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1 dangerous phosphorus flare from military exercise found at Montrose Beach, 3 more still out there

1 dangerous phosphorus flare from military exercise found at Montrose Beach, 3 more still out there

CBS News27-05-2025
A potentially dangerous phosphorus flare was found at Montrose Beach this week, and the U.S. Coast Guard said three more remain unaccounted for.
Coast Guard Sector Lake Michigan said the flares were used for a joint military exercise with the Air Force earlier this month offshore from Milwaukee. Four phosphorus pyrotechnics failed to activate when they hit the water during the exercise, the Coast Guard said.
The flares are considered armed if they do not activate. When they do, they produce a red smoke and flame that can reach 2,900 degrees Fahrenheit, the Coast Guard said.
The flares ignite when they hit water, after a cap and screw are removed.
One flare was found on Monday by a lifeguard at Montrose Beach — a popular beach known in particular for its dog-friendly area and its piping plovers. The newest generation of birds laid their first egg at the beach just last week.
Chicago beaches also opened for the season this week.
U.S. Coast Guard
The Coast Guard said three live phosphorus pyrotechnics from the exercise in Milwaukee are still out there. Anyone who finds a silver-colored cylinder on the beach should call 911, the Coast Guard said.
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Human Osteoblasts Market to Reach US$ 87.1 Million by 2033
Human Osteoblasts Market to Reach US$ 87.1 Million by 2033

