KR20200112897A - mTOR 억제제, 약물 조성물 및 이의 응용 - Google Patents
mTOR 억제제, 약물 조성물 및 이의 응용 Download PDFInfo
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Abstract
Description
도 1은 웨스턴 블랏에 의해 측정한 p-PI3k/PI3K, p-AKT/AKT, p-mTOR/mTOR, p-S6K1/S6K1, p-4EBP1/4EBP1, β-actin 등 PI3K/Akt/mTOR 신호 통로 관련 단백질 및 인산화된 단백질 수준을 측정한 결과이다. 여기서, A1-A2는 p-PI3k/PI3K의 결과, B1-B2는 p-AKT/AKT의 결과, C1-C2은 p-mTOR/mTOR의 결과, D1-D2는 p-S6K1/S6K1의 결과, E1-E2는 p-4EBP1/4EBP1의 결과이다.
도 2는 웨스턴 블랏에 의해 측정한 p-PI3k/PI3K, p-AKT/AKT, p-mTOR/mTOR, p-S6K1/S6K1, p-4EBP1/4EBP1, β-actin 등 PI3K/Akt/mTOR 신호 통로 관련 단백질 발현 수준이다.
도 3은 캐리마이신으로 24시간, 48시간 처리한 후의 A549 세포 성장에 대한 억제 결과이며;
도 4는 웨스턴 블랏에 의해 캐리마이신으로 24시간, 48시간 처리한 후의 A549 세포의 PI3K/AKT/mTOR 신호 통로 관련 단백질에 대한 발현 수준을 측정한 결과이며;
도 5는 웨스턴 블랏으로 A549 세포의 PI3K/AKT/mTOR 신호 통로 관련 단백질에 대한 캐리마이신의 발현 수준을 측정한 결과이며; A-E는 각각 p-PI3k/PI3K, p-mTOR/mTOR, p-4EBP1/4EBP1, p-AKT/AKT, p-S6K1/S6K1의 결과이다.
도 6은 캐리마이신에 의해 유도된 A549 세포의 자가포식 결과이며, 유도 후 MDC 염색의 양성률이 증가하며; 도 6a는 24시간 이후의 결과이고, 도 6b는 48시간 이후의 결과이다.
도 7은 캐리마이신으로 A549 세포를 24시간, 48시간 동안 처리한 후, P62 및 Lc3의 발현 수준을 웨스턴 블랏에 의해 측정한 결과이며;
도 8은 자가포식 억제제 3-MA를 첨가한 후 측정한 A549 세포 성장에 대한 캐리마이신의 억제 결과이며;
도 9는 위상차 현미경으로 24시간 및 48시간 동안 처리한 후의 세포 형태 변화를 관찰한 결과이며;
도 10은 캐리마이신으로 A549세포를 24시간 및 48시간동안 처리한 후, AV-PI 염색 이후의 유세포 측정 결과이며;
도 11은 캐리마이신으로 A549 세포를 24시간, 48시간동안 처리한 후, 웨스턴 블랏으로 pro-caspse3, cpase3, PARP 단백질 수준을 측정한 결과이며;
도 12는 A549 세포 내의 caspe3의 효소활성을 측정한 결과이며;
도 13은 상이한 농도의 캐리마이신으로 A549세포를 24시간 및 48시간동안 처리한 후, IF-1αVEGF-A 단백질 수준을 정량 분석한 결과이며;
도 14는 상이한 농도의 캐리마이신으로 A549세포를 24시간 및 48시간 동안 처리한 후, Ras, Raf, p-ERK/ERK 단백질 수준을 정량 분석한 결과이다.
설명해야할 것은, 상기 도면 및 텍스트 설명은 어떠한 방식으로든 본 발명의 범위를 제한하려는 것이 아니며, 특정 실시예를 참조하여 당업자에게 본 발명의 개념을 설명하기 위한 것이다.
Claims (10)
- mTOR 억제제에 있어서, 상기 mTOR 억제제에는 캐리마이신, 이소발레릴 스피라마이신I, 이소발레릴 스피라마이신II, 이소발레릴 스피라마이신III 중의 1종, 또는 이소발레릴 스피라마이신I, 이소발레릴 스피라마이신II, 이소발레릴 스피라마이신III 중의 2종 또는 3종의 조성이 포함되는 것을 특징으로 하는 mTOR 억제제.
- 제1항에 있어서,
상기 mTOR 억제제는 PI3K/Akt/mTOR 신호 통로 중 단백질의 다른 자리 입체성 억제제 또는 촉매 억제제이며;
바람직하게는, 상기 촉매 억제제는 키나아제 억제제이며;
바람직하게는, 상기 mTOR 억제제는 mTORC1 및 mTORC2의 활성화를 억제하며;
바람직하게는, 상기 mTOR 억제제는 적어도 PI3K/Akt/mTOR 신호 통로 중의 PI3K 단백질, AKT 단백질, mTOR 단백질, S6K1 단백질, 4EBP1 단백질 중의 1종 이상의 활성화를 억제하는 것을 특징으로 하는 mTOR 억제제.
