Publications by authors named "Jamieson C"

Intrinsically disordered proteins (IDPs) are important drug targets as they are key actors within cell signaling networks. However, the conformational plasticity of IDPs renders them challenging to characterize, which is a bottleneck in developing small molecule drugs that bind to IDPs and modulate their behavior. In relation to this, ion mobility mass spectrometry (IM-MS) is a useful tool to investigate IDPs, as it can reveal their conformational preferences.

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  • A phase 1 study investigated the safety and feasibility of transplanting spinal cord-derived neural stem cells (NSI-566) for chronic spinal cord injuries, focusing on four participants with specific injuries.
  • All participants tolerated the stem cell procedure well without major complications.
  • After five years, two participants showed significant neurological improvements, with measurable gains in motor and sensory functions.
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  • - The study analyzed genomic and transcriptomic data from 138 germ cell tumors to find out why some tumors resist treatment with cisplatin, a common chemotherapy drug.
  • - They focused on specific genetic mutations (like KRAS, TP53, and KIT) and patterns in gene copies that might contribute to this resistance, observing that certain mutations were more common in primary tumors compared to metastatic ones.
  • - The research found that tumors with platinum-resistant alterations had lower transcriptomic scores linked to sensitivity to cisplatin, indicating a possible connection between these genetic changes and treatment resistance.
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Background: Community pharmacies in England offer convenient and safe disposal of unwanted medicines, including antimicrobials, and better uptake of this service could limit environmental antimicrobial resistance. However, there is limited information on the extent and nature of antibiotic returns to community pharmacies. The impact of an antibiotic amnesty campaign promoting antibiotic disposal through community pharmacies was evaluated with the intention of collecting detailed information on the antibiotics returned.

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The 1,3,4-oxadiazole is a widely encountered motif in the areas of pharmaceuticals, materials, and agrochemicals. This work has established a mediated electrochemical synthesis of 2,5-disubstituted 1,3,4-oxadiazoles from N-acyl hydrazones. Using DABCO as the optimal redox mediator has enabled a mild oxidative cyclisation, without recourse to stoichiometric oxidants.

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Enzymes that proceed through multistep reaction mechanisms often utilize complex, polar active sites positioned with sub-angstrom precision to mediate distinct chemical steps, which makes their de novo construction extremely challenging. We sought to overcome this challenge using the classic catalytic triad and oxyanion hole of serine hydrolases as a model system. We used RFdiffusion to generate proteins housing catalytic sites of increasing complexity and varying geometry, and a newly developed ensemble generation method called ChemNet to assess active site geometry and preorganization at each step of the reaction.

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  • As we get older, the system that makes our blood cells (the hematopoietic system) starts to change and doesn't work as well.
  • This causes problems like making more of certain blood cells and fewer B and T cells, which help our immune system.
  • Also, there are changes in the details of how our cells work at a microscopic level that make these aging effects happen more and can lead to more inflammation in the body.
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Immunoglobulin G 3 (IgG3) monoclonal antibodies (mAbs) are high-value scaffolds for developing novel therapies. Despite their wide-ranging therapeutic potential, IgG3 physicochemical properties and developability characteristics remain largely under-characterized. Protein-protein interactions elevate solution viscosity in high-concentration formulations, impacting physicochemical stability, manufacturability, and the injectability of mAbs.

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Background: Despite the rise in gender-affirming care, our understanding of prostate cancer (PCa) in transgender women (TGW) remains in its infancy. Health disparities and lack of PCa awareness and screening are possible barriers to providing quality care for this population. In addition, the implication of hormonal manipulation for the aggressiveness of PCa in TGW is yet to be determined.

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Objectives: To examine disparities in attendance rates at cancer screening services between transgender and gender-diverse (TGD) people in comparison with their cisgender (CG) counterparts, and to determine whether these differences were based on the anatomical organ screened.

Design: Systematic review and meta-analysis.

Data Sources: PubMed, EMBASE (via Ovid), CINAHL Complete (via EBSCO) and Cochrane Library from inception to 30 September 2023.

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The transmembrane E3 ligases RNF43 and ZNRF3 perform key tumour suppressor roles by inducing endocytosis of members of the Frizzled (FZD) family, the primary receptors for WNT. Loss-of-function mutations in and mediate FZD stabilisation and a WNT-hypersensitive growth state in various cancer types. Strikingly, and mutations are differentially distributed across cancer types, raising questions about their functional redundancy.

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Wnt (wingless-type) signaling pathway (WSP) alterations have been identified in patients with prostate cancer and are implicated in disease progression and hormonal resistance. In this study, we utilized a multi-institutional dataset to characterize molecular alterations in the canonical and noncanonical WSPs in prostate cancer. Patients with prostate cancer who underwent tissue-based genomic sequencing were investigated.

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The formulation of high-concentration monoclonal antibody (mAb) solutions in low dose volumes for autoinjector devices poses challenges in manufacturability and patient administration due to elevated solution viscosity. Often many therapeutically potent mAbs are discovered, but their commercial development is stalled by unfavourable developability challenges. In this work, we present a systematic experimental framework for the computational screening of molecular descriptors to guide the design of 24 mutants with modified viscosity profiles accompanied by experimental evaluation.

