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최신 출판물 – 합성 생물학 관련 특허

Synthetic Biology

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Synthetic biology
합성 생물학은 공학을 활용하고 분자생물학 다양한 응용 분야를 위해 생물학적 시스템을 혁신하고 변형하는 것.

합성생물학은 공학과 분자생물학의 원리를 통합하여 새로운 기능을 가진 생물 시스템을 설계, 구축 및 변형하는 학문입니다. 표준화된 유전 부품의 조립, 합성 유전자 회로의 구축, 세포 대사의 재프로그래밍을 통해 맞춤형 유기체 또는 생물학적 구성 요소를 만들어냅니다. 유전자 편집, DNA 합성, 경로 최적화 등의 기술을 활용하여 치료제, 바이오 연료, 바이오 센싱, 바이오 제조 분야에 응용합니다. 이 분야는 직교 시스템, 최소 세포, 합성 조절 네트워크의 생성을 통해 생물학적 복잡성에 대한 이해를 증진시킵니다. 다음은 합성생물학 분야의 도구, 방법론 및 응용 분야의 혁신을 상세히 설명하는 최근 논문 및 특허 모음입니다.

본 자료는 유전자 회로, 대사 공학, DNA 합성, 게놈 편집, CRISPR CAS9, 합성 게놈, 바이오브릭, 유전 부품, 단백질 공학, 세포 섀시, 바이오센서, 경로 최적화, 유전자 발현 제어, 합성 프로모터, RNA 장치, 최소 세포, 직교 시스템, 유전자 토글 스위치, 합성 오페론, 대사 경로, 방향성 진화, 합성 조절 네트워크, DNA 조립, 무세포 시스템, 합성 전사, 유전 코드 확장, 합성 생물학, 대사 흐름 분석, 합성 유전자 및 생물 격리 전략 등 합성 생물학 분야의 전 세계 영문 논문 및 특허를 엄선하여 정리한 최신 자료입니다.

Biosensor and module for detecting target substance in body fluid

Patent published on the 2026-05-28 in WO under Ref WO2026111559 by LMK CO LTD [KR] (Kim Sung Il [kr], Myung Hyun Sik [kr], Lee Jong Geun [kr], Lee Kyo Wung [kr])

Abstract: The present invention relates to a biosensor and a biomodule, for detecting a target substance in a body fluid, which are capable of collecting a body fluid such as saliva, urine, or blood from an examinee to detect a target substance (for example, a hormone) in the body fluid, and performing diagnosis based on a level thereof. The biosensor for detecting a target substance in a body fluid, according to the present invention, is for detecting a target substance in a body fluid of an examinee, an[...]


Our summary: The invention describes a biosensor and biomodule for detecting target substances in body fluids like saliva, urine, or blood. It features a substrate with an electrode and a hydrogen-free carbon thin film that includes an immobilized material matching the target substance. The detection process is based on analyzing XPS peak intensities related to carbon bonds in the thin film.

Biosensor, Body fluid, Carbon thin film, Target substance

Patent

Probe design and electrochemical biomarker detection utilizing reusable polypeptide nucleic acid (pna) based sensors

Patent published on the 2026-05-21 in WO under Ref WO2026107321 by UNIV UTAH RES FOUND [US] (Kim Younghwan [us], Mohanty Swomitra Kumar [us])

Abstract: A biosensor apparatus includes an electrode comprising a surface including at least one of (i) a metal; and (ii) a layer of nanotubes. A plurality of peptide nucleic acid (PNA) probes are complexed to the surface of the electrode. The plurality of PNA probes are structured to bind to one or more biomarkers.[...]


Our summary: This study focuses on designing a biosensor using polypeptide nucleic acid (PNA) probes for electrochemical biomarker detection. The biosensor apparatus features an electrode with a metal surface or nanotube layer. PNA probes are attached to the electrode to selectively bind to specific biomarkers.

biosensor, peptide nucleic acid, electrochemical detection, probe design

Patent

Genetically modified aspergillus niger strain for production of citric acid and gluconic acid and methods

Patent published on the 2026-05-21 in WO under Ref WO2026105152 by DAFFODIL BIOCHEM LLP [IN] (Patel Kushal Jitu [in])

Abstract: A genetically modified strain of Aspergillus niger designated MTCC 25758 derived from parent strain Aspergillus niger ATCC 9142 through chemical mutagenesis using ethyl methane sulfonate at 1 mg/mL for 180 minutes demonstrates enhanced production capabilities for both citric acid and gluconic acid. The modified strain exhibits genetic modifications at 64 specific sequence positions that contribute to improved metabolic pathways, enhanced substrate utilization efficiency, and increased tolerance [...]


Our summary: A genetically modified Aspergillus niger strain MTCC 25758 shows enhanced production of citric acid and gluconic acid. Genetic modifications improve metabolic pathways and substrate utilization, resulting in higher yields. The strain maintains GRAS status while offering economic advantages in fermentation processes.

genetically modified organism, Aspergillus niger, citric acid production, gluconic acid production

Patent

Aspergillus niger mutant strain for production of citric acid and gluconic acid and methods

Patent published on the 2026-05-21 in WO under Ref WO2026105146 by DAFFODIL BIOCHEM LLP [IN] (Patel Kushal Jitu [in])

Abstract: An Aspergillus niger mutant strain designated MTCC 25759 derived from parent strain Aspergillus niger ATCC 9142 through chemical mutagenesis using ethyl methane sulfonate at 1 mg/mL for 30 to 60 minutes demonstrates enhanced production capabilities for both citric acid and gluconic acid. The mutant strain exhibits genetic modifications at 47 specific sequence positions that contribute to improved metabolic pathways, enhanced substrate utilization efficiency, and increased tolerance to acidic fer[...]


