Blog Archive

Showing posts with label oncology. Show all posts
Showing posts with label oncology. Show all posts

Thursday, July 25, 2019

Freenome nabs $160M to advance blood-based colorectal cancer test

Investors have poured boatloads of cash into liquid biopsy companies promising that their technology is the solution for non-invasive screening of early-stage cancer.

In the latest mega funding round, South San Francisco company Freenome has raised a $160 million in a Series B led by RA Capital Management and Polaris Partners to launch its pivotal trial for its blood-based test to screen for colorectal cancer. Polaris Partners and RA Capital will join Freenome’s board as part of the deal.

Other new investors in the round include Roche Venture Fund, Kaiser Permanente Ventures and the social impact investing arm of the American Cancer Society. The company has raised a total of $238 million since its founding in 2014.

Alongside the company’s clinical validation efforts, Freenome expects to submit its test for parallel review for CMS coverage. The new capital will be directed at building the infrastructure and staffing necessary to perform the clinical trial.

Freenome’s technology analyzes patient sample taken through regular blood draw to determine the potential risk for colorectal cancer.

Through what the company dubs a “multiomics” approach, the diagnostic uses machine learning and computation to test a combination of potential biomarkers for cancer like genetic material shed from cancer cells, relevant proteins

and methylation, which is a process by which DNA modifies the function of specific genes.

"We’ve never believed there is a single solution to cancer screenings,” said Freenome CEO Gabriel Otte. “Our intention always to test for multiple analytes in the blood and use those combination of signals to effect cancer treatments.”

This information gleaned from Freenome’s test can be used to help inform provider decisions to confirm the diagnosis and start treatment earlier, leading to better recovery and survival rates.

According to the American Cancer Society, when colorectal cancer is detected in an early stage, 5-year survival rates hover around 90 percent. The condition is the second deadliest form of cancer, with around 50,000 Americans predicted to die of the condition this year.

Freenome’s strategy takes a page from Exact Sciences, which received FDA approval – along with a positive CMS coverage indication – for its Cologuard stool-based colorectal cancer diagnostic in 2014.

Frankly it’s not really about what works technologically, and not even what you can get validated by the FDA, but rather what you can get paid for,” Otte said.

Mirroring its predecessor’s approach to regulatory and reimbursement approval, Freenome is also looking to launch a similar trial to the one conducted by Exact Sciences.

Otte said Freenome plans to have pre-submission meetings with the FDA later this year and launch the clinical trial in the first half of 2020. The hope is to be able to enroll roughly 10,000 participants into the trial, with the research taking place over a period of around 24 months.

Competitors like Grail, Guardant Health and Thrive are all pursuing their own liquid biopsy technology, albeit with a focus on screening for multiple types of cancer.

Menlo Park-based Grail presented early results at this year’s American Society of Clinical Oncology meeting that showed its diagnostic’s ability to detect cancer signals with a false positive rate of less than 1 percent and find the tissue of origin with relatively high accuracy.

Otte, however, drew a distinction in the business rationale between Grail’s approach and that of Freenome.

He said that Freenome’s early screening for colorectal cancer has defined clinical utility, with a standard way to confirm to diagnosis through a colonoscopy. Multi-cancer screenings – while great tools technologically – leave too much open to interpretation and are harder to integrate into the existing healthcare system, Otte argued.

“One of the most important questions to ask is what is the clinical follow-up?Clinicians are going never to use the test that leaves too many open-ended questions on what they’re going to do next and payers won’t reimburse for that either,” Otte said.

In fact, Freenome’s company’s own product development pipeline was shaped by a similar realization. Initially, the company’s research honed in on prostate cancer, but it was faced with the issue of early diagnosis failing to change treatment patterns, rendering the test non-commercially viable.

Still, even with the difference in opinion to some of the other liquid biopsy companies, Otte pointed to the growing interest in the field from investors and clinicians as positive indications for the industry.

“Diagnostics have traditionally been the ugly-step sibling in the therapeutics world, but there’s a growing recognition that next-generation diagnostics are here to stay and are a key part of solving cancer,” Otte said.

Source. Medcity News, Kevin Truong, July 24, 2019


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Wednesday, April 24, 2019

Sherlock Biosciences raises $31M to apply CRISPR technology to diagnostics


By Alaric Dearment

A startup planning to apply CRISPR technology to diagnostics has raised its first major round of venture capital financing a month after its founding.

Cambridge, Massachusetts-based Sherlock Biosciences said Tuesday that it had raised $31 million in a Series A round, led by Northpond Ventures and Baidu Ventures, with additional contributions from the Open Philanthropy Project and other investors. The company was launched last month with $35 million in initial financing, which included a $17.5 million non-dilutive grant and another investment by the Open Philanthropy Project.

