Targeted Gene Delivery Calms Lung Inflammation in Respiratory Infection Mouse Models
A group of scientists have developed a targeted delivery platform that can induce anti-inflammatory cytokine expression in mouse lungs, which helps restrict tissue damage from respiratory infections without triggering systemic side effects. Full details are published in Science Immunology in a paper titled “Gene delivery of immunomodulatory cytokines to the lung preserves respiratory function during inflammatory challenge.”
The study was led by scientists in the pathology department at the University of Cambridge working alongside collaborators elsewhere. Together, they “developed a gene delivery system to express anti-inflammatory cytokines in the lung, which reestablishes local immune homeostasis without triggering systemic effects,” according to details provided in the paper. Specifically, they used an adeno-associated virus cargo system (AAV6.2-CC10) to induce “production of interleukin-2 (IL-2), IL-1 receptor antagonist (IL-1RA), and IL-10 in situ in the lung microenvironment.” They accomplished this “with no detectable expression or immunological deviation in the peripheral immune system.”
According to the developers, their work could lead to new therapeutics that control inflammation following several viral infections, which has been linked to higher mortality rates in cases of SARS-CoV-2 and influenza. Prolonged inflammation during a viral infection also increases the chances that patients could contract bacterial and fungal infections. Importantly, the approach provides a way to harness the “therapeutic potential of immunomodulatory cytokines” which to date have had limited success as biologic drugs due in part to the short half-lives of cytokines as well as the risks of multiorgan effects. “This tool has been proven to deliver sustained and localized expression as evidenced by the results from three tested cytokines,” the effects of which were “restricted to the lungs” and resulted in “prolonged production over the course of weeks.”
The paper goes into the details of how the scientists characterized their method and demonstrated that it induced expression only in specific lung epithelial cells without off-target accumulation. Also provided are details of how they used the system to assess how lung-specific expression of IL-2, IL-1RA, and IL-10 affected disease severity in mouse models of influenza. They found that IL-2 expression was not especially beneficial during infection, possibly due to the amplification of protective regulatory T cells and proinflammatory CD8 T cells in the lungs. However, IL-1RA and IL-10 reduced tissue damage and improved recovery after infection and inflammation.
In addition, data from their experiments showed that delivering either individual cytokines or a cocktail of all three protected mice from influenza-associated aspergillosis. In fact, treated mice showed “reduced neutrophil infiltrates and improved health outcomes,” including reduced weight loss compared to untreated mice, the scientists wrote.
Future experiments with human cell culture systems could lay the groundwork for preclinical testing. However, there are still some limitations. For example, “we did not evaluate the kinetics of repeated administration of the same AAV vectors,” the scientists wrote. “Repeated administration can lead to the development of neutralizing antibodies, which can hinder the uptake of AAVs in subsequent treatments.” Another challenge is with the cargo itself. Though it performs well in mouse models, its “utility in a patient-based setting needs to be tested,” the scientists said.
The post Targeted Gene Delivery Calms Lung Inflammation in Respiratory Infection Mouse Models appeared first on GEN – Genetic Engineering and Biotechnology News.
First-Line Zongertinib Shows Strong Activity in HER2-Mutant Lung Cancer
For years, patients with HER2-mutant non–small cell lung cancer (NSCLC) have occupied a frustrating gap in precision oncology. While targeted therapies have transformed outcomes for EGFR– and ALK-driven lung cancers, HER2-mutant disease has lagged behind, with chemotherapy remaining the standard first-line option.
New data from the Phase Ia/Ib Beamion LUNG-1 trial, published in The New England Journal of Medicine, suggest that this may be changing. The oral HER2 inhibitor zongertinib demonstrated high response rates and durable clinical benefit in treatment-naïve patients, positioning it as a potential new first-line standard.
A long-standing unmet need
HER2 mutations occur in approximately 2–4% of NSCLC cases and are associated with aggressive disease and poor prognosis. Despite advances in targeted therapy across lung cancer, patients with HER2-driven tumors have historically had limited options, particularly in the first-line setting.
