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Phd In Biochemistry Jobs in Prairie View, TX (NOW HIRING)

Advanced expertise in Computational Biology, Cheminformatics, Medicinal Chemistry, Biochemistry, or related fields; advanced degree (PhD, MSc, PharmD) highly valued but not strictly required.

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Phd In Biochemistry information

What is a PhD in Biochemistry?

A PhD in Biochemistry is a doctoral degree that focuses on advanced research and study of the chemical processes within and related to living organisms. This program typically involves coursework, laboratory research, and the completion of a dissertation based on original research. Graduates are trained to understand complex biological systems at the molecular level and are prepared for careers in academia, industry, and government. The degree usually takes 4-6 years to complete and requires a strong background in biology, chemistry, and related sciences.

What types of collaborative projects does a PhD in Biochemistry typically engage in within academic or industry settings?

PhDs in Biochemistry often collaborate on interdisciplinary projects with professionals from fields such as molecular biology, pharmacology, and bioinformatics. These collaborations may involve designing experiments, sharing specialized equipment, and jointly analyzing complex data sets to advance research goals. In both academic and industry environments, teamwork is essential for publishing impactful research, developing new products, or translating discoveries into clinical applications. Effective communication and project management skills are valuable assets for successfully navigating these collaborative efforts.

What are the key skills and qualifications needed to thrive as a PhD in Biochemistry, and why are they important?

To thrive as a PhD in Biochemistry, you need advanced knowledge of molecular biology, chemistry, and experimental design, supported by a doctoral degree in biochemistry or a related field. Proficiency with laboratory techniques, analytical instruments (such as mass spectrometry or chromatography), and data analysis software is essential. Critical thinking, attention to detail, and effective communication are important soft skills for interpreting results and collaborating with multidisciplinary teams. These skills and qualities are vital for advancing scientific research, publishing impactful findings, and driving innovation in biochemical sciences.

Is it worth getting a PhD in biochemistry?

A PhD in biochemistry prepares individuals for research, academia, and specialized roles in the biotech and pharmaceutical industries. It involves extensive laboratory work, advanced knowledge of molecular biology, and often requires several years of study, leading to higher-level positions and increased earning potential compared to bachelor's or master's degrees.

What can I do with a PhD in biochemistry?

A PhD in biochemistry prepares individuals for careers in research, academia, pharmaceuticals, biotechnology, and healthcare industries. Graduates often work as research scientists, lab managers, or university professors, utilizing skills in laboratory techniques, data analysis, and scientific communication.

What cities near Prairie View, TX are hiring for Phd In Biochemistry jobs?

Cities near Prairie View, TX with the most Phd In Biochemistry job openings:

Infographic showing various Phd In Biochemistry job openings in Prairie View, TX as of August 2026, with employment types broken down into 79% Full Time, 19% Part Time, and 2% Contract. Highlights an 73% Physical, 4% Hybrid, and 23% Remote job distribution.

