KR101808066B1 - 고형물의 유동화를 이용한 마이크로구조체 및 이의 제조방법 - Google Patents
고형물의 유동화를 이용한 마이크로구조체 및 이의 제조방법 Download PDFInfo
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- KR101808066B1 KR101808066B1 KR1020160088235A KR20160088235A KR101808066B1 KR 101808066 B1 KR101808066 B1 KR 101808066B1 KR 1020160088235 A KR1020160088235 A KR 1020160088235A KR 20160088235 A KR20160088235 A KR 20160088235A KR 101808066 B1 KR101808066 B1 KR 101808066B1
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Abstract
Description
도 2는 본 발명의 일 구현예에 따른 고형물의 유동화를 이용한 마이크로구조체의 제조방법을 도시한 그림이다.
도 3은 다양한 표면 형상을 가지는 기판 상에 고형물의 제조를 도시한 그림이다.
도 4는 다양한 방법에 의한 고형물의 제조를 도시한 그림이다.
도 5는 다양한 형상의 고형물을 도시한 그림이다.
도 6은 고형물 상에 다양한 방법에 의한 용매의 첨가 및 유동화를 도시한 그림이다.
도 7은 고형물 상에 별도 기판을 이용한 용매의 첨가 및 유동화를 도시한 그림이다.
도 8은 (a) 용매와 고형물의 친화도, (b) 용매의 양 및 (c) 유동화 시간에 따라 조절되는 유동화 정도를 보여주는 그림이다.
도 9는 고형물 상에 다양한 방법으로 약물이 탑재된 용매의 첨가 및 유동화를 도시한 그림이다.
도 10은 (a) 약물이 탑재된 용매와 고형물의 용해도 및 (b) 유동화 시간에 따라 조절되는 유동화 정도에 따라 고형물 내 약물의 탑재 분포를 보여주는 그림이다.
도 11은 재유동화 시간에 따라 조절되는 재유동화 정도 및 재고형물 내 약물의 탑재 분포를 보여주는 그림이다.
도 12는 약물이 탑재된 용매, 고형물 및 제2 용매 사이의 용해도 차이에 따라 조절되는 재유동화 정도 및 재고형물 내 약물의 탑재 분포를 보여주는 그림이다.
도 13은 (a) 유동화 정도에 따라 조절되는 마이크로구조체의 종횡비(aspect ratio) 및 (b) 재유동화 정도에 따라 조절되는 마이크로구조체 내 약물의 탑재 분포를 보여주는 그림이다.
도 14는 실시예 1에서 (a) 고형물 및 (b) 마이크로구조체를 각각 보여주는 광학 현미경 사진이다.
도 15는 실시예 2에서 용매의 양[(a) 10㎕, (b) 15㎕ 및 (c) 20㎕]에 따른 마이크로구조체를 각각 보여주는 광학 현미경 사진이다.
도 16은 (a) 실시예 3에서 마이크로구조체 및 (b) 실시예 4에서 마이크로구조체를 각각 보여주는 광학 현미경 사진이다.
Claims (18)
- (a) 기판 상에 고형분의 함량이 70% 이상인 고형물을 제조하는 단계;
(b) 상기 고형물 상에 용매를 첨가하여 유동화시키는 단계; 및
(c) 상기 유동화된 고형물을 성형하는 단계를 포함하고,
상기 기판의 수직 방향을 기준으로 할 때, 상기 고형물의 1/2 지점을 경계로 고형물 상부층 및 고형물 하부층으로 구분하는 경우,
상기 (b) 단계에서 고형물 상부층의 유동화 정도가 고형물 하부층의 유동화 정도에 비해 큰 것을 특징으로 하는
마이크로구조체의 제조방법.
- 삭제
- 제1항에 있어서,
상기 (a)에서 고형물은 별도 약물 또는 별도 첨가제가 미리 첨가된
마이크로구조체의 제조방법.
- 제1항에 있어서,
상기 (b) 단계에서 용매의 첨가는 접촉, 토출, 분사, 증착 및 담금으로 이루어진 군으로부터 선택된 하나 이상의 방법으로 수행되는
마이크로구조체의 제조방법.
