Nagoya University · 의학
Kazuyuki Shimada 교수의 연구실은 주로 혈액계 종양, 특히 비만성 B세포 림프종인 혈관내 대림프구성 림프종(IVLBCL)과 원발성 출현 림프종(PEL)을 중심으로 한 종양 생물학 및 유전체학 연구를 수행하고 있습니다. 특히 혈액세포에서의 수용체 기능, 염증 및 대사 관련 단백질의 기능적 역할, 그리고 혈액세포에서의 유전자 변이 분석을 통해 암의 분자 기전을 규명하고자 합니다. 최근에는 혈장 유전자 서열 분석을 활용한 비침습적 유전체 분석 기법 개발에도 주력하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Our data suggest improved clinical outcomes for patients with IVLBCL in the rituximab era. Future prospective studies of rituximab-containing chemotherapies are warranted.
It has been postulated that lipoprotein lipase, an enzyme important in the uptake of fatty acids into tissues, is bound to the vascular endothelial cell surface and that this binding occurs through attachment to heparinlike glycosaminoglycans. Furthermore, it is thought that heparin releases the enzyme from its attachment to the endothelium into the circulation. These hypotheses have never been tested directly in cell systems in vitro. In the present study we have directly evaluated the interact
Intravascular large B-cell lymphoma (IVLBCL) is a rare disease entity with a high incidence of central nervous system (CNS) involvement at diagnosis. To evaluate CNS involvement, particularly recurrence including progression on therapy and relapse of IVLBCL, we retrospectively analyzed 109 patients with IVLBCL receiving chemotherapies with or without rituximab. In 82 patients (75%) without CNS involvement at initial diagnosis, risk of CNS recurrence at 3 years was 25% with a median follow-up in
Primary effusion lymphoma (PEL) is a rare B-cell malignancy that most often occurs in immunocompromised patients, such as HIV-infected individuals and patients receiving organ transplantation. The main characteristic of PEL is neoplastic effusions in body cavities without detectable tumor masses. The onset of the disease is associated with latent infection of human herpes virus 8/Kaposi sarcoma-associated herpes virus, and the normal counterpart of tumor cells is B cells with plasmablastic diffe
Intravascular large B-cell lymphoma (IVLBCL) is a unique type of extranodal lymphoma characterized by selective growth of tumor cells in small vessels without lymphadenopathy. Greater understanding of the molecular pathogenesis of IVLBCL is hampered by the paucity of lymphoma cells in biopsy specimens, creating a limitation in obtaining sufficient tumor materials. To uncover the genetic landscape of IVLBCL, we performed whole-exome sequencing (WES) of 21 patients with IVLBCL using plasma-derived
Angiotensin II binding sites were demonstrated in human mononuclear leucocytes by use of [125I]angiotensin II. The binding of [125I]angiotensin II to mononuclear leucocytes was rapid and reversible. The abilities of unlabeled compounds to displace [125I]angiotensin II were proportional to their abilities to displace labeled hormone in adrenal and smooth muscle membrane preparations. The Scatchard plot revealed two apparent orders of binding sites. The affinity constants were comparable with thos