The company’s founders are several veterans of the diagnostics industry and gene-editing science, including CRISPR pioneer Feng Zhang of The Broad Institute.

Its stated desire is to use the new funding to “disrupt” diagnostics by developing molecular diagnostics that can rapidly deliver accurate and inexpensive results in areas like oncology, infectious diseases, at-home testing, low-resource settings and agriculture.

The company has in-licensed two technology platforms from The Broad and Harvard University’s Wyss Institute for Biologically Inspired Engineering. From The Broad, it has licensed SHERLOCK, developed by Zhang and others, and from Wyss it has licensed the molecular diagnostics platform INSPECTR.

SHERLOCK – whose name is derived from “specific high-sensitivity enzymatic reporter unlocking” – works by amplifying genetic sequences and programming a CRISPR molecule to detect specific genetic signatures in samples, releasing a signal when those signatures are detected. According to the company, SHERLOCK is able to detect the unique genetic “fingerprints” of almost any DNA or RNA sequence in an organism of pathogen. The INSPECTR acronym is derived from “internal splint-pairing expression cassette translation reaction.” It works through synthetic biology and synthetic gene networks and enables the creation of instrument-free diagnostic devices.

The company’s application of CRISPR to diagnostics is a departure from the more well-known uses of the technology, which have primarily focused on therapeutic gene-editing. In February, a Phase I/II clinical trial of a therapy developed using the technology in beta-thalassemia, run by Boston-based Vertex Pharmaceuticals and Switzerland’s CRISPR Therapeutics, dosed its first patient. And last week, a Phase I clinical trial at the University of Pennsylvania of a cell therapy sponsored by Mustang Bio dosed its first two patients, one with multiple myeloma and one with a sarcoma.

Source. Medcity News, Alaric Dearment, April 23, 2019

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This post was brought to you by Woewoda Communications, your partner in the Canadian private equity and startup markets; offering strategic communications, public relations & investor relation services to Canadian VCs, PEs, Angels, Endowments/Trusts, Family Offices, and Canadian startups involved in ICT, IoT, blockchain, life sciences, healthcare, agribusiness, clean energy, fintech, AI and robotics.

Are you a Canadian startup that needs to grow or scale? Give us a call! One of our representatives would love to explain how we vertically design, and then systematically layer each of our communication platforms to effectively reach niche target audiences for our clients. WC offers a unique synergistic approach to effectively communicate our client's message to their target audience.

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Thursday, February 14, 2019

Startup HiberCell gets more than $60M to focus on mechanism behind cancer metastasis, recurrence

By ALARIC DEARMENT

Researchers at New York’s Mount Sinai Health System have launched a company grown out of research into the mechanisms behind cancer metastases.

HiberCell, based in New York, launched Thursday with a $60.75 million Series A funding round, led by ARCH Venture Partners and with participation from Celgene, Hillhouse Capital, 6 Dimensions Capital, the NYC Life Sciences Fund and undisclosed institutional investors, family offices and private individuals.

The company’s pipeline page lists two potential product candidates, HC-5404 and HC-5407, in preclinical discovery for solid tumor metastasis and also recurrences of solid and liquid tumors.

The company was founded based on research conducted at Mount Sinai’s Tisch Cancer Institute showing that cancer recurrence is driven by dormant disseminated tumor cells, or DTCs, that can persist in the body for long periods of time. The company hopes to approach cancer as a systemic disease, detect and target DTCs to prevent or delay metastasis. “We know that dormant disseminated tumor cells are critical drivers of cancer metastasis,” company co-founder and chief scientific officer Alan Rigby said in a statement. “In translating this biology into the clinic, our work will be focused on further defining the characteristic genetics and transcriptonomics of dormant disseminated tumor cells and charting a course to leverage our dormancy therapies to improve patient outcomes and survival.”

Rigby referred to HiberCell as “the foundational tumor dormancy company,” but there have been efforts at numerous academic research institutions into the area of cancer cell dormancy. For example, this month’s issue of the journal Trends in Pharmacological Science includes a paper by researchers at the University of Sydney in Australia titled “Targeting Cancer Cell Dormancy.” Another, in the February issue of Advances in Cancer Research titled “Dormancy and Cancer stem cells: An enigma for cancer therapeutic targeting,” was published by researchers at Virginia Commonwealth University.

“HiberCell will build on the foundational biology that is in place by focusing on novel tools to better detect, isolate and annotate the survival mechanisms in these dormant cancer cells,” said Julio Aguirre-Ghiso, the company’s scientific founder, in a statement.

Source. Med City News, Alaric Dearment, February 7, 2019

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