CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
肿瘤细胞治疗研究
英文原题:Development of Autologous Dendritic Cell Vaccine Therapeutics for Canine Mammary Cancer.
Development of Autologous Dendritic Cell Vaccine Therapeutics for Canine Mammary Cancer.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
犬乳腺肿瘤已被研究用于确定恶性肿瘤的病因并促进更有效疗法的开发。当前的标准治疗是在可能的情况下进行手术切除,但往往仍会导致疾病复发。
因此,对于能够抑制犬患者复发的更好、更有效的疗法存在未满足的需求。由于犬和人类乳腺癌,特别是癌和腺癌,在遗传缺陷、病因、自然史和环境方面具有许多相似性,犬乳腺癌细胞系也被用作人类疾病的有效模型。对犬乳腺/乳腺癌的遗传学和免疫反应进行了研究,以更好地理解这一疾病复合体,并促进针对个体犬患者治疗的更有效疗法的开发。由于癌症是一种异质性疾病,确定并可能预测促进肿瘤形成的机制的潜力,将允许推进靶向治疗靶点/策略以直接对抗癌症。这些研究促进了免疫疗法的开发和评估,这些疗法旨在引发对癌症的免疫识别及其抑制,从而改善生存。混合树突细胞融合疫苗和其他自体癌症疫苗制剂已被证明在犬乳腺癌症患者手术切除后能有效抑制复发并延长生存。尽管当前疫苗在兽医临床中直接应用有些不太实际,但所报告的成功指明了开发更实用疫苗以促进犬乳腺癌治疗的方向。他们还提出了一种可能的机制,即通过去除局部细胞外囊泡介导的免疫抑制,将肿瘤从其微环境中移除可以促进抗原性。这篇综述为犬类遗传学在推动更成功的免疫疗法方面的潜力及其作为人类疾病模型的价值提供了新的视角。
Canine mammary tumors have been investigated to determine the causes of malignancy and to promote the development of more effective therapies. The current standard of care, surgical resection where possible, often still results in recurrence of disease.
Thus, there is an unmet need for better, more effective therapies that can suppress recurrence in canine patients. Because canine and human mammary cancers, particularly carcinomas and adenocarcinomas, share many similarities in genetic defects, etiology, natural history, and environment, canine mammary cancer cell lines have also been used as effective models of human disease. The genetics and immune response to canine mammary/breast cancers have been investigated to better understand this disease complex and to promote the development of more effective therapies designed to treat individual canine patients. As cancer is a heterogeneous disease, the potential to determine and possibly predict the mechanisms promoting neoplasia would allow the advancement of targeted therapeutic targets/strategies to combat cancer directly.
These investigations have led to the development and evaluation of immunotherapies designed to elicit immune recognition of cancer and its suppression, thus improving survival. Hybrid dendritic-cell fusion vaccines and other autologous cancer vaccine formulations have proven effective in suppressing recurrence and extending survival in canine mammary cancer patients following surgical resection.
Although current vaccines are somewhat impractical for direct application in veterinary clinics, reported success points the way toward the development of more practical vaccines designed to promote the treatment of canine mammary cancer.
They also suggest a possible mechanism whereby removing a tumor from its microenvironment can promote antigenicity by removing local extracellular vesicle-mediated immunosuppression. This review provides a novel perspective on the potential of canine genetics to inform and promote more successful immunotherapies and their value as models of human disease.
MEMBER ACCOUNT
登录成功会直接打开下一页。