Tag: Wins

  • UCLA Wins .9 Million to Test Drugs That Might Make Melanoma Immunotherapy Work for More Patients

    UCLA Wins $3.9 Million to Test Drugs That Might Make Melanoma Immunotherapy Work for More Patients

    Immune checkpoint inhibitors transformed melanoma treatment. They also leave a large share of patients behind, and figuring out what to do for those patients is the central unsolved problem in the field.

    UCLA researchers have received a five-year, $3.9 million grant from the National Cancer Institute to work on it. The award goes to Cristina Puig-Saus, an associate professor of microbiology, immunology and molecular genetics and surgical oncology at the David Geffen School of Medicine and an investigator at the UCLA Health Jonsson Comprehensive Cancer Center, according to UCLA Health. She is also a member of the UCLA Broad Stem Cell Research Center and the UCLA Parker Institute for Cancer Immunotherapy.

    This is funding for research, not a result. Nothing has been shown to help any patient, and the work described is preclinical.


    The Grant Is About Fixing Non-Response, Not Explaining It

    A distinction worth drawing precisely, because it changes what to expect from this work.

    The project is not primarily a study of why some patients respond, and others do not. It is drug development aimed at overcoming barriers already identified. Using a drug screening platform developed in the Puig-Saus laboratory to test thousands of compounds, the team identified two candidates, and the two work by different routes.

    One appears to strengthen the interaction between T cells and cancer cells, helping the immune system mount a more effective attack. The other makes tumor cells more susceptible to destruction by T cells without directly altering the immune cells themselves. That second approach is notable because it sidesteps the problem of a patient’s T cells being exhausted or scarce.

    The funding will support testing whether those compounds boost the effectiveness of existing immunotherapies in preclinical melanoma models, investigating how the drugs work, and evaluating their potential to be used safely. Puig-Saus has said that because the compounds are designed to work alongside existing immunotherapies, the approach could potentially apply across many cancer types.


    Why So Many Patients Do Not Respond

    The underlying problem is worth explaining, because it is what any approach has to solve.

    Checkpoint inhibitors work by releasing the brakes on T cells so they can attack tumors. That only helps if T cells can find the tumor in the first place. Two failure modes dominate.

    The first is recognition. T cells often struggle to identify cancer cells, particularly when tumors reduce the display of the surface molecules that mark a cell as abnormal. A tumor the immune system cannot see is not helped by removing a brake.

    The second is evasion. Tumors evolve under immune pressure. They can lose the specific proteins T cells were targeting, recruit suppressive cells, or create a local environment that exhausts T cells. Tumors described as cold have few infiltrating T cells to begin with.

    The scale of the gap is substantial. UCLA has previously reported that 40 percent of patients with melanoma do not respond to checkpoint blockade, with response especially poor in rarer forms including acral melanoma on the palms and soles, uveal melanoma in the eye, and mucosal melanoma.


    The Screening Platform Is the Method Worth Noting

    How the two candidate compounds were found says something about where cancer drug discovery has moved.

    Rather than starting from a hypothesis about a single molecule, the laboratory built a screening platform capable of testing thousands of compounds for effects on the interaction between T cells and cancer cells. That approach asks which compounds change the behavior of the system, then works backward to understand why.

    The advantage is that it can surface candidates nobody would have predicted from existing biology. The trade-off is that a compound identified this way arrives without a fully worked-out mechanism, which is precisely why part of the grant is devoted to investigating how the drugs work rather than only whether they work.

    That mechanistic question is not academic. Understanding how a compound acts is what allows researchers to predict side effects, identify which patients might benefit, and design sensible combinations with existing immunotherapies.


    The Timeline for Anything Reaching Patients

    Preclinical grants are frequently reported in ways that imply proximity to treatment, and the arithmetic does not support that.

    Five years of preclinical work would be followed, if results justify it, by formal toxicology studies, manufacturing under regulated conditions, and an investigational new drug application before a first human trial. That first trial would test safety and dosing rather than benefit. Efficacy testing would follow.

    Most compounds entering this pipeline do not reach patients. That is not pessimism about this particular project; it is the base rate, and it is why the honest framing is that federal funding has been committed to a promising question.

    What patients with melanoma can act on is different. Checkpoint inhibitors, targeted therapies for BRAF-mutant disease, and tumor-infiltrating lymphocyte therapy are all available now depending on tumor characteristics and prior treatment. Molecular testing of the tumor determines which apply.

