alloantibody production
同种异体抗体产生
alloantibody screening test
同种异体抗体筛查试验
alloantibodies in transplantation
移植中的同种异体抗体
alloantibody-mediated rejection
同种异体抗体介导的排斥反应
allele-specific alloantibodies
等位基因特异性同种异体抗体
monitoring alloantibodies
监测同种异体抗体
alloantibody titer determination
同种异体抗体滴度测定
neutralizing alloantibodies
中和同种异体抗体
alloantibody response suppression
抑制同种异体抗体反应
the researchers are studying the effects of alloantibodies on organ transplant rejection.
研究人员正在研究同种异体抗体的器官移植排斥效应。
alloantibodies can be detected in blood tests before a transplant.
在移植前可以通过血液检测到同种异体抗体。
the alloantibody response is a complex immunological process.
同种异体抗体反应是一个复杂的免疫过程。
suppressing the alloantibody response is crucial for successful transplantation.
抑制同种异体抗体反应对于成功移植至关重要。
alloantibodies can be produced by both t cells and b cells.
同种异体抗体可以由T细胞和B细胞产生。
the development of alloantibodies is often triggered by exposure to foreign antigens.
同种异体抗体的产生通常是由暴露于外源抗原触发的。
understanding the mechanisms behind alloantibody formation is essential for improving transplant outcomes.
了解同种异体抗体形成背后的机制对于改善移植结果至关重要。
alloantibodies can cause a variety of complications after transplantation.
同种异体抗体可在移植后引起各种并发症。
new therapies are being developed to specifically target alloantibodies and prevent transplant rejection.
正在开发新的疗法,专门针对同种异体抗体并预防移植排斥。
alloantibody screening is a crucial part of the pre-transplant evaluation process.
同种异体抗体筛查是移植前评估过程中的关键部分。
alloantibody production
同种异体抗体产生
alloantibody screening test
同种异体抗体筛查试验
alloantibodies in transplantation
移植中的同种异体抗体
alloantibody-mediated rejection
同种异体抗体介导的排斥反应
allele-specific alloantibodies
等位基因特异性同种异体抗体
monitoring alloantibodies
监测同种异体抗体
alloantibody titer determination
同种异体抗体滴度测定
neutralizing alloantibodies
中和同种异体抗体
alloantibody response suppression
抑制同种异体抗体反应
the researchers are studying the effects of alloantibodies on organ transplant rejection.
研究人员正在研究同种异体抗体的器官移植排斥效应。
alloantibodies can be detected in blood tests before a transplant.
在移植前可以通过血液检测到同种异体抗体。
the alloantibody response is a complex immunological process.
同种异体抗体反应是一个复杂的免疫过程。
suppressing the alloantibody response is crucial for successful transplantation.
抑制同种异体抗体反应对于成功移植至关重要。
alloantibodies can be produced by both t cells and b cells.
同种异体抗体可以由T细胞和B细胞产生。
the development of alloantibodies is often triggered by exposure to foreign antigens.
同种异体抗体的产生通常是由暴露于外源抗原触发的。
understanding the mechanisms behind alloantibody formation is essential for improving transplant outcomes.
了解同种异体抗体形成背后的机制对于改善移植结果至关重要。
alloantibodies can cause a variety of complications after transplantation.
同种异体抗体可在移植后引起各种并发症。
new therapies are being developed to specifically target alloantibodies and prevent transplant rejection.
正在开发新的疗法,专门针对同种异体抗体并预防移植排斥。
alloantibody screening is a crucial part of the pre-transplant evaluation process.
同种异体抗体筛查是移植前评估过程中的关键部分。
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