Yahoo

time17 minutes ago

  • Yahoo

Human Osteoblasts Market to Reach US$ 87.1 Million by 2033

The market is currently experiencing robust growth, fueled by a post-pandemic surge in orthopedic surgeries and significant investment in regenerative medicine. Innovations in 3D bioprinting and smart scaffolds are creating new therapeutic possibilities for bone repair. Chicago, Aug. 20, 2025 (GLOBE NEWSWIRE) -- The global human osteoblasts market was valued at US$ 48.2 million in 2024 and is expected to reach US$ 87.1 million by 2033 at a CAGR of 6.8% during the forecast period 2025–2033. The future potential of the human osteoblasts market lies in the convergence of artificial intelligence with advanced biomanufacturing. AI-powered platforms are now capable of analyzing genomic data from 1000s of individuals to predict osteoblast response to new drug compounds, drastically reducing discovery timelines. This synergy is enabling the creation of patient-specific 3D-bioprinted bone grafts. As of 2025, researchers are successfully embedding patient-derived osteoblasts into custom scaffolds with 95% cell viability post-printing. These constructs are being tested in preclinical models for craniofacial reconstruction and spinal fusion, promising a new era of personalized regenerative medicine. Demand for highly characterized osteoblasts for these applications is projected to soar. Download Sample Pages: Another significant growth frontier of the human osteoblasts market is the application of osteoblast research to counteract microgravity-induced bone loss in astronauts. With 3 new long-duration space missions planned by international agencies before 2028, research into osteoblast function in simulated microgravity is intensifying. Furthermore, the veterinary orthopedics market represents a substantial, untapped opportunity. In 2024, an estimated 1.2 million companion animals in the U.S. alone underwent procedures for fractures or degenerative joint diseases. The development of canine and equine osteoblast cell lines for testing new veterinary implants and cell-based therapies is an emerging field that could create an entirely new vertical within the broader market. Key Findings in Human Osteoblasts Market Market Forecast (2033) US$ 87.1 million CAGR 6.8% Top Drivers Rising prevalence of osteoporosis and degenerative bone diseases globally. Technological advancements in cell-based therapies and tissue engineering. Increasing geriatric population driving demand for orthopedic surgical procedures. Top Trends Shift towards personalized medicine using patient-derived osteoblast cultures. Development of 3D bioprinting for creating patient-specific bone grafts. Growing adoption of minimally invasive bone regeneration surgical techniques. Top Challenges Expensive cell-based therapies and procedures. Stringent and complex regulatory approval pathways for new biologics. Top 12 Key Players Strategically Dominate the Evolving Global Human Osteoblasts Market The competitive environment is both concentrated and highly specialized. Analysis in 2024 consistently identifies 12 key players shaping the industry. These include Sigma-Aldrich, Athersys Inc., Cerapedics Inc., CryoLife, Inc., and Cytori Therapeutics Inc. Other notable companies are USA Stem Cell Inc., Vericel Corporation, Wright Medical Group N.V, Biocomposites, BD, Zimmer Biomet, and PromoCell. In the crucial U.S. orthopedic biomaterials sector, a key application area, 3 major competitors—Medtronic, DePuy Synthes, and Stryker—were noted as dominant forces in 2024. Suppliers offer highly specific product lines to meet diverse research needs. As of 2025, PromoCell provides 4 primary product categories related to osteoblasts, including cells and specialized growth media. Similarly, Innoprot offers 2 distinct types of primary human osteoblasts as of 2024 Human Calvarial and Human Femoral Osteoblasts in the human osteoblasts market. InSCREENex provides 1 specific immortalized human osteoblast cell line, CI-huOB. Product quality and performance are paramount. Lonza guarantees 10 population doublings for its Clonetics™ Normal Human Osteoblasts, ensuring robust expansion for 2024 research. Innoprot's immortalized cells demonstrate a growth potential of over 30+ passages, a significant advantage. Recent Product and Technology Launches Signal Rapid Advancement Within the Market Innovation remains a cornerstone of human osteoblasts market growth, with companies actively launching advanced products. On April 15, 2024, CryoLife, Inc. introduced 1 new osteoblast culture system designed to enhance cell viability. Zimmer Biomet followed suit in February 2024, launching 1 new bioreactor system for osteoblast cultivation with improved scalability. Innovation extends to cell preservation. In 2024, PromoCell released 1 new protein- and animal component-free cryopreservation medium, Cryo-SFM Plus, featuring advanced antioxidant technology. Intellectual property is also a key competitive tool. Bone Solutions Inc. was awarded 5 new patents in fiscal year 2025 for its Mg OSTEOCRETE technology, a bone substitute that stimulates osteoblast activity. Practical usability is crucial for clinical adoption. Bone Solutions' Mg OSTEOCRETE boasts a preparation time of just 30 seconds, a significant handling benefit for 2025 applications. To support adjacent research fields, PromoCell also launched 1 new Cancer Media Toolbox in 2024 to facilitate the establishment of primary cancer cell lines and complex 3D tumor models. Active Clinical Trials for Osteoblast-Related Therapies Underpin Future Market Expansion The clinical development pipeline is a strong indicator of future commercial opportunities. In February 2024, Biocomposites initiated 2 Phase 2 clinical trials for its STIMULAN VG® bone graft substitute. These trials will assess efficacy in treating diabetic foot osteomyelitis and stage 4 pressure ulcers. Osteosarcoma research, a critical area for the human osteoblasts market, is also advancing. In 2024, the Osteosarcoma Institute (OSI) sponsored 1 Phase 2 clinical trial in Spain for OMO-103, a promising MYC inhibitor. A remarkable 25 months was the fast-tracked timeline to launch the OMO-103 trial, showcasing increased efficiency in clinical development. In the United States, a 2024 study was published on 1 FDA/IRB-approved GMP-manufactured stem cell product, PSC-01, for knee osteoarthritis. The study showed that a single treatment provided pain reduction and increased function for 2.5 years. Research methodologies are also being refined. A 2024 clinical trial enrolled 30 patients to analyze the effects of lasers on alveolar bone preservation. A Phase 1 trial protocol published in 2024 detailed a 3+3 dose escalation method for a study using human umbilical cord-derived osteoblasts for femoral head osteonecrosis. Favorable Regulatory Approvals in 2024 Create a Promising Outlook for Therapies The regulatory climate for cell and gene therapies in the human osteoblasts market became increasingly favorable in 2024. The FDA approved 7 new cell and gene therapy products Amtagvi, Aucatzyl, Beqvez, Kebilidi, Ryoncil, Symvess, and Tecelra. The pace of approvals is accelerating, with 3 of these therapies gaining approval in early 2024 alone. On December 19, 2024, the FDA approved 1 mesenchymal stem cell product, Ryoncil from Mesoblast. Another landmark approval was granted on November 13, 2024, for 1 gene therapy for AADC deficiency, Kebilidi from PTC Therapeutics. On November 8, 2024, the FDA approved 1 CD19-directed T-cell immunotherapy, obecabtagene autoleucel (Aucatzyl), from Autolus Inc. The recommended dose for Aucatzyl is 410x10^6 CAR-positive viable T-cells. StemCyte received approval for 1 allogeneic hematopoietic stem cell