    For patients whose disease has progressed on checkpoint inhibitors, clinical trials are frequently the most substantive option, and enrollment is concentrated at academic and NCI-designated cancer centers. The same laboratory is separately advancing an experimental CAR T cell therapy for melanoma toward a trial, which is the kind of option worth asking an oncologist about directly.

    Melanoma prevention and early detection remain the most effective interventions available. Anyone noticing a mole that changes in size, shape, or color, has an irregular border or uneven color, or looks different from other moles should have it examined. Early-stage melanoma is frequently curable with surgery alone.

    This article is general information and is not medical advice.



    Frequently Asked Questions

    What was funded? A five-year, $3.9 million National Cancer Institute grant to Cristina Puig-Saus at UCLA.

    What will the money support? Preclinical testing of two compounds identified through a drug screening platform, aimed at boosting existing immunotherapies in melanoma models.

    How do the two compounds differ? One strengthens the interaction between T cells and cancer cells. The other makes tumor cells more vulnerable to T cells without altering the immune cells.

    Why do checkpoint inhibitors fail in some patients? T cells often cannot recognize cancer cells, and tumors evolve to evade immune attack. UCLA has reported that 40 percent of melanoma patients do not respond.

    Has anything been shown to work? No. This is funding for research. No patient benefit has been demonstrated.

    When could this reach patients? Not for many years, if at all. Preclinical work precedes toxicology, manufacturing, and first-in-human safety trials.

    What can melanoma patients do now? Ask about molecular testing, currently approved options, and open clinical trials, particularly at NCI-designated centers.

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  • First-in-Class Drug Targeting Treatment-Resistant High Blood Pressure Wins FDA Approval — and Works Like No Existing Drug

    First-in-Class Drug Targeting Treatment-Resistant High Blood Pressure Wins FDA Approval — and Works Like No Existing Drug

    High blood pressure — hypertension — is the single most treatable risk factor for cardiovascular disease and stroke, the two leading causes of death in the United States. There are already more than a dozen classes of antihypertensive medications. For most patients, combining two or three of these drugs in appropriate doses achieves adequate blood pressure control and dramatically reduces the risk of heart attack, stroke, kidney failure, and premature death.

    But for a significant subset — estimated at 10 to 15 percent of all hypertensive patients — blood pressure remains uncontrolled despite taking two, three, or even four medications at maximum tolerated doses. This is called resistant hypertension, and it represents one of the most clinically frustrating situations in internal medicine: a patient taking a handful of pills every day, experiencing their side effects, and still not achieving the blood pressure target that determines their future risk of cardiovascular catastrophe.

    For these patients, the FDA’s May 18, 2026 approval of baxdrostat (Baxfendy) — developed by AstraZeneca — represents the arrival of a fundamentally new therapeutic option built on a mechanism of action that no previously approved drug has ever targeted in this indication.

    “We have been waiting for an innovative medication like BAXFENDY for hypertension for many years,” said Bryan Williams, MD, Chair of Medicine at University College London and a primary investigator for the pivotal BaxHTN trial. “Its novel way of lowering blood pressure has the potential to transform clinical practice by targeting a root cause of persistently uncontrolled hypertension.”

    The Aldosterone Problem and Why Existing Drugs Miss It

    Aldosterone is a steroid hormone produced by the adrenal glands that regulates sodium and water retention in the kidneys. When aldosterone levels are excessive — whether due to a benign adrenal tumor (primary aldosteronism), stress-related overproduction, or other dysregulation — the kidneys retain too much sodium and water, blood volume rises, and blood pressure increases in a way that does not respond well to most standard antihypertensive mechanisms.

    The renin-angiotensin-aldosterone system (RAAS) is already a major target of existing hypertension drugs: ACE inhibitors, ARBs, and direct renin inhibitors all interfere with the pathway that leads to aldosterone production. But these drugs do not directly target aldosterone synthase — the specific enzyme, encoded by the CYP11B2 gene, that is the final step in aldosterone manufacturing in the adrenal gland. Blocking earlier steps in the RAAS leaves aldosterone synthase activity largely intact, allowing it to produce aldosterone through compensatory mechanisms.

