JPH07506561A - ポリマー合成に対する組合わせの戦略 - Google Patents
ポリマー合成に対する組合わせの戦略Info
- Publication number
- JPH07506561A JPH07506561A JP5509567A JP50956793A JPH07506561A JP H07506561 A JPH07506561 A JP H07506561A JP 5509567 A JP5509567 A JP 5509567A JP 50956793 A JP50956793 A JP 50956793A JP H07506561 A JPH07506561 A JP H07506561A
- Authority
- JP
- Japan
- Prior art keywords
- substrate
- reaction
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- group
- channels
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
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Abstract
Description
Claims (47)
- 1.複数の選択された領域を有する表面からなる単一の基板上に、多様なモノマ ー配列を有するポリマーを形成する方法であって;下記ステップ;すなわち (a)前記表面に隣接して複数のチャネルを形成し、そのチャネルは少なくとも 部分的に、前記の選択された領域の部分によって形成された壁を有し; (b)選択されたモノマーを前記チャネルに入れ、前記の選択された領域の前記 部分においてポリマーを合成し、前記の選択された領域の前記部分は前記の選択 された領域中の少なくとも一つの他の領域内のポリマーと異なるモノマーの配列 を有するポリマーを含有し;次いで (c)前記の選択された領域の第二の部分にそって形成された前記チャネルにつ いてステップ(a)と(b)を繰返す;ステップからなる方法。
- 2.複数のチャネルを形成する前記ステップが、前記表面に隣接してチャネルブ ロックを配置するステップからなり、前記チャネルブロックが、複数の溝、前記 溝の壁および前記フローチャネルを少なくとも部分的に形成する前記表面を備え ている請求の範囲第1項記載の方法。
- 3.選択された試薬を前記チャネル中に入れるステップが、下記のステップ:す なわち 少なくとも第1チャネルの活性部位から保護基を除き;第一モノマーを、前記の 少なくとも第一チャネルを通じて、流入させ、前記第一モノマーが保護基を有し 、前記第一モノマーを前記第一チャネルの前記活性部位に結合させ;少なくとも 第二チャネルの前記活性化部位から保護基を除去し、前記第二チャネルの少なく とも部分が、前記第一チャネルが接触している前記基板の部分に重なり;次いで 第二モノマーを前記の少なくとも第二チャネルを通じて流入させ、前記第二モノ マーを前記第二チャネルの前記活性部位に結合させる;ステップからなる請求の 範囲第1項記載の方法。
- 4.前記ポリマーを、受容体との結合アフィニティーについてスクリーニングす るステップをさらに有する請求の範囲第1項記載の方法。
- 5.少なくとも10種の異なるポリマーを前記表面上に生成させる請求の範囲第 1項記載の方法。
- 6.少なくとも1,000種の異なるポリマーを前記表面上に生成させる請求の 範囲第1項記載の方法。
- 7.少なくとも10,000種の異なるポリマーを前記表面上に生成させる請求 の範囲第1項記載の方法。
- 8.前記ポリマーがオリゴヌクレオチドおよびペプチドからなる群から選択され る請求の範囲第1項記載の方法。
- 9.前記の選択された領域が各々約10,000ミクロン2未満の面積を有する 請求の範囲第1項記載の方法。
- 10.除去および流入のステップがさらに、チャネルブロックを、第一方向に、 前記表面と接触させて配置し、次いで第一モノマーを含有する物質を、前記チャ ネルブロックの少なくとも二つのチャネルを通じて入れ;前記チャネルブロック および前記基板のうちの一方を、残りの他方に対して回転し;次いで チャネルブロックを、第二方向に、前記表面と接触させて配置し、次いで第二モ ノマーを含有する物質を、前記チャネルブロックの少なくとも一つのチャネルを 通じて入れる;ステップを含んでいる請求の範囲第3項記載の方法。
- 11.選択された試薬を前記チャネルに入れる前記ステップが、前記チャネルと 流体で連通させてピペットを配置し;および前記選択された試薬を前記チャネル を通じて注入する;ことからなる請求の範囲第1項記載の方法。
