日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Capturing dynamic phage-pathogen coevolution by clinical surveillance

通过临床监测捕捉噬菌体-病原体动态协同进化

Mathur, Yamini; Boyd, Caroline M; Farnham, Jeannette E; Monir, Md Mamun; Islam, Mohammad Tarequl; Sultana, Marzia; Ahmed, Tahmeed; Alam, Munirul; Seed, Kimberley D

Sustainable Structural Hot-Melt Adhesives Enabled by Functionalized Crystalline Lamellae

功能化晶体薄片实现可持续结构热熔胶

Hu, Zhitao; Wolff, Anna M; Zhao, Yucheng; Rettner, Emma M; Alam, Md Shafi; Frederick, Tom; Sangroniz, Ainara; Miyake, Garret M

Ultra-Sensitive Nanofiber-Based Triboelectric Nanogenerator for Energy Harvesting and Self-Powered Sensing

用于能量收集和自供电传感的超灵敏纳米纤维摩擦纳米发电机

Roy, Sajib; Dudem, Bhaskar; Hussain, Md Delowar; Stolojan, Vlad; Emadian, Seyedeh Sadrieh; Krishnamurthy, Satheesh; Yun, Jae Sung; Silva, S Ravi P

Ex vivo endothelialized cECM-enriched core-shell fibrous vascular graft promotes rapid regenerative remodeling in vivo

体外内皮化的富含细胞外基质的核壳纤维血管移植物可促进体内快速再生重塑

Fahad, Md Abdullah Al; Choi, Minji; Lee, Hyun-Yong; Shanto, Prayas Chakma; Mahbub, Md Sowaib Ibne; Jahan, Nusrat; Park, Myeongki; Kim, Namhun; Bae, Sang Ho; Lee, Byong-Taek

Corrigendum to "Skin-inspired phototherapeutic cryogel ameliorates infected wound healing by orchestrating mechanotransduction and immunomodulation" [Bioact. Mater. 57 (2026) 768-790]

对“Skin-inspired phototherutic crygel ameliorates infected wound healing by orchestrating mechanicotransduction and immunomodulation”的更正[Bioact. Mater. 57 (2026) 768-790]

Dutta, Sayan Deb; An, Jeong Man; Moniruzzaman, Md; Acharya, Rumi; Seol, Youjin; Kim, Hojin; Randhawa, Aayushi; Kim, Jong-Sung; Lee, Yong-Kyu; Lim, Ki-Taek

Skin-inspired phototherapeutic cryogel ameliorates infected wound healing by orchestrating mechanotransduction and immunomodulation

仿生皮肤光疗冷冻凝胶通过协调机械转导和免疫调节来改善感染伤口的愈合。

Dutta, Sayan Deb; An, Jeong Man; Moniruzzaman, Md; Acharya, Rumi; Seol, Youjin; Kim, Hojin; Randhawa, Aayushi; Kim, Jong-Sung; Lee, Yong-Kyu; Lim, Ki-Taek

Scalable synthetic peptide hydrogel enables self-organized luminal cavity architecture within hiPSC 3D colonies supporting functional hepatocyte differentiation

可扩展的合成肽水凝胶可在hiPSC 3D集落内形成自组织的管腔结构,从而支持功能性肝细胞分化。

Li, Quan; Qi, Guangyan; Cai, Ling; Shrestha, Abhishek P; Duarte, Sergio; Zhang, Yu Shrike; Zarrinpar, Ali; Aboellail, Tawfik; Liu, Xuming; Bai, Jianfa; Rahman, Md Sharifur; Hagenbuch, Bruno; Chen, Ming-Shun; Atala, Anthony; Sun, Xiuzhi Susan

Chitosan based smart injectable hydrogels for biomedical applications: A comprehensive review

用于生物医学应用的壳聚糖基智能可注射水凝胶:一项综合综述

Salamat, Qamar; Moradi, Rasoul; Nadizadeh, Zahra; Kavehpour, Pirouz; Soylak, Mustafa; Asimov, Ahmet; Zillur Rahman, Md; Kovářík, Tomáš; Babuška, Václav; Deshmukh, Kalim

DNA Helix Bundle-Encoded Multi-Bit Information Readout by Sapphire-Supported Nanopores

利用蓝宝石支撑纳米孔读取DNA螺旋束编码的多比特信息

Xia, Pengkun; Satyabola, Deeksha; Bamrah, Nimarpreet Kaur; Rahman Laskar, Md Ashiqur; Mamun, Abdulla Al; Zhou, Xu; Wisna, Gde Bimananda Mahardika; Zhang, Yinan; Ikbal, Ashif; Kemeklis, Andrew; Krylova, Alexandra E; Hariadi, Rizal; Yan, Hao; Wang, Chao

Noninvasive methods to monitor dynamic single-cell events

监测动态单细胞事件的非侵入性方法

Lee, Robin E C; Yeung, Jason; Mumford, Thomas; Bugaj, Lukasz; Daniels, Matthew J; Stanley, John; Pourmand, Nader; Vineall, Katie G; Schmitt, Danielle L; Rahman, Shah Md Toufiqur; Sung, Myong-Hee