Memorial Sloan Kettering Cancer Center Extends Allscripts Sunrise™ Agreement

On February 12, 2020 Allscripts Healthcare Solutions (NASDAQ: MDRX) reported that Memorial Sloan Kettering Cancer Center (MSK), has extended its engagement with Allscripts Sunrise through 2026 (Press release, Allscripts-Misys Healthcare Solutions, FEB 12, 2020, View Source [SID1234554229]).

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Allscripts Sunrise is an integrated electronic health record that can connect all aspects of care. As an evidence-based single platform, Sunrise has integrated analytics that can support core care venues across the enterprise.

"The Allscripts Sunrise platform has been a key component in our clinical platform for two decades," said Memorial Sloan Kettering Cancer Center’s Chief Operating Officer, Kathryn Martin. "We look forward to continued collaboration with the Health IT company, working to meet the needs of our clinicians and, most importantly, our patients."

"We’re honored to continue our work with Memorial Sloan Kettering Cancer Center, the largest and oldest private cancer center in the world," said Allscripts CEO Paul Black. "Our more than 20-year relationship has helped many patients within the cancer community receive world-class care and we’re certain that the cancer center’s extension of its Sunrise engagement will be the right fit for its future success."

X4 Pharmaceuticals Granted New Composition of Matter Patent for Late-Stage Clinical Candidate Mavorixafor

On February 12, 2020 X4 Pharmaceuticals, Inc. (Nasdaq: XFOR), a clinical-stage biopharmaceutical company focused on the development of novel therapeutics for the treatment of rare diseases, reported that the United States Patent and Trademark Office (USPTO) has issued United States Patent No. 10,548,889, which is expected to provide exclusivity of X4’s lead therapeutic candidate, mavorixafor (X4P-001), through 2038 (Press release, X4 Pharmaceuticals, FEB 12, 2020, View Source [SID1234554228]).

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"This new patent which covers critical compositions of matter enhances our already robust patent portfolio, further strengthening and extending the potential commercial horizon for mavorixafor," said Paula Ragan, Ph.D., President and Chief Executive Officer of X4 Pharmaceuticals. "We expect that this long patent runway will assist us in maximizing the full therapeutic potential of mavorixafor, which we are currently investigating across a number of rare disease indications."

About Mavorixafor

X4 Pharmaceuticals’ lead product candidate, mavorixafor (X4P-001), is a potential first-in-class, once-daily, oral inhibitor of CXCR4, currently in a Phase 3 clinical trial for the treatment of WHIM syndrome, a rare, inherited, primary immunodeficiency disease caused by genetic mutations in the CXCR4 receptor gene. Mavorixafor has demonstrated proof-of-concept in WHIM syndrome in a Phase 2 clinical trial, including clinically meaningful increases in neutrophil and lymphocyte biomarker counts, as well as a trend of reduction in infection rates and wart burden, and a favorable safety profile. Mavorixafor was recently granted Breakthrough Therapy Designation by the U.S. Food and Drug Administration (FDA) for the treatment of adult patients with WHIM syndrome, and was granted orphan drug status by the FDA in 2018 and by the European Commission in 2019 for the treatment of WHIM syndrome. Mavorixafor is also being developed by X4 to treat Severe Congenital Neutropenia (SCN), Waldenström’s macroglobulinemia (WM), and clear cell renal cell carcinoma (ccRCC).

Castle Biosciences to Present at the 9th Annual SVB Leerink Global Healthcare Conference

On February 12, 2020 Castle Biosciences, Inc. (Nasdaq: CSTL), a skin cancer diagnostics company providing personalized genomic information to improve cancer treatment decisions, reported that Derek Maetzold, president and chief executive officer, is scheduled to present a company overview at the 9th Annual SVB Leerink Global Healthcare Conference in New York City on Wednesday, February 26, 2020, at 1:00 p.m. Eastern time (Press release, Castle Biosciences, FEB 12, 2020, View Source [SID1234554227]).

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A live audio webcast of the company’s presentation will be available by visiting Castle Biosciences’ website at View Source A replay of the webcast will be available for two weeks following the conclusion of the live broadcast.