- 제1항에 있어서,
상기 (b) 단계에서 고형물의 유동화 정도는 용매의 종류, 용매와 고형물의 친화도, 용매의 양 또는 유동화 조건에 따라 조절되는
마이크로구조체의 제조방법.
- 제1항에 있어서,
상기 (b) 단계에서 고형물 100 중량부 대비, 용매는 10 부피부 내지 200 부피부로 첨가되는
마이크로구조체의 제조방법.
- 삭제
- 제1항에 있어서,
상기 (b) 단계에서 용매에 약물을 추가로 탑재하는
마이크로구조체의 제조방법.
- 제8항에 있어서,
상기 (b) 단계 후, 상기 유동화된 고형물을 재고형화시킨 후, 상기 고형물 상에 제2 용매를 첨가하여 재유동화시키는 단계를 추가로 포함하는
마이크로구조체의 제조방법.
- 제1항에 있어서,
상기 (c) 단계에서 성형은 몰딩, 드로잉, 송풍, 흡입, 원심력 인가 및 자기장 인가로 이루어진 군으로부터 선택된 하나 이상의 방법으로 수행되는
마이크로구조체의 제조방법.
- 제1항에 있어서,
상기 (c) 단계에서 성형은 경화가 동시에 일어나도록 수행되는
마이크로구조체의 제조방법.
- 제1항에 있어서,
상기 (c) 단계에서 성형되는 마이크로구조체의 종횡비(aspect ratio)는 유동화 정도에 따라 조절되는
마이크로구조체의 제조방법.
- 제8항 또는 제9항에 있어서,
상기 (c) 단계에서 성형되는 마이크로 구조체 내 약물의 탑재 분포는 유동화 정도에 따라 조절되는
마이크로구조체의 제조방법.
- 제9항에 있어서,
상기 (c) 단계에서 성형되는 마이크로 구조체 내 약물의 탑재 분포는 재유동화 정도에 따라 조절되는
마이크로구조체의 제조방법.
- 제1항의 방법에 따라 제조된 마이크로구조체.
- 삭제
- 기판 상에 형성되고, 약물이 탑재된 마이크로구조체에 있어서,
상기 마이크로구조체 내 약물 탑재 분포는 점진적 농도 구배를 형성하는 것이고,
상기 기판의 수직 방향을 기준으로 할 때, 상기 마이크로구조체의 1/2 지점을 경계로 마이크로구조체 상부층 및 마이크로구조체 하부층으로 구분하는 경우,
마이크로구조체 상부층 내 약물 탑재 분포 정도가 마이크로구조체 하부층 내 약물 탑재 분포 정도에 비해 큰 것을 특징으로 하는
마이크로구조체.
- 기판 상에 형성되고, 약물이 탑재된 마이크로구조체에 있어서,
상기 마이크로구조체 내 약물 탑재 분포는 점진적 농도 구배를 형성하는 것이고,
상기 기판의 수직 방향을 기준으로 할 때, 상기 마이크로구조체의 1/3 및 2/3 지점을 경계로 마이크로구조체 상부층, 마이크로구조체 중간층, 마이크로구조체 하부층으로 구분하는 경우,
마이크로구조체 중간층 내 약물 탑재 분포 정도가 마이크로구조체 상부층 및 마이크로구조체 하부층 내 약물 탑재 분포 정도에 비해 큰 것을 특징으로 하는
마이크로구조체.
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WO2023286916A1 (ko) * | 2021-07-15 | 2023-01-19 | 주식회사 페로카 | 마이크로니들 패치 및 마이크로니들 패치 제조방법 |
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KR102740788B1 (ko) * | 2020-07-02 | 2024-12-09 | 연세대학교 산학협력단 | 멀티 레이어 마이크로니들 구조체 및 이의 제조 방법 |
KR102611702B1 (ko) | 2021-05-12 | 2023-12-11 | 주식회사 페로카 | 마이크로니들 패치의 제조 방법 |
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