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

Avidity-Based Capture of PD-L1-Expressing Exosomes via Dendrimer-Peptide Conjugates: A Nanoengineered Platform for Enhanced Prediction of Immunotherapy Response

利用树状聚合物-肽偶联物进行基于亲和力的PD-L1表达外泌体捕获:一种用于增强免疫治疗反应预测的纳米工程平台

Lee, Jiah; Shin, Dongjun; Son, Chae Yeon; Kang, Hanbit; Choi, Jung Hyun; Park, Hyun Sung; Bang, Seha; Kim, Lucia; Lee, Tae Hee; Eun, Hyuk Soo; Poellmann, Michael J; Jeong, Woo-Jin; Kim, Dong Hyung; Lim, Jun Hyeok; Hong, Seungpyo; Bu, Jiyoon

Circulating tumor cell abundance in head and neck squamous cell carcinoma decreases with successful chemoradiation and cetuximab treatment.

头颈部鳞状细胞癌患者经化疗、放疗和西妥昔单抗治疗后,循环肿瘤细胞数量减少

Poellmann Michael J, Bu Jiyoon, Kim DaWon, Iida Mari, Hong Heejoo, Wang Andrew Z, Wheeler Deric L, Kimple Randall J, Hong Seungpyo

Branched, dendritic, and hyperbranched polymers in liquid biopsy device design

液体活检装置设计中的支化、树枝状和超支化聚合物

Poellmann, Michael J; Rawding, Piper; Kim, DaWon; Bu, Jiyoon; Kim, YoungSoo; Hong, Seungpyo

Tri-modal liquid biopsy: Combinational analysis of circulating tumor cells, exosomes, and cell-free DNA using machine learning algorithm

三模态液体活检:利用机器学习算法对循环肿瘤细胞、外泌体和游离DNA进行联合分析

Bu, Jiyoon; Lee, Tae Hee; Poellmann, Michael J; Rawding, Piper A; Jeong, Woo-Jin; Hong, Rachel S; Hyun, Sung Hee; Eun, Hyuk Soo; Hong, Seungpyo

Surface engineering for efficient capture of circulating tumor cells in renal cell carcinoma: From nanoscale analysis to clinical application

利用表面工程技术高效捕获肾细胞癌循环肿瘤细胞:从纳米级分析到临床应用

Bu, Jiyoon; Nair, Ashita; Kubiatowicz, Luke J; Poellmann, Michael J; Jeong, Woo-Jin; Reyes-Martinez, Marco; Armstrong, Andrew J; George, Daniel J; Wang, Andrew Z; Zhang, Tian; Hong, Seungpyo

An Avidity-Based PD-L1 Antagonist Using Nanoparticle-Antibody Conjugates for Enhanced Immunotherapy

一种基于亲和力的PD-L1拮抗剂,利用纳米颗粒-抗体偶联物增强免疫治疗

Bu, Jiyoon; Nair, Ashita; Iida, Mari; Jeong, Woo-Jin; Poellmann, Michael J; Mudd, Kara; Kubiatowicz, Luke J; Liu, Elizabeth W; Wheeler, Deric L; Hong, Seungpyo

Immunoavidity-Based Capture of Tumor Exosomes Using Poly(amidoamine) Dendrimer Surfaces

利用聚酰胺胺树状聚合物表面进行基于免疫亲和力的肿瘤外泌体捕获

Poellmann, Michael J; Nair, Ashita; Bu, Jiyoon; Kim, Jack K H; Kimple, Randall J; Hong, Seungpyo

Amphiphilic copolymers reduce aggregation of unfolded lysozyme more effectively than polyethylene glycol

两亲性共聚物比聚乙二醇更能有效地减少未折叠溶菌酶的聚集。

Chin, Jaemin; Mustafi, Devkumar; Poellmann, Michael J; Lee, Raphael C