James Hayward
Analyst · ROTH Capital Partners
Great. Thank you, Beth and good afternoon, everyone. Thank you for joining us on our fiscal year-end call. I hope that you and yours are keeping safe and well during this holiday season. Fiscal '21 was a year of substantial execution for Applied DNA. In the midst of the pandemic, we stood up a high throughput CLEP-CLIA certified lab in our Stony Brook headquarters that serves as our diagnostic testing services subsidiary to support population scale COVID-19 testing. New York CLEP-CLIA certification is especially challenging to achieve but we obtained certification in just a matter of months. We put in place all the constituent components of the full-service COVID-19 population testing, grounded in our house developed EUA-authorized assay and proprietary-automated pooled workflows. We expanded our operating area to include all of Long Island and then within weeks of contract signing, with the City University of New York, we added the five boroughs of New York City and then to the borders of New York state itself. The use of our diagnostic, what we now refer to as our Linea 1 version 1 Assay. At our high-throughput clinical labs generates very attractive margin when scaled, as such, fiscal '21 also reflects investments made to ADCL's footprint to encompass testing programs capable of serving the entirety of New York State. To support our now state-wide safeCircle customer base. The result is the achievement of record annual revenues that more than cushioned the pandemics' impact on our industrial DNA and LineaRx business. Execution on our testing strategy did not end with the fiscal year. And in a moment, I'll speak to the launch of safeCircle nationally, with the surveillance testing of samples beginning to flow to our clinical lab from 14 different states. We believe that ADCL can be an engine for growth for us throughout fiscal '22. Our long-term view of ADCL, given the foundation that we have put in place, is that of an engine that can drive our financial performance and generate cash flow to support investments in our LinearDNA and industrial DNA businesses. But more than cash flow, we will marry the diagnostic capability of ADCL to the therapeutic applications of LinearDNA, that will ultimately enhance the commercial value of both platforms. Our original Linear COVID Assay which we are now referring to as version 1 targets 2 amplicons in the Spike gene. This has been of enormous utility. As the variance evolved, we were able to identify alpha through delta, simply by changes in the positive PCR patterns for patients infected by that variant. Those altered PCR patterns were confirmed by our sequencing studies using next-generation sequencing. But with the arrival and propagation of the Omicron variant, the changes in the Spike gene are so large in number and in impact that we expect version 1 of our assay to lose sensitivity. But however, there is a significant silver lining to the story. We expected the appearance of massively mutated Spike gene and months ago, developed and validated our version 2 assay. The 2.0 Assay is the three target multiplexed real-time reverse transcription polymerase chain reaction assay, targeting conserved regions, conserved meaning they don't mutate at the same frequency, of the viral E envelope gene and the viral nucleocapsid N gene and the human RNA gene in respiratory systems. Linea 2 is variant agnostic. This means that it is designed to determine the infectivity and not whether a COVID-19 sample contains a variant of any specific COVID lineage. We have filed our 2.0 assay in supporting validation data with the New York State Department of Health. Our strategy is to utilize the assay that detects the viral N and E genes to identify positive samples. Then we are reflex testing those positives with our version 1 assay. Samples that exhibit drop of the S signals are likely Omicron variants. They will be positively identified by sequencing with NGS. We have already identified Omicron this way and we have strong interest from our existing customers to utilize these methods to more quickly identify Omicron as opposed to sequencing. Version 2 has been validated for both single samples and pooled testing via anterior nasal swab collection. So for our safeCircle customers, Linea 2's design includes a plug-and-play function that allows it to be plugged into the Linea 1's testing workflow seamlessly. This means that we can process Linea 2 with the same speed and efficiency and with the identical economics to our Linea 1 assay, to mitigate any disruptions in the processing of those samples. So we are prepared to transition to Linea 2 from our current Linea 1-based testing workflow subject to review by the New York State Department of Health. If this transition needs to occur prior to the completion of their review, we have validated a third-party EUA-authorized assay for use at ADCL until the review is complete. Now as Beth noted, our current quarter ending December 31 will reflect the first full quarter of CUNY's contributions to our consolidated revenues. CUNY modeling at the time