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Board-Certified Vascular and Endovascular Surgeon Performs First Commercial Symvess® Implantation; Cites Bioengineered Blood Vessel as “Revolutionary Advancement”

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Humacyte (Nasdaq: HUMA) announced that board-certified vascular and endovascular surgeon Jeromy Brink, MD, has performed the first post‑BLA‑approval Symvess implants in Arizona at Banner University Medical Center in Phoenix, completing four procedures within two weeks of gaining access to the product.

Symvess, an FDA‑approved acellular tissue engineered vessel, is indicated as a vascular conduit for adults with extremity arterial injury when urgent revascularization is needed to avoid imminent limb loss and an autologous vein graft is not feasible. The off‑the‑shelf vessel is available on demand in the operating room. Humacyte highlights important safety information, including a boxed warning for graft failure, risks of graft rupture, anastomotic failure, thrombosis, and potential transmission of infectious diseases. Uses outside the approved extremity vascular trauma indication remain investigational.

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Market Context

The prior dialysis-access clinical update was followed by a 1.42% 24-hour gain, indicating historica...
Analysis

The prior dialysis-access clinical update was followed by a 1.42% 24-hour gain, indicating historical support for positive development news. This update adds commercial-use evidence, while moderate short positioning remained a risk factor.

Key Figures

Symvess implants: four implants Product access: two weeks FDA approval: December 2024 +4 more
7 metrics
Symvess implants four implants Banner University Medical Center in Phoenix
Product access two weeks since gaining access to Symvess
FDA approval December 2024 vascular conduit indication
Surgeon experience 25 years vascular surgery practice
Quoted advancement period 30 years open surgical bypass
Anastomotic failure timing 36 days within the first 36 days post-implantation
Common adverse reactions ≥ 10% vascular graft thrombosis, pyrexia, and pain

Historical Context

5 past events · Latest: Aug 12 (Positive)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Aug 12 Second-quarter earnings Positive -6.5% Positive clinical update and commercialization progress accompanied results, financing, and a net loss.
Aug 07 Earnings date notice Neutral +1.2% Company scheduled second-quarter results and a business-update webcast for August 12.
Jul 27 FDA IND acceptance Positive +7.9% FDA accepted an IND for a first-in-human Phase 2a coronary bypass study.
Jul 14 Advisory appointments Positive +2.3% Two nephrologists joined as advisors ahead of planned dialysis-access commercialization.
Jun 15 Phase 3 clinical data Positive +1.4% Phase 3 dialysis-access results showed more catheter-free days and fewer infections.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

Positive clinical and commercial updates generally aligned with gains, while the latest mixed earnings update diverged with a decline.

Key Terms

biologics license application, acellular tissue engineered vessel, autologous vein graft, anastomotic failure, +2 more
6 terms
biologics license application regulatory
"The first post-Biologics License Application (BLA) approval implants"
A biologics license application is a formal request submitted to regulatory authorities seeking approval to market a new biological medicine, such as vaccines or treatments made from living organisms. It is a comprehensive review process that evaluates the safety, effectiveness, and manufacturing quality of the product. For investors, receiving approval signals that a biological therapy can be sold to the public, potentially leading to revenue growth and market success.
acellular tissue engineered vessel medical
"Symvess, acellular tissue engineered vessel-tyod, is now being used"
Acellular tissue engineered vessels are lab-made replacement blood vessels created from biological materials but manufactured without living cells, so they act like a ready-made tube that the body can grow into and line with its own cells. For investors, they matter because they target a steady medical need (for example, replacing or bypassing damaged vessels) and carry commercial upside if proven safe and long-lasting, while also involving manufacturing, clinical trial and regulatory risks.
autologous vein graft medical
"and an autologous vein graft is not feasible"
A surgical procedure in which a surgeon takes a vein from the same patient and uses it to bypass or replace a blocked or damaged blood vessel elsewhere in the body. Think of swapping out a kinked section of plumbing with a piece taken from another part of the same house; using the patient’s own tissue lowers rejection risk and can improve long-term success. For investors, its use affects demand for related surgical tools, hospital procedure volumes, device competition, recovery outcomes and reimbursement dynamics.
anastomotic failure medical
"Anastomotic failure has occurred in patients treated with Symvess."
Anastomotic failure is when a surgical connection between two bodily structures—most often sections of intestine—is unable to hold and leaks, separates, or closes. For investors, it matters because such failures can increase patient complications, lengthen hospital stays, raise treatment costs, trigger product recalls or lawsuits, and slow or block regulatory approvals and market adoption of surgical devices, materials, or therapies designed to create or protect these joins.
antiplatelet therapy medical
"patients received antiplatelet therapy following implantation"
Antiplatelet therapy uses medicines that make blood platelets less likely to stick together, lowering the chance blood clots will form. Think of platelets as tiny workers or glue patches that seal leaks in blood vessels; these drugs reduce that “glue” to prevent heart attacks, strokes, or clots on medical devices. For investors this matters because safety, trial results, approvals, and prescribing patterns directly affect demand, market size, and regulatory risk for related drugs and devices.
regenerative medicine advanced therapy regulatory
"FDA’s Regenerative Medicine Advanced Therapy (RMAT) designation"
Regenerative Medicine Advanced Therapy (RMAT) is a U.S. regulatory designation for cell, gene, and tissue‑based therapies intended to treat serious or life‑threatening conditions; it gives developers a “fast lane” with more frequent agency interaction and eligibility for accelerated review pathways. For investors, an RMAT label signals that a therapy may reach market faster and face less regulatory uncertainty than a standard program, which can raise the potential value and reduce timeline risk—though it is not a guarantee of approval.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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– Jeromy Brink, MD, Mayo Clinic–trained vascular surgeon in Phoenix, is the first surgeon in Arizona to implant Symvess, the first and only FDA-approved bioengineered human blood vessel –

