The number of people diagnosed with asbestos caused diseases in the U.S. continues to increase. Experts believe 60,000 mesothelioma deaths will occur between 2010 and 2030.

Work related injuries harm up to 14 million people annually, with harms including traumatic brain injuries, spinal injuries, amputations, burns, and electrocutions. Around 20,000 to 60,000 workers die each year from accidents, toxins, and violence at their jobs.

Millions of consumers and workers are injured each year because of defective products. Defects can occur when a product is designed poorly, when a product is manufactured in a manner that differs from the intended design, or when the product does not contain proper warnings or instructions. Defects can occur in automobiles, pharmaceuticals, medical devices, construction equipment, toys, and other goods.

Between 1.5 and 2 million elderly reside in nursing home facilities, with studies revealing that 44% have suffered some form of abuse. Many believe the actual number of residents suffering abuse is much higher. Neglect and abuse may result in serious emotional, physical, and financial harm

Paul & Hanley’s legal team has produced some of the most notable verdicts and highest settlements in the United States. Over 500 of our clients have each obtained in excess of 1 million dollars. Over 250 have recovered multi-million dollar recoveries.

DNA (deoxyribonucleic acid)

Deoxyribonucleic acid (DNA) is a nucleic acid that contains the genetic instructions used in the development and functioning of all known living organisms and some viruses. The main role of DNA molecules is the long-term storage of information. DNA is often compared to a set of blueprints or a recipe, or a code, since it contains the instructions needed to construct other components of cells, such as proteins and RNA molecules. The DNA segments that carry this genetic information are called genes, but other DNA sequences have structural purposes, or are involved in regulating the use of this genetic information.

Chemically, DNA consists of two long polymers of simple units called nucleotides, with backbones made of sugars and phosphate groups joined by ester bonds. These two strands run in opposite directions to each other and are therefore anti-parallel. Attached to each sugar is one of four types of molecules called bases. It is the sequence of these four bases along the backbone that encodes information. This information is read using the genetic code, which specifies the sequence of the amino acids within proteins. The code is read by copying stretches of DNA into the related nucleic acid RNA, in a process called transcription.

Within cells, DNA is organized into long structures called chromosomes. These chromosomes are duplicated before cells divide, in a process called DNA replication. Eukaryotic organisms (animals, plants, fungi, and protists) store most of their DNA inside the cell nucleus and some of their DNA in organelles, such as mitochondria or chloroplasts. In contrast, prokaryotes (bacteria and archaea) store their DNA only in the cytoplasm. Within the chromosomes, chromatin proteins such as histones compact and organize DNA. These compact structures guide the interactions between DNA and other proteins, helping control which parts of the DNA are transcribed.