Pierre Thadee Victor  Kemula net worth and biography

Pierre Kemula Biography and Net Worth

Pierre Kemula, B.Sc. has been our Chief Financial Officer since November 2024. He previously served as the Chief Financial Officer of Nasdaq listed biotech Company, CureVac N.V. from October 2016 to November 2024. Prior to this, Mr. Kemula was Chief Financial Officer of Euronext listed Pixium Vision from May 2014 to September 2016, and Vice President of Corporate Finance, Treasury and Financial Markets, as well as Director of Investor Relations, Vice President of Investor Relations at lpsen from September 2008 to May 2014 and December 2008 to July 2012, respectively. He holds a Bachelor of Science in Management Sciences from the London School of Economics, or LSE, in the United Kingdom.

What is Pierre Thadee Victor Kemula's net worth?

The estimated net worth of Pierre Thadee Victor Kemula is at least $88.40 thousand as of October 6th, 2026. Mr. Kemula owns 10,000 shares of AgomAb Therapeutics stock worth more than $88,400 as of October 7th. This net worth approximation does not reflect any other investments that Mr. Kemula may own. Learn More about Pierre Thadee Victor Kemula's net worth.

How do I contact Pierre Thadee Victor Kemula?

The corporate mailing address for Mr. Kemula and other AgomAb Therapeutics executives is Posthoflei 1/6, Antwerp, VL, 2600. AgomAb Therapeutics can also be reached via phone at (323) 302-3530 and via email at [email protected]. Learn More on Pierre Thadee Victor Kemula's contact information.

Has Pierre Thadee Victor Kemula been buying or selling shares of AgomAb Therapeutics?

During the last quarter, Pierre Thadee Victor Kemula has bought $85,900.00 of AgomAb Therapeutics stock. Most recently, on Tuesday, October 6th, Pierre Thadee Victor Kemula bought 10,000 shares of AgomAb Therapeutics stock. The stock was acquired at an average cost of $8.59 per share, with a total value of $85,900.00. Following the completion of the transaction, the chief financial officer now directly owns 10,000 shares of the company's stock, valued at $85,900. Learn More on Pierre Thadee Victor Kemula's trading history.

Who are AgomAb Therapeutics' active insiders?

AgomAb Therapeutics' insider roster includes David Epstein (Director), and Pierre Kemula (CFO). Learn More on AgomAb Therapeutics' active insiders.

Are insiders buying or selling shares of AgomAb Therapeutics?

During the last twelve months, AgomAb Therapeutics insiders bought shares 4 times. They purchased a total of 26,000 shares worth more than $223,780.00. The most recent insider tranaction occured on October, 6th when Director David R. Epstein bought 5,000 shares worth more than $43,500.00. Learn More about insider trades at AgomAb Therapeutics.

Information on this page was last updated on 10/6/2026.

Pierre Thadee Victor Kemula Insider Trading History at AgomAb Therapeutics

Transaction DateBuy/SellNumber of SharesAverage Share PriceTotal TransactionShares Held After TransactionDetails
10/6/2026Buy10,000$8.59$85,900.0010,000View SEC Filing Icon  
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Pierre Thadee Victor Kemula Buying and Selling Activity at AgomAb Therapeutics

This chart shows Pierre Thadee Victor Kemula's buying and selling at AgomAb Therapeutics by year and by quarter.

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AgomAb Therapeutics Company Overview

