Eom Soomin, Park Seong Guk, Koo Yonghoe, Noh Yeongjin, Choi Cholong, Kim Yunjung, Jun Heejin, Cha Chaenyung, Joo Jinmyoung, Kang Sebyung
Department of Biological Sciences, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Republic of Korea.
Department of Biomedical engineering and Graduate School of Health Science and Technology, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Republic of Korea.
J Control Release. 2025 Feb 10;378:460-475. doi: 10.1016/j.jconrel.2024.12.026. Epub 2024 Dec 21.
Proteins, inherently biocompatible and biodegradable, face a challenge in forming stable hydrogels without external chemical crosslinkers. Here, we construct a ring-shaped trimeric SpyTag-fused Proliferating Cell Nuclear Antigen Protein (ST-PCNA) as a core protein building block, and a dumbbell-shaped tandem dimeric SpyCatcher (SC-SC) as a bridging component. Self-crosslinked PCNA/SC-SC Protein (2SP) hydrogels are successfully formed by simply mixing the solutions of ST-PCNA and SC-SC, without chemical crosslinkers. During their formation by mixing, various cargo molecules, including anti-cancer drugs, photosensitizers, and functional proteins, are efficiently incorporated, producing cargo@2SP hydrogels. Most of the entrapped cargo molecules gradually release as the hydrogels erode. Anti-cancer drug- or photosensitizer-incorporated 2SP hydrogels are successfully formed through localized injection beneath the 4 T1 tumor in mice. The localized gradual release of drugs in physiological microenvironment substantially suppresses tumor growth, and highly localized photosensitizers retained in the 2SP hydrogels raises the local temperature above 45 °C upon laser irradiation, resulting in a significant suppression of tumor growth. Additionally, the topical administration of growth factor proteins-incorporated 2SP hydrogels to the incision wound area effectively regenerates the skin, with rapid reconstruction of extracellular matrix. The injectable and self-crosslinkable 2SP hydrogels developed here offer promise as novel biocompatible scaffolds for local therapy.
蛋白质本身具有生物相容性和可生物降解性,在不使用外部化学交联剂的情况下形成稳定水凝胶面临挑战。在此,我们构建了一种环状三聚体SpyTag融合增殖细胞核抗原蛋白(ST-PCNA)作为核心蛋白质构建块,以及一种哑铃状串联二聚体SpyCatcher(SC-SC)作为桥接组件。通过简单混合ST-PCNA和SC-SC的溶液,无需化学交联剂,成功形成了自交联的PCNA/SC-SC蛋白(2SP)水凝胶。在混合形成过程中,各种负载分子,包括抗癌药物、光敏剂和功能蛋白,被有效包封,产生负载@2SP水凝胶。随着水凝胶的侵蚀,大多数包封的负载分子逐渐释放。通过在小鼠4T1肿瘤下方进行局部注射,成功形成了负载抗癌药物或光敏剂的2SP水凝胶。药物在生理微环境中的局部逐渐释放显著抑制了肿瘤生长,并且保留在2SP水凝胶中的高度局部化光敏剂在激光照射下将局部温度升高至45°C以上,从而导致肿瘤生长受到显著抑制。此外,将负载生长因子蛋白的2SP水凝胶局部应用于切口伤口区域可有效促进皮肤再生,并快速重建细胞外基质。这里开发的可注射且可自交联的2SP水凝胶有望成为用于局部治疗的新型生物相容性支架。