- 제1항 또는 제2항에 있어서,
상기 mTOR 억제제는 mTOR 신호 통로 경로를 통해 작용하는 항암 약물, 및/또는 당뇨병 치료 약물, 및/또는 알츠하이머 치료 약물, 및/또는 노화 완화 약물인 것을 특징으로 하는 mTOR 억제제.
- 제3항에 있어서,
상기 mTOR 억제제는 mTOR 신호 통로 경로를 통해 작용하는 항암 약물이며, 적어도 PI3K/Akt/mTOR 신호 통로 중의 PI3K 단백질, AKT 단백질, mTOR 단백질, S6K1 단백질, 4EBP1 단백질 중의 1종 이상의 활성화를 억제하는 것을 특징으로 하는 mTOR 억제제.
- 제3항에 있어서,
상기 mTOR 억제제는 mTOR 신호 통로 경로를 통해 작용하는 당뇨병 치료 약물이며, 적어도 PI3K/Akt/mTOR 신호 경로 중의 PI3K 단백질, AKT 단백질, mTOR 단백질, S6K1 단백질, 4EBP1 단백질 중의 1종 이상의 활성화를 억제하는 것을 특징으로 하는 mTOR 억제제.
- 제3항에 있어서,
상기 mTOR 억제제는 mTOR 신호 통로 경로를 통해 작용하는 알츠하이머 치료 약물이며, 적어도 PI3K/Akt/mTOR 신호 통로 중의 PI3K 단백질, AKT 단백질, mTOR 단백질, S6K1 단백질, 4EBP1 단백질 중의 1종 이상의 활성화를 억제하는 것을 특징으로 하는 mTOR 억제제.
- 제3항에 있어서,
상기 mTOR 억제제는 mTOR 신호 통로 경로를 통해 작용하는 노화 완화 약물이며, 적어도 PI3K/Akt/mTOR 신호 통로 경로 중의 PI3K 단백질, AKT 단백질, mTOR 단백질, S6K1 단백질, 4EBP1 단백질 중의 1종 이상의 활성화를 억제하는 것을 특징으로 하는 mTOR 억제제.
- 약물 조성물에 있어서, 제1항 또는 제2항에 따르는 상기 mTOR 억제제 및 약학적으로 허용 가능한 담체 및/또는 활성 성분;을 포함하며,
바람직하게는, mTOR 억제제의 용량 범위는 1~10000mg/kg; 바람직하게는 10~5000mg/kg; 바람직하게는 50~1000mg/kg; 더 바람직하게는 100~500mg/kg이며;
바람직하게는, 상기 약물 조성물에는 제1 활성 성분 및 제2 활성 성분이 포함되며, 상기 제1 활성 성분에는 제1항 또는 제2항에 따르는 상기 mTOR 억제제가 포함되며, 상기 제2 활성 성분에는 mTOR 통로 관련 질병을 치료 및/또는 예방하는 약물이 포함되며;
바람직하게는, 상기 약물 조성물에는 약학적으로 허용 가능한 임의의 제형이 포함되며, 바람직하게는, 제형에는 산제, 정제, 과립제, 캡슐, 용액제, 유제, 현탁제가 포함되는 것을 특징으로 하는 약물 조성물.
- 조합 제품에 있어서, 상기 조합 제품에는 제1 약제가 포함되며, 상기 제1 약제에는 제1항 또는 제2항에 따르는 상기 mTOR 억제제 또는 제8항에 따르는 상기 약물 조성물;이 포함되며,
바람직하게는, 상기 조합 제품에는 제2 약제가 더 포함되며;
바람직하게는, 상기 제2 약제에는 mTOR 통로 관련 질병을 치료 및/또는 예방하는 약물이 포함되는 것을 특징으로 하는 조합 제품.