    Baxdrostat is a selective aldosterone synthase inhibitor — a small-molecule oral drug that directly and selectively inhibits CYP11B2, preventing aldosterone from being synthesized in the first place. This selectivity is critical: the enzyme CYP11B1, which produces cortisol and sits in a closely adjacent biochemical pathway, is not significantly affected by baxdrostat at therapeutic doses. This means baxdrostat lowers aldosterone — and therefore blood pressure — without disrupting the cortisol axis that regulates the stress response, immune function, and metabolism. AstraZeneca confirmed in clinical trials that baxdrostat lowered aldosterone levels without affecting cortisol levels.

    What the BaxHTN Phase 3 Trial Found

    The BaxHTN trial enrolled 796 patients with uncontrolled or resistant hypertension — all already on at least two antihypertensive agents, including a diuretic — and randomized them 1:1:1 to receive baxdrostat 2 mg once daily, baxdrostat 1 mg once daily, or placebo in addition to their background therapy, for 12 weeks.

    At week 12:

    • Patients on baxdrostat 2 mg had a 15.7 mmHg reduction in seated systolic blood pressure from baseline — a 9.8 mmHg placebo-adjusted reduction.
    • Patients on baxdrostat 1 mg had a 14.5 mmHg reduction — an 8.7 mmHg placebo-adjusted reduction.
    • The placebo group had a 5.8 mmHg reduction from baseline.

    Both doses met the primary endpoint of statistically significant systolic blood pressure reduction. The findings were consistent in patients with both uncontrolled hypertension (not at goal despite two or more drugs) and truly resistant hypertension (not at goal despite three or more drugs, including a diuretic). Results were also supported by a separate Phase 3 Lancet-published Bax24 trial using ambulatory blood pressure monitoring, confirming the effect on 24-hour blood pressure rather than only the clinic reading.

    A 9.8 mmHg reduction in systolic blood pressure is not a cosmetic number. Systematic reviews of blood pressure interventions consistently show that each 5 mmHg reduction in systolic blood pressure reduces the risk of major cardiovascular events by approximately 10 percent. For patients whose blood pressure has been inadequately controlled despite multiple medications — meaning they have been living with elevated cardiovascular risk despite treatment — a nearly 10 mmHg additional reduction is clinically meaningful and potentially life-extending.

    Who Will Benefit and What Comes Next

    Baxfendy is approved as an add-on oral treatment for adults with hypertension not adequately controlled on other medications. It is taken once daily in 1 mg or 2 mg doses. The key safety considerations identified in trials are hyperkalemia (elevated blood potassium), which requires periodic monitoring, and hyponatremia (low sodium) in some patients. Neither was dose-limiting in the vast majority of trial participants.

    The drug received Fast Track and Breakthrough Therapy designations from the FDA during development, signaling the agency’s recognition of the unmet need it addresses. AstraZeneca is also studying baxdrostat in additional conditions where aldosterone excess plays a mechanistic role, including chronic kidney disease and heart failure — conditions that frequently co-occur with resistant hypertension.

    Frequently Asked Questions

    Q: What is baxdrostat (Baxfendy) and who is it for?

    A: Baxdrostat is the first-ever oral aldosterone synthase inhibitor, FDA-approved May 18, 2026 as an add-on treatment for adults with hypertension not adequately controlled on other antihypertensive medications.

    Q: How does baxdrostat work differently from other blood pressure drugs?

    A: It directly and selectively inhibits aldosterone synthase (the CYP11B2 enzyme), preventing aldosterone production at its source. No previously approved drug has targeted this specific enzyme. Existing RAAS drugs act earlier in the pathway and leave aldosterone synthase partially active.

    Q: How much does baxdrostat lower blood pressure?

    A: In the BaxHTN Phase 3 trial, baxdrostat 2 mg added to background therapy produced a 9.8 mmHg placebo-adjusted reduction in systolic blood pressure at 12 weeks. The 1 mg dose achieved an 8.7 mmHg reduction.

    Q: Does baxdrostat affect cortisol levels?

    A: No. Baxdrostat selectively inhibits CYP11B2 (aldosterone synthase) without significantly affecting CYP11B1 (cortisol synthesis). Clinical trials confirmed aldosterone reductions without changes in cortisol.

    Q: What are the main side effects of baxdrostat?

    A: Hyperkalemia (elevated potassium) and hyponatremia (low sodium) are the primary safety considerations, both requiring periodic monitoring. Neither was dose-limiting in most trial participants.