- 12.ピペットを前記チャネルと流体で連通させて配置する前記ステップが、前 記ピペットを、前記基板の前記表面に対して反対側の面上のオリフィスと接触さ せて配置するステップである請求の範囲第11項記載の方法。
- 13.ピペットを前記チャネルと流体で連通させて配置する前記ステップが、複 数のピペットを、複数の前記チャネルと連通させて配置し、次いで異なる試薬を 少なくとも二つの前記チャネルを通じて流入させるステップである請求の範囲第 11項記載の方法。
- 14.前記表面のパルプのアレーを形成して流体が前記表面の所望の場所に導入 可能になり、次いで前記バルブを選択的に作動させ次に前記の選択された試薬を 形成されたチャネルを通じて流入させるステップが先行している請求の範囲第1 項記載の方法。
- 15.前記基板の部分に光を照射して、光排除性基が前記基板上の活性基から除 去されるステップが先行している請求の範囲第1項記載の方法。
- 16.前記の選択された光照射部分がストライプの形態であり、かつチャネルを 形成する前記ステップが前記チャネルを前記ストライプの経路にそって形成るこ とを含み、異なる試薬が前記チャネルの少なくとも一部の中に入れられる請求の 範囲第15項記載の方法。
- 17.単一の基板の表面上に複数のピペットの配列を形成する方法であって;下 記のステップすなわち a)前記基板を、第一方向に、複数のチャネルを有するチャネルブロックと接触 させて配列し; b)少なくとも第一アミノ酸を、少なくとも一つの前記チャネルを通じて流入さ せ、前記第一アミノ酸を前記表面の部分にカップリングさせ; c)少なくとも第二アミノ酸を、少なくとも一つの前記チャネルを通じて流入さ せ、前記第二アミノ酸を前記表面の部分にカップリングさせ; d)前記チャネルブロックを前記基板に対して回転させ、次いで前記基板を再び 前記チャネルブロックと接触させて配置し;e)第三アミノ酸を少なくとも一つ の前記チャネルを通じて流入させて前記表面上に少なくとも第一と第二のペプチ ド配列を形成し;次いで f)第四アミノ酸を少なくとも一つの前記チャネルを通じて流入させて前記表面 上に少なくとも第三と第四のペプチド配列を形成する; ステップからなる方法。
- 18.基板; 複数の溝を備えたチャネルブロック; 前記チャネルブロックを前記基板と係合させて保持する手段;前記チャネルブロ ックおよび前記基板のうちの一方を、残りの他方に対して平行移動させる手段; および選択された試薬を前記溝に注入する手段;からなる多様なポリマー配列を 形成するのに用いるキット。
- 19.前記基板が活性部位の保護基を有する請求の範囲第18項記載のキット。
- 20.さらに、前記保護基を除去するのに用いる脱保護物質を有する請求の範囲 第19項記載のキット。
- 21.前記溝が前記チャネルブロックの孔に接続され、前記孔が前記基板の背面 を通って延びている請求の範囲第18項記載のキット。
- 22.さらに、前記基板の選択された部分に光を照射して前記基板上の保護基を 除去する手段を有し、前記保護基は光に暴露されると前記基板上の活性部位から 除去される請求の範囲第18項記載のキット。
- 23.光を照射する前記手段が光源と光マスクを有し、前記光マスクが前記光を 透過しない領域および前記光を透過する領域を有する請求の範囲第22項記載の キット。
- 24.前記注入手段がピペッタからなる請求の範囲第18項記載のキット。
- 25.前記ピペッタが複数のピペットからなり、各ピペットが前記溝の異なる一 つに取付けられている請求の範囲第24項記載のキット。
- 26.単一の基板上で複数の反応を行う装置であって;単一の基板上に存在し、 各々別個の反応を行うことができる少なくとも約100個の反応領域; 一つ以上の反応物を一つ以上の反応領域に送り込む手段;および少なくともいく つかの反応物が少なくともいくつかの反応領域と接触するのを防止する手段; を有する装置。
- 27.基板が複数の流路を有し、反応が前記流路内に保持されている請求の範囲 第26項記載の装置。
- 28.一つ以上の反応物を送り込む手段が基板に隣接しているチャネルブロック のフローチャネルであり、および少なくともいくつかの反応物を閉じこめている 手段がフローチャネルの壁である請求の範囲第26項記載の装置。
- 29.少なくともいくつかの反応物を閉じこめている手段が基板の表面上の疎水 性層である請求の範囲第26項記載の装置。
- 30.内部に異なる化合物を有する約100個より多い反応領域;および 反応領域を囲みかつ疎水性が反応領域より高い閉じこめ領域;を有する基板。
- 31.閉じこめ領域が疎水性保護基を有する請求の範囲第30項記載の基板。
- 32.保護基が光分解性である請求の範囲第31項記載の基板。
- 33.反応領域がチャネルを形成する請求の範囲第30項記載の基板。
