSA-THP),并研究THP在体外酸性条件下的释放及细胞毒性,以用于进一步的临床开发。通过使用2-亚氨基硫醇烷,经由硫醇-马来酰亚胺偶联反应,将THP的马来酰亚胺腙衍生物与多硫醇化的HSA偶联,合成了HSA-THP。我们合成了两种含有不同量THP的HSA-THP(HSA-THP2和HSA-THP4)。在酸性pH条件下,游离THP从两种HSA缀合物中释放得更快,并且HSA-THP2和HSA-THP4的释放速率相似。此外,两种HSA-THP在酸性pH下均比在中性pH下表现出更高的细胞毒性,这与酸性条件下游离THP的有效释放一致。这些发现表明,这些类型的HSA-THP是有前途的进一步开发候选物。