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

Author Correction: Governance and resilience as entry points for transforming food systems in the countdown to 2030

作者更正:在2030年倒计时阶段,治理和韧性是转型粮食系统的切入点

Schneider, Kate R; Remans, Roseline; Bekele, Tesfaye Hailu; Aytekin, Destan; Conforti, Piero; Dasgupta, Shouro; DeClerck, Fabrice; Dewi, Deviana; Fabi, Carola; Gephart, Jessica A; Masuda, Yuta J; McLaren, Rebecca; Saisana, Michaela; Aburto, Nancy; Ambikapathi, Ramya; Arellano Rodriguez, Mariana; Barquera, Simon; Battersby, Jane; Beal, Ty; Béné, Christophe; Cafiero, Carlo; Campeau, Christine; Caron, Patrick; Cattaneo, Andrea; Candel, Jeroen; Covic, Namukolo; Del Pino Alvarez, Inmaculada; Dominguez Barreto, Ana Paula; Elouafi, Ismahane; Frazier, Tyler J; Fremier, Alexander; Foley, Pat; Golden, Christopher D; Gonzalez Fischer, Carlos; Guarin, Alejandro; Hendriks, Sheryl; Herforth, Anna; Honorati, Maddalena; Huang, Jikun; Getaneh, Yonas; Kennedy, Gina; Laar, Amos; Lal, Rattan; Lidder, Preetmoninder; Feye, Getachew Legese; Loken, Brent; Malapit, Hazel; Marshall, Quinn; Mulatu, Kalkidan A; Munguia, Ana; Nordhagen, Stella; Resnick, Danielle; Suhardiman, Diana; Sumaila, U Rashid; Sun, Bangyao; Mengesha, Belay Terefe; Torero Cullen, Maximo; Tubiello, Francesco N; Dooren, Corné van; Valero Morales, Isabel; Vivero-Pol, Jose-Luis; Webb, Patrick; Wiebe, Keith; Haddad, Lawrence; Herrero, Mario; Rosero Moncayo, Jose; Fanzo, Jessica

Engineering Drug-Eluting Ocular Bioadhesive "OcuTAPE" via Tannic Acid-Mediated Nanoparticle Bridging.

利用单宁酸介导的纳米颗粒桥接技术构建药物洗脱眼部生物粘合剂“OcuTAPE”。

Zheng Yuting, Monu Monu, Vo Steven, Gupta Suneel, Kumar Lal Krishan, Kumar Prince, Nassiri Nariman, Singh Pawan Kumar, Annabi Nasim

Human Hearts Intrinsically Increase Cardiomyocyte Mitosis After Myocardial Infarction.

心肌梗死后,人类心脏自身会增加心肌细胞有丝分裂。

Hume Robert D, Warwick Jessica, Shim Woo Jun, Malecki Cassandra, Li Mengbo, Seth Lakshay, Harney Dylan, Dagher Julien, Lum Trina, Tierney Geraldine, Cooper Wendy, Slaughter Eugene, Wang Xiaosuo, Nguyen Lisa, Cole Louise, Edelman James, Rashid Fairooj N, Houlahan Callum, Gao Antony, Ferguson Angela L, Chong James J H, Larance Mark, O'Sullivan John F, Palpant Nathan J, Bannon Paul, Lal Sean

Aligning EU energy security and climate mitigation through targeted transition strategies

通过有针对性的转型战略,协调欧盟能源安全与气候减缓。

Lal, Apoorv; Tavoni, Massimo; Preuss, Nathan; You, Fengqi

Structural and dynamic insights into agonist recognition and function of the thromboxane A(2) receptor

血栓素A2受体激动剂识别和功能的结构和动力学研究

Krawinski, Pawel; Matzov, Donna; Ryder, Aoife; Lal, Kanhaya; Karlov, Dmitry S; Chalhoub, Georges; Mulvaney, Eamon P; Kinsella, B Therese; McCormick, Peter J; Caffrey, Martin; Tikhonova, Irina G; Shalev-Benami, Moran

Circulating Metabolites Treat Human TMJ-OA by Eliminating Senescent Chondrocytes via the C1QBP/C1q/p14ARF Axis

循环代谢物通过C1QBP/C1q/p14ARF轴清除衰老软骨细胞,从而治疗人类颞下颌关节骨关节炎

Meng, Bowen; Li, Xin; Yang, Benyi; Qu, Yan; He, Yifan; Fu, Chaoran; An, Zhe; Wu, Antong; Hei, Yuzhuo; Zhang, Rong; Cai, Wenyi; Kong, Lingyunbo; Li, Rui; Hao, Meng; Cao, Zeyuan; Mao, Xueli; Pathak, Janak Lal; Cao, Yang; Shi, Songtao; Zhang, Qingbin

Peripheral blood immune cell profiling and response to BCMA CAR-T cell therapy in relapsed refractory multiple myeloma

复发难治性多发性骨髓瘤患者外周血免疫细胞谱分析及对BCMA CAR-T细胞疗法的反应

Pandey, Toshali; Mohan Lal, Bhavesh; Alrawabdeh, Jawad; Alzu'bi, Marah; Schinke, Carolina D; Thanendrarajan, Sharmilan; Alapat, Daisy V; Shaughnessy, John D Jr; Zhan, Fenghuang; Zangari, Maurizio; van Rhee, Frits; Al Hadidi, Samer

A Computational Pathology Model to Predict Docetaxel Benefit in Localized High-Risk and Metastatic Prostate Cancer

利用计算病理学模型预测多西他赛对局限性高危和转移性前列腺癌的疗效

Medina, Sebastian; Tokuyama, Naoto; Hammouda, Kamal; Pathak, Tilak; Mirtti, Tuomas; Fu, Pingfu; Gupta, Shilpa; Lal, Priti; Sandler, Howard M; Correa, Rohann; Chafe, Susan; Shah, Amit; Efstathiou, Jason A; Hoffman, Karen; Straza, Michael; Hallman, Mark A; Jordan, Richard; Pugh, Stephanie L; Sweeney, Christopher J; Madabhushi, Anant

Injectable antifibrotic drug-loaded hydrogels reduce fibrosis and restore myogenesis by enhancing mitochondrial metabolism and cell mechanics in an in vitro coculture model

可注射的载有抗纤维化药物的水凝胶可通过增强体外共培养模型中的线粒体代谢和细胞力学来减少纤维化并恢复肌生成。

Gopinath, Varshiny; Patel, Nirav; Chitteti, Ramamurthy; Balakrishnan, Nidhish; Panner Selvam, Manesh Kumar; Patel, Hemal H; Lal, Ratnesh; Muthuvijayan, Vignesh; Rajasekaran, Mahadevan

Fully closed-loop systems: can people with type 1 diabetes just do it? Insights from open-source systems

全闭环系统:1 型糖尿病患者能做到吗?来自开源系统的启示

Lal, Rayhan; Braune, Katarina; Lewis, Dana M; Petruzelkova, Lenka; de Bock, Martin; Hussain, Sufyan