TriSalus Life Sciences and Roger Williams Medical Center Announce Initiation of Phase 1 Clinical Trial for a Novel Delivery Technology That Can Enhance Drug Delivery into Pancreatic Tumors

On February 12, 2020 TriSalus Life Sciences, a company committed to developing comprehensive solid tumor solutions, reported the initiation of a new clinical trial assessing the safety and feasibility of an innovative new treatment that combines its intravascular, tumor-directed proprietary Pressure-Enabled Drug Delivery (PEDD) approach with standard of care systemic chemotherapy (Press release, TriSalus Life Sciences, FEB 12, 2020, View Source [SID1234554226]).

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The goal of this clinical trial is to perform targeted delivery of the most toxic components of standard of care treatment regimen deep into pancreatic tumors using a novel approach that accesses the tumor via pancreatic veins. The chemotherapy involved is for the treatment of adults diagnosed with unresectable, pancreatic carcinoma. With the number of newly diagnosed patients with pancreatic cancer rising and fewer than 20 percent suitable for surgery,1 improved treatment options for pancreatic cancer are a critical health care need.

Traditional approaches for targeted therapeutic delivery to the pancreas rely on the use of the arterial system. The pancreatic arterial supply, however, poses unique anatomic challenges as the terminal pancreatic arteries are not large enough to accommodate delivery devices. This limits the ability for highly focused delivery of therapeutics to pancreatic tumors. TriSalus has developed a new retrograde venous proprietary approach using the simpler pancreatic venous system, making it far more suitable for PEDD.

The presence of highly dense tissue architecture and abnormal poor blood flow into solid tumors are critical barriers to drug delivery, resulting in less than 1 percent of systemic drug administration delivered into tumors with conventional therapies.2

PEDD with SmartValve technology is a self-expanding, one-way micro-valve that enables optimal infusion pressures for deeper therapeutic penetration. Treatment is delivered directly into solid tumors with the goal to avoid healthy tissue while optimizing therapeutic effect. This pressurized delivery has the potential to open collapsed vessels in tumors and helps promote therapy delivery.

This study is designed to assess the technical success and safety of administering oxaliplatin through retrograde venous infusion (RVI) followed by systemic administration of FOLFIRI, a regimen containing folinic acid, fluorouracil, and irinotecan. Secondary measures of the study include local progression free survival, systemic progression free survival, overall survival, radiographic response rates, serologic response rates, and neurotoxicity from oxaliplatin. Exploratory measures include correlation of infusion pressures with treatment response, in addition to serum oxaliplatin pharmacokinetics following PEDD-RVI. Patients, who are new to treatment and have received first-line systemic therapy, are eligible for this trial.

"We’ve made significant advances in developing therapeutics to address various forms of cancer, but solid tumors of the pancreas have significant barriers that prevent therapies from penetrating the entire tumor. This trial will help us evaluate the role of this novel drug delivery technology in overcoming tumor infusion barriers and delivering the most toxic component of the regimen deep into the solid tumor," said Ritesh Rathore, MD, of Roger Williams Medical Center in Providence, R.I., and Principal Investigator for the trial.

"We hope this trial not only results in improved outcomes with standard of care chemotherapy treatments for pancreas cancer, but also enables use of this novel delivery platform for immuno-oncology agents in the future. Our focus on improving the therapeutic index for pancreas tumor treatments through regional delivery solutions designed to overcome high intra-tumoral pressures will hopefully have broad application and address critical unmet medical needs," said Steven C. Katz, MD, Director of The Office of Therapeutic Development at Roger Williams Medical Center.

"At TriSalus Life Sciences, we have devoted all of our resources to the tri-pronged approach of building intravascular, tumor-directed, organ specific therapeutic regimens that can be safely delivered regionally either independently or in combination with standard of care to improve the lives of patients," said Mary T. Szela, President and CEO of TriSalus. "We’re pleased to partner with Roger Williams Medical Center for this study, and we are grateful to the patients and families who participate in this study."