Our summary: The Aspergillus niger mutant strain MTCC 25759 shows enhanced production of citric acid and gluconic acid. Genetic modifications improve metabolic pathways and substrate utilization efficiency. The strain achieves 198.836 g/L gluconic acid and 0.415 g/L citric acid, offering economic advantages while maintaining GRAS status.

Aspergillus niger, mutant strain, citric acid, gluconic acid

Patent

System and method for real-time ai-based medical recommendations

Patent published on the 2026-05-21 in US under Ref US20260142030 by BOYD TIMOTHY [SE] (Gream Bianca [se], Boyd Timothy [se])

Abstract: [0000] A system for generation of medical recommendation based on patient-related data, including a processor of a medical recommendations server (MRS) node configured to host a machine learning (ML) module and connected to a patient entity node and to at least one medical emergency entity node over a network and a memory on which are stored machine-readable instructions that when executed by the processor, cause the processor to: acquire sensory data from a plurality of biosensors encapsulated [...]


Our summary: The system generates medical recommendations using patient-related data. It employs a machine learning module to analyze sensory and patient data. The recommendations are based on historical patient engagements and feature vectors derived from key classifying features.

real-time recommendations, machine learning, biosensors, artificial neural networks

Patent

Device for autonomous measurement in complex samples and for the autonomous extraction of a liquid sample

Patent published on the 2026-05-20 in EP under Ref EP4745572 by HEDBERG ELLINOR [SE] (Roxhed Niclas [se], Stemme GÖran [se], Ribet Federico [se], Hedberg Ellinor [se], GarcÍa Carmona Laura [es], Lucas Garrote Beatriz [es], Vegas GarcÍa Marta [es], GarcÍa Pellicer Marta [es], Quijano LÓpez Alfredo [es])

Abstract: Lateral flow strip for the autonomous realization of chemical and/or biological reactions in a complex liquid sample comprising at least one porous hydrophilic layer, with at least one zone of placement of the liquid sample, where the lateral flow is configured to transport the fluid along the porous hydrophilic layer, characterized in that it includes means of regulating the flow velocity of fluid along the lateral flow strip, configured to regulate the reaction time of the liquid sample in the[...]


Our summary: The device enables autonomous measurement and extraction of liquid samples. It features a lateral flow strip for conducting chemical and biological reactions. The system includes flow regulation and a biosensor for target molecule interaction.

autonomous measurement, lateral flow strip, biosensor, capillarity extraction

Patent

Re-evaluating the site-directed nuclease classification as a regulatory trigger for genome-edited plant products

Published on 2026-03-05 by Osman Mewett, John McMurdy, Lieselot Bertho, Ana Atanassova, Naomi Stevens, Scott Huber, Maria Fedorova, Kevin Diehl, Kevin Tianmeng Zhao @NATURE

Abstract: Nature Biotechnology, Published online: 05 March 2026; doi:10.1038/s41587-026-03028-0Site-directed nuclease (SDN) classification into SDN-1, SDN-2 and SDN-3 outcomes is used for regulating genome-edited plant products in some countries. This reductive categorization system fails to cover the breadth of genome editing technologies developed over the past decade and their rapidly approaching commercial use. Here, we argue that, in the context of plant breeding, regulations should focus on the char[...]


Our summary: The current classification of site-directed nucleases (SDNs) is inadequate for regulating genome-edited plants. A shift towards an outcome-focused regulatory approach is proposed to enhance oversight and efficiency. This change aims to address challenges in crop improvement related to climate change and pest resistance.

genome editing, site-directed nucleases, regulatory framework, plant breeding

Publication

Ethical and Clinical Best Practices for Genome Editing Applications

Published on 2026-02-02 by Mara Ortiz-Bueno, Federica Zinghirino, Pilar Puig Serra, Kyriaki Paschoudi, Lluis Montoliu, Erden Atilla, Yonglun Luo, Alessia Cavazza, Carsten W. Lederer, Karim Benabdellah @MDPI

Abstract: Genome editing (GE) has transformed medicine by allowing precise changes to DNA, offering potential treatments for a range of inherited and acquired disorders. Several technologies support these advances, including zinc-finger nucleases (ZFNs), transcription activator-like effector nucleases (TALENs), and clustered regularly interspaced short palindromic repeats (CRISPR)-based systems, of which the latter has emerged as the most accessible, versatile, and popular. While GE holds great promise, i[...]


Our summary: Genome editing technologies enable precise DNA modifications for medical treatments. Ethical and regulatory considerations are crucial for safe clinical applications. Regulatory agencies provide guidance on safety, consent, and compliance in genome editing practices.

Genome Editing, Ethical Standards, Regulatory Compliance, Clinical Applications

Publication

다룬 주제: 합성생물학, 공학, 분자생물학, 유전 부품, 합성 유전자 회로, 세포 대사, 유전자 편집, DNA 합성, 경로 최적화, 치료제, 바이오연료, 바이오센싱, 바이오 제조, 직교 시스템, 최소 세포, 합성 조절 네트워크, ISO 22174, ISO 16140, ISO 20391, ISO 13485 및 ASTM E2875.

사용된 용어집

Deoxyribonucleic Acid (DNA): DNA는 두 가닥이 이중 나선 구조를 이루는 분자로, 아데닌, 티민, 시토신, 구아닌의 네 가지 염기 서열을 통해 유전 정보를 암호화하는 뉴클레오티드로 구성됩니다. 이는 대부분의 생명체에서 유전 물질 역할을 합니다.

역사적 맥락

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(날짜를 알 수 없거나 관련이 없는 경우, 예를 들어 "유체역학"의 경우, 주목할 만한 등장 시기를 대략적으로 추정하여 제공합니다.)

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