– Symvess is available off-the-shelf in the operating room, sparing surgeons the time required to harvest a vein from a patient facing imminent limb loss –

DURHAM, N.C., Aug. 18, 2026 (GLOBE NEWSWIRE) -- Humacyte, Inc. (Nasdaq: HUMA), a commercial-stage biotechnology company that develops bioengineered human tissues, today announced that Symvess, acellular tissue engineered vessel-tyod, is now being used by surgeons in Arizona. The first post-Biologics License Application (BLA) approval implants in the state were performed by Jeromy Brink, MD, a board-certified vascular and endovascular surgeon in Phoenix.

Dr. Brink has performed four Symvess implants at Banner University Medical Center in Phoenix since gaining access to the first-in-class product two weeks ago. He called the Symvess implants the “most revolutionary advancement in open surgical bypass in 30 years.”

“Vascular surgeons have been waiting for Symvess for decades,” said Dr. Brink, who trained at the Mayo Clinic in Rochester, Minnesota, and has practiced for 25 years. “Never before has there been an off-the-shelf conduit that is so easy to use and sutures like vein. If these conduits truly go on to arterialize with intimal cells, I believe Symvess will replace all other non-autogenous grafts in all applications. It’s the Cadillac of conduits.”

Symvess was approved by the FDA in December 2024 as a vascular conduit for adults with extremity arterial injury when urgent revascularization is needed to avoid imminent limb loss and an autologous vein graft is not feasible. As a first-in-class, off-the-shelf bioengineered human tissue, Symvess is available for use on-demand in the operating room, sparing surgeons the time required to harvest a vein from the patient and avoiding a second surgical site on a patient who is often already critically injured.

“Every hospital that adds Symvess to its shelf is another operating room where a surgeon has a treatment option at the moment it matters most,” said Laura Niklason, MD, PhD, Founder, President and Chief Executive Officer of Humacyte. “Dr. Brink and his colleagues in Arizona are exactly the kind of high-volume surgeons for whom we developed Symvess.”

For uses other than the FDA approval in the extremity vascular trauma indication, Symvess is an investigational product and has not been approved for sale by the FDA or any other regulatory agency. The observations expressed by Dr. Brink reflect his experiences only, and the experiences of other surgeons may vary.

More information about Symvess and Humacyte's bioengineered vascular technologies can be found here: https://symvess.com/

About Jeromy Brink, MD

Dr. Jeromy Brink is a board-certified vascular and endovascular surgeon focused on minimally invasive and surgical vascular care. He completed his vascular training at the Mayo Clinic in Rochester, Minnesota, and earned his medical degree from the University of Arizona College of Medicine. He is a faculty member of the Banner University Medical Center Phoenix Integrated Surgical Residency program and an assistant clinical professor at the University of Arizona College of Medicine. Dr. Brink currently practices privately and is one of the highest-volume vascular surgeons in the Southwest.

INDICATION

Symvess is an acellular tissue engineered vessel indicated for use in adults as a vascular conduit for extremity arterial injury when urgent revascularization is needed to avoid imminent limb loss, and autologous vein graft is not feasible.

IMPORTANT SAFETY INFORMATION

BOXED WARNING: GRAFT FAILURE

Loss of Symvess integrity due to mid-graft rupture or anastomotic failure can result in life threatening hemorrhage.

CONTRAINDICATIONS

DO NOT use Symvess in patients who have a medical condition that would preclude long-term antiplatelet therapy (such as aspirin or clopidogrel) after resolution of acute injuries. 