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Mastocytosis is a heterogeneous group of disorders comprising cutaneous mastocytosis, systemic mastocytosis, and mast cell sarcoma. It is associated with a variety of symptoms related to the release of mast cell mediators and mast cell tissue infiltration. Referral to specialized centers with expertise in the management of mastocytosis and multidisciplinary collaboration with subspecialists (eg, allergists for the management of anaphylaxis and drug hypersensitivities, anesthesiologists for invasive procedures or surgery, high-risk obstetrician for pregnancy) is recommended.

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Background: Intravenous (IV) antibiotic use in secondary care in England is widespread. Timely appropriate intravenous to oral switch (IVOS) has the potential to deliver significant clinical and operational benefits. To date, antimicrobial stewardship (AMS) efforts around IVOS have not focused on the nursing staff who administer antibiotics, which represents a significant gap in AMS programmes.

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A one-pot procedure for the oxidative amidation of aldehydes via the generation of reactive nitrile imine (NI) intermediates has been developed. Distinct from our progenitor processes, mechanistic and control experiments revealed that the NI undergoes rapid oxidation to an acyl diazene species, which then facilitates -acylation of an amine. A range of substrates have been explored, including application in the synthesis of pharmaceutically relevant compounds.

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Objectives: To evaluate the stability of ceftazidime/avibactam in elastomeric infusers, utilizing the UK's Yellow Cover Document (YCD) stability testing framework, in conditions representative of OPAT practice.

Methods: Ceftazidime/avibactam was reconstituted with sodium chloride 0.9% (w/v) in two elastomeric infusers at concentrations (dose) levels of 1500/375, 3000/750 and 6000 mg/1500 mg in 240 mL.

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Background: Non-canonical WNT family (WNT5A pathway) signaling via WNT5A through ROR1 and its partner, ROR2, or Frizzled2 (FZD2) is linked to processes driving tumorigenesis and therapy resistance. We utilized a large dataset of urothelial carcinoma (UC) tumors to characterize non-canonical WNT signaling through WNT5A, ROR1, ROR2, or FZD2 expression.

Methods: NextGen Sequencing of DNA (592 genes or WES)/RNA (WTS) was performed for 4125 UC tumors submitted to Caris Life Sciences.

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Background: Zilovertamab is a humanized monoclonal antibody targeting ROR1, an onco-embryonic antigen expressed by malignant cells of a variety of solid tumors, including breast cancer. A prior phase 1 study showed that zilovertamab was well tolerated and effective in inhibiting ROR1-signaling, which leads to activation of ERK1/2, NF-κB, and NRF2 target genes. This phase 1b study evaluated the safety and tolerability of zilovertamab with paclitaxel in patients with advanced breast cancer.

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Objectives: The Fatigue Symptoms and Impacts Questionnaire-Relapsing Multiple Sclerosis (FSIQ-RMS) is a new content-valid, concise, and reliable 20-item patient-reported outcome measure to evaluate the symptoms and impacts of fatigue in patients with relapsing forms of multiple sclerosis. Analyses were performed to derive meaningful change thresholds (MCTs) on patient-reported outcomes as measured by FSIQ-RMS and generate receiver operating characteristic (ROC) curves to determine fatigue severity cut points at baseline and change in severity at post-baseline and supplement the anchor-based MCT results.

Methods: Analyses were based on data from the OPTIMUM trial (NCT02425644).

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Treatment of hematologic malignancies with patient-derived anti-CD19 chimeric antigen receptor (CAR) T-cells has demonstrated long-term remissions for patients with otherwise treatment-refractory advanced leukemia and lymphoma. Conversely, CAR T-cell treatment of solid tumors, including advanced gastric cancer (GC), has proven more challenging due to on-target off-tumor toxicities, poor tumor T-cell infiltration, inefficient CAR T-cell expansion, immunosuppressive tumor microenvironments, and demanding preconditioning regimens. We report the exceptional results of autologous Claudin18.

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Leukemia-initiating cells (LICs) are regarded as the origin of leukemia relapse and therapeutic resistance. Identifying direct stemness determinants that fuel LIC self-renewal is critical for developing targeted approaches. Here, we show that the RNA-editing enzyme ADAR1 is a crucial stemness factor that promotes LIC self-renewal by attenuating aberrant double-stranded RNA (dsRNA) sensing.

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The androgen receptor (AR) is central to prostate cancer pathogenesis and has been extensively validated as a drug target. However, small-molecule anti-androgen therapies remain limited due to resistance and will eventually fail to suppress tumor growth, resulting in progression to castration-resistant prostate cancer (CRPC). The intrinsically disordered N-terminal domain (NTD) is crucial for AR transactivation and has been investigated as a suitable target in the presence of ligand binding domain mutations.

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  • - The study aimed to assess how stable aciclovir solutions are in two types of elastomeric devices used for outpatient parenteral antimicrobial therapy (OPAT).
  • - Results showed that aciclovir concentrations of 200 mg and 2400 mg remained stable at room temperature for 14 days and could endure a brief increase in temperature, but higher concentrations (4500 mg) resulted in precipitation after just 4 hours in warmer conditions.
  • - It is concluded that aciclovir solutions can be safely used at lower concentrations (200-2400 mg) in these devices for OPAT, but higher concentrations pose risks and are not advisable due to potential kidney toxicity.
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