Until recently, treatment largely relied on chemotherapy, with or without immunotherapy, yielding modest outcomes, including progression-free survival typically under seven months.
“Just a few years ago, patients with this disease had no effective targeted therapies,” said John Heymach, MD, PhD, principal investigator of the study. “Now, healthcare providers have a HER2-targeted treatment option that can make a meaningful difference.”
High response rates and durability
In the trial, 74 previously untreated patients with advanced or metastatic HER2-mutant NSCLC received zongertinib at the selected dose of 120 mg daily. The results were striking.
A confirmed objective response was observed in 76% of patients, including both complete and partial responses. Tumor shrinkage was both rapid and durable, with a median duration of response of 15.2 months and median progression-free survival of 14.4 months.
These outcomes represent a substantial improvement over historical benchmarks and suggest that HER2-mutant NSCLC may finally benefit from the kind of targeted therapy success seen in other molecular subtypes.
“We observed unprecedented response rates for this cancer subtype,” Heymach said.
A more selective approach to HER2 targeting
One of the key differentiators of zongertinib is its selectivity. Unlike earlier HER2-targeted approaches, the drug inhibits HER2 while sparing wild-type EGFR, a closely related receptor whose inhibition is often associated with toxicity.
Zongertinib is described as an oral, irreversible tyrosine kinase inhibitor that selectively targets HER2 while minimizing EGFR-related side effects.
Clinically, this translated into a manageable safety profile. Most adverse events were low-grade, with relatively low rates of severe diarrhea and rash, common toxicities associated with EGFR inhibition. Serious complications such as interstitial lung disease were rare.
Activity in brain metastases
HER2-mutant NSCLC is also characterized by a high incidence of brain metastases, a major clinical challenge. Notably, the study demonstrated meaningful activity in this setting as well.
Among patients with active brain metastases, 47% achieved a confirmed intracranial response. Responses were also observed regardless of HER2 mutation subtype or baseline brain involvement, suggesting broad applicability across patient subgroups.
This intracranial activity is particularly significant, given the limited effectiveness of many systemic therapies in the central nervous system.
Implications for first-line treatment
The emergence of zongertinib as a first-line option marks a potential inflection point in the treatment of HER2-mutant NSCLC. For the first time, patients may be able to receive a targeted therapy at diagnosis, rather than progressing through less effective chemotherapy regimens.
The data have already translated into regulatory momentum. Zongertinib recently received accelerated FDA approval for this indication, reflecting both the strength of the clinical data and the unmet need in this population.
However, important questions remain. The current study is single-arm and lacks a direct comparison with standard-of-care therapies. A Phase III trial is ongoing to evaluate zongertinib against chemotherapy-based regimens in the first-line setting.
Positioning within a changing landscape
The broader treatment landscape for HER2-mutant lung cancer is also evolving. Antibody–drug conjugates such as trastuzumab deruxtecan have shown activity in previously treated patients, but are associated with notable toxicities and are typically used after progression.
Zongertinib’s oral administration, favorable safety profile, and first-line efficacy could shift treatment sequencing, potentially moving targeted therapy earlier in the disease course.
At the same time, resistance mechanisms are likely to emerge. Early data suggest that distinct resistance pathways may develop for tyrosine kinase inhibitors compared to antibody-based therapies, raising the possibility of sequential or combination strategies.
Looking ahead
As HER2-targeted therapies move into earlier lines of treatment, the focus will increasingly shift toward optimizing sequencing, managing resistance, and identifying combination approaches.
For now, the results from Beamion LUNG-1 provide strong evidence that HER2-mutant NSCLC, long considered a difficult-to-treat subtype, may finally be entering the era of precision oncology.
With high response rates, durable benefit, and activity in brain metastases, zongertinib offers a compelling new option, and a clear signal that the treatment paradigm for these patients is changing.
The post First-Line Zongertinib Shows Strong Activity in <i>HER2</i>-Mutant Lung Cancer appeared first on Inside Precision Medicine.