of the award back in August was for 20,000 to 65,000 tests per week. Weekly testing levels have not reached these levels. The result of a combination of increasing vaccination rates and after the award date, CUNY's adoption of a vaccine mandate as well as low on-campus attendance driven by concerns about infection. As prime contractor at CUNY and working with our partner CLEARED4, we've been able to deliver value-adding services to enable CUNY to consolidate testing, vaccination, verification and site access control into a single platform which is a real benefit for administrators, students and employees. The evolving nature of the pandemic, however, makes a strong case with the testing of vaccinated populations in addition to the unvaccinated. So effective two weeks ago, we've started to test a random sampling of CUNY's vaccinated population every week. The percentage of the randomly tested will be determined by infectivity rates as well as the number of students on campus. We've seen an increase in weekly testing figures following the start of random vaccinated sampling, though it's too soon to determine whether testing will stabilize at any specific level. Third-party medical staffing and our operational footprint beginning in August, were predicated on our outlook for customers utilizing this managed-service model, including CUNY, Suffolk Community College, Sarah Lawrence College and Molloy. Our model is to continuously rightsize staffing and ancillary costs to an affordable operating footprint at the level of service that our customers should expect from us. The path forward with CUNY and others is a promising one. CUNY's vaccine mandate should bring students back on campus starting with the spring semester. We expect this to translate into increased weekly testing rates starting in the middle of January. Now for fiscal '22, we expect that ADCL will continue to drive the company's topline growth. We believe this growth will come from both continued and expanded COVID testing services as well as additional non-COVID molecular testing. As I'll discuss in a bit, we plan on using this topline growth to help fund the expansion of the LinearDNA platform to capture the rapidly growing market for non-plasmid-derived DNA for biotherapeutic applications. Recall that in the first months of 2020 as the world grappled with COVID-19 and vaccine development, we too were investigating the virus as a test bed for our LinearDNA vaccine as a pure fast and flexible alternative to plasmid DNA that has the benefit of speed of production without the additional burden and costs of cold chain storage required for global distribution. And having become experts Spike, we developed our Linea 1 COVID Assay that has underpinned our diagnostics and testing business and has driven our topline performance in '21. Since the introduction of Linea 1 in May of 2020, we've continued to expand our COVID-related diagnostic offering reflective of this residents. The establishment of a mutation and variant tracking program with Northwell Health and the launch of safeCircle, both powered by our Linea 1 Assay and feasible only through our genomics expertise and acquired next-generation sequencing capacity gave us a front row seat to mutational drift and to the evolution of variance. From this knowledge, we developed our Linea SARS-CoV-2 mutation panel, for which we are seeking EUA approval from FDA for the testing of genetic mutations prior to the administration of monoclonal antibody treatments, known to be impacted by some of the mutations that are detected by the mutation panel. As you are likely aware, certainly EUAs have been rescinded by the FDA after the negative impact caused by mutations. If authorized under EUA, the administration of the right treatment matched to it's variant, we believe, can enable better standards of care and outcomes for the patients. The economic rationale for our mutation panel includes the potential recommercialization of monocolonal antibody treatments whose EUAs have been rescinded to enable their continued commercial utility. And the emergence of new mutations or the reemergence of known mutations, makes clear the importance of our efforts to develop and provide tools that can rapidly identify mutations of concern to assist health care providers in determining the appropriate treatments for COVID-19 patients. Our COVID-19 diagnostic development plan and go-to-market strategy are in line with our capacity to conduct population-scale testing to meet the evolving demands of current and prospective customers. The identification of the Omicron variant and the introduction of our Linea 2 Assay only days later, speaks to our agility and to our ability to execute our diagnostics development strategy. The operational framework we established for CUNY is being leveraged to access segments of the market, we believe can be more durable in the face of higher education rates. While OSHA has suspended vaccine enforcement pending resolution of legal challenges, we are seeing employers continue to implement vaccine mandates, both in preparation for the federal mandate rule