Postdoctoral Fellow - Molecular Oncology

MD Anderson Cancer Center

Houston, TX • On-site

$64K - $76K/yr

Full-time

Medical, Dental, Retirement, PTO

Re-posted 14 hours ago


MD Anderson Cancer Center rating

8.5

Company rating: 8.5 out of 10

Based on 172 frontline employees who took The Breakroom Quiz

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Job description

A postdoctoral fellow position is available immediately to lead studies on a newly defined metabolic-immune circuit that drives resistance to immune checkpoint inhibitors (ICI) in melanoma. The project builds on our finding that ICI-induced inflammation (IL-6/IFN- to TOPK to HECTD1) accelerates hepatic PAH degradation, raising systemic phenylalanine (Phe), which then engages a neutrophil GRIK1-CaMKIV-STING-type I IFN program that drives CD8+ T cell exhaustion. The fellow will test two clinically compatible interventions: hepatocyte-targeted HULC RNA mimetics that stabilize PAH, and repurposed topiramate, an FDA-approved GRIK1 inhibitor, that blocks neutrophil Phe sensing.
This work spans genetically engineered and humanized (huCD34-MISTRG) mouse models, patient-derived melanoma models, hiPSC-derived hepatocytes, RNA therapeutic delivery, multiplex spatial proteomics, and a 562-patient clinically annotated cohort. The project is supported by an established team of co-investigators in ICI and T cell biology, neutrophil biology, dermatopathology, clinical melanoma, biostatistics, and nanomedicine.
All duties and responsibilities are carried out in compliance with institutional policies, ethical research standards, and applicable federal and state regulations.
LEARNING OBJECTIVES
• Design and execute in vivo studies in huCD34 humanized mice engrafted with melanoma patient-derived cell (PDC) models under defined dietary Phe regimens and ICI treatment.
• Breed, genotype, and phenotype compound genetic models, including BrafCA/+;PtenloxP/loxP;Tyr::CreERT2, PahR408W, and neutrophil-specific Grik1f/f; Mrp8-Cre lines.
• Isolate and profile tumor-associated neutrophils and tumor-infiltrating CD8+ T cells by flow and phospho-flow cytometry, CyTOF, ELISA, Seahorse extracellular flux, and cytotoxicity assays.
• Dissect the PAH degradation pathway and the GRIK1-CaMKIV-STING axis using immunoprecipitation, ubiquitination and phospho-specific immunoblotting, in vitro kinase assays, CRISPR/Cas9 editing, and hiPSC-derived hepatocyte and neutrophil-like cell systems.
• Formulate, deliver, and evaluate GalNAc-conjugated and LNP-encapsulated HULC RNA mimetics, including pharmacokinetics, biodistribution, and toxicity studies.
• Perform and analyze COMET multiplex spatial proteomics on murine and human melanoma tissue and integrate results with bulk RNA-seq and scRNA-seq datasets.
• Prepare manuscripts, present at national meetings, and contribute to grant applications, including fellowship and career development awards.
ELIGIBILITY REQUIREMENTS
• PhD, MD, or MD/PhD, or expected within six months, in immunology, cancer biology, molecular biology, biochemistry, pharmacology, or a related discipline.
• Demonstrated productivity, evidenced by at least one first-author publication in a peer-reviewed journal.
• Hands-on in vivo experience: syngeneic and/or xenograft tumor implantation, tumor growth monitoring, survival studies, mouse colony management, genotyping, and IACUC protocol compliance.
• Multicolor flow cytometry, including immune panel design, tissue dissociation, and analysis of tumor-infiltrating lymphoid and myeloid populations.
• Core molecular and biochemical techniques: immunoblotting, co-immunoprecipitation, qRT-PCR, ELISA, plasmid and lentiviral construct generation, CRISPR/Cas9 gene editing, and primary cell culture.
• Quantitative rigor: appropriate statistical testing, power considerations, blinding and randomization, and transparent record keeping.
• Strong written and spoken English, with the ability to work independently and within a multidisciplinary collaborative team.
POSITION INFORMATION
MD Anderson offers full-time postdoc positions with a salary ranging from $64,000 to $76,000 . depending on the number of years of postgraduate experience. The University of Texas MD Anderson Cancer Center offers excellent benefits , including medical, dental, paid time off , retirement , tuition benefits, educational opportunities, and individual and team recognition
Offsite work arrangements are subject to approval and may be modified or revoked at any time based on business needs, performance considerations, or regulatory requirements.
This position may be responsible for maintaining the security and integrity of critical infrastructure, as defined in Section 113.001(2) of the Texas Business and Commerce Code and therefore may require routine reviews and screening. The ability to satisfy and maintain all requirements necessary to ensure the continued security and integrity of such infrastructure is a condition of hire and continued employment.
It is the policy of The University of Texas MD Anderson Cancer Center to provide equal employment opportunity without regard to race, color, religion, age, national origin, sex, gender, sexual orientation, gender identity/expression, disability, protected veteran status, genetic information, or any other basis protected by institutional policy or by federal, state or local laws unless such distinction is required by law. http://www.mdanderson.org/about-us/legal-and-policy/legal-statements/eeo-affirmative-action.html

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