Immune Priming Could End Immunosuppression After Liver Transplant
Results from a Phase I/IIa trial show promise for an immune priming approach where donor immune cells are infused into liver transplant recipients before surgery. In the small-scale clinical trial, three patients were reported to remain completely off immunosuppression for over three years thanks to this treatment.
Recipients of organ transplants need to take lifelong medication to prevent the immune system from rejecting the transplant. In the case of end-stage liver disease patients, the serious side effects of immunosuppressants are considered acceptable in the face of a severe and life-threatening condition. Still, researchers have long been looking for strategies to at least reduce the intensity and duration of this treatment, which would significantly improve the health of these patients and the financial burden of long-term immunosuppression.
“Long-term use of immunosuppressive drugs can harm the kidneys, causes metabolic complications, makes patients more susceptible to infections and certain types of cancer, as well as diabetes,” said Angus Thomson, PhD, DSc, professor of surgery and immunology at the University of Pittsburgh’s School of Medicine (UPMC). “Sparing patients from these serious side effects has been a goal that Pittsburgh transplant scientists began pursuing three decades ago. It is an honor to achieve this important milestone toward finally realizing that dream.”
The immune priming approach developed by Thomson’s team makes use of regulatory dendritic cells (DCregs), a type of immune cell that regulate innate and adaptive immunity and have the ability to train the immune system to stop recognizing transplanted cells as foreign. The treatment is made by extracting monocytes from the donor’s blood and inducing them to turn into DCregs.
Launched in 2017, the clinical trial recruited a total of 13 patients who were infused with DCregs from their donor a week before surgery. A year after surgery, transplant recipients underwent a biopsy and an assessment to determine if they were eligible for immunosuppressant withdrawal.
Out of eight patients who stopped taking immunosuppressants, four achieved complete withdrawal and three of them remained off immunosuppression therapy for over three years. These findings represent a significant improvement compared to the rate of patients who successfully withdraw from immunosuppression without intervention, raising it from 16% to 37%.
“For as long as organ transplantation has been a field of medicine, tolerance has been its holy grail,” said Abhinav Humar, MD, clinical director of the Starzl Transplantation Institute and chief of the division of transplantation at UPMC. “While we haven’t hit a home run yet, we’ve definitely gotten on base by reliably and safely removing immunosuppression early after transplantation from a significant percentage of patients, which is a huge breakthrough.”
While preliminary efficacy results seem promising, the main objective of this small scale trial was to establish the treatment’s safety and feasibility. Based on these results, a larger scale, randomized trial will be designed and conducted with the purpose of establishing the efficacy of this immune priming approach.
In future studies, the researchers also want to explore the use of an alternative immunosuppressant medication that may be more likely to allow DCregs to stop immune rejection against the transplant, as well as studying the effects of infusing the donor cells after surgery and looking for ways of obtaining these cells from deceased donors to expand the potential applications of this approach.
“There are so many tantalizing paths we could take to help our findings benefit many more patients,” Thomson said. “We are very interested in collaborating with other transplantation centers to accelerate and scale our clinical research.”
The post Immune Priming Could End Immunosuppression After Liver Transplant appeared first on Inside Precision Medicine.
The deadly consequences of ICE detention
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Earth Day is next week, meaning it’s time for one of my favorite traditions: listening to the annual 24-hour livestream of a marsh in unceded W̱SÁNEĆ territory in British Columbia.
Cerebral blood flow and functional connectivity immediate changes following intradermal acupuncture in major depressive disorder
New gene-editing approaches for β-hemoglobinopathies
Nature Medicine, Published online: 17 April 2026; doi:10.1038/d41591-026-00021-7
Three phase 1/2 trials show that direct editing of HBG1 and HBG2 promoters is a promising disease‑agnostic strategy for treating β‑hemoglobinopathies such as sickle-cell disease and β-thalassemia.
A roadmap to competitive preclinical packages
Nature Medicine, Published online: 17 April 2026; doi:10.1038/s41591-026-04345-2
Should researchers avoid translational research in animals in favor of human or AI models? We argue that this debate should focus not on comparing species but instead on how experimental systems can be combined to maximize mechanistic confidence, human relevance, and real-world decision-making value.