About the PEDD-RVI Clinical Trial
The open-label trial will be conducted at Roger Williams Medical Center as a single-arm, dose-escalation Phase 1 study of patients with unresectable pancreatic adenocarcinoma. The trial will enroll 9 patients, and if dose-limiting toxicities (DLT) are not encountered, a total of 18 patients will be enrolled.

For more information, visit www.clinicaltrials.gov or www.newpancancertrial.com; or contact Ashley Moody, BSN, RN, Immunotherapy Research Nurse Manager, 401-456-2268 or email at [email protected].

About Pancreatic Cancer
Pancreatic cancer is the third leading cause of cancer deaths in the United States (US), responsible for an estimated 45,750 deaths in 2019, with a 5-year survival rate of approximately 9 percent.3 The dismal prognosis of pancreatic cancer can be attributed to several factors: initial diagnosis at an advanced stage, aggressive nature of the disease, resistance to conventional treatment options of chemotherapy and radiation therapy, the presence of multiple genetic/epigenetic alterations and complex tumor microenvironments. Surgical resection of the primary tumor with negative margins is still the cornerstone of potentially curable therapy, but only 15-20 percent of patients are eligible at diagnosis.

About Pressure-Enabled Drug Delivery (PEDD) with SmartValve Technology
The proprietary Pressure-Enabled Drug Delivery (PEDD) approach with SmartValve technology is FDA 510(k) cleared and features a self-expanding, nonocclusive, one-way valve, which infuses therapeutics into a solid tumor at a pressure higher than the baseline mean. This pressurized delivery opens collapsed vessels in tumors and enables perfusion and therapy delivery into hypoxic areas of solid tumors.

PharmaCyte Biotech Receives Certificates of Analysis and Batch Records for its Clinical Trial Product in Pancreatic Cancer

On February 12, 2020 PharmaCyte Biotech, Inc. (OTCQB: PMCB), a biotechnology company focused on developing cellular therapies for cancer and diabetes using its signature live-cell encapsulation technology, Cell-in-a-Box, reported that it has received the Certificates of Analysis and the records from both batches of its clinical trial product manufactured by Austrianova Singapore (Austrianova) (Press release, PharmaCyte Biotech, FEB 12, 2020, View Source [SID1234554225]). As previously reported, both batches of the company’s clinical trial product have undergone and passed all of the necessary "release tests" required by the U.S. Food and Drug Administration (FDA).

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PharmaCyte has engaged cGMP Validation to review the batch records and the Certificates of Analysis to ensure that they are complete and that they comply with FDA requirements. This is a significant milestone in preparing the documentation for the Investigational New Drug application (IND) PharmaCyte plans to submit to the FDA to commence a Phase 2b clinical trial in locally advanced, inoperable pancreatic cancer (LAPC).

PharmaCyte is also working with Facet Life Sciences (Facet), its experienced regulatory and development services organization, to prepare and submit the IND to the FDA. Facet will now begin work with cGMP Validation to populate those modules of the IND that provide detailed information on the release testing and how the clinical trial product was manufactured and tested. This process involves a complex analysis of hundreds of pages of detailed technical information related to the manufacturing and testing of PharmaCyte’s clinical trial product.

PharmaCyte’s Chief Executive Officer, Kenneth L. Waggoner, said, "We are pleased to have received the Certificates of Analysis and now have access to the batch records from both manufacturing runs. This is a significant step forward. We have been waiting on the Certificates of Analysis to commission important next steps in order to complete the IND and related matters. We now have certification from Austrianova that our product has met the required release testing to demonstrate that our clinical trial product "functions" as it should and is "safe" to use in an FDA clinical trial

"In the coming days, there will be considerable work between our team and Austrianova to make sure everything we have received from Austrianova is cGMP compliant and comports with FDA regulations. Facet will now take the lead, working with our team, to complete the IND."

To learn more about PharmaCyte’s pancreatic cancer treatment and how it works inside the body to treat locally advanced inoperable pancreatic cancer, we encourage you to watch the company’s documentary video complete with medical animations at: View Source