and to protect their workers and workplace. Concurrently, we are focused on making our COVID-19 offering easier to distribute, use and collect. We plan to seek authorization for an at-home sample collection system that when paired with the HIPAA-compliant vaccine records management and test result reporting capabilities brought to us by CLEARED4, makes safeCircle and exceedingly efficient service for employers to keep their employees safe as they return to work. In addition, we are in discussions with several national telehealth providers for asynchronous medical oversight of testing programs located outside of New York State. If successful, we believe that these constitutive parts on supervised home collection, the CLEARED4 digital health platform and out-of-state asynchronous medical oversight will empower the nationwide reach for our safeCircle program. Early fruits of these endeavors are shown by our recently launched customer pilot project for surveillance testing in 14 states that will continue to drive incremental revenue, starting next month in January. In addition, Omicron's impact on the Linea 1 Assay has a silver lining, even when we replaced by Linea 2. Linea 1 will still offer utility as a reflex test for Omicron. Our tests have shown that Linea 1 likely exhibits a unique double S gene target drop that appears to be specific just to Omicron. This unique double target drop appears to be specific to Linea 1.0 given that it targets S1 and S2 on Spike where there are over 30 of Omicron's mutations. The value of reflex testing using Linea 1 is the time and potentially life-saving speed with which it can be run versus standard multi-day genomic sequence to potentially impact not only a patient's standard of care but also to inform public health officials to track the variance progress in our communities, as a kind of early warning system. We have already been informed by a user of our Linea 1 Assay that they intend to use it in a genomic surveillance modality to identify potential cases of Omicron in their population. Finally, we are in the process of validating a dual COVID-19 influenza A and influenza B test, as they share many symptoms in common. We believe this assay will be validated and ready for clinical use by the end of the calendar year. I think it's safe to say that we have left no COVID-19 testing-related stone unturned. We believe our existing and yet to be launched COVID-19 assets will serve us well in fiscal '22. And while we believe that COVID-19 testing demand will remain robust through fiscal '22, we are planning to introduce non-COVID-19 testing services through ADCL. Currently, we are in discussions with a major assay manufacturer of pharmacogenomics testing. Pharmacogenomics is a form of genetic testing that assesses the patient's risk of an adverse response or likelihood to respond to a given drug. Pharmacogenomics can be used to help a doctor or a patient informed drug selection and dosing, especially in the areas of psychotropic and cardiovascular medications. We believe that there is a strong unmet need for pharmacogenomics testing in the Long Island area and the development and commercialization of pharmacogenomics testing will be a focus for ADCL in this coming fiscal year. ADCL is also in the process of evaluating the iCTC platform as a potential source of valuable cancer biomarkers. If successful, this project could result in a differential cancer biomarker identification platform. We're currently in discussion with academic institutions to investigate with the iCTC platform, can be used to identify a newly discovered cancer biomarker. Now the confluence of substantially heightened interest in nucleic acid therapies because of the COVID-19 vaccine development globally and supply chain issues impacting plasmid DNA availability is driving the biotech and pharmaceutical industries to seek an alternative to plasmid DNA-based manufacturer. In short, the concept of non-plasmid derived bulk DNA is really catching on. This is creating a very attractive window of opportunity for the LinearDNA platform. The plasmid DNA manufacturing process is incredibly complex and expensive. Batch yields vary considerably and batch failure is common. And if there's one thing that the FDA does not care for, it's inconsistency of production. When you use a manufacturing process grounded in the use of bacterial cells for amplification of the target DNA, inconsistency comes with that territory, as do additional costs associated with complex and expensive purification steps downstream. It's no wonder that the biotherapeutics industry which needs never be seen for -- well that the biotherapeutics industry is looking for alternative DNA sources, excuse me. In contrast, we produced LinearDNA enzymatically and without any cells present and with rapid turnaround times and exceptional batch-to-batch consistency. There is no bacterial contamination and the need for purification is minimal compared to the plasmids. It's a simple process to produce high DNA yields. Based on internal costing analysis, we believe that the cost of cGMP LinearDNA is comparable