Full-automatic solid-phase organic synthesis modular equipment

An organic synthesis and modular technology, applied in chemical instruments and methods, chemical/physical processes, chemical/physical/physical chemical processes, etc., can solve problems such as no functional settings, limited applications, and inability to carry out chemical reactions, etc., to achieve easy Easy to operate and switch effects

Active Publication Date: 2022-03-04
SHANGHAI SHEN LIAN BIOMEDICAL CORP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] Therefore, the solid-phase synthesis devices currently on the market are difficult to meet the new requirements of different types of solid-phase organic synthesis, and mainly have the following defects: 1. The solid-phase synthesis devices currently on the market are mainly for synthesizing polypeptide products, and their reactions are mainly Forming amide bonds, there is no corresponding functional setting for other chemical bonds such as ester bonds, hydroxyl groups, disulfide bonds, phosphite bonds, 5' hydroxyl coupling of oligonucleotides, which limits its use in other solid-phase organic synthesis 2. Currently, the solid-phase synthesis devices sold in the market are either small-scale or pilot-scale, and there is no one that can meet the requirements of small-scale scale and can be applied to pilot-scale production equipment; 3 , The solid-phase synthesis devices currently on the market have almost no corresponding temperature control for the reaction temperature, pre-dissolved reaction liquid temperature, and washing liquid temperature, resulting in limited application in solid-phase peptide and organic synthesis. For chemical reactions with harsh conditions unable to carry out

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  • Full-automatic solid-phase organic synthesis modular equipment
  • Full-automatic solid-phase organic synthesis modular equipment
  • Full-automatic solid-phase organic synthesis modular equipment

Examples

Experimental program
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Effect test

Embodiment 1

[0059] Such as Figure 1-5 As shown, the present embodiment provides a kind of fully automatic solid-phase organic synthesis modularized equipment, and the equipment consists of an external frame, a reactor module located in the external frame, a reaction reagent preparation module 3, a first solvent module 601, and a second solvent module 602. Valve module 7, electronic device module 8, equipment control and data recording module 1, gas and temperature regulation module 9, waste liquid collection module 5, and connecting pipelines. The device also includes an exhaust port 10 arranged on the outer frame and the top of the device, and the exhaust port 10 is used for exhausting exhaust gas generated in the device.

[0060] The equipment control and data recording module 1 is connected to the electronic device module 8, and the electronic device module 8 is connected to the reaction reagent preparation module 3, the first solvent module 601, the second solvent module 602, the gas...

Embodiment 2

[0068] This embodiment relates to a solid-phase organic synthesis modular equipment; the equipment is a system capable of synthesizing 20-50 g (5 mmol-20 mmol) solid-phase carriers on a pilot scale.

[0069] 1. External framework:

[0070] The external frame is used to support the reactor module, the reagent preparation module and the solvent module, etc.

[0071] Such as figure 1 As shown, the equipment system adopts a vertical structure, the upper layer of the shelf is a touch screen 2, a gas and temperature adjustment module 9, the top is an exhaust port 10, and the middle layer is placed with the first reactor module 401, the second reactor module 402, and the reaction reagents The preparation module 3; the waste liquid collection module 5, the first solvent module 601 and the second solvent module 602 are placed in the lower layer, and the equipment control and data recording module 1 is in the rear position of the lower layer. The frame structure can be made of other h...

Embodiment 3

[0091] This embodiment relates to a solid-phase organic synthesis modular equipment; the equipment is able to synthesize 1g-5g (0.25mmol-2.0mmol) solid-phase carrier in laboratory scale.

[0092] 1. External framework:

[0093] The external frame is used to support the reactor module, the reagent preparation module and the solvent module, etc.

[0094] Such as figure 1As shown, the equipment system adopts a vertical structure, the upper layer of the shelf is a touch screen 2, a gas and temperature adjustment module 9, the top is an exhaust port 10, and the middle layer is placed with the first reactor module 401, the second reactor module 402, and the reaction reagents The preparation module 3; the waste liquid collection module 5, the first solvent module 601 and the second solvent module 602 are placed in the lower layer, and the equipment control and data recording module 1 is in the rear position of the lower layer. The frame structure can be made of other hard materials...

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Abstract

The invention discloses full-automatic solid-phase organic synthesis modular equipment which is composed of an external frame, the reactor module, the reaction reagent preparation module, the first solvent module, the second solvent module, the valve module, the electronic device module, the equipment control and data recording module, the gas and temperature adjusting module, the waste liquid collecting module and the connecting pipeline are arranged in the outer frame. The solid-phase organic synthesis device has the characteristics of simplicity and stability in operation, wide application range, easiness in module disassembly and replacement, high automation degree and capability of completing various solid-phase organic synthesis reactions.

Description

technical field [0001] The invention relates to the field of solid-phase organic synthesis equipment, in particular to a fully automatic solid-phase organic synthesis modular equipment. Background technique [0002] In 1963, the famous American biochemist Bruce Merrifield first proposed the solid-phase peptide synthesis method (SPPS). In 1966, he invented the first automatic solid-phase peptide synthesizer based on his own concept, which was used in the mass production of peptides. It uses nitrogen bubbles to stir the reactants, and consists of a reactor unit and a control unit. Computer program control to achieve limited automatic synthesis, becoming the first generation of peptide synthesizer. Although it has obvious defects in the stirring method and other functions, it liberates people from the laboratory after all and promotes the automation of peptide synthesis. This synthetic method, which is a milestone in peptide chemistry, has become the preferred method for pept...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J19/18B01J19/00B01J4/00
CPCB01J19/1862B01J19/0006B01J4/001B01J4/008B01J2204/002B01J2219/0002
Inventor 姬明放张震李永纲张艳何文君
Owner SHANGHAI SHEN LIAN BIOMEDICAL CORP
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