AgomAb Therapeutics logo
We are a clinical-stage biopharmaceutical company focused on developing novel disease-modifying therapies for immunology and inflammatory diseases, with an initial focus on chronic fibrotic indications with high unmet medical need. Our product candidates are designed to target established pathways and utilize validated modalities with the aim of increasing efficacy while avoiding systemic toxicities in order to overcome the limitations of prior therapeutic approaches. Our initial focus for the treatment of fibrosis is through inhibition of one of the key signaling pathways involved in fibrosis, the transforming growth factor ß, or TGFß, pathway. Our mission is to develop disease-modifying therapeutics that aim to resolve fibrosis and restore organ function to enable patients with these disorders to live fuller and healthier lives. We are advancing a pipeline of novel product candidates for chronic fibrotic disorders with well-validated targets, significant unmet medical needs and large commercial potential. Our pipeline includes: • Ontunisertib (AGMB-129): Our lead product candidate, ontunisertib, is a selective and potent oral, gastrointestinal-restricted small molecule inhibitor of ALK5, or TGFßR1, in development for the treatment of Fibrostenosing Crohn’s Disease, or FSCD. FSCD is a severe complication of Crohn’s Disease, or CD, that is associated with significant morbidity. There are approximately 1.4 million patients under treatment for CD in the seven major markets of the United States, France, Germany, Italy, Spain, the United Kingdom and Japan, and approximately 620,000, or 46%, of these patients have FSCD. The emergence of burdensome symptomatic strictures is considered to be an inevitable consequence of long-term inflammation for the large proportion of patients with CD who progress to FSCD and eventually require surgery. There are no approved pharmacologic therapies for FSCD. We believe ontunisertib has the potential to change the paradigm for treating FSCD patients and provide the first pharmacologic treatment for strictures. Ontunisertib is designed to act locally in the gastrointestinal tract, enabling high exposure in the target tissue. Then, following absorption, ontunisertib is rapidly inactivated in the liver to avoid potential toxicities associated with systemic TGFß signaling inhibition. In November 2025, we announced topline results of the global randomized, double-blind, placebo-controlled Phase 2a trial of ontunisertib, or the STENOVA trial, in 103 FSCD symptomatic patients with at least one ileal stricture. Part A of the STENOVA study achieved its primary endpoint of assessing the safety and tolerability of ontunisertib 100mg QD and 200mg BID in FSCD patients. Pharmacokinetic results confirmed the GI-restricted profile of ontunisertib, with high local and low systemic exposure of ontunisertib in FSCD patients. We also observed positive signals on several exploratory clinical endpoints. The 48-week open-label treatment extension of the STENOVA trial with ontunisertib is currently ongoing and we expect to report the results of such open-label treatment extension in the second half of 2026. Based on the positive results observed in the STENOVA study to date, we are preparing to initiate a Phase 2b trial of ontunisertib in patients with symptomatic FSCD in the second half of 2026. • AGMB-447: AGMB-447, our second clinical-stage product candidate, is an inhaled small molecule inhibitor of ALK5, or TGFßR1, in development for the treatment of idiopathic pulmonary fibrosis, or IPF. IPF is a rare progressive fibrotic lung disease that has a poor prognosis for patients with a median life expectancy of less than five years. IPF affects approximately 240,000 people in the United States, Japan, the United Kingdom, and the four largest European markets (France, Germany, Spain, and Italy), with 30,000 to 40,000 new cases being diagnosed each year in the United States alone. AGMB-447 is designed to have a high local exposure in the lung tissue, and then upon absorption into the bloodstream, AGMB-447 is hydrolyzed and substantially inactivated in order to avoid potential toxicities associated with systemic inhibition of ALK5 signaling. Direct delivery to the lung through inhalation and subsequent lung restriction are designed to confer high efficacy and a favorable safety profile for AGMB-447. We believe AGMB-447 also has the potential to demonstrate a low potential for drug-drug interactions that could make it well-suited for use as a single-agent and in combination with current standard of care therapies. We are conducting a Phase 1 trial with AGMB-447 and have enrolled 108 healthy participants in the SAD and MAD B1-B6 portions of the trial, initiated the IPF cohort and enrolled the first patients. We completed an interim analysis of the SAD and MAD B1-6 stages in 108 healthy participants, where we observed positive topline interim results, and expect to report data from IPF patients in the second half of 2026. • Discovery and preclinical portfolio: We have a robust discovery pipeline including several programs in the early stages of development. Fibrosis and the role of TGFß Fibrosis represents an aberrant response of a tissue to injury, leading to progressive tissue scarring that may be triggered by trauma, inflammation, infection, cell injury or cancer, amongst others. As a result, fibrosis can lead to organ dysfunction and failure. The body’s normal response to injury involves the activation of cells that produce collagen and other components of the extracellular matrix, or ECM, that are part of the healing process for the tissue. Under normal physiological circumstances, scarring is self-limited and the resulting scar resolves itself, leaving behind a tissue architecture similar to what was present before the injury. However, in certain chronic disease states, this process of healing becomes both prolonged and excessive, resulting in fibrotic remodeling which interferes with organ function. Fibrosis can occur in many organ systems throughout the body including the lungs, liver, kidneys, gastrointestinal tract, skin and muscles. While the exact pathologies for diseases in these organs differ, fibrosis involves many of the same cell types and signaling pathways across different organs and tissue. Signaling by TGFß has been shown to play a central role in the pathophysiology of fibrosis. The well understood role of the TGFß pathway, including through the ALK5 receptor, in driving multiple aspects of fibrosis, has made it an attractive target for antifibrotic drug development. In healthy tissue, TGFß’s physiological role is to initiate healing after injury. In fibrotic diseases, however, TGFß signaling remains continuously activated in response to prolonged insults such as inflammation, leading the surrounding tissue to deposit excess ECM, which eventually leads to tissue fibrosis. There is strong preclinical evidence and encouraging preliminary clinical evidence that TGFß inhibition could be effective in multiple indications; however, development of previous ALK5 inhibitors has been limited due to safety concerns as systemic inhibition of TGFß causes toxicity in the heart and large vessels. We believe our programs have the potential to overcome these systemic toxicity challenges by acting locally within tissue of interest and avoiding systemic exposure while allowing us to leverage the well-described role of TGFß in fibrosis. We were initially incorporated under the laws of Belgium on April 13, 2017 as a Belgian private limited liability company (besloten vennootschap) and were converted under the laws of Belgium into a Belgian limited liability company (naamloze vennootschap) on March 14, 2019. Our principal executive offices are located in Antwerpen, Belgium.
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Today's Range

Now: $8.80
Low: $8.85
High: $9.35

50 Day Range

MA: $12.82
Low: $8.56
High: $15.78

2 Week Range

Now: $8.80
Low: $7.97
High: $17.82

Volume

15,407 shs

Average Volume

139,478 shs

Market Capitalization

$319.03 million

P/E Ratio

N/A

Dividend Yield

N/A

Beta

N/A