模块化 γδ TCR-T 平台:结合 KRAS pMHC 靶向与可重复给药 mRNA 衔接器重定向
A modular γδ TCR-T platform combining KRAS pMHC targeting with re-dosable mRNA engager redirection.
当抗原表达发生变化或限制性人类白细胞抗原(HLA)等位基因丢失时,实体瘤常能逃逸TCR工程化T细胞的攻击。
FRONTIER PAPERS
A modular γδ TCR-T platform combining KRAS pMHC targeting with re-dosable mRNA engager redirection.
当抗原表达发生变化或限制性人类白细胞抗原(HLA)等位基因丢失时,实体瘤常能逃逸TCR工程化T细胞的攻击。
Technological advancements in antibody-based therapeutics for treatment of diseases.
这些方面共同塑造了治疗性抗体领域充满活力且多学科交叉的未来,该领域有望满足未满足的临床需求和全球卫生优先事项。
Advancements in Nanomedicine for Precision Management of Lymphoma: Mechanisms, Diagnostics, and Therapeutic Strategies.
淋巴瘤是一种起源于淋巴和造血系统的异质性恶性肿瘤。
Synergizing immunity: lipid nanoparticle-mediated mRNA and gene delivery as a next-gen paradigm in cancer immunotherapy.
这些见解强调了LNP作为下一代mRNA癌症免疫疗法的变革性载体,并指出了克服递送和免疫微环境障碍的未来方向。
Advances in Nanotechnology for Lymphoma Treatment: Targeted Delivery, Immunomodulation, and TME-Responsive Therapy Strategies.
淋巴瘤是一种异质性淋巴细胞恶性增殖性疾病,兼具液体肿瘤和实体肿瘤的特征。
Efficacy of a third SARS-CoV-2 mRNA vaccine dose among hematopoietic cell transplantation, CAR T cell, and BiTE recipients.
mRNA-engineered T lymphocytes secreting bispecific T cell engagers with therapeutic potential in solid tumors.
我们的结果强烈支持mRNA工程化的TCE分泌型T细胞作为一种有前景的实体瘤治疗策略。
Innovative gene engineering strategies to address tumor antigen escape in cell therapy.
这些进展标志着向可适应、即用型、生物标志物指导的平台转变,这些平台旨在跟上肿瘤演化并实现抗逃逸免疫。
Incorporating mRNA therapeutics into biological treatments of hematologic malignancies.
近期mRNA技术的进步为治疗血液系统恶性肿瘤开辟了新的治疗途径,为增强现有免疫疗法提供了创新方法。
Targeted delivery of IFN-α-anti-GPC3 fusion protein via mRNA-LNP platform elicits potent anti-tumor immunity in hepatocellular carcinoma.
重复给药(6 或 10 mpk)确定了最大耐受剂量(MTD)为 6 mpk,至少比最小有效剂量(MED,0.15 mpk)高 40 倍。
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