Non-invasive Ultra-early in Utero Detection and Precision CRISPR-mediated Correction of Monogenic Embryonic Mutations: A Critical Appraisal of a Hypothetical Therapeutic Framework
Aug 2026· Asian Journal of Medicine and Health· 0 citations
TL;DR
Whether that proposition that a pathogenic single-gene variant might be identified non-invasively at the earliest stage of pregnancy and corrected in situ before irreversible pathology develops is presently coherent as a therapeutic framework is examined.
Abstract
Advances in circulating placental DNA analysis and in programmable genome editing have developed largely in parallel, yet their conjunction has generated an increasingly discussed proposition: that a pathogenic single-gene variant might be identified non-invasively at the earliest stage of pregnancy and corrected in situ before irreversible pathology develops. This review examines whether that proposition is presently coherent as a therapeutic framework, rather than merely attractive as an idea. The analysis synthesises evidence on the provenance and kinetics of cell-free placental DNA, the analytical performance of relative mutation dosage, relative haplotype dosage, targeted haplotyping and cell-based prenatal diagnosis, and the preclinical record of nuclease-dependent editing, base editing and prime editing delivered to the fetal compartment by viral and lipid-nanoparticle carriers. Evidence quality was appraised with attention to study design, model relevance, endpoint validity, replication and the distance between mechanistic demonstration and clinical benefit. Three findings dominate. First, the detection half of the framework is constrained less by sequencing chemistry than by biology: circulating fetal-derived DNA is placental in origin, is present at low fractional abundance in the earliest weeks, and is an imperfect proxy for the fetal genotype. Second, the therapeutic half rests almost entirely on rodent studies in which editing efficiencies, delivery routes and endpoints do not correspond to the requirements of a human first-trimester intervention, and the only in utero therapies tested in human pregnancies have been protein and cell based rather than gene editing. Third, the interval implied by ultra-early diagnosis is precisely the interval in which delivery, dosing and germ-cell exposure are least characterised. The framework is therefore best regarded as a research programme with identifiable and testable intermediate objectives, not as an imminent clinical pathway. Priorities include gestational-age-resolved fetal fraction studies, editing outcome measurement at single-cell resolution, large-animal dosimetry, and governance work addressing the somatic and germline boundary in prenatal intervention.
It is concluded that bridging the gap between foundational CRISPR research and its real-world applications is imperative and future efforts should focus on democratizing tools via open-source platforms, advancing delivery systems, and fostering sustainable innovation through synthetic biology integration to fully realize the transformative potential of genome editing in organisms beyond model organisms.
S. Sarsaiya, Archana Jain, Jishuang Chen et al.· Biotechnology Advances· 2 citations
It is argued that formation of a tumour-intrinsic niche is a prerequisite for BRAF-mutant CRC seeding to distant organs and that interference with niche formation may help avoid metastatic relapse.
J. Bugter, L. El Bouazzaoui, E. Küçükköse et al.· bioRxiv· 2 citations
This review summarizes emerging therapeutic strategies for EOC, their mechanisms of action, and their potential to overcome treatment resistance, and covers molecularly targeted therapies, immunotherapies, metabolic and epigenetic approaches, cellular and gene therapies, targeted drug-delivery systems, and locoregional and physical modalities.
Zofia Pietrasik, Mikołaj Kapała, Joanna Pietrasik et al.· Cancers· 0 citations
Genetic engineering (GE) and gene editing may endow traits to trees such as increased biomass and the production of novel biomaterials. Long-lived organisms such as trees might be subject to biotechnology-related risks that could be different than those of annual row crops. Those risks could be relevant to production in engineered plantations and beyond plantations to natural forests. Therefore, appropriate risk regulation is important to assure biosafety of commercialized engineered trees. In addition to gene flow via sexual reproduction, vegetative reproduction might play an additional role in environmental "exposure" risk relative to transgene dispersal in GE tree plantations. While vegetative reproduction is beneficial for preserving desired genetic traits during tree propagation, it may lead to proximal clonal spread in the field. Although the environmental risks associated with vegetative reproduction of GE trees are recognized in commercial forestry, there are few field-based environmental risk assessment (ERA) studies on dispersal risks of self-propagated GE trees. GE or gene editing of target genes involved in the vegetative propagation processes may be useful to mitigate environmental risks of clonal spread through vegetative reproduction. This review provides updates for recent field test results of GE and gene edited trees. Gene candidates related to vegetative reproduction including adventitious shooting (AS) and adventitious rooting (AR) are discussed herein as a means to mitigate unintended clonal spread from GE tree plantations.
Findings establish Cas7-11 as a precise and efficient RNA knockdown tool for functional studies in embryonic development and stem cell biology, providing a versatile alternative to DNA-based gene-editing approaches.
Huan Yan, Imtiaz Ul Hassan, Kai Yan et al.· Cell & Bioscience· 0 citations
A new method for surgically removing training examples from a model reveals that as datasets grow, the link between what a model learns and what it produces dissolves.
MIT News · Artificial Intelligence· news.mit.eduAug 17, 2026