WARNINGS AND PRECAUTIONS

  • Graft Rupture

Vascular graft rupture has occurred in patients treated with Symvess. Advise patients that arterial bleeding can be life-threatening and to seek emergent medical evaluation for any signs or symptoms of graft rupture such as bleeding, pain and swelling in the extremity, or signs of extremity ischemia.

  • Anastomotic Failure

Anastomotic failure has occurred in patients treated with Symvess. In clinical studies of Symvess, anastomotic failure occurred within the first 36 days post-implantation. Monitor patients for signs of anastomotic failure such as pain and swelling at the surgical site, decreasing hemoglobin or other signs and symptoms of bleeding. Advise patients to seek urgent medical evaluation if they have any signs or symptoms that may be indicative of anastomotic failure such as bleeding, swelling or worsening pain at the surgical site or changes in color of overlying skin.

  • Thrombosis

Thrombosis has occurred in patients treated with Symvess. In clinical trials of Symvess, patients received antiplatelet therapy following implantation of Symvess to reduce the risk of thrombosis. The risk of thrombosis may increase in patients who discontinue antiplatelet therapy. Anti-platelet therapy is recommended following treatment with Symvess.

  • Transmission of Infectious Diseases

Symvess is manufactured using cells and reagents that may transmit infectious diseases or infectious agents. The cells used in the manufacture of Symvess are derived from a donor who met the donor eligibility requirements for transmissible infectious diseases which includes screening and testing of risks associated with human immunodeficiency virus 1 (HIV-1), human immunodeficiency virus 2 (HIV-2), hepatitis B virus (HBV), hepatitis C virus (HCV), and syphilis (Treponema pallidum). The cell banks are tested negative for human and animal viruses, retroviruses, bacteria, fungi, yeast, and mycoplasma. While all animal-derived reagents are tested for animal viruses, bacteria, fungi, and mycoplasma before use, these measures do not eliminate the risk of transmitting these or other transmissible infectious diseases and disease agents. Fetal bovine serum is sourced to minimize the risk of transmitting a prion protein that causes bovine spongiform encephalopathy and the cause of a rare fatal condition in humans called variant Creutzfeldt-Jakob disease. No transmissible agent infections have been reported during clinical testing.

ADVERSE REACTIONS

The most common adverse reactions (occurring at ≥ 10%), were vascular graft thrombosis, pyrexia (fever) and pain.

Please see full Prescribing Information at www.symvess.com, including Boxed Warning, for Symvess.

About Humacyte

Humacyte, Inc. (Nasdaq: HUMA) is developing a disruptive biotechnology platform to deliver universally implantable bioengineered human tissues, advanced tissue constructs, and organ systems designed to improve the lives of patients and transform the practice of medicine. The Company develops and manufactures acellular tissues to treat a wide range of diseases, injuries, and chronic conditions. Humacyte’s Biologics License Application for the acellular tissue engineered vessel (ATEV) in the vascular trauma indication was approved by the FDA in December 2024. ATEVs are also currently in late-stage clinical trials targeting other vascular applications, including arteriovenous (AV) access for hemodialysis and peripheral artery disease (PAD). Preclinical development is also underway in coronary artery bypass grafts, pediatric heart surgery, treatment of type 1 diabetes, and multiple novel cell and tissue applications. Humacyte’s 6mm ATEV for AV access in hemodialysis was the first product candidate to receive the FDA’s Regenerative Medicine Advanced Therapy (RMAT) designation and has also received FDA Fast Track designation. Humacyte’s 6mm ATEV for urgent arterial repair following extremity vascular trauma and for advanced PAD also have received RMAT designations. The ATEV received priority designation for the treatment of vascular trauma by the U.S. Secretary of Defense. For more information, visit www.Humacyte.com.