to or even slightly less than cGMP plasmid DNA. In fiscal '21, we focused on both the validation and optimization of the LinearDNA platform. In terms of platform validation, we accomplished much this year, specifically, we obtained the first data that LinearDNA and plasmid DNA for COVID-19 vaccine have equivalent performance in rodents. We obtained the first data from higher order animals, fee lines that LinearDNA vaccines produce high levels of neutralizing antibodies against SARS-CoV-2 and it's variants. And the initiation of a detailed ferret study with Cornell University to study the efficacy of our LinearDNA vaccine candidate against actual SARS-CoV-2 infection. This trial is still ongoing but the data from the trial, assuming it meets it's endpoints, we'll provide invaluable insight into the efficacy of LinearDNA as a vaccine. Now in terms of platform optimization, we've also been highly successful. Over the past half year, we put into place a cell biology suite, designed to validate and optimize numerous aspects of the LinearDNA platform. This new asset allows the company for the first time to undertake substantial R&D activities on LinearDNA in-house. This investment has rapidly borne fruit with several breakthroughs in cellular transfection and in expression, including the deployment of an in-house lipid nanoparticle or LNP capability for the encapsulation and transfection of nucleic acids to cells. To date, we have successfully encapsulated DNA with LNPs that showed very significant expression in vitro. This is an important proof-of-concept that supports our goal to develop LNP-based delivery of LinearDNA for various applications, including vaccines. We've seen substantial success with LinearDNA constructs by our team to substitute for plasmid constructs that were already in use by our customers. These constructs which are often components of advanced therapy medicinal products like CAR T or mRNA vaccines and gene therapy are direct replacement for plasmid DNA used in these therapies. As the plasmid DNA supply chain continues to struggle, we expect to see more requests of this type of for LinearDNA and we believe that the near-term demand for GMP-grade LinearDNA as a CDMO will be very strong. And the economics of CDMOs far exceeded that of CROs which is really our current business. We have CRO relationships with major pharmaceutic players that need cGMP DNA. In fact, our cGMP approach was catalyzed by one such CRO customer, who came to us to inquire as to our plans to offer CDMO-scale LinearDNA production. In addition, our COVID-19 veterinary vaccine development program has elevated LinearDNA's profile in the marketplace. Inbound inquiries to date are magnitudes above what we've experienced historically, both in terms of volume and in value. To meet this interest and with our investment in ADCL largely complete, we continue our pathway to implement a phased-based approach to cGMP manufacturing capacity for LinearDNA in fiscal 2022. The volumes and quality necessary for a Phase I clinical trial can be achieved in our current footprint in our Stony Brook facility. In fact, we believe we can achieve Phase II efficacy trial volumes and quality also within our current footprint. However, Phase III will be scale up manufacturing which will require a larger footprint. In concert with planning undertaking with our regulatory consultants, we believe we can achieve Phase I in fiscal '22 at a cost of roughly $3 million in capital expenditure. Once we are the manufacturer of record for the clinical trial, we believe we can grow as the CDMO for the customer throughout the clinical trial process. In addition to planning and facility reviews, we're also working to put the necessary partnerships together to support successful cGMP. We're currently working with polymerase manufacturers for the production of a cGMP grade enzyme. The most important aspect of our manufacturing process. In addition, we're working with several device manufacturers to upgrade the devices in our large-scale PCR workflows to meet cGMP compliance. Further, our new cell bio suite is developing the technical skills to support the quality standards necessary for cGMP manufacturer of LinearDNA. Once in place, our cGMP manufacturing will be designed around parallel workflows that are well suited to rapid scaling. We believe that once implemented, the production of cGMP LinearDNA as a CDMO will be a substantial catalyst for our growth. In addition to our numerous LinearDNA customers, validation of our decision to pursue cGMP for LinearDNA and can also be found in a recent publication by the Prague Institute of Hematology and Blood Transfusion on their use of our LinearDNA as a suitable and cost-effective replacement to plasmid DNA in the production of CAR T cells with similar efficacy to the CAR cells manufactured with plasmids. This paper highlights the use of LinearDNA with a nonviral transfection system. In their case, a transposon-transposase system. We believe this combination overcomes many of the existing manufacturing complexities associated with plasmids and with viral vectors, thereby