- 34.基板が約1000個より多い反応領域を有する請求の範囲第30項記載の 基板。
- 35.閉じこめ領域に囲まれ、この領域より一つ以上のモノマー溶液によって漏 れ易い複数の反応領域を有する基板上に、多様なモノマー配列を有する複数のポ リマーを形成する方法であって;一つ以上のモノマー溶液を順に第一反応領域に 入れて第一モノマー配列を有する第一ポリマーを形成し、そのモノマー溶液は閉 じこめ領域によって第一反応領域に閉じこめられ;次いで一つ以上のモノマー溶 液を順に第二反応領域に入れて第二モノマー配列を有する第二ポリマーを形成し 、そのモノマー溶液は閉じこめ領域によって第一反応領域に閉じこめられている ;ことからなる方法。
- 36.モノマー溶液を第一反応領域に入れるステップが、ピペットを基板に対し て移動し次いで少なくとも一つのモノマー溶液を第一反応領域に堆積させること からなる請求の範囲第35項記載の方法。
- 37.さらに、選択されたモノマーを第一ポリマーと第二ポリマーにカップリン グさせた後、モノマー溶液を、第一反応領域と第二反応領域から定期的に除去す るステップを有する請求の範囲第35項記載の方法。
- 38.第一モノマーを第一反応領域にカップリングさせ次いで第二モノマーを第 二反応領域にカップリングさせ、その後追加のモノマーを、第一反応領域および 第二反応領域に入れてカップリングさせる請求の範囲第35項記載の方法。
- 39.モノマー溶液を、電気泳動ポンプ、ピペットおよび荷電波滴ディスペンサ ーからなる群から選択されるディスペンサーによって第一反応領域と第二反応領 域に入れる請求の範囲第35項記載の方法。
- 40.単一基板上の、複数の反応領域を有する化合物の非相同アレーを変換する 方法であって;下記のステップすなわち第一群の反応領域と第二群の反応領域を 活性化し;第一反応物を第一群の反応領域に送りこむが第二群の反応領域には送 りこまず; 第一反応物を第一群の反応領域で反応させて第一非相同アレーを第二非相同アレ ーに変換し、その非相同アレーが約100個を越える別個の反応領域を有する; ステップからなる方法。
- 41.さらに、第一群の反応領域を第二群の反応領域から隔離するステップを有 する請求の範囲第40項記載の方法。
- 42.第一群の反応領域を、チャネルブロックを基板に当接させて配置すること によって隔離する請求の範囲第41項記載の方法。
- 43.第一群の反応領域を、基板上の壁によって第二群の反応領域から隔離する 請求の範囲第40項記載の方法。
- 44.基板が、壁によって互いに隔離された反応領域を通過する一連の流れを有 する請求の範囲第43項記載の方法。
- 45.第一群の反応領域を、基板上の一つ以上の非湿潤領域によって第二群の反 応領域から隔離する請求の範囲第40項記載の方法。
- 46.非相同アレーが約1000個を越える別個の反応領域を有する請求の範囲 第40項記載の方法。
- 47.さらに、下記のステップ:すなわち第二反応物を第二群の反応領域に送り こむが第一群の反応領域には送りこまず; 第二反応物を第二群の反応領域で反応させ;第三群の反応領域を活性化させ、そ の第三群は第一群の反応領域と共通のいくつかの反応領域を有し; 反応物を第三群の反応領域に送りこむが第二群の反応領域には送りこまず;そし て 反応を第三群の反応領域で起こさせる;ステップを有する、請求の範囲第40項 記載の方法。
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US07/796,243 US5384261A (en) | 1991-11-22 | 1991-11-22 | Very large scale immobilized polymer synthesis using mechanically directed flow paths |
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US07/874,849 US5412087A (en) | 1992-04-24 | 1992-04-24 | Spatially-addressable immobilization of oligonucleotides and other biological polymers on surfaces |
US874.849 | 1992-04-24 | ||
PCT/US1992/010183 WO1993009668A1 (en) | 1991-11-22 | 1992-11-20 | Combinatorial strategies for polymer synthesis |
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