- 제1항 또는 제2항에 따르는 상기 mTOR 억제제 또는 제8항에 따르는 상기 약물 조성물 또는 제9항에 따르는 상기 조합 제품을 mTOR 통로 관련 질병을 치료 및/또는 예방하는 약물에 응용함에 있어서,
바람직하게는, 상기 캐리마이신, 이소발레릴 스피라마이신I, 이소발레릴 스피라마이신II, 이소발레릴 스피라마이신III 중의 1종, 또는 이소발레릴 스피라마이신I, 이소발레릴 스피라마이신II, 이소발레릴 스피라마이신III 중의 2종 또는 3종의 조성은 mTOR를 표적화하는 방법에 의해 대사 미세환경을 제어하여, mTOR 통로 관련 질병을 억제하며;
바람직하게는, mTOR 통로 관련 질병은, 연령 관련 질환, 이식 거부 관련 질환, 만성 염증성 질환, 글리코겐 저장 관련 질환, 헌팅턴병, 악성 종양, 전이암, 전신성 홍반성 루푸스, 염증 및 면역 활성화 관련 질환, 백혈구 감소증 관련 질환, 빈혈, 혈소판 감소증, 스텐트 코팅 관련 질환, 신장 기능 부전, 비만, 당뇨병, 비알코올성 지방간 관련 질환, 질병으로 인한 감소, 다낭성 신장 질환, 파킨슨병 및 섬유증 중 적어도 하나이며;
바람직하게는, 연령 관련 질환은 근육감소증, 피부 위축, 근육 위축, 뇌 위축, 죽상 동맥 경화, 동맥 경화, 폐기종, 골다공증, 골관절염, 고혈압, 발기 부전, 치매, 알츠하이머병, 백내장, 연령 관련 황반 변성, 전립선 암, 뇌졸중, 수명 감소, 신장 기능 장애 및 연령 관련 난청, 노화 관련 이동성 장애, 인지 기능 저하, 기억 장애, 힘줄 강성화, 심근 비대 및 수축 이완기 기능 장애 등 심장 기능 장애, 면역 기능 노화에서 선택되며;
바람직하게는, 상기 섬유증에는 간 섬유증, 심근 섬유증, 심혈관 섬유증, 폐 섬유증, 췌장 섬유증, 신장 섬유증 또는 비장 섬유증이 포함되며;
바람직하게는, 상기 악성 종양은 프계의 조혈성 종양, 골수계 조혈성 종양, 중간엽 세포원 종양, 중추 및 말초 신경계의 종양, 흑색종, 정상피종, 기형종, 골육종, 색소성 건피증, 각질가시세포종, 갑상선 여포암 및 카포시 육종에서 선택되며;
바람직하게는, 림프계의 조혈 종양은 백혈병, 급성 림프성 백혈병, 급성 림프 모구 백혈병, B-세포 림프종, T-세포 림프종, 호지킨 림프종, 비호지킨 림프종, 모세포 림프종, 외투 세포 림프종, 골수종 및 버킷 림프종;에서 선택되며, 골수계 조혈성 종양에는 급성 및 만성 골수성 백혈병, 골수이형성 증후군 및 전골수세포 백혈병;이 포함되며, 중간엽 세포원 종양에는 섬유 육종 및 횡문근 육종;이 포함되며, 중추 및 말초 신경계의 종양에는 성상세포종, 신경모세포종, 신경교종 및 신경초종;이 포함되며,
바람직하게는, 악성 종양에는 방광암, 유방암, 결장암, 중피종, 신장암, 간암, 폐암, 두 경부암, 식도암, 담낭암, 난소암, 췌장암, 위암, 림프종, 자궁경부암, 대장암, 갑상선암, 전립선암, 피부암, 구강암;이 더 포함되며,
바람직하게는, mTOR 억제제의 악성 종양 세포에는, 인체 유방암 세포 MCF-7 및 MDA-MB-231, 인체 간암 세포 HepG2, 인체 비소세포 폐암 세포 A549, 인체 대세포 폐암 세포 H460 및 H1299, 인체 신장 투명세포 선암 세포 786-O, 인체 신장 선암 세포 769-P, 인체 신경교종 세포 U251, 인체 교모세포종 세포 A172, 인체 조직 림프종 세포 U937, 인체 자궁경부암 세포 HeLa, 인체 전립선암 세포 PC3, 인체 췌장암 세포 PANC-1, 인체 식도암 세포 TE-1, 인체 위선암 세포 SGC-7901, 인체 결장암 세포 HT-29, 인체 전골수성 백혈병 세포 HL-60;이 포함되며,
바람직하게는, mTOR 억제제는 인체 비소세포 폐암 세포 A549를 억제하는 응용.
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EP3741374A4 (en) * | 2018-01-19 | 2021-04-07 | Shenyang Fuyang Pharmaceutical Technology Co., Ltd. | MTOR-INHIBITOR, PHARMACEUTICAL COMPOSITION AND ITS USES |
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CN111264469B (zh) * | 2020-02-27 | 2022-03-25 | 西安交通大学医学院第一附属医院 | 一种基因免疫诱导的甲状腺相关性眼病动物模型的构建方法及雷帕霉素类药物的应用 |
US11351185B2 (en) | 2020-03-11 | 2022-06-07 | Asclea Corporation | Use of isovalerylspiramycins as anti-cancer agents to inhibit metastasis |
CN113577086B (zh) * | 2020-04-30 | 2023-05-02 | 沈阳福洋医药科技有限公司 | 异戊酰螺旋霉素类化合物或其组合物在制备治疗免疫失调的药物中的应用 |
CN113577087A (zh) * | 2020-04-30 | 2021-11-02 | 沈阳福洋医药科技有限公司 | 异戊酰螺旋霉素类化合物或其组合物在制备治疗脓毒症疾病药物中的应用 |
CN112294967A (zh) * | 2020-09-30 | 2021-02-02 | 四川大学 | 一种mTOR抑制剂与抗癌药物的用途 |
CN113018441B (zh) * | 2021-02-26 | 2023-12-19 | 中国科学院深圳先进技术研究院 | 一种基于宏量营养素成分改变和mTOR信号抑制剂的饥饿干预方法和应用 |
CN113750097A (zh) * | 2021-10-11 | 2021-12-07 | 上海市第十人民医院 | Hayatine及其类似物在制备mTORC1抑制剂中的应用 |
CN114246949B (zh) * | 2021-12-14 | 2023-02-17 | 上海交通大学医学院附属第九人民医院 | Ulk1激活剂在预防和/治疗听力损伤中的应用 |
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