offering therapy developers, a rapid and cost-effective tool for manufacturing preclinical CAR T cells. This is very valuable validation for us as the majority of our CRO stomers [ph] are ordering from us LinearDNA for CAR T cell applications. We are currently in discussions with the institute on a potential clinical trial with a new CAR construct targeting acute myeloid leukemia. This would have the potential to leapfrog our development work in the U.S. to be a first in-human trial for LinearDNA. A near-term Phase I is made possible through the auspices of new European Medical Agency Guidance that allows for the use of GMP-like product to be upscaled to cGMP for certain Phase I trials. I don't have additional details to share at this time but the trial is currently projected to commence in fiscal '22. Now turning now to our industrial DNA business and specifically, our textiles practice. We're pleased to see the resumption of more normal demand patterns in the fourth quarter with the receipt of a $1.6 million purchase order. Fiscal '21 was a challenging year with the continuation of COVID-19's impact on the textile supply chains. As vacation rates increase, so too began a sign of the global textile supply chain. Given the impact of the ongoing pandemic, fiscal '21 was about progressing COVID-paused commercial scale trials and scale up commercial production in fiscal '22. In fiscal '21, we completed a key proof-of-concept trial for the tagging of recycled PET with Ganesha, the largest producer in India of recycled PET fiber, spun yarn and died filament. In fiscal '22, we'll continue to pursue pre-commercial trial developments in recycled PET production as well as from other textile customers in cotton, downs and feathers, leather and thread. These activities are necessary step to eventually tag commercial-scale material volumes. In cotton, fiscal '21 was about progressing pre-commercial trials in new textile categories like apparel, footwear and accessories. In fiscal '22, cotton will be focused on scale-up of these trials and commercialization. It is particularly noteworthy that for the first time, both home goods and apparel brands and their suppliers are reaching out to us. We have gained the attention of multiple apparel and footwear brands and their suppliers and we have traction. Demands in '22 should approximate '21 level an increment as we execute on the scale up. Our outreach activities during the fiscal year resulted in the evaluation of certainty, strategic value with prospective customer supply chains. Certainties, value proposition speaks to the need for compliance and to support a brand's brand promise. These are issues central to the brands and suppliers coming out of the pandemic and driven in part by their own ESG commitments as well as the standards against which their products are being measured by end consumers. Now as previously spoken about how the pandemic brought into stark relief, the inefficiencies embedded in the modern supply chain that has textile brands sourcing finished product from factories globally, the providence of these textiles is often opaque to the brands themselves to regulatory bodies and to consumers alike. Social issues, such as the use of cotton produced through the use of forced labor. I've also become a call to action for the industry and has been taken up by regulatory bodies in the U.S. and Europe some of whom are talking to us. You know our CertainT platform to be an end-to-end supply chain traceability platform that uses the immutability of DNA tag, track and trace cotton through supply chain. Go to your local Bed Bath & Beyond and pick up a set of 100% Pima cotton brand, Pima cotton sheets and note that the packaging says Pure By Nature, Proven By Science. The science being referred to is Applied DNA Sciences. Our CertainT workflow allows us to say with certainty. Yes, this is American Pima cotton, Yes, this entire bed spread is made as Pima cotton. Our call to action in 2021 was to bring the full measure of cotton genomics to bear to answer the question, where does my cotton come from, utilizing our genomic sequencing capacity, we identified a biomarker, specific to the most widely used Egyptian cotton Giza 94 varietal used in the production of textiles. We believe that it has proven for the first time that the geographic origin of cotton can be definitively ascertained via genotyping, a process of determining minute differences in the DNA living manner. In short, we believe that we can bring forensic proof of origin to regional cotton varietals to give brands and relevant regulatory authorities access to fiber origin data regardless of the locations of finished goods manufacturer. We filed a provisional patent application with the U.S. PTO for this Giza 94 cotton biomarker. We also have brought to bear an additional test for cotton, through a new relationship, we will be announcing soon that brings the forensic fidelity of stable isotopic analysis to all certainty customers for cotton textiles. Well, this proceeds my -- concludes my prepared remarks. And operator, please open the call to questions.