therapy, Regenecyte, on November 26, 2024. Patent activity, a precursor to commercialization, is also strong. Innovators at the University of Pittsburgh were issued 5 patents in August 2024, while University of Minnesota researchers secured 111 US patents in 2024 for various health science discoveries. Significant Funding and Strategic Grants Accelerate Osteoblast-Focused Research and Development Robust financial investment is fueling the engine of scientific discovery across the global human osteoblasts market. The Osteosarcoma Institute (OSI) awarded $1,100,000 to 3 groundbreaking osteosarcoma research projects during its 2023–2024 grant cycle. One of these grants provided $500,000 in funding to Dr. David Lyden's team for a project focused on metastasis. The impact of such funding is often magnified. Building on an initial OSI grant, Baylor College of Medicine secured $4,500,000 in additional funding in 2024 to advance CAR-T therapy research. International collaborations are also being funded. In October 2024, one US–Israel Binational Science Foundation grant was awarded to a team including University of Vermont Cancer Center members to study osteosarcoma epigenetics. Wherein, government funding remains critical. In August 2024, Medical College of Georgia scientists received a five-year grant of $2,400,000 from the National Institute on Aging to study how stress hormones signal the skeleton. Philanthropic efforts are also significant, with over $4,600,000 raised from more than 1,000 donations in 2024 to support the OSI's vital mission. Diverse and Critical Applications Are Driving Widespread Adoption Across Multiple Fields The utility of human osteoblasts market extends across a wide spectrum of research and clinical applications. The dynamic interplay between 2 key cell types, osteoblasts and osteoclasts, is central to bone health, driving research into osteoporosis. In the laboratory, standardized protocols are essential. Human osteoblasts from PromoCell require approximately 3 weeks to show detectable mineralization in culture. Advanced 3D modeling is becoming a standard research tool. InSCREENex's immortalized human osteoblasts can form 3D "mini-bones" when cultured under specific conditions. Suppliers like PromoCell target 3 key application areas cell expansion, culture initiation, and differentiation. A 2024 study highlighted the use of 1 new 3D model based on human fetal osteoblasts to study osteocyte commitment. The clinical relevance is clear. The classic period for new bone formation after a tooth extraction, a process driven by osteoblasts, is 6-10 weeks. A 2025 study analyzed ion release from 3D printed scaffolds at 3 days, 7 days, and 15 days, key time points for osteoblast interaction. Quality Guarantees and Emerging Technologies Redefine the Global Human Osteoblasts Market The reliability of research outcomes depends on the quality of the underlying cell products. Suppliers in the market provide stringent quality guarantees. PromoCell guarantees >500,000 viable cells per cryovial after thawing. Innoprot similarly ensures >500,000 viable cells in each vial, cryopreserved at passage one, while Lonza guarantees ≥500,000 viable cells per ampule. For immortalized lines, Innoprot provides >1,000,000 viable cells per vial, and InSCREENex includes >0.5 million viable cells per vial. Longevity in culture is also specified. Innoprot guarantees 15 population doublings for its primary osteoblasts post-delivery. PromoCell recommends a split ratio of 1:3 to 1:6 for its primary cells. To support targeted research, PromoCell holds >100 HLA-typed cell donors in stock as of 2024, offering 4-digit high-resolution typing. The InSCREENex cell line was derived from a 63-year-old female donor. Concurrently, emerging technologies are creating new opportunities for the human osteoblasts market. Three key trends noted in the 2024 orthopedic biomaterials market are biodegradable materials, 3D printing, and nanotechnology. A September 2024 paper detailed 1 study using collagen-based 3D printed scaffolds to investigate osteoblast activity. A May 2024 publication described 1 new 3D in-vitro model using human fetal osteoblasts. A 2025 study utilized 2 cell lines to test 3D printed composite samples, using standards prepared from 1,000 mg/L stock solutions and a plating density of 10,000 cells/well for viability tests. Customize the Data Scope to Match Your Objectives: Strategic Alliances and Focused Regional Developments Indicate Strong Global Market Growth Corporate strategies and regional activities in 2024 and 2025 underscore a commitment to global expansion of the human osteoblasts market. On March 10, 2024, 1 major collaboration was announced between Athersys Inc. and Cerapedics Inc. to develop a novel osteoblast-based therapy. Service providers are also expanding. In 2024, Thermo Fisher launched its "Accelerator™ Drug Development" solutions, offering 360-degree support to biotech companies. Licensing agreements are expanding market access for key biologics. Bio-Thera Solutions entered into 1 exclusive licensing agreement on December 24, 2024, for its ustekinumab biosimilar. On the same day, GlycoNex announced 1 licensing agreement for its denosumab biosimilar, a therapy for bone loss. Regional market activities are intensifying. In 2024, 1 pivotal Phase 2 trial for osteosarcoma was opened in Barcelona, Spain. Stryker expanded with 1 new testing facility in India in February 2024. In May 2024, Sanofi announced 1 new partnership with OpenAI to accelerate R&D. The North American market saw the FDA grant 1 US approval to Pfizer's Beqvez on April 25, 2024. Europe showed activity with 1 approval by the UK's MHRA on January 15, 2025. The Asia-Pacific region is also growing, evidenced by 1 approval in Japan on January 7, 2025, for Biocon's ustekinumab. Global Human Osteoblasts Market Major Players: Athelas Bionova Scientific Cell Signaling Technology Corning EMD Millipore Invitrogen Lonza Merck Group NantKwest Promega R and D Systems ReproCELL Sigma-Aldrich Stemcell Technologies Thermo Fisher Scientific Other Prominent Players Key Market Segmentation: By Product Human Cell Culture Osteoblast Cell Lines By Application Traumatic Injuries Road Accidents Regeneration Surgeries Orthopedics Musculoskeletal and Spine Neurology By End user Hospitals Specialty Clinics Ambulatory Surgical Centers By Region North America Europe Asia Pacific Middle East & Africa South America Need a Detailed Walkthrough of the Report? Request a Live Session: About Astute Analytica Astute Analytica is a global market research and advisory firm providing data-driven insights across industries such as technology, healthcare, chemicals, semiconductors, FMCG, and more. We publish multiple reports daily, equipping businesses with the intelligence they need to navigate market trends, emerging opportunities, competitive landscapes, and technological advancements. With a team of experienced business analysts, economists, and industry experts, we deliver accurate, in-depth, and actionable research tailored to meet the strategic needs of our clients. At Astute Analytica, our clients come first, and we are committed to delivering cost-effective, high-value research solutions that drive success in an evolving marketplace. Contact Us:Astute AnalyticaPhone: +1-888 429 6757 (US Toll Free); +91-0120- 4483891 (Rest of the World)For Sales Enquiries: sales@ Follow us on: LinkedIn | Twitter | YouTube CONTACT: Contact Us: Astute Analytica Phone: +1-888 429 6757 (US Toll Free); +91-0120- 4483891 (Rest of the World) For Sales Enquiries: sales@ Website: in retrieving data Sign in to access your portfolio Error in retrieving data Error in retrieving data Error in retrieving data Error in retrieving data