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  • Mainside’s Pensão Amor Madam’s Lodge Wins Best Luxury Hotel Renovation Award

    Mainside’s Pensão Amor Madam’s Lodge Wins Best Luxury Hotel Renovation Award



    Luxury Lifestyle Awards is delighted to announce that Pensão Amor Madam’s Lodge, a captivating, themed lodge experience by Mainside, has been named Best Luxury Hotel Renovation in Portugal. This prestigious award acknowledges Mainside’s exceptional work in transforming a historic Lisbon building into a luxurious and immersive destination. With a deep respect for history and a commitment to innovation, Mainside creates spaces that tell stories and inspire wonder.

    Pensão Amor - Madams Lodge - Call room - Arlindo Camacho 2
    Pensão Amor – Madams Lodge – Call room – Arlindo Camacho

    Pensão Amor Madam’s Lodge is a unique experience housed within a meticulously restored former brothel from Lisbon’s Pombaline era. The building, once in a state of disrepair, has been given a new lease on life, honoring its history while offering guests a luxurious and immersive journey back in time.

    The renovation project, spearheaded by Mainside and orchestrated by the visionary architect Gonçalo Queirós Carvalho, alongside the masterful storytelling of Roger Mor, aimed to craft a time capsule experience. Entering Pensão Amor Madam’s Lodge is akin to a journey back into the heart of Lisbon’s bohemian past. The meticulously curated décor, boasting fine fabrics, vintage pieces, and personalized wallpaper, seamlessly transports guests to a bygone era.

    Pensão Amor - Madams Lodge - Lisbon fantasies - Arlindo Camacho 3
    Pensão Amor – Madams Lodge – Lisbon fantasies – Arlindo Camacho

    Despite its historical charm, Pensão Amor Madam’s Lodge offers guests the utmost in comfort. Modern amenities are cleverly concealed within the period design, ensuring a seamless and enjoyable stay. Guests can unwind in state-of-the-art soundproofed rooms, some featuring fireplaces, bathtubs, saunas, or Turkish baths.

    Art plays a central role in the Pensão Amor Madam’s Lodge experience. The property features numerous museum-worthy pieces that unveil Lisbon’s rich history. Additionally, the work of contemporary artists like illustrator Nuno Saraiva adds a touch of modern flair to the historic setting.

    Pensão Amor Madam’s Lodge offers more than just a luxurious stay. Guests are welcomed by a “madam,” the central character in this unique concept inspired by the building’s true past. Each of the lodge’s 22 themed rooms is a testament to history, with historical elements and a distinct narrative, ensuring that each stay is a new and captivating adventure. Whether it’s the intrigue of clandestine affairs or the vibrant tales of Lisbon’s nightlife, the experiences vary depending on the room chosen. Moreover, the lodge prioritizes fun and dynamism, evident in its themed equipment such as rods, rings, and handcuffs, as well as the personalized reception service offering a welcome drink and curated selection of erotic items.

    Pensão Amor - Madams Lodge - Special corners - Arlindo Camacho 1
    Pensão Amor – Madams Lodge – Special corners – Arlindo Camacho

    The renovation of Pensão Amor Madam’s Lodge presented a number of challenges. Mainside’s team meticulously addressed soundproofing concerns to ensure a peaceful stay for guests, even amidst Lisbon’s vibrant nightlife. Additionally, the team skillfully integrated a modern elevator into the building’s historic structure.

    “We are incredibly honored to receive this recognition from Luxury Lifestyle Awards,” says José Carvalho, CEO of Mainside. “Pensão Amor Madam’s Lodge is a testament to our dedication to preserving history while creating unique and unforgettable experiences. We are committed to breathing new life into historic buildings and we are delighted that our efforts have been recognized.”

    For more information, please visit http://www.pensaoamor.com/

     

    About Luxury Lifestyle Awards | Luxury Lifestyle Awards is a global organization that selects, recognizes, celebrates, and promotes the best luxury goods and services worldwide. With a 16-year legacy of recognizing luxury brands, its mission is to connect discerning clientele with the pinnacle of luxury experiences. LLA boasts a rigorous evaluation process, assessing over 5,000 products and services across 400 categories in 100 countries. This meticulous analysis culminates in a coveted list of winners recognizing the world’s elite. Renowned brands like Fairmont, Savills, and Courvoisier have proudly earned recognition through the Luxury Lifestyle Awards. Winning this award translates into enhanced brand credibility, elevated brand status, and global exposure for the award winners.

    For more information, please visit: https://luxurylifestyleawards.com/awards  

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