Self-assembling nono-medicinal and bi-stabilized quantum linear array and its production

A nanomedicine and self-assembly technology, applied in nanomedicine, nanotechnology, nanotechnology, etc., to achieve the effect of regular geometric configuration and controllable and adjustable scale

Inactive Publication Date: 2007-01-17
ZHONGSHAN HOSPITAL FUDAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Previous studies have shown that iapamidine, isoproterenol, superoxide dismutase, and adenosine triphosphate are a group of drug molecular networks with nanoscale size, charge transport and target recognition capabilities, but so far have not been seen at the single-molecule level, nanomedicine Report on Bistable Quantum Wire Array and Its Preparation Method

Method used

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  • Self-assembling nono-medicinal and bi-stabilized quantum linear array and its production
  • Self-assembling nono-medicinal and bi-stabilized quantum linear array and its production
  • Self-assembling nono-medicinal and bi-stabilized quantum linear array and its production

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0049] Prepare the following medicinal solution according to the Pharmacopoeia specification issued by the Ministry of Health of the People's Republic of China:

[0050] 1. Preparation of Ibopridine Hydrochloride Solution 2.5 mg / 5 mL

[0051] 2. Prepare a solution containing 2 mg / 100 ml of isoproterenol hydrochloride

[0052] 3. Preparation of Physiological Salt Buffer Containing 1 mg / 2 mL Superoxide Dismutase

[0053] 4. Preparation of Physiological Salt Buffer Containing 20 mg / 3.3 mL ATP

[0054] 5. Take the optimal solute number of each component within the ratio range of 1:1:1:1, mix evenly at room temperature, add physiological saline buffer solution to 1 ml, store at -4°C for later use.

[0055] 6. Use 8-12 ohm.cm P-type silicon wafers as the substrate for self-assembled quantum wires, and self-assemble the above-mentioned pharmaceutical-grade nanomedicines on the silicon wafer substrate according to the L9(3)4 scheme, -4 ℃ for 96 hours.

[0056] The results show tha...

Embodiment 2

[0058] Prepare the following medicinal solution according to the Pharmacopoeia specification issued by the Ministry of Health of the People's Republic of China:

[0059] 1. Preparation of Ibopridine Hydrochloride Solution 2.5 mg / 5 mL

[0060] 2. Prepare a solution containing 2 mg / 100 ml of isoproterenol hydrochloride

[0061] 3. Preparation of Physiological Salt Buffer Containing 1 mg / 2 mL Superoxide Dismutase

[0062] 4. Preparation of Physiological Salt Buffer Containing 20 mg / 3.3 mL ATP

[0063] 5. Take the optimal solute number of each component within the ratio range of 1:2:2:2, mix evenly at room temperature, add physiological saline buffer solution to 1 ml, and store at -4°C for later use.

[0064] 6. Use 8-12 ohm.cm P-type silicon wafers as the substrate for self-assembled quantum wires, and self-assemble the above-mentioned pharmaceutical-grade nanomedicines on the silicon wafer substrate according to the L9(3)4 scheme, -4 ℃ for 96 hours.

[0065] As a result, a q...

Embodiment 3

[0067] Prepare the following medicinal solution according to the Pharmacopoeia specification issued by the Ministry of Health of the People's Republic of China:

[0068] 1. Preparation of Ibopridine Hydrochloride Solution 2.5 mg / 5 mL

[0069] 2. Prepare a solution containing 2 mg / 100 ml of isoproterenol hydrochloride

[0070] 3. Preparation of Physiological Salt Buffer Containing 1 mg / 2 mL Superoxide Dismutase

[0071] 4. Preparation of Physiological Salt Buffer Containing 20 mg / 3.3 mL ATP

[0072] 5. Take the optimal solute number of each component within the ratio range of 1:3:3:3, mix evenly at room temperature, add physiological saline buffer solution to 1 ml, and store at -4°C for later use.

[0073] 6. Use 8-12 ohm.cm P-type silicon wafers as the substrate for self-assembled quantum wires, and self-assemble the above-mentioned pharmaceutical-grade nanomedicines on the silicon wafer substrate according to the L9(3)4 scheme, -4 ℃ for 96 hours.

[0074] The results show...

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Abstract

This invention relates to the advanced material field of the quantum information, it relates to the self assembling bi-stable quantum line array and its production method of nanometer medicine concretely. The invention self assembles antioxidase oxygen free-radical antagonist by the interaction of the inelasticity electron tunnel penetration, the beta-acceptor excitant, the P2 acceptor excitant, the benzene alkane amine calcium antagonist / or purine nucleic acid monomer and their binary , three-element, four -element and five -element compound. The invention quantum line array have regular geometry configuration, the dimension is controllable and adjustable, the inelasticity electron tunnel penetration, the quantum bit electricity characteristic and the Kondo effect. The invention not only benefits the study of the innovation medicine of target disease form, but also benefits the study of quantum bio-information sensor new material and nanometer structure magnetism memory (MRAM).

Description

technical field [0001] The invention relates to the field of artificial polymer molecular molecular information materials, in particular to a nanomedicine self-assembled bistable quantum wire array and a preparation method thereof Background technique [0002] Quantum wire is the core of the development of quantum computing and ultrafast or ultrasensitive diagnostic technology and nanobiological sensing, and qubit is the current research hotspot of information materials. The development of biomolecules as information material construction components is a hot spot of modern and long-term research at home and abroad. Previous studies have shown that iapamidine, isoproterenol, superoxide dismutase, and adenosine triphosphate are a group of drug molecular networks with nanoscale size, charge transport and target recognition capabilities, but so far have not been seen at the single-molecule level, nanomedicine Report on the bistable quantum wire array and its preparation method....

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N27/00
CPCB82Y10/00A61B2562/0285H01L51/0093B82Y5/00A61B5/00H10K85/761
Inventor 方琰吴荣
Owner ZHONGSHAN HOSPITAL FUDAN UNIV
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