Forward-Looking Statements

This press release contains forward-looking statements that are based on beliefs and assumptions and on information currently available. In some cases, you can identify forward-looking statements by the following words: “may,” “will,” “could,” “would,” “should,” “expect,” “intend,” “plan,” “anticipate,” “believe,” “estimate,” “predict,” “project,” “potential,” “continue,” “ongoing” or the negative of these terms or other comparable terminology, although not all forward-looking statements contain these words. These statements involve risks, uncertainties, and other factors that may cause actual results, levels of activity, performance, or achievements to be materially different from the information expressed or implied by these forward-looking statements. Although we believe that we have a reasonable basis for each forward-looking statement contained in this press release, we caution you that these statements are based on a combination of facts and factors currently known by us and our projections of the future, about which we cannot be certain. Forward-looking statements in this press release include, but are not limited to, our plans and ability to commercialize Symvess and, if approved by regulatory authorities, our product candidates, successfully and on our anticipated timelines; the degree of market acceptance of and the availability of third-party coverage and reimbursement for Symvess and, if approved by regulatory authorities, our product candidates; our ability to manufacture Symvess and, if approved by regulatory authorities, our product candidates in sufficient quantities to satisfy our clinical trial and commercial needs; the anticipated benefits of our ATEVs and CTEVs relative to existing alternatives; our plans and ability to execute product development, process development and preclinical development efforts successfully and on our anticipated timelines; our ability to design, initiate and successfully complete clinical trials and other studies for our product candidates and our plans and expectations regarding our ongoing or planned clinical trials; the anticipated characteristics and performance of our ATEVs and CTEVs; the implementation of our business model and strategic plans for our business; our ability to execute and achieve the expected benefits of our cost-saving measures and whether our efforts will result in further actions or additional asset impairment charges that adversely affect our business; and the timing or likelihood of regulatory filings, acceptances and approvals. We cannot assure you that the forward-looking statements in this press release will prove to be accurate. These forward-looking statements are subject to a number of significant risks and uncertainties that could cause actual results to differ materially from expected results, including, among others, changes in applicable laws or regulations, the possibility that Humacyte may be adversely affected by other economic, business, competitive and/or reputational factors, and other risks and uncertainties, including those described under the header “Risk Factors” in our Annual Report on Form 10-K for the year ended December 31, 2025 and the Form 10-Q for the quarter ended March 31, 2026, each as filed by Humacyte with the SEC, and in future SEC filings. Most of these factors are outside of Humacyte’s control and are difficult to predict. Furthermore, if the forward-looking statements prove to be inaccurate, the inaccuracy may be material. In light of the significant uncertainties in these forward-looking statements, you should not regard these statements as a representation or warranty by us or any other person that we will achieve our objectives and plans in any specified time frame, or at all. Except as required by law, we have no current intention of updating any of the forward-looking statements in this press release. You should, therefore, not rely on these forward-looking statements as representing our views as of any date subsequent to the date of this press release.

Humacyte Investor Contact:

Joyce Allaire
LifeSci Advisors LLC
+1-617-435-6602
jallaire@lifesciadvisors.com
investors@humacyte.com

Humacyte Media Contact:

Jonathan Taylor
Precision Strategies
+1-571-428-3479
rich@precisionstrategies.com
media@humacyte.com


FAQ

What did Humacyte (NASDAQ: HUMA) announce about Symvess use in Arizona on August 18, 2026?

Humacyte announced that Symvess is now being used by surgeons in Arizona, with four implants performed by Dr. Jeromy Brink. According to Humacyte, these were the first post‑Biologics License Application approval Symvess implants in the state at Banner University Medical Center Phoenix.

What is Symvess and what is its FDA-approved indication for patients, according to Humacyte (HUMA)?

Symvess is an acellular tissue engineered vessel used as a vascular conduit in adults with extremity arterial injury. According to Humacyte, it is indicated when urgent revascularization is needed to avoid imminent limb loss and an autologous vein graft is not feasible.

What are the main safety risks and boxed warning for Symvess mentioned by Humacyte (HUMA)?

Symvess carries a boxed warning for graft failure, including mid‑graft rupture or anastomotic failure that can cause life‑threatening hemorrhage. According to Humacyte, other risks include thrombosis, potential transmission of infectious diseases, and common adverse reactions such as vascular graft thrombosis, fever (pyrexia), and pain.

Is Symvess approved for uses beyond extremity vascular trauma, and how does Humacyte (HUMA) describe these uses?

Symvess is only FDA‑approved for extremity arterial injury when urgent revascularization is needed and vein graft is not feasible. According to Humacyte, all other uses of Symvess are considered investigational and have not been approved for sale by the FDA or other regulators.

How is Symvess supplied to surgeons, and what benefit does Humacyte (HUMA) highlight for operating rooms?

Symvess is supplied as an off‑the‑shelf bioengineered human tissue available on demand in the operating room. According to Humacyte, this availability can spare surgeons the time needed to harvest a vein and avoid creating a second surgical site in often critically injured patients.

What broader pipeline of bioengineered vascular products is Humacyte (NASDAQ: HUMA) developing beyond Symvess?

Humacyte is developing acellular tissue engineered vessels for multiple vascular applications, including arteriovenous access for hemodialysis and peripheral artery disease. According to Humacyte, additional preclinical work targets coronary artery bypass grafts, pediatric heart surgery, type 1 diabetes, and other novel cell and tissue applications.