Service dog reunited with blind owner two months after being stolen from Chicago backyard
Service dog reunited with blind owner two months after being stolen from Chicago backyard

Yahoo

time17 minutes ago

  • Yahoo

Service dog reunited with blind owner two months after being stolen from Chicago backyard

A loyal service dog has been reunited with its owner nearly three months after being stolen from a backyard in Chicago, officials say. Bam Bam, the 14-year-old tan and white Dachshund, was stolen from the yard in the Logan Square neighborhood of Chicago on June 5, according to a GoFundMe created to help find him. His owner, Angel Santiago, who is legally blind due to glaucoma, spent days walking miles and handing out flyers with the hope of finding his beloved friend and aid. Santiago told police that two unknown people entered through his gate and took the canine. Although he heard the disturbance and even grabbed one of the suspects in an attempt to stop him, the men were able to get away with Bam Bam. He believes the suspect he grabbed sounded like a teenager. Santiago said that he could hear Bam Bam barking as the men ran away with him. 'Let your eyes be mine and look out for Bam Bam for me, please. I beg of you to help me,' he wrote in a desperate plea on the fundraiser. The GoFundMe totalled almost $20,000 as concerned citizens looked to support the cause. A Facebook Page set up for the search effort led several flyer events, petitions, and meetups in the city to help find the dog. On August 12, a post read: 'We are incredibly grateful to be working with an amazing group of volunteers who are organizing walking routes and flyering to reach local residents who may not have heard Angel and Bam Bam's story.| Thankfully, after nearly three months of desperate searching, Bam Bam was found. On Tuesday evening, Chicago police said an unidentified man and woman dropped off a white-and-yellow dachshund mix at the 16th District police station. Police quickly confirmed the animal to be Bam Bam. Santiago, who is both blind and has Type 2 diabetes, rushed to the station to be reunited with Bam Bam, say police. The dog was reportedly in good health when it was recovered, police said. As it stands, no arrests have been made. A team of detectives is continuing to investigate the circumstances of how the dog ended up at the station. The pair who dropped off Bam Bam refused to hand over any information to the police before leaving, according to authorities.

At least 1 student at Chicago elementary school taken to hospital after possible overdose
At least 1 student at Chicago elementary school taken to hospital after possible overdose

CBS News

timean hour ago

  • CBS News

At least 1 student at Chicago elementary school taken to hospital after possible overdose

Chicago police and firefighters responded to Tanner Elementary School in the Grand Crossing neighborhood on Wednesday for reports of a possible overdose. One parent at Tanner said she was told several children overdosed. Fire Department officials said one child was taken to Comer Children's Hospital, and two others refused treatment. The condition of the child who was taken to the hospital was not immediately available. It was unclear what the children might have overdosed on. Chicago Public Schools officials said they were looking into the details of what happened, and said one student was taken to the hospital as a precaution.

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